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A melatonina atenua o estresse oxidativo, ativa o estresse de retículo endoplasmático e a apoptose na hepatocarcinogênese experimentalMoreira, Andréa Cristiane Janz January 2015 (has links)
O carcinoma hepatocelular (CHC) é a quarta causa mais frequente de morte por câncer em todo o mundo. Este estudo teve dois grandes objetivos, o primeiro foi estabelecer o carcinoma hpatocelular experimental por indução química e o segundo estudar os efeitos da melatonina sobre o estresse oxidativo, estresse de retículo endoplasmático e apoptose durante a hepatocarcinogênese. Foram realizados dois experimentos, ambos utilizaram dietilnitrosamina (DEN) mais acetilaminofluoreno (2-AAF) em ratos Wistar machos pesando 145-150 g. O primeiro estudo testou 3 protocolos de indução do câncer hepático. Os animais foram divididos em três grupos testes: DEN50: que recebeu DEN 50 mg duas vezes por semana até a 6ª semana e uma vez por semana nas semanas 11 a 13. DEN75: recebeu DEN 75mg uma vez por semana nas semanas até a 6ª semana e um reforço nas semanas de 11 a 13. DEN100: recebeu 5 doses de DEN 100mg uma a cada seis semanas por 28 semanas. Todos receberam 2- AAF dose única de 100 mg na 4ª semana. Após a indução foi comprovado por testes bioquímicos, macroscópico e histológico que o protocolo DEN50 desenvolve CHC avançado em 19 semanas, apresentou a fase inflamatória na 5ª semana e cirrose na 12ª semana. O protocolo DEN100 exibe padrão de lesões pré-cancerosas com cirrose em 28 semanas. O protocolo DEN75 foi o mais heterogêneo dos três, pois desenvolveu lesões pré-cancerosas, cancer inicial e CHC avançado. O segundo estudo, repetiu o protocolo DEN50 e administrou melatonina 20mg/L. Os tratamentos começaram nas semanas 5 e 12. Ao final de 19 semanas foi observado que animais do grupo que só recebeu DEN+2-AAF (DEN-CHC) desenvolveram carcinoma avançado, exibiram mais expressão de proteinas pró-inflamatórias (iNOS, COX-2 e NFkB). E animais tratados com Melatonina (DEN+MEL5 e DEN+MEL 12) apresentaram padrão histológico de cirrose e reduzida expressão destas proteinas. Quanto ao comportamento oxidativo foi observado que grupo DEN-CHC apresentou menor lipoperoxidação (LPO) por redução de ácidos graxos poliinsaturados, maior oxidação proteica, menor atividade da SOD e maior índice de danos ao DNA. O tratamento com melatonina ao longo da hepatocarcinogênese se mostrou efetivo para proteger a membrana lipidica, reduziu a oxidação proteica, aumentou a atividade da SOD e atenuou o dano ao DNA. Por fim, referente ao estresse de retículo endoplasmático e apoptose, animais com DEN-CHC não apresentaram ativação das proteinas de estresse de retículo (BiP, ATF6 e CHOP) nem acionaram as rotas apoptóticas. Entretanto, animais tratados com Melatonina tiveram aumento significativo na expressão de proteinas como BiP, ATF6 e CHOP, assim como proteinas pró-apoptóticas. Nossos resultados apontam que a melatonin, durante o processo de hepatocarcinogênese experimental, atuou como anti-inflamatório, antioxidante e pró-apoptótico. E estas ações contribuiram para evitar a progressão do carcinoma hepatocelular. / Hepatocellular carcinoma (HCC) is the fourth most frequent cause of cancer death worldwide. This study had two main objectives, the first was to establish the experimental hpatocelular carcinoma by chemical induction and the second study the effects of melatonin on oxidative stress, endoplasmic reticulum stress and apoptosis during hepatocarcinogenesis. Two experiments were conducted, both used Diethylnitrosamine (DEN) + acetylaminofluorene (2-AAF) in male Wistar rats weighing 145-150 g. The first study tested three induction protocols of liver cancer. The animals were divided into three test groups: DEN50: DEN that received 50 mg twice a week until 6 weeks and once a week during the weeks 11 and 13. DEN75: DEN received 75mg once a week during the weeks to 6 weeks and another reinforcement in weeks 11 to 13 DEN100: DEN received 5 doses of 100mg one every six weeks for 28 weeks. All received 2 AAF single dose of 100 mg at week 4. After induction was confirmed by biochemical, macroscopic and histological tests that DEN50 protocol develops advanced HCC in 19 weeks, presents inflammatory phase in the 5th week and cirrhosis at 12 weeks. The default display protocol DEN100 of precancerous lesions and cirrhosis in 28 weeks. DEN75 The protocol was the most heterogeneous of the three, as developed precancerous lesions, early cancer and advanced HCC. The second study, repeated the DEN50 protocol and administered melatonin 20mg / L. The treatments began on week 5 and 12. At the end of 19 weeks was observed that animals in the group that received only DEN (DEN-CHC) developed advanced carcinoma exhibited over expression of proinflammatory proteins (iNOS, COX-2 and NFkB). And animals treated with melatonin (DEN+ MEL5W and DEN+MEL 12W) showed histological pattern of cirrhosis and reduced expression of these proteins. As for the oxidative behavior was observed that DEN-HCC group had lower lipid peroxidation (LPO) by reducing polyunsaturated fatty acids, higher protein oxidation, lower activity of SOD and higher rate of DNA damage. Treatment with melatonin throughout hepatocarcinogenesis was effective to protect the lipid membrane, protein oxidation decreased, increased SOD activity and attenuated DNA damage. Finally, referring to the endoplasmic reticulum stress and apoptosis, animal DEN-CHC did not show activation of reticulum stress protein (BiP, ATF6 and CHOP) or triggered apoptotic routes. However, melatonin treated animals had a significant increase in the expression of proteins and BiP, CHOP and ATF6, as well as pro-apoptotic proteins. Our results indicate that melatonin, during the process of experimental hepatocarcinogenesis, acted as anti-inflammatory, antioxidant and pro-apoptotic. And these actions contributed to prevent progression of hepatocellular carcinoma.
