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通过定点置换细菌铁蛋白的同轴血红素配体可产生无血红素变体。

Site-directed replacement of the coaxial heme ligands of bacterioferritin generates heme-free variants.

作者信息

Andrews S C, Le Brun N E, Barynin V, Thomson A J, Moore G R, Guest J R, Harrison P M

机构信息

Krebs Institute for Biomolecular Research, Department of Molecular Biology and Biotechnology, University of Sheffield, United Kingdom.

出版信息

J Biol Chem. 1995 Oct 6;270(40):23268-74. doi: 10.1074/jbc.270.40.23268.

Abstract

The bacterioferritin (BFR) of Escherichia coli is a heme-containing iron storage molecule. It is composed of 24 identical subunits, which form a roughly spherical protein shell surrounding a central iron storage cavity. Each of the 12 heme moieties of BFR possesses bis-methionine axial ligation, a heme coordination scheme so far only found in bacterioferritins. Members of the BFR family contain three partially conserved methionine residues (excluding the initiating methionine) and in this study each was substituted by leucine and/or histidine. The Met52 variants were devoid of heme, whereas the Met31 and Met86 variants possessed full heme complements and were spectroscopically indistinguishable from wild-type BFR. The heme-free Met52 variants appeared to be correctly assembled and were capable of accumulating iron both in vivo and in vitro. No major differences were observed in the overall rate of iron accumulation for BFR-M52H, BFR-M52L, and the wild-type protein. The iron contents of the Met52 variants, as isolated, were at least 4 times greater than for wild-type BFR. This study is consistent with the reported location of the BFR heme site at the 2-fold axis and shows that heme is unnecessary for BFR assembly and iron uptake.

摘要

大肠杆菌的细菌铁蛋白(BFR)是一种含血红素的铁储存分子。它由24个相同的亚基组成,这些亚基形成一个大致呈球形的蛋白质外壳,围绕着一个中央铁储存腔。BFR的12个血红素部分中的每一个都具有双甲硫氨酸轴向连接,这种血红素配位方案迄今为止仅在细菌铁蛋白中发现。BFR家族的成员包含三个部分保守的甲硫氨酸残基(不包括起始甲硫氨酸),在本研究中,每个残基都被亮氨酸和/或组氨酸取代。Met52变体不含血红素,而Met31和Met86变体具有完整的血红素补充,并且在光谱上与野生型BFR无法区分。无血红素的Met52变体似乎组装正确,并且能够在体内和体外积累铁。对于BFR-M52H、BFR-M52L和野生型蛋白,在铁积累的总体速率上未观察到重大差异。分离得到的Met52变体的铁含量至少是野生型BFR的4倍。这项研究与报道的BFR血红素位点位于二重轴的位置一致,并表明血红素对于BFR组装和铁摄取不是必需的。

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