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氧化亚氮还原酶系统辅助蛋白Apo NosL的结构研究:与汞抗性蛋白MerB结构同源性的启示

Structural studies of Apo NosL, an accessory protein of the nitrous oxide reductase system: insights from structural homology with MerB, a mercury resistance protein.

作者信息

Taubner Lara M, McGuirl Michele A, Dooley David M, Copié Valérie

机构信息

Department of Chemistry and Biochemistry, Montana State University, Bozeman, Montana 59717, USA.

出版信息

Biochemistry. 2006 Oct 10;45(40):12240-52. doi: 10.1021/bi061089+.

Abstract

The formation of the unique catalytic tetranuclear copper cluster (Cu(Z)) of nitrous oxide reductase, N(2)OR, requires the coexpression of a multiprotein assembly apparatus encoded by the nosDFYL operon. NosL, one of the proteins encoded by this transcript, is a 20 kDa lipoprotein of the periplasm that has been shown to bind copper(I), although its function has yet to be detemined. Cu(I) EXAFS data collected on the holo protein demonstrated that features of the copper binding site are consistent with a role for this protein as a metallochaperone, a class of metal ion transporters involved in metal resistance, homeostasis, and metallocluster biosynthesis. To test this hypothesis and to gain insight into other potential functional roles for this protein in the N(2)OR system, the three-dimensional solution structure of apo NosL has been solved by solution NMR methods. The structure of apo NosL consists of two relatively independent homologous domains that adopt an unusual betabetaalphabeta topology. The fold of apo NosL displays structural homology to only one other protein, MerB, an organomercury lyase involved in bacterial mercury resistance (Di Lello et al. (2004) Biochemistry 43, 8322-32). The structural similarity between apo NosL and MerB, together with the absolute conservation of Met109 in all NosL sequences, indicates that this residue may be involved in copper ligation, and that the metal binding site is likely to be solvent-accessible and contiguous with a large binding cleft. The structural observations suggest that NosL is exceptionally adapted for a role in copper and/or sulfur delivery and possibly for metallochaperone function.

摘要

氧化亚氮还原酶(N₂OR)独特的催化四核铜簇(Cu(Z))的形成需要由nosDFYL操纵子编码的多蛋白组装装置共同表达。NosL是该转录本编码的蛋白质之一,是一种20 kDa的周质脂蛋白,已证明其能结合铜(I),但其功能尚未确定。在全酶蛋白上收集的Cu(I)扩展X射线吸收精细结构(EXAFS)数据表明,铜结合位点的特征与该蛋白作为金属伴侣的作用一致,金属伴侣是一类参与金属抗性、稳态和金属簇生物合成的金属离子转运蛋白。为了验证这一假设并深入了解该蛋白在N₂OR系统中的其他潜在功能作用,已通过溶液核磁共振方法解析了脱辅基NosL的三维溶液结构。脱辅基NosL的结构由两个相对独立的同源结构域组成,它们采用了一种不寻常的ββαβ拓扑结构。脱辅基NosL的折叠仅与另一种蛋白质MerB显示出结构同源性,MerB是一种参与细菌汞抗性的有机汞裂解酶(迪莱洛等人,(2004年)《生物化学》43卷,8322 - 8332页)。脱辅基NosL和MerB之间的结构相似性,以及所有NosL序列中Met109的绝对保守性,表明该残基可能参与铜的连接,并且金属结合位点可能是溶剂可及的,并且与一个大的结合裂隙相邻。结构观察表明,NosL特别适合在铜和/或硫的传递中发挥作用,并且可能具有金属伴侣功能。

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