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Étude de la collaboration entre les facteurs de transcription hématopoïétiques lors du développement et de la différenciation des cellules érythroïdesRoss, Julie 11 1900 (has links)
La régulation transcriptionnelle des gènes est cruciale pour permettre le bon fonctionnement des cellules. Afin que les cellules puissent accomplir leurs fonctions, les gènes doivent être exprimés adéquatement dans le bon type cellulaire et au stade de développement et de différenciation approprié. Un dérèglement dans l’expression de un ou plusieurs gènes peut entraîner de graves conséquences sur le destin de la cellule. Divers éléments en cis (ex : promoteurs et enhancers) et en trans (machinerie transcriptionnelle et facteurs de transcription) sont impliqués dans la régulation de la transcription.
Les gènes du locus humain beta-globine (hub) sont exprimés dans les cellules érythroïdes et sont finenement régulés lors du développement et de la différenciation. Des mutations dans différentes régions du locus causent entre autres les beta-thalassémies. Nous avons utilisé ce modèle bien caractérisé afin d’étudier différents mécanismes de régulation favorisés par les facteurs de transcription qui sont exprimés dans les cellules érythroïdes. Nous nous sommes intéressés à l’importance de l’élément en cis HS2 du Locus control region. Cet élément possède plusieurs sites de liaison pour des facteurs de transcription impliqués dans la régulation des gènes du locus hub. Nos résultats montrent que HS2 possède un rôle dans l’organisation de la chromatine du locus qui peut être dissocié de son rôle d’enhancer. De plus, HS2 n’est pas essentiel pour l’expression à haut niveau du gène beta alors qu’il est important pour l’expression des gènes gamma. Ceci suggère que le recrutement des différents facteurs au site HS2 lors du développement influence différement les gènes du locus.
Dans un deuxième temps, nous avons investigué l’importance de HS2 lors de la différenciation des cellules érythroïdes. Il avait été rapporté que l’absence de HS2 influence grandement la potentialisation de la chromatine du gène beta. La potentialisation dans les cellules progénitrices favorise l’activation transcriptionnelle du gène dans les cellules matures. Nous avons caractérisé le recrutement de différents facteurs de transcription au site HS2 et au promoteur beta dans les cellules progénitrices hématopoïétiques (CPH) ainsi que dans les cellules érythroïdes matures. Nos résultats montrent que le facteur EKLF est impliqué dans la potentialisation de la chromatine et favorise le recrutement des facteurs BRG1, p45 et CBP dans les CPH. L’expression de GATA-1 dans les cellules érythroïdes matures permet le recrutement de GATA-1 au locus hub dans ces cellules. Ces données suggèrent que la combinaison de EKLF et GATA-1 est requise pour permettre une activation maximale du gène beta dans les cellules érythroïdes matures.
Un autre facteur impliqué dans la régulation du locus hub est Ikaros. Nous avons étudié son recrutement au locus hub et avons observé que Ikaros est impliqué dans la répression des gènes gamma. Nos résultats montrent aussi que GATA-1 est impliqué dans la répression de ces gènes et qu’il interagit avec Ikaros. Ensemble, Ikaros et GATA-1 favorisent la formation d’un complexe de répression aux promoteurs gamma. Cette étude nous a aussi permis d’observer que Ikaros et GATA-1 sont impliqués dans la répression du gène Gata2. De façon intéressante, nous avons caractérisé le mécanisme de répression du gène Hes1 (un gène cible de la voie Notch) lors de la différenciation érythroïde. Similairement à ce qui a été observé pour les gènes gamma, Hes1 est aussi réprimé par Ikaros et GATA-1. Ces résultats suggèrent donc que la combinaison de Ikaros et GATA-1 est associée à la répression de plusieurs de gènes dans les cellules érythroïdes.
