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首页> 外文期刊>The Journal of biological chemistry >Crystal structure of the thioesterification conformation of Bacillus subtilis o-succinylbenzoyl-CoA synthetase reveals a distinct substrate-binding mode
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Crystal structure of the thioesterification conformation of Bacillus subtilis o-succinylbenzoyl-CoA synthetase reveals a distinct substrate-binding mode

机译:枯草芽孢杆菌邻-琥珀酰苯甲酰-CoA合成酶的硫酯化构象的晶体结构揭示了独特的底物结合模式

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o-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 Bacillus subtilis mutant protein complexed with an OSB-CoA analogue, we determined MenE high-resolution structures to 1.76 and 1.90 ? 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.
机译:邻琥珀酰苯甲酰辅酶A(OSB-CoA)合成酶(MenE)是细菌维生素K生物合成中必不可少的酶,并且是开发新抗生素的重要目标。它是腺苷酸化酶(ANL)家族的成员,其在域交替催化机制中以两种不同的活性构象重新配置其活性位点,一种用于腺苷酸化半反应,另一种用于硫酯化半反应。尽管最近发现了MenE中腺苷酸化机制的几个方面,但其硫酯化构象仍然难以捉摸。在这里,使用与OSB-CoA类似物复合的具有催化活性的枯草芽孢杆菌突变蛋白,我们确定MenE高分辨率结构为1.76和1.90?硫酯形成构象中的拆分。与腺苷酸构象相比,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°。该结构还揭示了在MenE直向同源物之间特别保守的硫酯化活性位点和不同于许多其他酰基/芳基-CoA合成酶的底物结合模式。值得注意的是,使用定点诱变,我们鉴定了几个残基,这些残基特别有助于硫酯化半反应而不影响腺苷酸化半反应。此外,我们观察到在硫酯化半反应中,活化的琥珀酰基有明显的运动。这些发现为维生素K生物合成必不可少的细菌酶及其ANL酶家族中的腺苷酸同系物提供了新的见解。

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