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大肠杆菌 BamE 的结构特征,β-桶组装机器复合物的脂蛋白成分。

Structural characterization of Escherichia coli BamE, a lipoprotein component of the β-barrel assembly machinery complex.

机构信息

Department of Molecular Biology and Biochemistry, Simon Fraser University, South Science Building, 8888 University Drive, Burnaby, British Columbia, Canada V5A 1S6.

出版信息

Biochemistry. 2011 Feb 15;50(6):1081-90. doi: 10.1021/bi101659u. Epub 2011 Jan 24.

Abstract

In Escherichia coli, the BAM complex catalyzes the essential process of assembling outer membrane proteins (OMPs). This complex consists of five proteins: one membrane-bound protein, BamA, and four lipoproteins, BamB, BamC, BamD, and BamE. Despite their importance in OMP biogenesis, there is currently a lack of functional and structural information on the BAM complex lipoproteins. BamE is the smallest but most conserved lipoprotein in the complex. The structural and dynamic properties of monomeric BamE (residues 21-133) were determined by NMR spectroscopy. The protein folds as two α-helices packed against a three-stranded antiparallel β-sheet. The N-terminal (Ser21-Thr39) and C-terminal (Pro108-Asn113) residues, as well as a β-hairpin loop (Val76-Gln89), are highly flexible on the subnanosecond time scale. BamE expressed and purified from E. coli also exists in a kinetically trapped dimeric state that has dramatically different NMR spectra, and hence structural features, relative to its monomeric form. The functional significance of the BamE dimer remains to be established. Structural comparison to proteins with a similar architecture suggests that BamE may play a role in mediating the association of the BAM complex or with the BAM complex substrates.

摘要

在大肠杆菌中,BAM 复合物催化着组装外膜蛋白(OMPs)的基本过程。该复合物由五种蛋白质组成:一种膜结合蛋白 BamA 和四种脂蛋白 BamB、BamC、BamD 和 BamE。尽管它们在 OMP 生物发生中很重要,但目前对于 BAM 复合物脂蛋白缺乏功能和结构信息。BamE 是复合物中最小但最保守的脂蛋白。通过 NMR 光谱学确定了单体 BamE(残基 21-133)的结构和动态特性。该蛋白质折叠成两个α-螺旋,与三股反平行β-折叠相对。N 端(Ser21-Thr39)和 C 端(Pro108-Asn113)残基以及β-发夹环(Val76-Gln89)在亚纳秒时间尺度上具有高度的灵活性。从大肠杆菌表达和纯化的 BamE 也存在动力学捕获的二聚状态,其 NMR 光谱与单体形式显著不同,因此结构特征也不同。BamE 二聚体的功能意义尚待确定。与具有相似结构的蛋白质进行结构比较表明,BamE 可能在介导 BAM 复合物的缔合或与 BAM 复合物底物的缔合中发挥作用。

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