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Littérature scientifique sur le sujet « EPSP-synthase »
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Articles de revues sur le sujet "EPSP-synthase"
Sutton, Kristin A., Jennifer Breen, Thomas A. Russo, L. Wayne Schultz et Timothy C. Umland. « Crystal structure of 5-enolpyruvylshikimate-3-phosphate (EPSP) synthase from the ESKAPE pathogenAcinetobacter baumannii ». Acta Crystallographica Section F Structural Biology Communications 72, no 3 (16 février 2016) : 179–87. http://dx.doi.org/10.1107/s2053230x16001114.
Texte intégralLewis, Julian, Kenneth A. Johnson et Karen S. Anderson. « The Catalytic Mechanism of EPSP Synthase Revisited† ». Biochemistry 38, no 22 (juin 1999) : 7372–79. http://dx.doi.org/10.1021/bi9830258.
Texte intégralLou, Meiyan, Steven K. Burger, Meghann E. Gilpin, Vivian Gawuga, Alfredo Capretta et Paul J. Berti. « Transition State Analysis of Enolpyruvylshikimate 3-Phosphate (EPSP) Synthase (AroA)-Catalyzed EPSP Hydrolysis ». Journal of the American Chemical Society 134, no 31 (24 juillet 2012) : 12958–69. http://dx.doi.org/10.1021/ja304339h.
Texte intégralThompson, Gregory A., William R. Hiatt, Daniel Facciotti, David M. Stalker et Luca Comai. « Expression in Plants of a Bacterial Gene Coding for Glyphosate Resistance ». Weed Science 35, S1 (1987) : 19–23. http://dx.doi.org/10.1017/s0043174500060999.
Texte intégralWalker, Mark C., Joel E. Ream, R. Douglas Sammons, Eugene W. Logusch, Marion H. O'Leary, Ronald L. Somerville et James A. Sikorski. « Structural requirements for pep binding To EPSP synthase ». Bioorganic & ; Medicinal Chemistry Letters 1, no 12 (janvier 1991) : 683–88. http://dx.doi.org/10.1016/s0960-894x(01)81048-9.
Texte intégralSaunders, J. E., E. P. Carpenter, P. Vaithanomsat, J. R. Coggins et K. A. Brown. « Structure-function studies of EPSP synthase fromPseudomonas aeruginosa ». Acta Crystallographica Section A Foundations of Crystallography 58, s1 (6 août 2002) : c112. http://dx.doi.org/10.1107/s0108767302089511.
Texte intégralALBERG, D. G., C. T. LAUHON, R. NYFELER, A. FAESSLER et P. A. BARTLETT. « ChemInform Abstract : Inhibition of EPSP Synthase by Analogues of the Tetrahedral Intermediate and of EPSP. » ChemInform 23, no 34 (21 août 2010) : no. http://dx.doi.org/10.1002/chin.199234302.
Texte intégralFonseca, Emily C. M., Kauê S. da Costa, Jerônimo Lameira, Cláudio Nahum Alves et Anderson H. Lima. « Investigation of the target-site resistance of EPSP synthase mutants P106T and T102I/P106S against glyphosate ». RSC Advances 10, no 72 (2020) : 44352–60. http://dx.doi.org/10.1039/d0ra09061a.
Texte intégralSeto, Christopher T., et Paul A. Bartlett. « (Z)-9-Fluoro-EPSP Is Not a Substrate for EPSP Synthase : Implications for the Enzyme Mechanism ». Journal of Organic Chemistry 59, no 23 (novembre 1994) : 7130–32. http://dx.doi.org/10.1021/jo00102a046.
Texte intégralPereira, José Henrique, Fernanda Canduri, Jaim Simões de Oliveira, Nelson José Freitas da Silveira, Luiz Augusto Basso, Mário Sérgio Palma, Walter Filgueira de Azevedo et Diógenes Santiago Santos. « Structural bioinformatics study of EPSP synthase from Mycobacterium tuberculosis ». Biochemical and Biophysical Research Communications 312, no 3 (décembre 2003) : 608–14. http://dx.doi.org/10.1016/j.bbrc.2003.10.175.
Texte intégralThèses sur le sujet "EPSP-synthase"
Muir, Gillian Morag. « The gene encoding the glyphosate-tolerant EPSP synthase from Anabaena variabilis ». Thesis, University of Glasgow, 1996. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.320276.
