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首页> 外文期刊>The Journal of biological chemistry >Evolutionary Conservation in Biogenesis of β-Barrel Proteins Allows Mitochondria to Assemble a Functional Bacterial Trimeric Autotransporter Protein
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Evolutionary Conservation in Biogenesis of β-Barrel Proteins Allows Mitochondria to Assemble a Functional Bacterial Trimeric Autotransporter Protein

机译:β-桶蛋白生物发生的进化保护允许线粒体组装功能性细菌三聚体自耦体蛋白质

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摘要

Yersinia adhesin A (YadA) belongs to a class of bacterial adhesins that form trimeric structures. Their mature form contains a passenger domain and a C-terminal β-domain that anchors the protein in the outer membrane (OM). Little is known about how precursors of such proteins cross the periplasm and assemble into the OM. In the present study we took advantage of the evolutionary conservation in the biogenesis of β-barrel proteins between bacteria and mitochondria. We previously observed that upon expression in yeast cells, bacterial β-barrel proteins including the transmembrane domain of YadA assemble into the mitochondrial OM. In the current study we found that when expressed in yeast cells both the monomeric and trimeric forms of full-length YadA were detected in mitochondria but only the trimeric species was fully integrated into the OM. The oligomeric form was exposed on the surface of the organelle in its native conformation and maintained its capacity to adhere to host cells. The co-expression of YadA with a mitochondria-targeted form of the bacterial periplasmic chaperone Skp, but not with SurA or SecB, resulted in enhanced levels of both forms of YadA. Taken together, these results indicate that the proper assembly of trimeric autotransporter can occur also in a system lacking the lipoproteins of the BAM machinery and is specifically enhanced by the chaperone Skp.
机译:yersinia粘附粘蛋白a(yada)属于一类形成三聚体结构的细菌粘附素。它们的成熟形式含有乘客域和C末端β-结构域,其锚定外膜(OM)中的蛋白质。关于这种蛋白质的前体如何交叉周质并组装成OM的情况毫无疑问。在本研究中,我们利用了细菌和线粒体之间β-桶蛋白生物发生的进化保护。我们之前观察到,在酵母细胞中表达后,细菌β-桶蛋白,包括yada的跨膜结构域组装成线粒体OM。在目前的研究中,发现当在酵母细胞中表达时,在线粒体中检测到全长yada的单体和三聚体形式,但仅将三聚体物质完全集成到OM中。在其天然构象中暴露在细胞器的表面上,并将其粘附到宿主细胞的能力上暴露在细胞器的表面上。 YADA与细菌性周质伴侣SKP的线粒体靶向形式的联合表达,但没有SURA或SECB,导致亚田两种形式的水平增强。这些结果表明,在缺乏BAM机械的脂蛋白的系统中也可以发生三聚体自耦运动员的适当组装,并且由伴侣SKP特别增强。

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