首页> 美国卫生研究院文献>The EMBO Journal >Crystal structure of enoyl-coenzyme A (CoA) hydratase at 2.5 angstroms resolution: a spiral fold defines the CoA-binding pocket.
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Crystal structure of enoyl-coenzyme A (CoA) hydratase at 2.5 angstroms resolution: a spiral fold defines the CoA-binding pocket.

机译:烯酰辅酶A(CoA)水合酶的晶体结构分辨率为2.5埃:螺旋形折叠定义了CoA结合口袋。

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摘要

The crystal structure of rat liver mitochondrial enoyl-coenzyme A (CoA) hydratase complexed with the potent inhibitor acetoacetyl-CoA has been refined at 2.5 angstroms resolution. This enzyme catalyses the reversible addition of water to alpha,beta-unsaturated enoyl-CoA thioesters, with nearly diffusion-controlled reaction rates for the best substrates. Enoyl-CoA hydratase is a hexamer of six identical subunits of 161 kDa molecular mass for the complex. The hexamer is a dimer of trimers. The monomer is folded into a right-handed spiral of four turns, followed by two small domains which are involved in trimerization. Each turn of the spiral consists of two beta-strands and an alpha-helix. The mechanism for the hydratase/dehydratase reaction follows a syn-stereochemistry, a preference that is opposite to the nonenzymatic reaction. The active-site architecture agrees with this stereochemistry. It confirms the importance of Glu164 as the catalytic acid for providing the alpha-proton during the hydratase reaction. It also shows the importance of Glu144 as the catalytic base for the activation of a water molecule in the hydratase reaction. The comparison of an unliganded and a liganded active site within the same crystal form shows a water molecule in the unliganded subunit. This water molecule is bound between the two catalytic glutamates and could serve as the activated water during catalysis.
机译:与有效抑制剂乙酰乙酰辅酶A络合的大鼠肝线粒体烯酰辅酶A(CoA)水合酶的晶体结构已以2.5埃的分辨率精制。这种酶催化将水可逆地添加到α,β-不饱和烯丙基-CoA硫酯中,对于最佳底物,几乎可以控制扩散速度。烯酰辅酶A水合酶是该复合物具有161 kDa分子量的六个相同亚基的六聚体。六聚体是三聚体的二聚体。将该单体折叠成四匝的右旋螺旋,然后是两个参与三聚化的小区域。螺旋的每匝由两个β链和一个α螺旋组成。水合酶/脱水酶反应的机制遵循顺-立体化学,这与非酶反应相反。活动站点架构与此立体化学相符。它证实了Glu164作为在水合酶反应期间提供α-质子的催化酸的重要性。它还显示了Glu144作为水合酶反应中水分子活化的催化碱的重要性。在相同晶形内的未配体和配体活性位点的比较显示未配体亚基中的水分子。该水分子结合在两种催化的谷氨酸盐之间,可以在催化过程中用作活化水。

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