Chen Yaozong, Li Tin Lok, Lin Xingbang, Li Xin, Li Xiang David, Guo Zhihong
Department of Chemistry, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.
Department of Chemistry, University of Hong Kong, Pokfulam, Hong Kong, China.
J Biol Chem. 2017 Jul 21;292(29):12296-12310. doi: 10.1074/jbc.M117.790410. Epub 2017 May 30.
-Succinylbenzoyl-CoA (OSB-CoA) synthetase (MenE) is an essential enzyme in bacterial vitamin K biosynthesis and an important target in the development of new antibiotics. It is a member of the adenylating enzymes (ANL) family, which reconfigure their active site in two different active conformations, one for the adenylation half-reaction and the other for a thioesterification half-reaction, in a domain-alternation catalytic mechanism. Although several aspects of the adenylating mechanism in MenE have recently been uncovered, its thioesterification conformation remains elusive. Here, using a catalytically competent mutant protein complexed with an OSB-CoA analogue, we determined MenE high-resolution structures to 1.76 and 1.90 Å resolution in a thioester-forming conformation. By comparison with the adenylation conformation, we found that MenE's C-domain rotates around the Ser-384 hinge by 139.5° during domain-alternation catalysis. The structures also revealed a thioesterification active site specifically conserved among MenE orthologues and a substrate-binding mode distinct from those of many other acyl/aryl-CoA synthetases. Of note, using site-directed mutagenesis, we identified several residues that specifically contribute to the thioesterification half-reaction without affecting the adenylation half-reaction. Moreover, we observed a substantial movement of the activated succinyl group in the thioesterification half-reaction. These findings provide new insights into the domain-alternation catalysis of a bacterial enzyme essential for vitamin K biosynthesis and of its adenylating homologues in the ANL enzyme family.
琥珀酰苯甲酰辅酶A(OSB-CoA)合成酶(MenE)是细菌维生素K生物合成中的一种必需酶,也是新型抗生素开发的重要靶点。它是腺苷化酶(ANL)家族的成员,该家族通过结构域交替催化机制,在两种不同的活性构象中重新配置其活性位点,一种用于腺苷化半反应,另一种用于硫酯化半反应。尽管最近已经揭示了MenE中腺苷化机制的几个方面,但其硫酯化构象仍然难以捉摸。在这里,我们使用与OSB-CoA类似物复合的具有催化活性的突变蛋白,确定了MenE在硫酯形成构象下分辨率为1.76 Å和1.90 Å的高分辨率结构。通过与腺苷化构象进行比较,我们发现MenE的C结构域在结构域交替催化过程中围绕Ser-384铰链旋转了139.5°。这些结构还揭示了MenE直系同源物中特异性保守的硫酯化活性位点以及与许多其他酰基/芳基-CoA合成酶不同的底物结合模式。值得注意的是,我们通过定点诱变确定了几个对硫酯化半反应有特异性贡献而不影响腺苷化半反应的残基。此外,我们观察到硫酯化半反应中活化的琥珀酰基团有显著移动。这些发现为维生素K生物合成所必需的细菌酶及其在ANL酶家族中的腺苷化同源物的结构域交替催化提供了新的见解。