首页> 外文期刊>Molecular Microbiology >INTERACTIONS OF THE COMPONENTS OF THE GENERAL SECRETION PATHWAY - ROLE OF PSEUDOMONAS AERUGINOSA TYPE IV PILIN SUBUNITS IN COMPLEX FORMATION AND EXTRACELLULAR PROTEIN SECRETION
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INTERACTIONS OF THE COMPONENTS OF THE GENERAL SECRETION PATHWAY - ROLE OF PSEUDOMONAS AERUGINOSA TYPE IV PILIN SUBUNITS IN COMPLEX FORMATION AND EXTRACELLULAR PROTEIN SECRETION

机译:铜绿假单胞菌Ⅳ型蛋白亚基一般分泌途径的成分在复杂形成和细胞外蛋白分泌中的相互作用

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The general secretion pathway (GSP), found in a wide range of bacteria, is responsible for extracellular targeting of a subset of proteins from the periplasm, In Pseudomonas aeruginosa, the GSP requires the participation of 12 proteins, of which XcpT, XcpU, XcpV, XcpW are homologues of PilA, the major subunit of type IV pili, The interaction between the pilin-like Xcp proteins was investigated using bifunctional crosslinking reagents. Cross-linking analysis of whole cells of wild-type P. aeruginosa, followed by immunoblot analysis, revealed a 34-kDa XcpT-containing complex, This complex was shown to consist of XcpT/PilA heterodimers, The role of PilA in the GSP was examined, using P. aeruginosa mutants in the pilA gene, or in rpoN, a gene regulating pilA expression, Each mutant showed a significant reduction in the efficiency of extracellular protein secretion, and this defect could be restored by expression of the cloned pilA gene in the mutant cells, The formation of the PilA/XcpT complex did not require XcpR or XcpQ, two other components of the secretion machinery, nor did it require the pilus biogenesis factors PilB and PilC. The dimeric XcpT/PilA complex was also formed in a pilD mutant, which lacks the leader peptidase enzyme, demonstrating that the leader peptide at the N-terminus or PilA or XcpT did not have to be removed for the dimerization to occur, XcpW and XcpU can also be crosslinked to form dimeric complexes with PilA. When expression of XcpT is increased, its homodimers, as well as XcpT/XcpW heterodimers, can be detected, Finally, an oligohistidine-tagged XcpT was shown to form stoichiometric complexes with PilA, and with XcpT, U, V and W. These dimers were co-purified by nickel-affinity chromatography. The results of this study suggest that XcpT can form heterodimers with PilA, and Xcp U, V and W, which may be assembly intermediates of the secretion apparatus. Alternatively, these may represent dynamic intermediates that facilitate protein secretion by continuous association and dissociation. The requirement for PilA for efficient protein secretion argues for a critical role played by PilA in two related processes during P. aeruginosa infections: formation of an adhesive pilus organelle and secretion of exoenzymes. [References: 41]
机译:广泛的细菌中存在的一般分泌途径(GSP)负责将细胞质中的一部分蛋白质进行细胞外靶向。在铜绿假单胞菌中,GSP需要12种蛋白质的参与,其中XcpT,XcpU,XcpV ,XcpW是IV型菌毛的主要亚基PilA的同源物,使用双功能交联剂研究了菌毛状Xcp蛋白之间的相互作用。对野生型铜绿假单胞菌的整个细胞进行交联分析,然后进行免疫印迹分析,发现含有34 kDa的XcpT复合物,该复合物由XcpT / PilA异二聚体组成,PilA在GSP中的作用是使用pilA基因或调节pilA表达的基因rpoN中的铜绿假单胞菌突变体进行了研究,每个突变体均显示出胞外蛋白分泌效率的显着降低,并且该缺陷可以通过克隆的pilA基因的表达得以修复。 PilA / XcpT复合物的形成不需要XcpR或XcpQ,这是分泌机器的另外两个组件,也不需要菌毛生物发生因子PilB和PilC。在pilD突变体中也形成了二聚体XcpT / PilA复合物,该突变体缺少前导肽酶,表明在N末端或PilA或XcpT的前导肽不必去除即可发生二聚化,即XcpW和XcpU。也可以与PilA交联形成二聚体复合物。当XcpT的表达增加时,可以检测到其同二聚体以及XcpT / XcpW异二聚体。最后,标记有低聚组氨酸的XcpT与PilA以及XcpT,U,V和W形成化学计量的复合物。通过镍亲和色谱法共同纯化。这项研究的结果表明,XcpT可以与PilA形成异源二聚体,而Xcp U,V和W可能是分泌设备的组装中间体。或者,这些可以代表通过连续缔合和解离促进蛋白质分泌的动态中间体。有效的蛋白质分泌对PilA的要求证明了PilA在铜绿假单胞菌感染过程中的两个相关过程中起着至关重要的作用:粘附性菌毛细胞器的形成和外酶的分泌。 [参考:41]

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