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Systems biology analysis of macrophage foam cells finding a novel function for Peroxiredoxin I /Conway, James Patrick. January 2006 (has links)
Thesis (Ph. D.)--Case Western Reserve University, 2006. / [School of Medicine] Department of Physiology and Biophysics. Includes bibliographical references. Available online via OhioLINK's ETD Center.
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Protein kinase A alterations following chronic flurazepam treatment : implications for inhibitory and excitatory synaptic plasticity in rat hippocampal CA1Lilly, Scott Matthew. January 2006 (has links)
Thesis (Ph.D.)--Medical University of Ohio, 2006. / "In partial fulfillment of the requirements for the degree of Doctor of Philosophy in Medical Sciences." Major advisor: Elizabeth I. Tietz. Includes abstract. Document formatted into pages: iv, 234 p. Title from title page of PDF document. Bibliography: pages 86-95,126-135,167-174,190-232.
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Kinase-interacting FHA domain of kinase associated protein phosphatase phosphopeptide interactions and NMR-detected dynamics /Ding, Zhaofeng, January 2007 (has links)
Thesis (Ph. D.)--University of Missouri-Columbia, 2007. / The entire dissertation/thesis text is included in the research.pdf file; the official abstract appears in the short.pdf file (which also appears in the research.pdf); a non-technical general description, or public abstract, appears in the public.pdf file. Title from title screen of research.pdf file (viewed on September 24, 2007) Vita. Includes bibliographical references.
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Phosphatidylinositol 3-kinase/Akt signaling pathway and angiogenesisCao, Zongxian. January 1900 (has links)
Thesis (Ph. D.)--West Virginia University, 2006. / Title from document title page. Document formatted into pages; contains ix, 224 p. : ill. (some col.). Vita. Includes abstract. Includes bibliographical references.
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Molecular analysis of the role of Fc[gamma]b, SHIP and PI 3-kinase in macrophage Fc[gamma] receptor functionJoshi, Trupti Prabhakar, January 2007 (has links)
Thesis (Ph. D.)--Ohio State University, 2007. / Title from first page of PDF file. Includes bibliographical references (p. 127-148).
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Flipping a MAGUK switch : complex domain interactions regulating ligand binding to the tumor suppressor Dlg /Qian, Yi. January 2006 (has links)
Thesis (Ph. D.)--University of Oregon, 2006. / Typescript. Includes vita and abstract. Includes bibliographical references (leaves 68-71). Also available for download via the World Wide Web; free to University of Oregon users.
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Erecta and erecta-like mutants of Arabidopsis thalianaLease, Kevin A. January 2000 (has links)
Thesis (Ph. D.)--University of Missouri-Columbia, 2000. / Typescript. Vita. Includes bibliographical references (leaves 126-136). Also available on the Internet.
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Stress Activated Protein Kinase Regulation of Gene Expression in Apoptotic Neurons: A DissertationDe Zutter, Gerard S. 11 July 2001 (has links)
Summary
Basic biological processes require gene expression. Tightly regulated molecules known as transcription factors mediate the expression of genes in development and disease. Signal transduction pathways, which respond to environmental cues or stressors are major regulators of the transcription factors. Use of macromolecular synthesis inhibitors in models of normal neurodevelopment and neurodegenerative cell death has led to the discovery that gene expression is required for these processes to occur (Martin et. al.,(1988), J Cell Biol 106p829). To date, however, the identities of very few of the genes required in these events have been revealed. Hence, the activation or requirement of specific signaling pathways leading to the expression of known apoptotic genes is not well established. Utilizing the neurothrophic factor deprivation and neurotoxin models of programmed cell death we address these gaps in our understanding of the molecular mechanism of apoptosis as it occurs in neuronal cell death.
Nerve growth factor (NGF) withdrawal from PC12 cells leads to the activation of p38 and apoptosis. The functional significance of 38 activation in this paradigm of cell death is not known. To increase our understanding of apoptosis I examined the requirement for p38 activity in pro-apoptotic gene expression in PC12 cells. I performed a subtractive hybridization that led to the identification of the monoamine oxidase (MAG) gene as induced in response to NGF withdrawal. Using the p38 inhibitor PD169316 I showed that the NGF withdrawal stimulated induction of the MAG gene and apoptosis is blocked by inhibition of the p38 MAP kinase pathway. I also determined that the MAG inhibitor clorgyline blocked cell death indicating that MAG activity contributes to the cell death caused by NGF withdrawal. Together, these data indicate that the p38 MAP kinase pathway targets the MAG gene in response to apoptotic stimuli.
