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与酰基辅酶A底物类似物复合的酵母过氧化物酶体Δ(3),Δ(2)-烯酰辅酶A异构酶的结构:氢键网络对催化碱基和氧负离子孔反应性的重要性。

Structures of yeast peroxisomal Δ(3),Δ(2)-enoyl-CoA isomerase complexed with acyl-CoA substrate analogues: the importance of hydrogen-bond networks for the reactivity of the catalytic base and the oxyanion hole.

作者信息

Onwukwe Goodluck U, Koski M Kristian, Pihko Petri, Schmitz Werner, Wierenga Rik K

机构信息

Biocenter Oulu and Faculty of Biochemistry and Molecular Medicine, University of Oulu, Oulu, Finland.

Department of Chemistry, University of Jyväskylä, Jyväskylä, Finland.

出版信息

Acta Crystallogr D Biol Crystallogr. 2015 Nov;71(Pt 11):2178-91. doi: 10.1107/S139900471501559X. Epub 2015 Oct 27.

Abstract

Δ(3),Δ(2)-Enoyl-CoA isomerases (ECIs) catalyze the shift of a double bond from 3Z- or 3E-enoyl-CoA to 2E-enoyl-CoA. ECIs are members of the crotonase superfamily. The crotonase framework is used by many enzymes to catalyze a wide range of reactions on acyl-CoA thioesters. The thioester O atom is bound in a conserved oxyanion hole. Here, the mode of binding of acyl-CoA substrate analogues to peroxisomal Saccharomyces cerevisiae ECI (ScECI2) is described. The best defined part of the bound acyl-CoA molecules is the 3',5'-diphosphate-adenosine moiety, which interacts with residues of loop 1 and loop 2, whereas the pantetheine part is the least well defined. The catalytic base, Glu158, is hydrogen-bonded to the Asn101 side chain and is further hydrogen-bonded to the side chain of Arg100 in the apo structure. Arg100 is completely buried in the apo structure and a conformational change of the Arg100 side chain appears to be important for substrate binding and catalysis. The oxyanion hole is formed by the NH groups of Ala70 (loop 2) and Leu126 (helix 3). The O atoms of the corresponding peptide units, Gly69 O and Gly125 O, are both part of extensive hydrogen-bond networks. These hydrogen-bond networks are a conserved feature of the crotonase oxyanion hole and their importance for catalysis is discussed.

摘要

Δ(3),Δ(2)-烯酰辅酶A异构酶(ECIs)催化双键从3Z-或3E-烯酰辅酶A转移至2E-烯酰辅酶A。ECIs是巴豆酸酶超家族的成员。许多酶利用巴豆酸酶框架催化酰基辅酶A硫酯的多种反应。硫酯的O原子结合在一个保守的氧负离子孔中。在此,描述了酰基辅酶A底物类似物与过氧化物酶体酿酒酵母ECI(ScECI2)的结合模式。结合的酰基辅酶A分子中定义最明确的部分是3',5'-二磷酸腺苷部分,它与环1和环2的残基相互作用,而泛酰巯基乙胺部分定义最不明确。催化碱基Glu158与Asn101侧链形成氢键,并在无配体结构中进一步与Arg100侧链形成氢键。Arg100完全埋藏在无配体结构中,Arg100侧链的构象变化似乎对底物结合和催化很重要。氧负离子孔由Ala70(环2)和Leu126(螺旋3)的NH基团形成。相应肽单元的O原子,即Gly69 O和Gly125 O,都是广泛氢键网络的一部分。这些氢键网络是巴豆酸酶氧负离子孔的保守特征,并讨论了它们对催化的重要性。

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