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枯草芽孢杆菌锰结合型锰转运调节蛋白的结构

Structure of the manganese-bound manganese transport regulator of Bacillus subtilis.

作者信息

Glasfeld Arthur, Guedon Emmanuel, Helmann John D, Brennan Richard G

机构信息

Department of Chemistry, Reed College, 3203 SE Woodstock Blvd., Portland, Oregon 97202, USA.

出版信息

Nat Struct Biol. 2003 Aug;10(8):652-7. doi: 10.1038/nsb951.

Abstract

The Bacillus subtilis manganese transport regulator, MntR, binds Mn2+ as an effector and is a repressor of transporters that import manganese. A member of the diphtheria toxin repressor (DtxR) family of metalloregulatory proteins, MntR exhibits selectivity for Mn2+ over Fe2+. Replacement of a metal-binding residue, Asp8, with methionine (D8M) relaxes this specificity. We report here the X-ray crystal structures of wild-type MntR and the D8M mutant bound to manganese with 1.75 A and 1.61 A resolution, respectively. The 142-residue MntR homodimer has substantial structural similarity to the 226-residue DtxR but lacks the C-terminal SH3-like domain of DtxR. The metal-binding pockets of MntR and DtxR are substantially different. The cation-to-cation distance between the two manganese ions bound by MntR is 3.3 A, whereas that between the metal ions bound by DtxR is 9 A. D8M binds only a single Mn2+ per monomer, owing to alteration of the metal-binding site. The sole retained metal site adopts pseudo-hexacoordinate geometry rather than the pseudo-heptacoordinate geometry of the MntR metal sites.

摘要

枯草芽孢杆菌锰转运调节蛋白MntR将Mn2+作为效应物结合,是锰导入转运蛋白的阻遏物。作为金属调节蛋白白喉毒素阻遏物(DtxR)家族的一员,MntR对Mn2+的选择性高于Fe2+。将金属结合残基天冬氨酸8(Asp8)替换为甲硫氨酸(D8M)会减弱这种特异性。我们在此报告野生型MntR和与锰结合的D8M突变体的X射线晶体结构,分辨率分别为1.75 Å和1.61 Å。由142个残基组成的MntR同二聚体与由226个残基组成的DtxR具有显著的结构相似性,但缺少DtxR的C端SH3样结构域。MntR和DtxR的金属结合口袋有很大不同。MntR结合的两个锰离子之间的阳离子间距为3.3 Å,而DtxR结合的金属离子之间的间距为9 Å。由于金属结合位点的改变,D8M每个单体仅结合一个Mn2+。唯一保留的金属位点采用假六配位几何结构,而非MntR金属位点的假七配位几何结构。

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