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Exploring the relationship between lipoprotein mislocalization and activation of the Rcs signal transduction system in Escherichia coli

机译:探讨大肠杆菌中脂蛋白错误分配和RCS信号转导系统的关系

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The Rcs phosphorelay signal transduction system controls genes for capsule production and many other envelope-related functions and is implicated in biofilm formation. We investigated the activation of the Rcs system in a pgsA null mutant of Escherichia coli, which completely lacks the major acidic phospholipids phosphatidylglycerol and cardiolipin. We found that the Rcs activation, and consequent thermosensitivity, were suppressed by overexpression of the lgt gene, encoding diacylglyceryltransferase, which catalyses the modification of prolipoproteins that is the first step in the maturation and localization process of lipoproteins, and is a prerequisite for the later steps. The outer-membrane lipoprotein RcsF is an essential component of Rcs signalling. This lipoprotein was poorly localized to the outer membrane in the pgsA null mutant, probably because of the absence of phosphatidylglycerol, the major donor of diacylglycerol in the Lgt reaction. Even in a pgsA+ background, the Rcs system was activated when RcsF was mislocalized to the inner membrane by alteration of the residues at positions 2 and 3 of its mature form to inner-membrane retention signals, or when it was mislocalized to the periplasm by fusing the mature form to maltose-binding protein. These results suggest that RcsF functions as a ligand for RcsC in activating Rcs signalling. Mislocalized versions of RcsF still responded to mutations pgsA, mdoH and tolB, further activating the Rcs system, although the rfaP mutation barely caused activation. It seems that RcsF must be localized in the outer membrane to respond effectively to stimuli from outside the cell.
机译:RCS磷酸磷光素信号转导系统控制胶囊生产和许多其他外壳相关功能的基因,并涉及生物膜形成。我们研究了在大肠杆菌的PGSA NULL突变体中的RCS系统的激活,其完全缺乏主要酸性磷脂磷脂酰甘油和心癫痫素。我们发现RCS激活和随后的热敏感性被LGT基因的过表达抑制,编码二酰基甘油糖酶,其催化脂蛋白的改性,这是脂蛋白的成熟和定位过程中的第一步,并且是后来的先决条件脚步。外膜脂蛋白RCSF是RCS信号传导的必要组分。该脂蛋白在PGSA零突变体中局部定位于外膜,可能是由于不存在磷脂酰甘油,在LGT反应中的二酰基甘油的主要供体。即使在PGSA +背景中,当RCSF通过在其成熟形式的位置2和3的残留物中损坏到内膜时,RCS系统也被激活到内膜保持信号,或者通过熔断将其误报到PERILSASM时成熟的形式与麦芽糖结合蛋白质。这些结果表明RCSF在激活RCS信令时用作RCSC的配体。 rCSF的错误分析版本仍然响应突变PGSA,MDOH和TOLB,进一步激活RCS系统,尽管RFAP突变几乎没有引起活化。似乎RCSF必须在外膜中定位,以有效地响应来自细胞外的刺激。

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