Texte intégralCosta, Wanderson Lucas da. « Clonagem e expressão heteróloga, modelagem e interações intermoleculares da enolpiruvilchiquimato 3-fosfato sintase de Paracoccidioides brasiliensis ». Universidade Federal de Goiás, 2017. http://repositorio.bc.ufg.br/tede/handle/tede/7714.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES
Paracoccidioides spp. are thermodymorphic fungi that when inhaled by humans, these conidia find a favorable environment, changing to the yeast phase and becoming pathogenic causing paracoccidioidomycosis (PCM), one of the most prevalent systemic mycoses in Brazil. Some antifungals are used in the treatment of PCM. Treatment depends on the patient's progression and tolerability of each drug, but their treatment may be for long periods and cause various side effects in the patient. The chiquimate pathway is coordinated by 7 enzymes that perform consecutive steps to convert erythrose-4-phosphate and phosphoenol pyruvate (PEP) into chorismate. In microorganisms, this pathway is involved in the production of the amino acids phenylalanine, tyrosine and tryptophan; These amino acids are essential to the maintenance of these organisms. In this work, pGEX4T3 vector cloning and heterologous expression of Pb18 EPSP synthase belonging to the chiquimate pathway were performed. This protein was expressed in E. coli (DE3) strain and purified. Antibodies were produced for expression analysis of the protein in Western blot. The modeling of EPSP synthase was performed aiming to identify the amino acids involved in the active site. The pull down-GST assay with soluble Pb18 proteins allowed the identification of 40 proteins that interact with EPSP synthase. These proteins belong to different functional categories, which are involved with the availability of phosphoenol pyruvate, the substrate necessary for the functioning of the chiquimate pathway.
Paracoccidioides spp. são fungos termodimórficos que ao serem inalados pelo ser humano, esses conídios encontram um ambiente propício, mudando para a fase de levedura e tornando-se patogênico causando a paracoccidioidomicose (PCM), umas das micoses sistêmicas de maior prevalência no Brasil. Alguns antifúngicos são empregados no tratamento da PCM. O tratamento depende do avanço da doença e da capacidade de tolerância do paciente a cada medicamento, mas o seu tratamento pode ser por longos períodos e causando diversos efeitos colaterais no paciente. A via do chiquimato é coordenada pela ação de 7 enzimas que realizam passos consecutivos para transformar a eritrose-4-fosfato e fosfoenol piruvato (PEP) em corismato. Em micro-organismos, esta via está envolvida com a produção dos aminoácidos fenilalanina, tirosina e triptofano; estes aminoácidos são essenciais à manutenção desses organismos. Neste trabalho foi realizado a clonagem em vetor pGEX4T3 e expressão heteróloga da EPSP–sintase de Pb18 pertencente à via do chiquimato. Essa proteína foi expressa em linhagem E. coli (DE3) e purificada. Os anticorpos foram produzidos para análise da expressão da proteína em Western blot. A modelagem da EPSP-sintase foi realizada visando identificar os aminoácidos envolvidos no sítio ativo. O ensaio de pull down-GST com proteínas solúveis de Pb18 possibilitou a identificação de 40 proteínas que interagem com EPSP-sintase. Essas proteínas pertencem a diferentes categorias funcionais, as quais estão envolvidas com a disponibilidade de fosfoenol piruvato, substrato necessário para o funcionamento da via do chiquimato.
Chapitres de livres sur le sujet "EPSP-synthase"
Beusen, D. D., L. M. McDowell, A. Schmidt, E. R. Cohen et J. Schaefer. « Solid-state NMR determination of the geometry of substrate and inhibitor bound to EPSP synthase ». Dans Peptides, 760–62. Dordrecht : Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-0683-2_252.
Texte intégralSikorski, James A., Karen S. Anderson, Darryl G. Cleary, Michael J. Miller, Paul D. Pansegrau, Joel E. Ream, R. Douglas Sammons et Kenneth A. Johnson. « An Enzyme-Targeted Herbicide Design Program Based on EPSP Synthase : Chemical Mechanism and Glyphosate Inhibition Studies ». Dans Chemical Aspects of Enzyme Biotechnology, 23–39. Boston, MA : Springer US, 1990. http://dx.doi.org/10.1007/978-1-4757-9637-7_3.
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