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首页> 外文期刊>The Journal of biological chemistry >Mutation Analysis of Violaxanthin De-epoxidase Identifies Substrate-binding Sites and Residues Involved in Catalysis
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Mutation Analysis of Violaxanthin De-epoxidase Identifies Substrate-binding Sites and Residues Involved in Catalysis

机译:virosanthin脱氧酶的突变分析鉴定催化底物的底物结合位点和残留物

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Plants are able to deal with variable environmental conditions; when exposed to strong illumination, they safely dissipate excess energy as heat and increase their capacity for scavenging reacting oxygen species. Both these protection mechanisms involve activation of the xanthophyll cycle, in which the carotenoid violaxanthin is converted to zeaxanthin by violaxanthin de-epoxidase, using ascorbate as the source of reducing power. In this work, following determination of the three-dimensional structure of the violaxanthin de-epoxidase catalytic domain, we identified the putative binding sites for violaxanthin and ascorbate by in silico docking. Amino acid residues lying in close contact with the two substrates were analyzed for their involvement in the catalytic mechanism. Experimental results supported the proposed substrate-binding sites and point to two residues, Asp-177 and Tyr-198, which are suggested to participate in the catalytic mechanism, based on complete loss of activity in mutant proteins. The role of other residues and the mechanistic similarity to aspartic proteases and epoxide hydrolases are discussed.
机译:植物能够处理可变的环境条件;当暴露于强烈的照明时,它们将过量的能量安全地作为热量消失,并增加其清除反应氧物种的能力。这些保护机制涉及激活叶黄素循环,其中类胡萝卜素violaxanthin通过抗坏血酸作为还原功率的源代理转化为Zeaxanthin。在这项工作中,在测定violaxanthin脱氧酶催化结构域的三维结构之后,我们鉴定了Violaxanthin的推定结合位点,并通过硅基对接来抗坏血液。分析氨基酸残基与两个底物紧密接触的氨基酸残基进行催化机制的参与。实验结果支持所提出的底物结合位点,并指向两个残基,ASP-177和Tyr-198,其建议基于突变蛋白的完全活性丧失催化机制。讨论了其他残留物和机械相似性与天冬氨酸蛋白酶和环氧化物水解酶的作用。

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