To study the requirement for the JNK signaling pathway in neurodegeneration I stimulated primary cortical neurons with the neurotoxin arsenite. Arsenite treatment of primary neurons leads to both JNK and p38 activation and subsequently apoptosis. Utilizing transgenic mice lacking the JNK3 gene I demonstrated that JNK3 specifically contributes to the effects of arsenite in these cells. Ribonuclease protection assays were used to identify Fas ligand as a molecule whose arsenite-induced expression is dependent on the JNK3 signal transduction pathway. Furthermore, I have shown that neurons deficient in signaling mediated by the receptor for Fas ligand are resistant to cell death due to arsenite treatment. These results in total have established that the JNK3 mediated expression of Fas ligand contributes to the arsenite induced death of cortical neurons.
In summary, the work presented in these studies identifies the JNK and p38 MAP kinase signal transduction pathways as mediators of apoptosis in neuronal cells. Importantly, I have provided evidence that these stress activated pathways are responsible for the expression of specific genes in apoptotic neuronal cells.
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Clonagem de promotores de cana-de-açúcar e análise do transcriptoma de genótipos segregantes para teor de sacarose / Cloning of sugarcane promoters and transcriptome analysis of genotypes segregating for sugar contentRodrigo Fandiño de Andrade 23 November 2012 (has links)
A cana-de-açúcar é uma gramínea com fotossíntese do tipo C4, com capacidade de acumular sacarose nos colmos em quantidades que excedem 50% de seu peso seco, característica única no reino vegetal (Moore, 1995). Sacarose e seu derivado mais importante, etanol, são dois produtos de grande importância mundial. Assim, o teor de sacarose em cana tem fundamental importância no aumento da produtividade dessas duas commodities. O melhoramento clássico parece ter alcançado seu limite, já que incrementos expressivos no teor de sacarose em novas variedades não têm sido observados e tudo aponta para a necessidade de estudos que levem a uma maior compreensão dos mecanismos moleculares associados à produção, transporte e acúmulo de sacarose em cana (Casu et al., 2005; Moore, 1995). Procurar seqüências promotoras de genes de interesse é importante para a obtenção de transgênicos, já que promotores constitutivos não apresentam resultados satisfatórios em cana (Lakshmanan et al., 2005). É também objetivo aqui hibridar mRNA de genótipos de cana-de-açúcar com segregação para acúmulo de sacarose, em uma plataforma customizada de oligos (Agilent), com aproximadamente 44k elementos, que compõe uma representatividade gênica não alcançada em esforços anteriores com microarranjos de cDNA. Genome walking foi a técnica utilizada na obtenção de regiões à montante do primeiro éxon, predito in silico, para três proteínas quinase de interesse, SASGMS11561, SASGMS16343 e SASGMS09047, que se mostraram moduladas em experimentos anteriores de hibridação com amostras segregantes para conteúdo de sacarose. Foi obtido sucesso nos três casos, tendo os fragmentos de DNA sido seqüenciados e oportunamente alinhados à montante dos correspondentes genes ortólogos em sorgo, bem como ao banco ainda em construção de contigs do genoma de cana-de-açúcar, obtidos por shotgun. A plataforma Agilent, com seus 43803 SAS únicos, mostrou-se uma ferramenta muito adequada para as hibridações de genótipos de mais alto Brix contra genótipos de mais baixo Brix. Um total de 569 genes diferencialmente expressos foram obtidos em pelo menos uma das três hibridações realizadas. Um grupo de genes, de diferentes categorias e perfis de modulação, foi validado por PCR em tempo real, obtendo uma taxa de aproximadamente 90%. Apesar do grande número de SAS diferencialmente expressos, por volta de 70% dos mesmos ainda se encontram não categorizados, seja por falta de similaridade de seqüência em bancos de dados de organismos próximos ou pela alta complexidade e esforço prático na cura desse processo de categorização manual. Assim, três fragmentos de seqüências promotoras para três proteínas quinase de interesse foram obtidos e seqüenciados, como parte dos esforços do grupo em formar um catálogo de promotores específicos para cana-de-açúcar. Um grupo de genes foi analisado dos resultados das hibridações por seus papéis relevantes nos processos que levam ao maior teor de sacarose em cana, devidamente corroborados por trabalhos do próprio grupo, bem como de outros / Sugarcane is a C4 plant with the unique characteristic of being capable of accumulating sucrose in its culms in quantities that exceed 50% of its dry weight (Moore, 1995). Sucrose and ethanol are highly valued products in the world of today. Sucrose content is a trait with fundamental importance in the on-going process of increasing productivity of these two sugarcane byproducts. Classic improvement of sugarcane seems to have reached its practical limits, given that it has become increasingly harder to obtain varieties with increased sugar content. This obstacle points towards the necessity of better comprehension of the molecular mechanisms associated to the production, transport and accumulation of sucrose in sugarcane (Casu et al., 2005; Moore, 