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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
11

\"Produção de metabólitos antimicrobianos e sideróforos de isolados provenientes de Terra Preta Antropogênica da Amazônia Ocidental\" / Antimicrobial metabolites and siderophore produced by strains from Anthropogenic Dark Earth of the Occidental Amazon

Fedrizzi, Samanta Maria Gobbo 30 November 2006 (has links)
Os microrganismos atraem considerável atenção por serem uma fonte de compostos biotecnológicos e farmacêuticos. Diversos produtos naturais peptídicos produzidos por fungos e bactérias são sintetizados por grandes enzimas, conhecidas como peptídeo sintetase não ribossômica (NRPS) e policetídeo sintase (PKS). A bioprospecção dos microrganismos isolados do solo de Terra Preta Antropogênica (TPA) da Amazônia Ocidental é de grande importância para o conhecimento deste bioma tropical. Este estudo correlacionou a presença de sideróforos e de compostos antimicrobianos produzidos pelos microrganismos isolados de TPA e dos solos adjacentes com a presença dos genes que codificam para NRPS e PKS. Linhagens bacterianas foram isoladas das amostras do solo coletadas de 10, 20 e 40 cm de profundidade. Os isolados foram cultivados em meio líquido específico por 2 dias a 28oC. Um total de 143 isolados foi testado para a atividade de sideróforo e para isso, as linhagens foram inoculadas em um meio com baixa concentração de ferro (MM9) contendo o complexo cromoazurol S-Fe3. Do total, 72 isolados apresentaram reação positiva para a produção de sideróforo. O DNA genômico dos isolados foi extraído e a amplificação por PCR foi realizada usando iniciadores específicos para NRPS e PKS. Os resultados mostraram que quinze isolados apresentaram o gene que codifica para NRPS, vinte isolados para PKS e somente dez isolados apresentaram ambos os genes. A presença de genes de NRPS e PKS em 31% dos isolados testados sugere que a produção dos sideróforos possa ocorrer pela via não ribossomal. Dois isolados foram selecionados para estudos de identificação e caracterização dos compostos. O isolado TP11 foi identificado como Pseudomonas putida através de seqüenciamento do 16S rRNA e apresentou resultado negativo para hidroxamato e catecol, sugerindo que o tipo de sideróforo não possui nenhum destes grupos funcionais. O isolado TP16 foi identificado como Pseudomonas putida e apresentou produção de sideróforo do tipo catecol e hidroxamato, sugerindo a produção de mais de um sideróforo. Além disso, esta linhagem produziu um composto antimicrobiano, com atividade de sideróforo identificado por espectrometria de massas como pseudomonina com massa molar de 330 Da. / Microorganisms have attracted considerable attention as a source for biotechnological and pharmaceutical agents. Several peptidic natural products synthesized by fungi and bacteria are assembled by large enzymes, referred as nonribosomal peptide synthetase (NRPS) and polyketide synthase (PKS). Bioprospection of microorganisms isolated from Anthropological Dark Earth soil of Brazilian Occidental Amazon is of great importance to the knowledge of this tropical biome. This study aimed to correlate the presence of siderophores and antimicrobial compounds produced by microorganisms isolated from Dark Earth and adjacent soils of Brazilian Amazon with the presence of genes encoding NRPS and PKS. Bacterial strains were isolated from soil samples collected at 10, 20 and 40 cm depth. The isolates were grown in specific liquid medium for 2 d at 28oC. A total of 143 isolates were screened for siderophore activity and for this, bacterial strains were inoculated on plates containing an iron-limited medium (MM9) amended with a chromeazurol S-Fe3 complex. From the total, seventy-two isolates showed positive reaction for siderophore production. Genomic DNA of the isolates was extracted and PCR amplification was carried out using specific primers for NRPS and PKS. The results showed that fifteen isolates presented NRPS, twenty isolates presented PKS and only ten isolates showed both genes. The presence of NRPS and PKS genes in 31% of the isolates tested suggests that production of siderophores may occur by a nonribosomal pathway. Two isolates were selected for further studies. Isolate TP11 was identified as Pseudomonas putida by 16S rDNA sequencing analysis and was negative for hydroxamate and catechol, suggesting that the siderophore type has no hydroxamate- or catechol-type functional groups. The isolate TP16 was identified as Pseudomonas putida and showed the production of catechol and hydroxamate siderophore-type, suggesting the production of more than one siderophore. In addition, this strain produced an antimicrobial compound, with siderophore activity identified through mass spectrometry as pseudomonine with a molar mass of 330 Da.
12

