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Reaction Mechanism and Molecular Basis for Selenium/Sulfur Discrimination of Selenocysteine Lyase

机译:硒/半胱氨酸裂解酶的硫/硫鉴别的反应机理和分子基础

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摘要

Selenocysteine lyase (SCL) catalyzes the pyridoxal 5′-phosphate-dependent removal of selenium from l-selenocysteine to yield l-alanine. The enzyme is proposed to function in the recycling of the micronutrient selenium from degraded selenoproteins containing selenocysteine residue as an essential component. The enzyme exhibits strict substrate specificity toward l-selenocysteine and no activity to its cognate l-cysteine. However, it remains unclear how the enzyme distinguishes between selenocysteine and cysteine. Here, we present mechanistic studies of selenocysteine lyase from rat. ESI-MS analysis of wild-type and C375A mutant SCL revealed that the catalytic reaction proceeds via the formation of an enzyme-bound selenopersulfide intermediate on the catalytically essential Cys-375 residue. UV-visible spectrum analysis and the crystal structure of SCL complexed with l-cysteine demonstrated that the enzyme reversibly forms a nonproductive adduct with l-cysteine. Cys-375 on the flexible loop directed l-selenocysteine, but not l-cysteine, to the correct position and orientation in the active site to initiate the catalytic reaction. These findings provide, for the first time, the basis for understanding how trace amounts of a selenium-containing substrate is distinguished from excessive amounts of its cognate sulfur-containing compound in a biological system.
机译:硒代半胱氨酸裂解酶(SCL)催化吡喃醛5'-磷酸依赖性从1-硒代半胱氨酸中去除硒,从而生成1-丙氨酸。提出该酶在从含有硒代半胱氨酸残基作为必需成分的降解硒蛋白中回收微量营养素硒中起作用。该酶对l-硒代半胱氨酸表现出严格的底物特异性,对其同源的l-半胱氨酸没有活性。但是,尚不清楚该酶如何区分硒代半胱氨酸和半胱氨酸。在这里,我们目前从大鼠硒代半胱氨酸裂解酶的机制研究。对野生型和C375A突变型SCL的ESI-MS分析表明,催化反应是通过在催化必需的Cys-375残基上形成酶结合的硒代过硫中间体而进行的。紫外可见光谱分析和与L-半胱氨酸复合的SCL的晶体结构表明,该酶可逆地与L-半胱氨酸形成非生产性加合物。柔性环上的Cys-375将l-硒代半胱氨酸而不是l-半胱氨酸导向活性位点的正确位置和方向,以启动催化反应。这些发现首次为理解生物系统中痕量的含硒底物与过量的相关含硫化合物的区别提供了基础。

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