Clonagem, expressão heteróloga e interações intermoleculares da proteína aspartato semialdeído desidrogenase de Paracoccidioides brasiliensis

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2017-12-12

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Universidade Federal de Goiás

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Paracoccidioides comprises the genus of fungi causing paracoccidioidomycosis. The research of new treatments, especially those based on inhibition of metabolic pathways important for microorganisms has gained prominence and the aspartate pathway, necessary for the biosynthesis of threonine, isoleucine and methionine in microorganisms, is not found in humans. Catalyzing the second step of this pathway, we found aspartate semialdehyde dehydrogenase (ASADH), which has not yet been characterized in Paracoccidioides spp. and has no substituents in its catalytic function in the aspartate pathway. Thus, it is of interest the determination of its biological properties experimentally that their biological properties be determined experimentally. ASADH from Pb18 was cloned into vector pGEX-4T3, expressed in E. coli Stellar cells and purified on a glutathione-sepharose column. Then, antibodies were produced and used in Western blot assay to confirm protein expression. The pull-down-GST assay was performed and allowed the identification of complexes of interactions between ASADH and soluble proteins present in total protein extract of the yeast form of Pb18. Interactions with proteins of several functional categories, among them those related to the metabolism of threonine, isoleucine and methionine, were found, reinforcing the performance of ASADH in the amino acid biosynthesis of Pb18, as well as proteins related to substrate supply to the aspartate pathway and proteins that use metabolites of this pathway. Interactions with proteins involved in other metabolic pathways were also observed, as well as unprecedented interactions, suggesting the importance of ASADH in the functional processes of microorganisms.

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NASCIMENTO, T. H. Clonagem, expressão heteróloga e interações intermoleculares da proteína aspartato semialdeído desidrogenase de Paracoccidioides brasiliensis. 2017. 79 f. Dissertação (Mestrado em Genética e Biologia Molecular) - Universidade Federal de Goiás, Goiânia, 2017.