Characterization and manipulation of the biosynthetic pathway of cyanobacterial tricyclic microviridins in E. coli

Weiz, Annika R 26 April 2012 (has links)
Microviridine sind ribosomal synthetisierte, cyanobakterielle Depsipeptide. Die genetische Basis der Microviridinproduktion ist ein Gencluster mit den Genen mdnABCDE. Zwei neuartige ATP-grasp-Ligasen, MdnB und MdnC, katalysieren die Bildung von Lacton- und Lactamringen durch die Einführung von zwei -Ester-und einer -Amidbindung. Die Prozessierung wird von einer bislang unbekannten Peptidase durchgeführt. Neben den filamentösen Nostoc und Planktothrix gehört die einzellige, blütenbildende Cyanobakteriengattung Microcystis zu den Microviridinproduzenten. Die inhibitorische Aktivität gegenüber Serinproteasen verleiht Microviridinen ökologische und pharmazeutische Relevanz. Im Rahmen dieser Arbeit wurde eine kleine Microviridin Expressionsplattform konstruiert. Ein neuartiges Microviridin Gencluster aus Microcystis aeruginosa Nies843 wurde heterolog in E. coli exprimiert, bioinformatisch analysiert und mutiert. Das hochkonservierte PFFARFL-Motif im Precursorpeptid MdnA wurde als Erkennungssequenz für die ATP-grasp Ligasen identifiziert. Manipulationen am C-Terminus des leader-Peptids führten zu einer Inhibierung der Aktivität von MdnB. Peptid-Protein-Interaktionen zwischen MdnA und den ATP-grasp Ligasen wurden untersucht. Der ABC-Transporter MdnE stabilisiert höchstwahrscheinlich einen Microviridin Biosynthesekomplex an der inneren Membran, wofür zwei mögliche Modelle vorgeschlagen werden. Punktmutationen in der Microviridin core-Sequenz offenbarten Flexibilität des Microviridin-Biosyntheseapparates für das peptide engineering. Es wurde eine Mutante konstruiert, deren inhibitorische Aktivität gegen Elastase um den Faktor 100 verbessert wurde. Durch die Konstruktion einer Precursoraustauschplattform konnten bisher kryptische Microviridine produziert werden. Diese Methode hat Potential für den Bau von Microviridinbibliotheken. Letztlich wird eine Hypothese zum Bindungsmechanismus von Microviridinen an Proteasen aufgestellt. / Microviridins are ribosomally synthesized cyanobacterial oligopeptides. These peptides comprise an unrivaled multicyclic cage-like structure, carrying two characteristic  ester and one amide bond, which are introduced by the two novel ATP-grasp ligases MdnB and MdnC. In addition to the filamentous species Nostoc and Planktothrix, the unicellular, bloom-forming cyanobacterium Microcystis aeruginosa Nies843 is one of the microviridin producer strains. The potent serine protease inhibitory activity contributes to both ecological and pharmacological relevance of microviridins. During this work, a small expression platform carrying the microviridin gene cassette mdnABCDE was established. Microviridins were heterologously expressed in E. coli and analyzed using bioinformatics and mutational analysis. The strictly conserved PFFARFL motif in the precursor peptide MdnA was identified and characterized as a binding sequence for the ATP-grasp ligases. Protein interactions of MdnA with B and C were studied. The ABC transporter MdnE was unveiled to be crucial for cyclization and processing of microviridins, probably stabilizing a putative microviridin maturation complex at the inner membrane. Two initial models for the peptide recognition and processing have been proposed. Point mutations in the microviridin core sequence showed some flexibility of the microviridin biosynthetic pathway to be used for peptide engineering. The exchange of a phenylalanine against a leucine in position 5 of the core region resulted in more than a 100-fold increased inhibitory activity against the attractive drug target elastase. The possibility to express cryptic microviridin precursor peptides in a precursor exchange platform showed the potential to create peptide libraries. Finally, a hypothesis about the binding mechanism of microviridins is presented.
13

\"Produção de metabólitos antimicrobianos e sideróforos de isolados provenientes de Terra Preta Antropogênica da Amazônia Ocidental\" / Antimicrobial metabolites and siderophore produced by strains from Anthropogenic Dark Earth of the Occidental Amazon

