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Structural Analysis of the Escherichia coli beta-barrel Assembly Machinery Complex.

机译:大肠杆菌β-桶装配机械厂的结构分析。

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摘要

The outer membrane (OM) is a unique structural feature of Gram-negative bacteria. Residing within the outer membrane are ..-barrel outer membrane proteins (OMPs) that serve many important cellular functions. As proper folding and assembly of these proteins are crucial for cell viability, Gram-negative bacteria possess a specialized proteinaceous machine, known as the BAM (beta-barrel assembly machinery) complex, to catalyze the folding and membrane insertion of OMPs. In Escherichia coli, the BAM complex consists of five proteins: one beta-barrel membrane protein -- BamA, and four lipoproteins -- BamB, BamC, BamD, and BamE. The roles of the individual components and how they are arranged into the BAM complex to function together is not yet clearly understood.;During the course of this thesis project, I determined the structures of E. coli BamB, BamC, BamE and the BamCD subcomplex. Analysis of the conserved residues and the molecular surface properties of these solved structures helped to identify potential protein-protein interaction sites on each lipoprotein. For example, BamC has two 'helix-grip' domains that are ideally shaped to accommodate alpha-helices. BamB, on the other hand, has a beta-propeller fold that could potentially interact with BamA or substrates via beta-augmentation, a mode of interaction in which a pre-existing beta-sheet is augmented by an addition of a beta-strand of another protein.;Comparing the solved structures with their structural homologs with known functions has also provided important clues about the functional roles of each lipoprotein. BamD structure, for example, closely resembles the binding pocket of a peroxisomal targeting signal receptor PEX5, suggesting a similar substrate recognition function for BamD. Interestingly, our BamCD complex structure shows that the putative substrate binding pocket of BamD is bound and blocked by the conserved unstructured N-terminal region of BamC. This suggests a possibility that BamC may have a regulatory function.The structural and interaction data acquired from this thesis project contributes to a better understanding of the BAM complex structure and provides a platform for future research driven by structure-based hypotheses.
机译:外膜(OM)是革兰氏阴性细菌的独特结构特征。位于..桶内的..桶外膜蛋白(OMP)发挥许多重要的细胞功能。由于这些蛋白质的正确折叠和组装对于细胞活力至关重要,因此革兰氏阴性细菌拥有一种专门的蛋白质机器,称为BAM(β-桶组装机器)复合物,可以催化OMP的折叠和膜插入。在大肠杆菌中,BAM复合物由五种蛋白质组成:一种β-桶状膜蛋白(BamA)和四种脂蛋白-BamB,BamC,BamD和BamE。尚未清楚了解各个组件的作用以及如何将其排列到BAM复合物中以共同发挥作用。;在本论文研究过程中,我确定了大肠杆菌BamB,BamC,BamE和BamCD亚复合物的结构。这些保守结构的保守残基和分子表面性质的分析有助于鉴定每个脂蛋白上潜在的蛋白-蛋白相互作用位点。例如,BamC具有两个“螺旋形握持”域,它们的形状理想地适合于容纳α螺旋。另一方面,BamB具有β螺旋桨折叠,可能会通过β增强与BamA或底物发生相互作用,这种相互作用是通过添加β链增加β折叠来增强先前存在的β折叠的一种相互作用方式。将所解决的结构与其具有已知功能的结构同源物进行比较,也为每种脂蛋白的功能作用提供了重要线索。例如,BamD结构与过氧化物酶体靶向信号受体PEX5的结合口袋非常相似,表明BamD具有类似的底物识别功能。有趣的是,我们的BamCD复杂结构表明BamD的假定底物结合口袋被BamC保守的非结构化N末端区域结合和封闭。这表明BamC可能具有调控功能。从本论文项目获得的结构和相互作用数据有助于更好地理解BAM复杂结构,并为基于结构的假设驱动的未来研究提供了平台。

著录项

  • 作者

    Kim, Kelly H.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Biology Microbiology.;Biology General.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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