首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Computational studies of the metal-binding site of the wild-type and the H46R mutant of the copper, zinc superoxide dismutase
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Computational studies of the metal-binding site of the wild-type and the H46R mutant of the copper, zinc superoxide dismutase

机译:铜,锌超氧化物歧化酶的野生型和H46R突变体的金属结合位点的计算研究

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摘要

Impairment of the Zn(II)-binding site of the copper, zinc superoxide dismutase (CuZnSOD) protein is involved in a number of hypotheses and explanations for the still unknown toxic gain of function mutant varieties of CuZnSOD that are associated with familial forms of amyotrophic lateral sclerosis (ALS). In this work, computational chemistry methods have been used for studying models of the metal-binding site of the ALS-linked H46R mutant of CuZnSOD and of the wild-type variety of the enzyme. By comparing the energy and electronic structure of these models, a plausible explanation for the effect of the H46R mutation on the zinc site is obtained. The computational study clarifies the role of the D124 and D125 residues for keeping the structural integrity of the Zn(II)-binding site, which was known to exist but its mechanism has not been explained. Earlier results suggest that the explanation for the impairment of the Zn(II)-site proposed in this work may be useful for understanding the mechanism of action of the ALS-linked mutations in CuZnSOD in general.
机译:铜,超氧化锌歧化酶(CuZnSOD)蛋白的Zn(II)结合位点受损涉及许多假设,并解释了与肌萎缩性家族性相关的功能突变型CuZnSOD的毒性增益仍未知侧索硬化症(ALS)。在这项工作中,计算机化学方法已用于研究ALS连接的CuZnSOD的H46R突变体的金属结合位点和该酶的野生型模型。通过比较这些模型的能量和电子结构,可以得出H46R突变对锌位点的影响的合理解释。计算研究阐明了D124和D125残基在保持Zn(II)结合位点的结构完整性方面的作用,已知该位点存在,但尚未解释其机理。较早的结果表明,这项工作中提出的Zn(II)-位点损伤的解释可能有助于理解CuZnSOD中ALS关联突变的作用机理。

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