Samanta Maria Gobbo Fedrizzi 30 November 2006 (has links)
Os microrganismos atraem considerável atenção por serem uma fonte de compostos biotecnológicos e farmacêuticos. Diversos produtos naturais peptídicos produzidos por fungos e bactérias são sintetizados por grandes enzimas, conhecidas como peptídeo sintetase não ribossômica (NRPS) e policetídeo sintase (PKS). A bioprospecção dos microrganismos isolados do solo de Terra Preta Antropogênica (TPA) da Amazônia Ocidental é de grande importância para o conhecimento deste bioma tropical. Este estudo correlacionou a presença de sideróforos e de compostos antimicrobianos produzidos pelos microrganismos isolados de TPA e dos solos adjacentes com a presença dos genes que codificam para NRPS e PKS. Linhagens bacterianas foram isoladas das amostras do solo coletadas de 10, 20 e 40 cm de profundidade. Os isolados foram cultivados em meio líquido específico por 2 dias a 28oC. Um total de 143 isolados foi testado para a atividade de sideróforo e para isso, as linhagens foram inoculadas em um meio com baixa concentração de ferro (MM9) contendo o complexo cromoazurol S-Fe3. Do total, 72 isolados apresentaram reação positiva para a produção de sideróforo. O DNA genômico dos isolados foi extraído e a amplificação por PCR foi realizada usando iniciadores específicos para NRPS e PKS. Os resultados mostraram que quinze isolados apresentaram o gene que codifica para NRPS, vinte isolados para PKS e somente dez isolados apresentaram ambos os genes. A presença de genes de NRPS e PKS em 31% dos isolados testados sugere que a produção dos sideróforos possa ocorrer pela via não ribossomal. Dois isolados foram selecionados para estudos de identificação e caracterização dos compostos. O isolado TP11 foi identificado como Pseudomonas putida através de seqüenciamento do 16S rRNA e apresentou resultado negativo para hidroxamato e catecol, sugerindo que o tipo de sideróforo não possui nenhum destes grupos funcionais. O isolado TP16 foi identificado como Pseudomonas putida e apresentou produção de sideróforo do tipo catecol e hidroxamato, sugerindo a produção de mais de um sideróforo. Além disso, esta linhagem produziu um composto antimicrobiano, com atividade de sideróforo identificado por espectrometria de massas como pseudomonina com massa molar de 330 Da. / Microorganisms have attracted considerable attention as a source for biotechnological and pharmaceutical agents. Several peptidic natural products synthesized by fungi and bacteria are assembled by large enzymes, referred as nonribosomal peptide synthetase (NRPS) and polyketide synthase (PKS). Bioprospection of microorganisms isolated from Anthropological Dark Earth soil of Brazilian Occidental Amazon is of great importance to the knowledge of this tropical biome. This study aimed to correlate the presence of siderophores and antimicrobial compounds produced by microorganisms isolated from Dark Earth and adjacent soils of Brazilian Amazon with the presence of genes encoding NRPS and PKS. Bacterial strains were isolated from soil samples collected at 10, 20 and 40 cm depth. The isolates were grown in specific liquid medium for 2 d at 28oC. A total of 143 isolates were screened for siderophore activity and for this, bacterial strains were inoculated on plates containing an iron-limited medium (MM9) amended with a chromeazurol S-Fe3 complex. From the total, seventy-two isolates showed positive reaction for siderophore production. Genomic DNA of the isolates was extracted and PCR amplification was carried out using specific primers for NRPS and PKS. The results showed that fifteen isolates presented NRPS, twenty isolates presented PKS and only ten isolates showed both genes. The presence of NRPS and PKS genes in 31% of the isolates tested suggests that production of siderophores may occur by a nonribosomal pathway. Two isolates were selected for further studies. Isolate TP11 was identified as Pseudomonas putida by 16S rDNA sequencing analysis and was negative for hydroxamate and catechol, suggesting that the siderophore type has no hydroxamate- or catechol-type functional groups. The isolate TP16 was identified as Pseudomonas putida and showed the production of catechol and hydroxamate siderophore-type, suggesting the production of more than one siderophore. In addition, this strain produced an antimicrobial compound, with siderophore activity identified through mass spectrometry as pseudomonine with a molar mass of 330 Da.
14

