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假单胞菌 MT1 反式二烯内酯水解酶的新型金属结合位点。

Novel metal-binding site of Pseudomonas reinekei MT1 trans-dienelactone hydrolase.

机构信息

Division of Microbial Pathogenesis, HZI - Helmholtz Centre for Infection Research, Inhoffenstr. 7, 38124 Braunschweig, Germany.

出版信息

Biochem Biophys Res Commun. 2009 Dec 25;390(4):1345-8. doi: 10.1016/j.bbrc.2009.10.151. Epub 2009 Nov 4.

Abstract

Pseudomonasreinekei MT1 is capable of growing on 4- and 5-chlorosalicylate as the sole carbon source involving a pathway with trans-dienelactone hydrolase as the key enzyme. This enzyme transforms 4-chloromuconolactone to maleylacetate and thereby avoids the spontaneous formation of toxic protoanemonin. trans-Dienelactone hydrolase is a Zn(2+)-dependent hydrolase where activity can be modulated by the exchange of Zn(2+) by Mn(2+) in at least two of the three metal-binding sites. Site directed variants of conserved residues of the Q(101)XXXQ(105)XD(107)XXXH(111) motif and of H281 and E294 exhibit a two order of magnitude decrease in activity and a strong decrease in metal-binding capability. As none of the variants exhibited a change in secondary structure, the analyzed amino acid residues can be assumed to be involved in metal binding, forming a novel trinuclear metal-binding motif.

摘要

恶臭假单胞菌 MT1 能够以 4- 和 5- 氯水杨酸作为唯一碳源生长,涉及一种以反式二烯内酯水解酶为关键酶的途径。该酶将 4- 氯粘康酸内酯转化为马来酰乙酰酯,从而避免了有毒原白头翁素的自发形成。反式二烯内酯水解酶是一种 Zn(2+) 依赖性水解酶,其活性至少可以通过三个金属结合位点中的两个位点的 Zn(2+) 被 Mn(2+) 交换来调节。Q(101)XXXQ(105)XD(107)XXXH(111) 模体的保守残基和 H281 和 E294 的定点变异显示出活性降低两个数量级,金属结合能力也大大降低。由于没有一种变体表现出二级结构的变化,因此可以假定所分析的氨基酸残基参与金属结合,形成一个新的三核金属结合基序。

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