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4-氯苯甲酸:辅酶A连接酶/合成酶在无配体和芳基底物结合状态下的晶体结构。

Crystal structure of 4-chlorobenzoate:CoA ligase/synthetase in the unliganded and aryl substrate-bound states.

作者信息

Gulick Andrew M, Lu Xuefeng, Dunaway-Mariano Debra

机构信息

Hauptman-Woodward Medical Research Institute, State University of New York at Buffalo, Buffalo, New York 14203-1196, USA.

出版信息

Biochemistry. 2004 Jul 13;43(27):8670-9. doi: 10.1021/bi049384m.

Abstract

4-Chlorobenzoate:CoA ligase (CBAL) is a member of a family of adenylate-forming enzymes that catalyze two-step adenylation and thioester-forming reactions. In previous studies, we have provided structural evidence that members of this enzyme family (exemplified by acetyl-CoA synthetase) use a large domain rotation to catalyze the respective partial reactions [A. M. Gulick, V. J. Starai, A. R. Horswill, K. M. Homick, and J. C. Escalante-Semerena, (2003) Biochemistry 42, 2866-2873]. CBAL catalyzes the synthesis of 4-chlorobenzoyl-CoA, the first step in the 4-chlorobenzoate degredation pathway in PCB-degrading bacteria. We have solved the 2.0 A crystal structure of the CBAL enzyme from Alcaligenes sp. AL3007 using multiwavelength anomalous dispersion. The results demonstrate that in the absence of any ligands, or bound to the aryl substrate 4-chlorobenzoate, the enzyme adopts the conformation poised for catalysis of the adenylate-forming half-reaction. We hypothesize that coenzyme A binding is required for stabilization of the alternate conformation, which catalyzes the 4-CBA-CoA thioester-forming reaction. We have also determined the structure of the enzyme bound to the aryl substrate 4-chlorobenzoate. The aryl binding pocket is composed of Phe184, His207, Val208, Val209, Phe249, Ala280, Ile303, Gly305, Met310, and Asn311. The structure of the 4-chlorobenzoate binding site is discussed in the context of the binding sites of other family members to gain insight into substrate specificity and evolution of new function.

摘要

4-氯苯甲酸辅酶A连接酶(CBAL)是一类形成腺苷酸的酶家族成员,该家族催化两步腺苷化和硫酯形成反应。在先前的研究中,我们已提供结构证据表明该酶家族成员(以乙酰辅酶A合成酶为例)通过大结构域旋转来催化各自的部分反应[A.M. 古利克、V.J. 斯塔雷、A.R. 霍斯威尔、K.M. 霍米克和J.C. 埃斯卡兰特 - 塞梅雷纳,(2003年)《生物化学》42卷,2866 - 2873页]。CBAL催化4-氯苯甲酰辅酶A的合成,这是多氯联苯降解细菌中4-氯苯甲酸降解途径的第一步。我们利用多波长反常色散解析了来自产碱杆菌属AL3007菌株的CBAL酶的2.0埃晶体结构。结果表明,在没有任何配体或与芳基底物4-氯苯甲酸结合的情况下,该酶采取准备催化腺苷酸形成半反应的构象。我们推测辅酶A结合对于稳定催化4-CBA-辅酶A硫酯形成反应的另一种构象是必需的。我们还确定了该酶与芳基底物4-氯苯甲酸结合的结构。芳基结合口袋由苯丙氨酸184、组氨酸207、缬氨酸208、缬氨酸209、苯丙氨酸249、丙氨酸280、异亮氨酸303、甘氨酸305、甲硫氨酸310和天冬酰胺311组成。在其他家族成员结合位点的背景下讨论了4-氯苯甲酸结合位点的结构,以深入了解底物特异性和新功能的进化。

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