Globalement cette thèse rapporte de nouveaux mécanismes d’action de différents facteurs de transcription dans les cellules érythroïdes. Particulièrement, nos travaux ont permis de proposer un modèle pour la régulation des gènes du locus hub lors du développement et de la différenciation. De plus, nous rapportons pour la première fois l’importance de la collaboration entre les facteurs Ikaros et GATA-1 dans la régulation transcriptionnelle de gènes dans les cellules érythroïdes. Des mutations associées à certains des facteurs étudiés ont été rapportées dans des cas de beta-thalassémies ainsi que de leucémies. Nos travaux serviront donc à avoir une meilleure compréhension des mécanismes d’action de ces facteurs afin de potentiellement pouvoir les utiliser comme cibles thérapeutiques. / Gene transcriptional regulation is crucial for appropriate cell functioning. Genes must be properly expressed in the right cell type as well as at the right developmental and differenciation stage in order to allow the cells to accomplish their functions. Abnormal expression of one or many genes can dramatically influence cell fate. Diverse cis (ex : promoters and enhancers) and trans (transcriptional machinery and transcription factors) elements are involved in transcriptional regulation.
Genes of the human beta-globin (hub) locus are expressed in erythroid cells and are thightly regulated during development and differentiation. Mutations in several regions of the locus are involved in beta-thalassemia. We used this well characterized model in order to study different regulation mechanisms that are mediated by transcription factors expressed in erythroid cells. We were interested in the important role of the cis element HS2 from the Locus control region. This region contains several binding sites for transcription factors that are involved in hub locus gene regulation. Our results show that HS2 has a role in chromatin organization of the locus which is distinct from its enhancer function. Moreover, HS2 is not essential for high level beta gene expression while it is important for gamma gene expression. This suggest that the influence of transcription factors recruited to HS2 varies during development.
Secondly, we investigated HS2 importance during erythroid differentiation. It was reported the HS2 deletion strongly influences chromatin potentiation of beta gene. Potentiation in progenitor cells favors gene transcriptional activation in mature cells. We characterized transcription factor recruitment to HS2 and b promoter in hematopoietic progenitor cells (HPC). Our results show that EKLF is involved in chromatin potentiation and favors the recruitment of BRG1, p45 and CBP in HPC. GATA-1 expression in mature erythroid cells allows GATA-1 recruitment to hub locus in these cells. These data suggest that EKLF and GATA-1 combination is required to allow maximal beta gene activation in mature erythroid cells.
Another factor involved in hub locus regulation is Ikaros. We studied its recruitment to hub locus and found that Ikaros is involved in gamma gene repression. Our data also shows that GATA-1 is involved in the repression of these genes and that it interacts with Ikaros. Together, Ikaros and GATA-1 favors the formation of a repressive complex to gamma promoters. In this study, we also observed that Ikaros and GATA-1 are involved in Gata2 gene repression. Interestingly, we have also characterized the repression mechanism of Hes1 gene (a Notch target gene) during erythroid differentiation. Similar to what is observed for gamma genes, Hes1 is also repressed by Ikaros and GATA-1. Collectivelly, our data suggest that Ikaros and GATA-1 combination is associated with the repression of several genes in erythroid cells.
Globally, this thesis reports new mechanisms of action for different transcription factors in erythroid cells. Particularly, our work allows us to propose a model for hub locus gene regulation during development and differentiation. Moreover, we show for the first time that the combination of Ikaros and GATA-1 is relevant for gene regulation in erythroid cells. Several mutations in the transcription factors that we studied were associated with beta-thalassemia or leukemia. Our work will thus help to better understand mechanisms of action of these transcription factors in order to potentially use them as therapeutical targets.
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Dissecting the Mechanism for the Selective Induction of Apoptosis in Transformed Cells by CAV Apoptin: a DissertationHeilman, Destin W. 01 March 2006 (has links)
Most existing chemotherapeutics lack adequate specificity for transformed cells and therefore have high rates of collateral damage to normal tissue. Moreover, such therapies often depend on p53 to induce cell death and are ineffective on the large number of human cancers that have lost p53 function. The discovery of novel p53-independent cancer therapies is therefore of significant interest. The Chicken Anemia Virus protein Apoptin selectively induces apoptosis in transformed cells in a p53-independent manner while leaving normal primary cells unaffected. This selectivity is thought to be largely due to cell type-specific localization: in primary cells Apoptin is cytoplasmic, whereas in transformed cells the protein localizes to the nucleus. The basis for this cell type-specific localization remains to be determined. In this study, Apoptin is revealed to be a nucleo-cytoplasmic shuttling protein whose localization is mediated by an N-terminal nuclear export signal (NES) and a C-terminal nuclear localization signal (NLS). Both signals are required for cell type-specific localization, as Apoptin fragments containing either the NES or NLS fail to localize differently between transformed and primary cells. Significantly, cell type-specific localization can be rescued in trans by co-expression of the two separate fragments, which are able to interact through an Apoptin multimerization domain. Interestingly, this multimerization domain overlaps with the NES suggesting that these two activities may be functionally coupled in cytoplasmic retention in primary cell types. Factors present in transformed cells induce localization of Apoptin to the nucleus where a biochemically distinct, more soluble form of the protein exists.
