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增强 β-桶插入: BamB 结合 BamA 的结构基础,可能支持外膜蛋白折叠。

Augmenting β-augmentation: structural basis of how BamB binds BamA and may support folding of outer membrane proteins.

机构信息

Research Institute of Molecular Pathology, Dr. Bohrgasse 7, A-1030 Vienna, Austria.

出版信息

J Mol Biol. 2011 Mar 11;406(5):659-66. doi: 10.1016/j.jmb.2011.01.002. Epub 2011 Jan 12.

DOI:10.1016/j.jmb.2011.01.002
PMID:21236263
Abstract

β-Barrel proteins are frequently found in the outer membrane of mitochondria, chloroplasts and Gram-negative bacteria. In Escherichia coli, these proteins are inserted in the outer membrane by the Bam (β-barrel assembly machinery) complex, a multiprotein machinery formed by the β-barrel protein BamA and the four peripheral membrane proteins BamB, BamC, BamD and BamE. The periplasmic part of BamA binds prefolded β-barrel proteins by a β-augmentation mechanism, thereby stabilizing the precursors prior to their membrane insertion. However, the role of the associated proteins within the Bam complex remains unknown. Here, we describe the crystal structure of BamB, a nonessential component of the Bam complex. The structure shows a typical eight-bladed β-propeller fold. Two sequence stretches of BamB were previously identified to be important for interaction with BamA. In our structure, both motifs are located in close proximity to each other and contribute to a conserved region forming a narrow groove on the top of the propeller. Moreover, crystal contacts reveal two interaction modes of how BamB might bind unfolded β-barrel proteins. In the crystal lattice, BamB binds to exposed β-strands by β-augmentation, whereas peptide stretches rich in aromatic residues can be accommodated in hydrophobic pockets located at the bottom of the propeller. Thus, BamB could simultaneously bind to BamA and prefolded β-barrel proteins, thereby enhancing the folding and membrane insertion capability of the Bam complex.

摘要

β-桶状蛋白通常存在于线粒体、叶绿体和革兰氏阴性细菌的外膜中。在大肠杆菌中,这些蛋白通过 Bam(β-桶状组装机制)复合物插入外膜,该复合物由β-桶状蛋白 BamA 和四个外周膜蛋白 BamB、BamC、BamD 和 BamE 组成。BamA 的周质部分通过β-增宽机制结合预折叠的β-桶状蛋白,从而在其插入膜之前稳定前体。然而,Bam 复合物中相关蛋白的作用仍然未知。在这里,我们描述了 BamB 的晶体结构,BamB 是 Bam 复合物的非必需成分。该结构显示出典型的八叶β-螺旋桨折叠。BamB 的两个序列片段以前被确定为与 BamA 相互作用的重要部分。在我们的结构中,这两个基序彼此非常接近,并且有助于形成螺旋桨顶部狭窄凹槽的保守区域。此外,晶体接触揭示了 BamB 结合未折叠β-桶状蛋白的两种相互作用模式。在晶格中,BamB 通过β-增宽与暴露的β-链结合,而富含芳香族残基的肽链可以容纳在螺旋桨底部的疏水性口袋中。因此,BamB 可以同时与 BamA 和预折叠的β-桶状蛋白结合,从而增强 Bam 复合物的折叠和膜插入能力。

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