1995). The search for promoter sequences of genes of interest is crucial for the production of transgenic lines, since the use of constitutive promoters in sugarcane has been highly problematic, leading to unsatisfactory results in most cases (Lakshmanan et al., 2005). Another objective was to hybridize sugarcane genotypes with contrasting sugar content in a customized Agilent oligo platform, containing approximately 44k elements, which signifies the best effort so far regarding gene representativeness. Genome walking was the chosen technique to obtain upstream regions of the first in silico predicted exon of three proteins kinases of interest, SASGMS11561, SASGMS16343 and SASGMS09047, all of them selected from previous hybridization experiments with contrasting sucrose content samples. Success was achieved in all three cases, and the obtained fragments were sequenced and aligned to their respective syntenic region on the sorghum genome as well as on contigs from an increasingly larger bank of genomic sugarcane sequences, from our group, which has been acquired using the shotgun sequencing method. The Agilent platform, with its 43803 unique sugarcane assembled sequences (SAS), has proven valuable as a powerful high scale tool for the hybridization of genotypes with contrasting Brix values (high versus low Brix). A total of 569 differentially expressed genes were obtained from at least one of the three experiments accomplished. A group of genes from different categories and modulation profiles was depicted and validated through real time PCR, with an approximate validation rate of 90%. Although the number of differentially expressed genes is high, around 70% of them is still uncategorized, mostly because of their unique identity and therefore lack of reference organisms to compare with and the high complexity and laboriousness of categorizing them manually. In summary, three promoter fragments from three different protein kinases of interest were obtained and sequenced, as a part of a greater effort to create a sugarcane promoter sequence catalogue. From the hybridization assays, a group of genes were analyzed, due to their putative importance in the processes that lead to a higher sucrose content in sugarcane, also corroborated by previous studies from our group as well as from others.
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A participação da proteína cinase mTOR (mammalian target of rapamycin) e do fator transcricional NF-<font face=\"Symbol\">kB na regulação da expressão do GLUT4 em músculo sóleo de ratos. / The participation of protein kinase mTOR (mammalian target of rapamycin) and the transcriptional factor NF-<font face=\"Symbol\">kB in regulating the expression of GLUT4 in soleus muscle of rats.Paulo Alexandre de Carvalho Moraes 14 February 2012 (has links)
A insulina regula a expressão de GLUT4, porém os mecanismos envolvidos nesta regulação não estão definidos. Alguns fatores de transcrição e proteínas cinases estão relacionados com a expressão de GLUT4. Assim, o objetivo desta pesquisa foi investigar a participação dos fatores de transcrição MEF2, HIF-1<font face=\"Symbol\">a e NF-<font face=\"Symbol\">kB, e das proteínas cinases mTOR, PI3K e AKT na regulação da expressão de Slc2a4/GLUT4 induzida pela insulina. Para isso, músculos sóleos de ratos foram incubados por 3 horas em tampão Krebs, tratados ou não com insulina, wortmanina, rapamicina, ML-9 ou TNF-<font face=\"Symbol\">a. Nesses tecidos foram avaliados o conteúdo das proteínas GLUT4 e mTOR (Western), o conteúdo de mRNA de GLUT4, NF-<font face=\"Symbol\">kB1, HIF-1<font face=\"Symbol\">a e MEF2A/C/D (PCR) e a atividade de ligação de proteínas nucleares no sítio de ligação de NF-<font face=\"Symbol\">kB, AT-rich element e E-Box do promotor do gene Slc2a4 (EMSA). O tratamento com insulina aumentou a expressão de Slc2a4/GLUT4 no músculo sóleo, in vitro, ativando os fatores de transcrição MEF2A/D e possivelmente MyoD, através da via da PI3K/AKT e diminuindo a expressão e atividade de NF-<font face=\"Symbol\">kB. / Insulin regulates the GLUT4 expression, but the mechanisms involved in this regulation are not defined. Some transcription factors and protein kinases are related to the expression of GLUT4. Thus, the aim of this research was to investigate the role of the transcription factors MEF2, HIF-1<font face=\"symbol\">a and NF-<font face=\"Symbol\">kB, and the proteins kinases mTOR, PI3K and AKT, in regulation of Slc2a4 and GLUT4 expression by insulin. For this, rat soleus muscles were incubated for 3 hours in Krebs buffer, treated or not with insulin, wortmanina, rapamycin, ML-9 or TNF-<font face=\"Symbol\">a. In these tissues were evaluated the GLUT4 and mTOR protein content (Western), the content of GLUT4, NF-<font face=\"Symbol\">kB1, HIF-1<font face=\"Symbol\">a and MEF2A/C/D mRNAs (PCR) and the binding activity of protein nuclear in binding site of NF-<font face=\"Symbol\">kB, AT-rich element and E-Box in the promoter of the gene Slc2a4 (EMSA). Insulin treatment increased the expression of Slc2a4/GLUT4 in the soleus muscle in vitro, activating the transcription factors MEF2A/D and possibly MyoD, via PI3K/AKT and decreasing the expression and activity of NF-<font face=\"Symbol\">kB.
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