Using affinity-purification and mass spectroscopy it was found that, specifically in transformed cells, Apoptin is associated with APC1, a subunit of the anaphase-promoting complex/cyclosome (APC/C). The APC/C is required to establish a mitotic cell-cycle checkpoint, and its inhibition results in G2/M arrest and apoptosis. Expression of wild type Apoptin in transformed cells inhibits APC/C function and induces G2/M arrest and apoptosis, whereas Apoptin mutants that are unable to associate with APC1 have no effect. In p53 null cells, ablation of APC1 by RNA interference induces a G2/M arrest and apoptosis analogous to that observed following Apoptin expression. Furthermore, Apoptin was found to induce the formation of PML bodies and to recruit APC/C subunits to these nuclear structures suggesting a mechanism involving sequestration and subsequent inhibition of the APC/C.
Thus, the results of this study clarify Apoptin cell type-specific localization behavior and explain the ability of Apoptin to induce apoptosis in transformed cells in the absence of p53. This study advances a newly emerging field of viral mechanisms of apoptosis involving G2/M arrest and APC/C modulation. The resultant p53-independent apoptosis suggests that the APC/C may be an attractive target for the development of anti-cancer drugs.
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A melatonina atenua o estresse oxidativo, ativa o estresse de retículo endoplasmático e a apoptose na hepatocarcinogênese experimentalMoreira, Andréa Cristiane Janz January 2015 (has links)
O carcinoma hepatocelular (CHC) é a quarta causa mais frequente de morte por câncer em todo o mundo. Este estudo teve dois grandes objetivos, o primeiro foi estabelecer o carcinoma hpatocelular experimental por indução química e o segundo estudar os efeitos da melatonina sobre o estresse oxidativo, estresse de retículo endoplasmático e apoptose durante a hepatocarcinogênese. Foram realizados dois experimentos, ambos utilizaram dietilnitrosamina (DEN) mais acetilaminofluoreno (2-AAF) em ratos Wistar machos pesando 145-150 g. O primeiro estudo testou 3 protocolos de indução do câncer hepático. Os animais foram divididos em três grupos testes: DEN50: que recebeu DEN 50 mg duas vezes por semana até a 6ª semana e uma vez por semana nas semanas 11 a 13. DEN75: recebeu DEN 75mg uma vez por semana nas semanas até a 6ª semana e um reforço nas semanas de 11 a 13. DEN100: recebeu 5 doses de DEN 100mg uma a cada seis semanas por 28 semanas. Todos receberam 2- AAF dose única de 100 mg na 4ª semana. Após a indução foi comprovado por testes bioquímicos, macroscópico e histológico que o protocolo DEN50 desenvolve CHC avançado em 19 semanas, apresentou a fase inflamatória na 5ª semana e cirrose na 12ª semana. O protocolo DEN100 exibe padrão de lesões pré-cancerosas com cirrose em 28 semanas. O protocolo DEN75 foi o mais heterogêneo dos três, pois desenvolveu lesões pré-cancerosas, cancer inicial e CHC avançado. O segundo estudo, repetiu o protocolo DEN50 e administrou melatonina 20mg/L. Os tratamentos começaram nas semanas 5 e 12. Ao final de 19 semanas foi observado que animais do grupo que só recebeu DEN+2-AAF (DEN-CHC) desenvolveram carcinoma avançado, exibiram mais expressão de proteinas pró-inflamatórias (iNOS, COX-2 e NFkB). E animais tratados com Melatonina (DEN+MEL5 e DEN+MEL 12) apresentaram padrão histológico de cirrose e reduzida expressão destas proteinas. Quanto ao comportamento oxidativo foi observado que grupo DEN-CHC apresentou menor lipoperoxidação (LPO) por redução de ácidos graxos poliinsaturados, maior oxidação proteica, menor atividade da SOD e maior índice de danos ao DNA. O tratamento com melatonina ao longo da hepatocarcinogênese se mostrou efetivo para proteger a membrana lipidica, reduziu a oxidação proteica, aumentou a atividade da SOD e atenuou o dano ao DNA. Por fim, referente ao estresse de retículo endoplasmático e apoptose, animais com DEN-CHC não apresentaram ativação das proteinas de estresse de retículo (BiP, ATF6 e CHOP) nem acionaram as rotas apoptóticas. Entretanto, animais tratados com Melatonina tiveram aumento significativo na expressão de proteinas como BiP, ATF6 e CHOP, assim como proteinas pró-apoptóticas. Nossos resultados apontam que a melatonin, durante o processo de hepatocarcinogênese experimental, atuou como anti-inflamatório, antioxidante e pró-apoptótico. E estas ações