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首页> 外文期刊>The FEBS journal >A novel mechanism of V-type zinc inhibition of glutamate dehydrogenase results from disruption of subunit interactions necessary for efficient catalysis
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A novel mechanism of V-type zinc inhibition of glutamate dehydrogenase results from disruption of subunit interactions necessary for efficient catalysis

机译:V型锌抑制谷氨酸脱氢酶的新机制来自有效催化所必需的亚基相互作用的破坏

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摘要

Bovine glutamate dehydrogenase is potently inhibited by zinc and the major impact is on V-max suggesting a V-type effect on catalysis or product release. Zinc inhibition decreases as glutamate concentrations decrease suggesting a role for subunit interactions. With the monocarboxylic amino acid norvaline, which gives no evidence of subunit interactions, zinc does not inhibit. Zinc significantly decreases the size of the pre-steady state burst in the reaction but does not affect NADPH binding in the enzyme-NADPH-glutamate complex that governs the steady state turnover, again suggesting that zinc disrupts subunit interactions required for catalytic competence. While differential scanning calorimetry suggests zinc binds and induces a slightly conformationally more rigid state of the protein, limited proteolysis indicates that regions in the vicinity of the antennae regions and the trimer-trimer interface become more flexible. The structures of glutamate dehydrogenase bound with zinc and europium show that zinc binds between the three dimers of subunits in the hexamer, a region shown to bind novel inhibitors that block catalytic turnover, which is consistent with the above findings. In contrast, europium binds to the base of the antenna region and appears to abrogate the inhibitory effect of zinc. Structures of various states of the enzyme have shown that both regions are heavily involved in the conformational changes associated with catalytic turnover. These results suggest that the V-type inhibition produced with glutamate as the substrate results from disruption of subunit interactions necessary for efficient catalysis rather than by a direct effect on the active site conformation.
机译:牛谷氨酸脱氢酶被锌有效抑制,其主要影响是对V-max的影响,表明V型对催化或产物释放有影响。锌的抑制作用随着谷氨酸浓度的降低而降低,表明亚基相互作用的作用。对于没有给出亚基相互作用证据的单羧酸氨基酸正缬氨酸,锌不具有抑制作用。锌显着减小了反应中稳态前爆发的大小,但不影响控制稳态转换的酶-NADPH-谷氨酸复合物中的NADPH结合,再次表明锌破坏了催化能力所需的亚基相互作用。虽然差示扫描量热法表明锌结合并诱导蛋白质的构象稍强一些的刚性状态,但是有限的蛋白水解表明触角区域和三聚体-三聚体界面附近的区域变得更柔软。与锌和euro结合的谷氨酸脱氢酶的结构表明锌结合在六聚体的亚基的三个二聚体之间,该区域显示出结合阻断催化转换的新型抑制剂,这与上述发现一致。相反,euro与触角区域的底部结合并似乎消除了锌的抑制作用。酶的各种状态的结构表明,两个区域都大量参与与催化转化相关的构象变化。这些结果表明,以谷氨酸为底物产生的V型抑制是由于有效催化所必需的亚基相互作用的破坏而不是对活性位点构象的直接影响。

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