首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Crystallographic evidence for a CO/CO_2 tunnel gating mechanism in the bifunctional carbon monoxide dehydrogenase/acetyl coenzyme A synthase from Moorella thermoacetica
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Crystallographic evidence for a CO/CO_2 tunnel gating mechanism in the bifunctional carbon monoxide dehydrogenase/acetyl coenzyme A synthase from Moorella thermoacetica

机译:穆尔氏菌热乙醛双功能一氧化碳脱氢酶/乙酰辅酶A合酶中CO / CO_2通道门控机制的晶体学证据

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摘要

Acetyl coenzyme A synthase (ACS) acts in concert with carbon monoxide dehydrogenase (CODH) to catalyze the formation of acetyl-coenzyme A from CO_2-derived CO and CH~(3+) molecules. Recent crystal structures have shown that the three globular domains constituting the ACS subunit may be arranged in either a closed or an open conformation. A long hydrophobic tunnel network allows diffusion of CO between the CODH and the ACS active sites in the closed form, but it is blocked in the open form. On the other hand, the active site of ACS is only accessible for coenzyme A and the methyl donating protein in the open domain conformation. Although several metal compositions have been observed for this active site, present consensus is that it consists of a Ni-Ni-[Fe_4S_4] cluster. The observed conformational changes of ACS and the resulting different substrate accessibilities of the catalytic central nickel are reviewed here in the context of a putative CO_2/CO tunnel gating mechanism.
机译:乙酰辅酶A合酶(ACS)与一氧化碳脱氢酶(CODH)协同作用,催化由CO_2衍生的CO和CH〜(3+)分子形成乙酰辅酶A。最近的晶体结构表明,构成ACS亚基的三个球状结构域可以以封闭或开放构象排列。较长的疏水性隧道网络允许CO在CODH和ACS活性位点之间以封闭形式扩散,但在开放形式中被封闭。另一方面,ACS的活性位点仅在开放域构象中可被辅酶A和甲基供体蛋白访问。尽管已观察到该活性位的几种金属成分,但目前的共识是它由Ni-Ni- [Fe_4S_4]簇组成。本文在推定的CO_2 / CO隧道门控机制的背景下,对观察到的ACS构象变化以及催化中心镍的不同底物可及性进行了综述。

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