contribuiram para evitar a progressão do carcinoma hepatocelular. / Hepatocellular carcinoma (HCC) is the fourth most frequent cause of cancer death worldwide. This study had two main objectives, the first was to establish the experimental hpatocelular carcinoma by chemical induction and the second study the effects of melatonin on oxidative stress, endoplasmic reticulum stress and apoptosis during hepatocarcinogenesis. Two experiments were conducted, both used Diethylnitrosamine (DEN) + acetylaminofluorene (2-AAF) in male Wistar rats weighing 145-150 g. The first study tested three induction protocols of liver cancer. The animals were divided into three test groups: DEN50: DEN that received 50 mg twice a week until 6 weeks and once a week during the weeks 11 and 13. DEN75: DEN received 75mg once a week during the weeks to 6 weeks and another reinforcement in weeks 11 to 13 DEN100: DEN received 5 doses of 100mg one every six weeks for 28 weeks. All received 2 AAF single dose of 100 mg at week 4. After induction was confirmed by biochemical, macroscopic and histological tests that DEN50 protocol develops advanced HCC in 19 weeks, presents inflammatory phase in the 5th week and cirrhosis at 12 weeks. The default display protocol DEN100 of precancerous lesions and cirrhosis in 28 weeks. DEN75 The protocol was the most heterogeneous of the three, as developed precancerous lesions, early cancer and advanced HCC. The second study, repeated the DEN50 protocol and administered melatonin 20mg / L. The treatments began on week 5 and 12. At the end of 19 weeks was observed that animals in the group that received only DEN (DEN-CHC) developed advanced carcinoma exhibited over expression of proinflammatory proteins (iNOS, COX-2 and NFkB). And animals treated with melatonin (DEN+ MEL5W and DEN+MEL 12W) showed histological pattern of cirrhosis and reduced expression of these proteins. As for the oxidative behavior was observed that DEN-HCC group had lower lipid peroxidation (LPO) by reducing polyunsaturated fatty acids, higher protein oxidation, lower activity of SOD and higher rate of DNA damage. Treatment with melatonin throughout hepatocarcinogenesis was effective to protect the lipid membrane, protein oxidation decreased, increased SOD activity and attenuated DNA damage. Finally, referring to the endoplasmic reticulum stress and apoptosis, animal DEN-CHC did not show activation of reticulum stress protein (BiP, ATF6 and CHOP) or triggered apoptotic routes. However, melatonin treated animals had a significant increase in the expression of proteins and BiP, CHOP and ATF6, as well as pro-apoptotic proteins. Our results indicate that melatonin, during the process of experimental hepatocarcinogenesis, acted as anti-inflammatory, antioxidant and pro-apoptotic. And these actions contributed to prevent progression of hepatocellular carcinoma.
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A melatonina atenua o estresse oxidativo, ativa o estresse de retículo endoplasmático e a apoptose na hepatocarcinogênese experimentalMoreira, Andréa Cristiane Janz January 2015 (has links)
O carcinoma hepatocelular (CHC) é a quarta causa mais frequente de morte por câncer em todo o mundo. Este estudo teve dois grandes objetivos, o primeiro foi estabelecer o carcinoma hpatocelular experimental por indução química e o segundo estudar os efeitos da melatonina sobre o estresse oxidativo, estresse de retículo endoplasmático e apoptose durante a hepatocarcinogênese. Foram realizados dois experimentos, ambos utilizaram dietilnitrosamina (DEN) mais acetilaminofluoreno (2-AAF) em ratos Wistar machos pesando 145-150 g. O primeiro estudo testou 3 protocolos de indução do câncer hepático. Os animais foram divididos em três grupos testes: DEN50: que recebeu DEN 50 mg duas vezes por semana até a 6ª semana e uma vez por semana nas semanas 11 a 13. DEN75: recebeu DEN 75mg uma vez por semana nas semanas até a 6ª semana e um reforço nas semanas de 11 a 13. DEN100: recebeu 5 doses de DEN 100mg uma a cada seis semanas por 28 semanas. Todos receberam 2- AAF dose única de 100 mg na 4ª semana. Após a indução foi comprovado por testes bioquímicos, macroscópico e histológico que o protocolo DEN50 desenvolve CHC avançado em 19 semanas, apresentou a fase inflamatória na 5ª semana e cirrose na 12ª semana. O protocolo DEN100 exibe padrão de lesões pré-cancerosas com cirrose em 28 semanas. O protocolo