Studies towards the total synthesis and structure elucidation of leiodolide A

Mould, Katy M. January 2013 (has links)
Leiodolide A is a unique natural product isolated from Pacific marine sponges which has provided an interesting target for total synthesis due to its complex structure and undefined stereochemistry. Although synthetic work towards the synthesis of sister compound leiodolide B has been published, the total synthesis of leiodolide A is yet to be achieved but remains an important target due to high potency against leukaemia, non-small lung and ovarian cancers. The convergent strategy towards the synthesis of leiodolide A involved the synthesis of three subunits; a synthetic route to the C21-C25 vinyl stannane is described, and efforts towards the synthesis of the bidirectional C11-C20 subunit are detailed. Asymmetric vinylogous aldol methodology was developed for the installation of the 1,2-syn propionate motif found in the C1-C10 subunit and in other polypropionate natural products, and was shown to be applicable to a range of substrates in moderate diastereoselectivity and excellent enantioselectivity.
15

Découverte et déchiffrage de nouvelles voies de biosynthèse dépendant des synthases de cyclodipeptides : les clés d’une diversité accrue de dicétopipérazines potentiellement bioactives / Discovering and deciphering of new cyclodipeptide synthase-dependent biosynthetic pathways : key for a increased diversity of potential bioactive diketopiperazines

Jacques, Isabelle 23 September 2015 (has links)
Malgré l’intérêt et la diversité des propriétés pharmacologiques des 2,5-dicétopipérazines (DKP), les voies de biosynthèse de ces molécules d’origine microbienne sont très peu connues. L’objectif de mes travaux de thèse a été i) de documenter de nouvelles voies de biosynthèse de DKP qui se caractérisent par la présence d’une synthase de cyclodipeptides (CDPS) travaillant souvent de concert avec une ou plusieurs enzymes de modification des cyclodipeptides et ii) d’explorer la diversité chimique codée par ces voies. Dans un premier temps, je me suis intéressée aux CDPS. Après la sélection par bioinformatique de candidats dans les bases de données génomiques, j’ai pu identifier 51 nouvelles CDPS actives et montrer que ces enzymes peuvent incorporer 17 des 20 acides aminés naturels. Par ailleurs, ce travail a permis de mieux caractériser la famille des CDPS, de définir l’existence de plusieurs sous-familles aux signatures fonctionnelles spécifiques et d’établir les premiers éléments d’un code de spécificité pour la synthèse de cyclodipeptides. Dans un second temps, je me suis attachée à caractériser les enzymes de modification associées aux nouvelles CDPS et, en particulier, les dioxygénases dépendant du Fe(II) et du 2-oxoglutarate (OG) qui sont très représentées dans ces voies. J’ai ainsi pu détecter une activité in vivo pour 11 OG et poursuivre la caractérisation in vitro pour l’une de ces OG, ce qui a permis de caractériser les DKP qu’elle synthétise et d’ainsi montrer la complexité des modifications chimiques introduites. L’ensemble de ces travaux a donc permis d’identifier et de caractériser de nouvelles voies de biosynthèse qui donnent accès à une diversité accrue de DKP. / Despite the interest and diversity of the pharmacological properties of 2,5-diketopiperazines (DKPs), the biosynthetic pathways of these microbial molecules are poorly documented. The aim of my doctoral work was i) to identify new DKP biosynthetic pathways that are characterized by the presence of a cyclodipeptide synthase (CDPS) often associated with one or more cyclodipeptide-tailoring enzymes and ii) to explore the chemical diversity encoded by these pathways. First of all, my study focused on CDPSs. After the bioinformatics-based selection of candidates, 51 novel CDPS were characterized, revealing the incorporation of 17 of the 20 proteinogenic amino acids. Moreover, this work has allowed a better characterization of the CDPS family, by showing the existence of several subfamilies with specific functional signatures and laying the foundations of a specificity conferring code for the synthesis of cyclodipeptides. Second, I characterized the tailoring enzymes associated with the newly identified CDPSs and, in particular, the Fe(II) and oxoglutarate dependent dioxygenases (OGs) that are highly represented in these pathways. I detected the in vivo activity for 11 OGs and characterized the in vitro activity for one of them, showing the complexity of the chemical modifications introduced into the cyclodipeptide. This work has led to identify and characterize novel biosynthetic pathways that provide access to a greater diversity of DKPs.

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