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首页> 外文期刊>Molecular Microbiology >Isopeptide bonds of the major pilin protein BcpA influence pilus structure and bundle formation on the surface of Bacillus cereus
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Isopeptide bonds of the major pilin protein BcpA influence pilus structure and bundle formation on the surface of Bacillus cereus

机译:主要菌毛蛋白BcpA的异肽键影响蜡状芽孢杆菌表面的菌毛结构和束形成

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摘要

Bacillus cereus strains elaborate pili on their surface using a mechanism of sortase-mediated cross-linking of major and minor pilus components. Here we used a combination of electron microscopy and atomic force microscopy to visualize these structures. Pili occur as single, double or higher order assemblies of filaments formed from monomers of the major pilin, BcpA, capped by the minor pilin, BcpB. Previous studies demonstrated that within assembled pili, four domains of BcpA - CNA 1, CNA 2, XNA and CNA 3- each acquire intramolecular lysine-asparagine isopeptide bonds formed via catalytic glutamic acid or aspartic acid residues. Here we showed that mutants unable to form the intramolecular isopeptide bonds in the CNA 2 or CNA 3 domains retain the ability to form pilus bundles. A mutant lacking the CNA 1 isopeptide bond assembled deformed pilin subunits that failed to associate as bundles. X-ray crystallography revealed that the BcpA variant Asp 312Ala, lacking an aspartyl catalyst, did not generate the isopeptide bond within the jelly-roll structure of XNA. The Asp 312Ala mutant was also unable to form bundles and promoted the assembly of deformed pili. Thus, structural integrity of the CNA 1 and XNA domains are determinants for the association of pili into higher order bundle structures and determine native pilus structure.
机译:蜡状芽孢杆菌菌株利用分选酶介导的主要和次要菌毛成分的交联机制在其表面形成菌毛。在这里,我们结合使用电子显微镜和原子力显微镜来可视化这些结构。菌毛以单毛,双毛或更高阶的细丝组装形式出现,这些细丝由主要菌毛蛋白BcpA的单体形成,并被次要菌毛蛋白BcpB覆盖。先前的研究表明,在组装的菌毛中,BcpA-CNA 1,CNA 2,XNA和CNA 3-的四个域各自获得通过催化谷氨酸或天冬氨酸残基形成的分子内赖氨酸-天冬酰胺异肽键。在这里,我们显示了无法在CNA 2或CNA 3域中形成分子内异肽键的突变体保留了形成菌毛束的能力。缺乏CNA 1异肽键的突变体组装变形pilin亚基,无法结合成束。 X射线晶体学显示,缺乏天冬氨酰催化剂的BcpA变体Asp 312Ala没有在XNA的胶卷结构内产生异肽键。 Asp 312Ala突变体也无法形成束并促进变形菌毛的组装。因此,CNA 1和XNA域的结构完整性是将菌毛结合成更高阶束结构并确定天然菌毛结构的决定因素。

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