DEN75 foi o mais heterogêneo dos três, pois desenvolveu lesões pré-cancerosas, cancer inicial e CHC avançado. O segundo estudo, repetiu o protocolo DEN50 e administrou melatonina 20mg/L. Os tratamentos começaram nas semanas 5 e 12. Ao final de 19 semanas foi observado que animais do grupo que só recebeu DEN+2-AAF (DEN-CHC) desenvolveram carcinoma avançado, exibiram mais expressão de proteinas pró-inflamatórias (iNOS, COX-2 e NFkB). E animais tratados com Melatonina (DEN+MEL5 e DEN+MEL 12) apresentaram padrão histológico de cirrose e reduzida expressão destas proteinas. Quanto ao comportamento oxidativo foi observado que grupo DEN-CHC apresentou menor lipoperoxidação (LPO) por redução de ácidos graxos poliinsaturados, maior oxidação proteica, menor atividade da SOD e maior índice de danos ao DNA. O tratamento com melatonina ao longo da hepatocarcinogênese se mostrou efetivo para proteger a membrana lipidica, reduziu a oxidação proteica, aumentou a atividade da SOD e atenuou o dano ao DNA. Por fim, referente ao estresse de retículo endoplasmático e apoptose, animais com DEN-CHC não apresentaram ativação das proteinas de estresse de retículo (BiP, ATF6 e CHOP) nem acionaram as rotas apoptóticas. Entretanto, animais tratados com Melatonina tiveram aumento significativo na expressão de proteinas como BiP, ATF6 e CHOP, assim como proteinas pró-apoptóticas. Nossos resultados apontam que a melatonin, durante o processo de hepatocarcinogênese experimental, atuou como anti-inflamatório, antioxidante e pró-apoptótico. E estas ações contribuiram para evitar a progressão do carcinoma hepatocelular. / Hepatocellular carcinoma (HCC) is the fourth most frequent cause of cancer death worldwide. This study had two main objectives, the first was to establish the experimental hpatocelular carcinoma by chemical induction and the second study the effects of melatonin on oxidative stress, endoplasmic reticulum stress and apoptosis during hepatocarcinogenesis. Two experiments were conducted, both used Diethylnitrosamine (DEN) + acetylaminofluorene (2-AAF) in male Wistar rats weighing 145-150 g. The first study tested three induction protocols of liver cancer. The animals were divided into three test groups: DEN50: DEN that received 50 mg twice a week until 6 weeks and once a week during the weeks 11 and 13. DEN75: DEN received 75mg once a week during the weeks to 6 weeks and another reinforcement in weeks 11 to 13 DEN100: DEN received 5 doses of 100mg one every six weeks for 28 weeks. All received 2 AAF single dose of 100 mg at week 4. After induction was confirmed by biochemical, macroscopic and histological tests that DEN50 protocol develops advanced HCC in 19 weeks, presents inflammatory phase in the 5th week and cirrhosis at 12 weeks. The default display protocol DEN100 of precancerous lesions and cirrhosis in 28 weeks. DEN75 The protocol was the most heterogeneous of the three, as developed precancerous lesions, early cancer and advanced HCC. The second study, repeated the DEN50 protocol and administered melatonin 20mg / L. The treatments began on week 5 and 12. At the end of 19 weeks was observed that animals in the group that received only DEN (DEN-CHC) developed advanced carcinoma exhibited over expression of proinflammatory proteins (iNOS, COX-2 and NFkB). And animals treated with melatonin (DEN+ MEL5W and DEN+MEL 12W) showed histological pattern of cirrhosis and reduced expression of these proteins. As for the oxidative behavior was observed that DEN-HCC group had lower lipid peroxidation (LPO) by reducing polyunsaturated fatty acids, higher protein oxidation, lower activity of SOD and higher rate of DNA damage. Treatment with melatonin throughout hepatocarcinogenesis was effective to protect the lipid membrane, protein oxidation decreased, increased SOD activity and attenuated DNA damage. Finally, referring to the endoplasmic reticulum stress and apoptosis, animal DEN-CHC did not show activation of reticulum stress protein (BiP, ATF6 and CHOP) or triggered apoptotic routes. However, melatonin treated animals had a significant increase in the expression of proteins and BiP, CHOP and ATF6, as well as pro-apoptotic proteins. Our results indicate that melatonin, during the process of experimental hepatocarcinogenesis, acted as anti-inflammatory, antioxidant and pro-apoptotic. And these actions contributed to prevent progression of hepatocellular carcinoma.
