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首页> 外文期刊>Angewandte Chemie >Structural Evidence for a [4Fe-5S] Intermediate in the Non-Redox Desulfuration of Thiouracil
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Structural Evidence for a [4Fe-5S] Intermediate in the Non-Redox Desulfuration of Thiouracil

机译:[4FE-5S]中间体的结构证据在硫酸的非氧化还原脱硫中

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摘要

We recently discovered a [Fe-S]-containing protein with in vivo thiouracil desulfidase activity, dubbed TudS. The crystal structure of TudS refined at 1.5 angstrom resolution is reported; it harbors a [4Fe-4S] cluster bound by three cysteines only. Incubation of TudS crystals with 4-thiouracil trapped the cluster with a hydrosulfide ligand bound to the fourth non-protein-bonded iron, as established by the sulfur anomalous signal. This indicates that a [4Fe-5S] state of the cluster is a catalytic intermediate in the desulfuration reaction. Structural data and site-directed mutagenesis indicate that a water molecule is located next to the hydrosulfide ligand and to two catalytically important residues, Ser101 and Glu45. This information, together with modeling studies allow us to propose a mechanism for the unprecedented non-redox enzymatic desulfuration of thiouracil, in which a [4Fe-4S] cluster binds and activates the sulfur atom of the substrate.
机译:我们最近发现了一种含有[Fe-S]的蛋白质,具有体内硫脲嘧啶脱硫酶活性,称为TudS。报道了在1.5埃分辨率下细化的TudS晶体结构;它含有一个仅由三个半胱氨酸结合的[4Fe-4S]簇。TudS晶体与4-硫脲嘧啶的孵育捕获了与第四个非蛋白质键合铁结合的氢硫化物配体的簇,这是由硫异常信号确定的。这表明团簇的[4Fe-5S]状态是脱硫反应的催化中间体。结构数据和定点突变表明,水分子位于氢硫化物配体和两个具有重要催化作用的残基Ser101和Glu45的旁边。这一信息,加上模拟研究,使我们能够提出前所未有的非氧化还原酶法硫脲嘧啶脱硫机制,其中[4Fe-4S]簇结合并激活底物的硫原子。

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