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X-ray Structure of a self-compartmentalizing sulfur cycle metalloenzyme.

机译:自分隔硫循环金属酶的X射线结构。

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Numerous microorganisms oxidize sulfur for energy conservation and contribute to the global biogeochemical sulfur cycle. We have determined the 1.7 angstrom-resolution structure of the sulfur oxygenase reductase from the thermoacidophilic archaeon Acidianus ambivalens, which catalyzes an oxygen-dependent disproportionation of elemental sulfur. Twenty-four monomers form a large hollow sphere enclosing a positively charged nanocompartment. Apolar channels provide access for linear sulfur species. A cysteine persulfide and a low-potential mononuclear non-heme iron site ligated by a 2-His-1-carboxylate facial triad in a pocket of each subunit constitute the active sites, accessible from the inside of the sphere. The iron is likely the site of both sulfur oxidation and sulfur reduction.
机译:许多微生物将硫氧化以节约能源,并有助于全球生物地球化学硫循环。我们已经确定了热嗜酸古细菌Acidianus ambivalens的1.7埃分辨率结构的硫加氧酶还原酶,它催化元素硫的氧依赖性歧化作用。 24个单体形成一个大的空心球,包围着带正电的纳米隔室。非极性通道为线性硫物质提供了通道。每个亚基口袋中的2-His-1-羧酸盐面部三联体连接的半胱氨酸过硫化物和低电势单核非血红素铁位点构成了活性位点,可从球体内进入。铁很可能同时发生硫氧化和硫还原。

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