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Régulation de l’épissage alternatif de l’exon 16 du pré-messager 4.1R au cours de la différenciation érythroïde : implication de la voie de signalisation PI3- Kinase / Alternative splicing regulation of the 4.1R pre-mRNA during erythroide differentiation : implication of the PI3-kinase signaling pathwayBreig, Osman 04 February 2010 (has links)
L'épissage alternatif des ARNs pré-messagers est le mécanisme majeur de diversification de l'information génétique chez les eucaryotes supérieurs. Près de 70% des gènes sont concernés par ce mécanisme. Au cours de la différenciation érythroïde, l'inclusion de l'exon 16 du pré-messager 4.1R représente un événement majeur pour la fonction érythrocytaire normale de la protéine 4.1R. Cet événement d’épissage est bloqué dans les cellules MEL surexprimant l’oncoprotéine Spi.1/PU.1. Mon travail de thèse avait pour but de comprendre ce mécanisme de blocage en étudiant le rôle de la voie de signalisation de la PI3K en relation avec la phosphorylation de Spi.1/PU.1 d'une part, et celle des facteurs d'épissage de la famille des protéines SR d'autre part. J’ai montré que l’inhibition de la PI3K active la production d’hémoglobine ainsi que l’épissage de l’exon 16 4.1R. Ensuite j’ai montré que la phosphorylation de Spi-1/PU.1 par la PI3K est nécessaire pour son activité d’inhibition de la différenciation et de l’épissage de l’exon 16 4.1R. Enfin, j’ai montré que le facteur d’épissage Srp40 de la famille des protéines SR est un activateur stade spécifique de l’inclusion de l’exon 16. La surexpression de Srp40 dans les cellules MEL active l’inclusion de l’exon 16 indépendamment de la différenciation. / Pre-mRNA alternative splicing is a major mechanism of diversification of genetic information in evolued eukaryotes. The expression of about 70% of genes is regulated by this mechanism. During late erythroid development, the inclusion of exon 16 in the mature 4.1R mRNA is a major event that is essential for the corresponding protein function. This process is inhibited in MEL cells overexpressing the oncoprotein Spi-1/PU.1. My thesis work aims to understand the mechanism of this inhibition by studying the role of PI3K signal transduction pathway and its effects on Spi-1/PU.1 in the first place, then its effects on the SR protein family. I showed that PI3K inhibition leads to the activation of hemoglobin synthesis and to the inclusion of exon 16. Moreover, I showed that the phosphorylation mediated by the PI3K pathway is necessary for both the differentiation-inhibiting activity of Spi-1/PU.1 and concurrent inclusion of exon 16. Finally, I showed that the Srp40 splicing factor is an activator of the exon 16 inclusion. Overexpression of Srp40 in MEL cells lineage activates exon 16 inclusion independently of the differentiation.
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Exprese a funkce buněčného prionového proteinu na krevních buňkách / Expression and function of cellular prion protein in blood cellsGlier, Hana January 2012 (has links)
The cellular prion protein (PrPc) is essential for pathogenesis of fatal neurodegenerative prion diseases. Recently reported four cases of vCJD transmission by blood transfusion raise concerns about the safety of blood products. Proper understanding of PrPc in blood is necessary for development of currently unavailable blood screening tests for prion diseases. Flow cytometry is an attractive method for prion detection, however, the reports on the quantity of PrPc on human blood cells are contradictory. We showed that the majority of PrPc in resting platelets is present in the intracellular pool and is localized in α-granules. We demostrated that both, human platelets and red blood cells (RBC) express significant amount of PrPc and thus may play an important role in the transmission of prions by blood transfusion. Our results suggest a unique modification of PrPc on human RBC. Such modification of pathological prion protein could distort the results of blood screening tests for prions. Further we showed that the storage of blood prior to analysis and the choice of anti-prion antibody greatly affect the detection of PrPc by flow cytometry and we identified platelet satellitism as a factor contributing to the heterogeneity of PrPc detection in blood cells. Moreover, we demonstrated existence of...
