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通过转移核Overhauser效应测量确定的与烯酰辅酶A水合酶结合的己二烯酰辅酶A的结构:基于4-(氯苯甲酰基)-辅酶A脱卤酶X射线结构的机制预测。

Structure of hexadienoyl-CoA bound to enoyl-CoA hydratase determined by transferred nuclear Overhauser effect measurements: mechanistic predictions based on the X-ray structure of 4-(chlorobenzoyl)-CoA dehalogenase.

作者信息

Wu W J, Anderson V E, Raleigh D P, Tonge P J

机构信息

Department of Chemistry, State University of New York at Stony Brook, 11794-3400, USA.

出版信息

Biochemistry. 1997 Feb 25;36(8):2211-20. doi: 10.1021/bi962549+.

Abstract

The structure of the substrate analog 2,4-hexadienoyl-coenzyme A (HD-CoA) bound to the enzyme enoyl-CoA hydratase has been determined using transferred nuclear Overhauser enhancement (TRNOE) spectroscopy. NOEs between the adenine H8 proton and several pantetheine protons in the bound form of HD-CoA indicate that the overall structure of the CoA molecule is bent, while NOEs between adenine and ribose protons indicate that the conformation about the glycosidic bond is anti. The absence of long range NOEs along the pantetheine moiety is consistent with this region of the molecule being bound in an extended conformation. In addition, NOEs between the vinylic protons indicate that the HD moiety is s-trans about C3-C4. The conformation of the CoA portion of bound HD-CoA is strikingly similar to that of the CoA portion of 4-(hydroxybenzoyl)-CoA bound to the active site of 4-(chlorobenzoyl)-CoA dehalogenase [Benning, M. M., et al. (1996) Biochemistry 35, 8103-8109]. The structural similarity of the ligands along with the primary sequence homology validates the modeling of the enoyl-CoA hydratase structure with the 4-(chlorobenzoyl)-CoA dehalogenase backbone. The homology modeling allows the prediction that the enoyl-CoA substrates are bound in an s-cis conformation about C1-C2 and that Glu 144 is present at the active site and can function as a general acid/base.

摘要

利用转移核Overhauser增强效应(TRNOE)光谱法,已确定了与烯酰辅酶A水合酶结合的底物类似物2,4 - 己二烯酰辅酶A(HD - CoA)的结构。HD - CoA结合形式下腺嘌呤H8质子与几个泛酰巯基乙胺质子之间的核Overhauser效应(NOE)表明,辅酶A分子的整体结构是弯曲的,而腺嘌呤与核糖质子之间的NOE表明糖苷键的构象是反式的。沿着泛酰巯基乙胺部分不存在长程NOE,这与该分子区域以伸展构象结合是一致的。此外,乙烯基质子之间的NOE表明HD部分围绕C3 - C4是反式的。结合的HD - CoA的辅酶A部分的构象与结合到4 -(氯苯甲酰基)- CoA脱卤酶活性位点的4 -(羟基苯甲酰基)- CoA的辅酶A部分的构象惊人地相似[本宁,M. M.等人(1996年)《生物化学》35卷,8103 - 8109页]。配体的结构相似性以及一级序列同源性验证了用4 -(氯苯甲酰基)- CoA脱卤酶主链对烯酰辅酶A水合酶结构进行的建模。同源性建模使得可以预测烯酰辅酶A底物围绕C1 - C2以顺式构象结合,并且谷氨酸144存在于活性位点并可作为一般酸/碱发挥作用。

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