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首页> 外文期刊>Journal of international management >Homology Modeling and Molecular Docking Studies of Glutamate Dehydrogenase (GDH) from Cyanobacterium Synechocystis sp. PCC 6803
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Homology Modeling and Molecular Docking Studies of Glutamate Dehydrogenase (GDH) from Cyanobacterium Synechocystis sp. PCC 6803

机译:吲哚菁综合症SP的谷氨酸脱氢酶(GDH)的同源性建模与分子对接研究。 PCC 6803.

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摘要

Glutamate dehydrogenase (GDH), which is present in most bacteria and eukaryotes' mitochondria, plays an important role in amino acid metabolism. In general, GDH converts 2-oxoglutarate to l-glutamate using NAD(P)H as a cofactor, and vice versa. Acquiring more structural information about the GDH of Synechocystis sp. PCC 6803 could be helpful in many studies related to amino acid metabolism in cyanobacteria. In this study, homology modeling studies were conducted to achieve an acceptable structure of the GDH using recognized templates. To this end, a computational approach was used to demonstrate the coenzyme specificity of GDH for NADPH and NADH. The present study involved homology modeling of GDH and docking analyses of NADPH, NADH, 2-oxoglutarate, and l-glutamate into the predictive model of GDH. The results of this study suggest that GDH has similar coenzyme specificity for NADH and NADPH, while NADH has a better binding affinity than NADPH. Furthermore, the binding sites of 2-oxoglutarate and l-glutamate are similar to each other with differences in binding affinity.
机译:谷氨酸脱氢酶(GDH)存在于大多数细菌和真核生物的线粒体中,在氨基酸代谢中起着重要作用。通常,GDH使用NAD(P)H作为辅助因子将2-氧代氟酯转化为L-谷氨酸,反之亦然。获取有关SyneChocystis SP的GDH的更多结构信息。 PCC 6803可能有助于许多与氨基酸氨基酸代谢相关的研究。在该研究中,进行了同源性建模研究以实现使用识别的模板的GDH的可接受结构。为此,使用计算方法来证明NADPH和NADH的GDH的辅酶特异性。本研究涉及NADPH,NADH,2-氧缩流管的GDH和对接分析的同源性建模,并将L-谷氨酸盐与GDH的预测模型中的L-谷氨酸分析。该研究的结果表明,GDH对NADH和NADPH具有类似的辅酶特异性,而NADH具有比NADPH更好的结合亲和力。此外,2-氧代氟酯和L-谷氨酸的结合位点彼此相似,其结合亲和力差异。

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