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Bases moléculaires du contrôle de l’équilibre entre autorenouvellement et différenciation / Molecular bases controlling the self-renewal/differentiation balancePous, Camila 03 September 2010 (has links)
L’autorenouvellement est une propriété fondatrice du concept de cellule souche. Cependant, malgré l’avancée des connaissances actuelles, les mécanismes moléculaires sous-jacents restent mal compris. Nous nous sommes donc intéressés à cette question, en étudiant l’équilibre entre autorenouvellement et différenciation dans des progéniteurs érythrocytaires primaires. D’une part, grâce à une étude combinant des approches pharmacologiques et de génétique fonctionnelle, nos résultats montrent que le contrôle de la synthèse cellulaire du cholestérol joue un rôle essentiel dans la régulation du basculement de l’autorenouvellement vers la différenciation. D’autre part, nous avons étudié la nature stochastique de l’expression génique au cours du passage de l’autorenouvellement vers la différenciation. En effet, contrairement au caractère déterministe initialement attribué à l’expression des gènes, les données accumulées au cours des dernières années démontrent que cette expression repose sur des processus stochastiques. Nous avons en particulier oeuvré à la conception et à la mise en place d’un dispositif permettant de suivre en temps réel l’expression génique dans des cellules individualisées, afin de pouvoir mesurer et évaluer cette stochasticité. Au final, l’ensemble de ces travaux participent à la compréhension des bases moléculaires de l’autorenouvellement et du contrôle des choix du devenir cellulaire. / Self-renewal is a key property of the stem cell concept. However, despite the recent advances in this field, the underlying molecular bases are not yet properly understood. We tackled this question by studying the balance between self-renewal and differentiation, in primary erythroid progenitors. Our work is twofold. First, by combining pharmacologic approaches and functional genetics, we have shown that the control of cellular cholesterol synthesis plays a central role in the regulation between self-renewal and differentiation. Second, we have studied the stochastic nature of gene expression along the transition from self-renewal to differentiation. Indeed, while gene expression was initially deemed to be deterministic, more and more data tend to show that it relies on stochastic processes. In particular, we participated to the design of an experimental method allowing to mesure gene expression in a single cell, in real-time. All in all, the work presented here brings new elements towards the understanding of molecular bases controlling self-renewal and cell fate choices.
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Exprese a funkce buněčného prionového proteinu na krevních buňkách / Expression and function of cellular prion protein in blood cellsGlier, Hana January 2012 (has links)
The cellular prion protein (PrPc) is essential for pathogenesis of fatal neurodegenerative prion diseases. Recently reported four cases of vCJD transmission by blood transfusion raise concerns about the safety of blood products. Proper understanding of PrPc in blood is necessary for development of currently unavailable blood screening tests for prion diseases. Flow cytometry is an attractive method for prion detection, however, the reports on the quantity of PrPc on human blood cells are contradictory. We showed that the majority of PrPc in resting platelets is present in the intracellular pool and is localized in α-granules. We demostrated that both, human platelets and red blood cells (RBC) express significant amount of PrPc and thus may play an important role in the transmission of prions by blood transfusion. Our results suggest a unique modification of PrPc on human RBC. Such modification of pathological prion protein could distort the results of blood screening tests for prions. Further we showed that the storage of blood prior to analysis and the choice of anti-prion antibody greatly affect the detection of PrPc by flow cytometry and we identified platelet satellitism as a factor contributing to the heterogeneity of PrPc detection in blood cells. Moreover, we demonstrated existence of...
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SARS-CoV-2 Infects Red Blood Cell Progenitors and Dysregulates Hemoglobin and Iron MetabolismKronstein-Wiedemann, Romy, Stadtmüller, Marlena, Traikov, Sofia, Georgi, Mandy, Teichert, Madeleine, Yosef, Hesham, Wallenborn, Jan, Karl, Andreas, Schütze, Karin, Wagner, Michael, El-Armouche, Ali, Tonn, Torsten 19 March 2024 (has links)
Background SARS-CoV-2 infection causes acute respiratory distress, which may progress to multiorgan failure and death. Severe COVID-19 disease is accompanied by reduced erythrocyte turnover, low hemoglobin levels along with increased total bilirubin and ferritin serum concentrations. Moreover, expansion of erythroid progenitors in peripheral blood together with hypoxia, anemia, and coagulopathies highly correlates with severity and mortality. We demonstrate that SARS-CoV-2 directly infects erythroid precursor cells, impairs hemoglobin homeostasis and aggravates COVID-19 disease. Methods Erythroid precursor cells derived from peripheral CD34+ blood stem cells of healthy donors were infected in vitro with SARS-CoV-2 alpha variant and differentiated into red blood cells (RBCs). Hemoglobin and iron metabolism in hospitalized COVID-19 patients and controls were analyzed in plasma-depleted whole blood samples. Raman trapping spectroscopy rapidly identified diseased cells. Results RBC precursors express ACE2 receptor and CD147 at day 5 of differentiation, which makes them susceptible to SARS-CoV-2 infection. qPCR analysis of differentiated RBCs revealed increased HAMP mRNA expression levels, encoding for hepcidin, which inhibits iron uptake. COVID-19 patients showed impaired hemoglobin biosynthesis, enhanced formation of zinc-protoporphyrine IX, heme-CO2, and CO-hemoglobin as well as degradation of Fe-heme. Moreover, significant iron dysmetablolism with high serum ferritin and low serum iron and transferrin levels occurred, explaining disturbances of oxygen-binding capacity in severely ill COVID-19 patients. Conclusions Our data identify RBC precursors as a direct target of SARS-CoV-2 and suggest that SARS-CoV-2 induced dysregulation in hemoglobin- and iron-metabolism contributes to the severe systemic course of COVID-19. This opens the door for new diagnostic and therapeutic strategies.
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