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碱性磷酸酶超家族中的一种高效、多功能混杂的水解酶。

An efficient, multiply promiscuous hydrolase in the alkaline phosphatase superfamily.

机构信息

Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge CB2 1GA, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2010 Feb 16;107(7):2740-5. doi: 10.1073/pnas.0903951107. Epub 2010 Jan 27.

Abstract

We report a catalytically promiscuous enzyme able to efficiently promote the hydrolysis of six different substrate classes. Originally assigned as a phosphonate monoester hydrolase (PMH) this enzyme exhibits substantial second-order rate accelerations ((k(cat)/K(M))/k(w)), ranging from 10(7) to as high as 10(19), for the hydrolyses of phosphate mono-, di-, and triesters, phosphonate monoesters, sulfate monoesters, and sulfonate monoesters. This substrate collection encompasses a range of substrate charges between 0 and -2, transition states of a different nature, and involves attack at two different reaction centers (P and S). Intrinsic reactivities (half-lives) range from 200 days to 10(5) years under near neutrality. The substantial rate accelerations for a set of relatively difficult reactions suggest that efficient catalysis is not necessarily limited to efficient stabilization of just one transition state. The crystal structure of PMH identifies it as a member of the alkaline phosphatase superfamily. PMH encompasses four of the native activities previously observed in this superfamily and extends its repertoire by two further activities, one of which, sulfonate monoesterase, has not been observed previously for a natural enzyme. PMH is thus one of the most promiscuous hydrolases described to date. The functional links between superfamily activities can be presumed to have played a role in functional evolution by gene duplication.

摘要

我们报道了一种催化多功能酶,它能够有效地促进六种不同底物类别的水解。最初被归类为磷酸单酯水解酶(PMH),该酶对磷酸单酯、二酯和三酯、磷酸单酯、硫酸单酯和磺酸盐单酯的水解表现出显著的二级速率加速((kcat/KM)/kwater),范围从 10(7)到高达 10(19)。这个底物集合包含了在 0 到-2 之间的不同的底物电荷、不同性质的过渡态,并且涉及到两个不同的反应中心(P 和 S)的攻击。在近中性条件下,固有反应性(半衰期)范围从 200 天到 10(5)年。对于一组相对困难的反应,显著的速率加速表明高效催化不一定仅限于对一个过渡态的有效稳定。PMH 的晶体结构将其鉴定为碱性磷酸酶超家族的成员。PMH 包含了该超家族中以前观察到的四种天然活性,并通过另外两种活性扩展了其 repertoire,其中一种磺酸盐单酯酶以前在天然酶中没有观察到。因此,PMH 是迄今为止描述的最具多功能性的水解酶之一。超家族活性之间的功能联系可以被假定在功能进化中通过基因复制起到了作用。

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