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Biochemical Discrimination between Selenium and Sulfur 2: Mechanistic Investigation of the Selenium Specificity of Human Selenocysteine Lyase

机译:硒和硫之间的生化区分2:人类硒代半胱氨酸裂解酶硒特异性的机理研究

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摘要

Selenium is an essential trace element incorporated into selenoproteins as selenocysteine. Selenocysteine (Sec) lyases (SCLs) and cysteine (Cys) desulfurases (CDs) catalyze the removal of selenium or sulfur from Sec or Cys, respectively, and generally accept both substrates. Intriguingly, human SCL (hSCL) is specific for Sec even though the only difference between Sec and Cys is a single chalcogen atom.The crystal structure of hSCL was recently determined and gain-of-function protein variants that also could accept Cys as substrate were identified. To obtain mechanistic insight into the chemical basis for its substrate discrimination, we here report time-resolved spectroscopic studies comparing the reactions of the Sec-specific wild-type hSCL and the gain-of-function D146K/H389T variant, when given Cys as a substrate. The data are interpreted in light of other studies of SCL/CD enzymes and offer mechanistic insight into the function of the wild-type enzyme. Based on these results and previously available data we propose a reaction mechanism whereby the Sec over Cys specificity is achieved using a combination of chemical and physico-mechanical control mechanisms.
机译:硒是作为硒代半胱氨酸并入硒蛋白的必需微量元素。硒代半胱氨酸(Sec)裂解酶(SCL)和半胱氨酸(Cys)脱硫酶(CD)分别催化从Sec或Cys去除硒或硫,通常接受两种底物。有趣的是,即使Sec和Cys的唯一区别是单个硫属元素原子,人类SCL(hSCL)仍对Sec具有特异性.hSCL的晶体结构最近得到了确定,并且还可以接受Cys作为底物的功能获得性蛋白质变体得以确定。确定。为了获得对其底物区分的化学基础的机械学见解,我们在这里报告了时间分辨光谱研究,比较了当以Cys作为半胱氨酸时,Sec特异性野生型hSCL和功能获得性D146K / H389T变体的反应。基质。该数据根据SCL / CD酶的其他研究进行了解释,并为野生型酶的功能提供了机械原理。基于这些结果和以前可获得的数据,我们提出了一种反应机制,通过结合化学和物理机械控制机制,可以实现半胱氨酸对半胱氨酸的特异性。

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