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一种新型酶的结构,该酶在水性条件下催化酰基向醇的转移。

Structure of a novel enzyme that catalyzes acyl transfer to alcohols in aqueous conditions.

作者信息

Mathews Irimpan, Soltis Michael, Saldajeno Mae, Ganshaw Grant, Sala Rafael, Weyler Walter, Cervin Marguerite A, Whited Gregg, Bott Richard

机构信息

Stanford Synchrotron Research Laboratory, 2575 Sand Hill Road, Menlo Park, California 94025, USA.

出版信息

Biochemistry. 2007 Aug 7;46(31):8969-79. doi: 10.1021/bi7002444. Epub 2007 Jul 18.

Abstract

The unusual architecture of the enzyme (MsAcT) isolated from Mycobacterium smegmatis forms the mechanistic basis for favoring alcoholysis over hydrolysis in water. Unlike hydrolases that perform alcoholysis only under anhydrous conditions, MsAcT demonstrates alcoholysis in substantially aqueous media and, in the presence of hydrogen peroxide, has a perhydrolysis:hydrolysis ratio 50-fold greater than that of the best lipase tested. The crystal structures of the apoenzyme and an inhibitor-bound form have been determined to 1.5 A resolution. MsAcT is an octamer in the asymmetric unit and forms a tightly associated aggregate in solution. Relative to other structurally similar monomers, MsAcT contains several insertions that contribute to the oligomerization and greatly restrict the shape of the active site, thereby limiting its accessibility. These properties create an environment by which MsAcT can catalyze transesterification reactions in an aqueous medium and suggests how a serine hydrolase can be engineered to be an efficient acyltransferase.

摘要

从耻垢分枝杆菌中分离出的酶(MsAcT)的独特结构构成了其在水中更倾向于醇解而非水解的机制基础。与仅在无水条件下进行醇解的水解酶不同,MsAcT在大量水性介质中表现出醇解活性,并且在过氧化氢存在下,其过水解与水解的比率比所测试的最佳脂肪酶高50倍。已确定脱辅基酶和抑制剂结合形式的晶体结构分辨率为1.5埃。MsAcT在不对称单元中是八聚体,在溶液中形成紧密结合的聚集体。相对于其他结构相似的单体,MsAcT包含几个有助于寡聚化的插入片段,并极大地限制了活性位点的形状,从而限制了其可及性。这些特性创造了一个环境,使得MsAcT能够在水性介质中催化酯交换反应,并提示了如何将丝氨酸水解酶改造为高效的酰基转移酶。

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