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An Essential Membrane Protein Modulates the Proteolysis of LpxC to Control Lipopolysaccharide Synthesis in Escherichia coli

机译:必需的膜蛋白调节LPXC的蛋白水解,以控制脂多糖合成<命名含量含量 - 型=“属型”>大肠杆菌

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摘要

Gram-negative bacteria are surrounded by a complex cell envelope that includes two membranes. The outer membrane prevents many drugs from entering these cells and is thus a major determinant of their intrinsic antibiotic resistance. This barrier function is imparted by the asymmetric architecture of the membrane with lipopolysaccharide (LPS) in the outer leaflet and phospholipids in the inner leaflet. The LPS and phospholipid synthesis pathways share an intermediate. Proper membrane biogenesis therefore requires that the flux through each pathway be balanced. In Escherichia coli , a major control point in establishing this balance is the committed step of LPS synthesis mediated by LpxC. Levels of this enzyme are controlled through its degradation by the inner membrane protease FtsH and its presumed adapter protein LapB (YciM). How turnover of LpxC is controlled has remained unclear for many years. Here, we demonstrate that the essential protein of unknown function YejM (PbgA) participates in this regulatory pathway. Suppressors of YejM essentiality were identified in lpxC and lapB , and LpxC overproduction was shown to be sufficient to allow survival of Δ yejM mutants. Furthermore, the stability of LpxC was shown to be reduced in cells lacking YejM, and genetic and physical interactions between LapB and YejM were detected. Taken together, our results are consistent with a model in which YejM directly modulates LpxC turnover by FtsH-LapB to regulate LPS synthesis and maintain membrane homeostasis.
机译:革兰氏阴性细菌被复杂的细胞包膜包围,所述复杂的细胞包络包括两个膜。外膜可防止许多药物进入这些细胞,因此是其内在抗生素抗性的主要决定因素。该屏障功能通过膜的非对称结构赋予外叶片中的脂多糖(LPS)中的膜和内部传单中的磷脂。 LPS和磷脂合成途径共享中间体。因此,适当的膜生物发生要求通过每个途径的通量平衡。在大肠杆菌中,建立这种平衡的主要控制点是由LPXC介导的LPS合成的致力步骤。通过内膜蛋白酶Ftsh及其推定的适配器蛋白LAPB(YCIM)通过其降解来控制该酶的水平。 LPXC的营养系统是如何控制多年的营养不已。在这里,我们证明了未知功能Yejm(PBGA)的基本蛋白参与该调节途径。在LPXC和LAPB中鉴定了yeJM产物质的抑制剂,并且显示LPXC过量生产足以允许δyejm突变体的存活。此外,显示LPXC的稳定性在缺乏YEJM的细胞中,检测到雷帕和叶片之间的遗传和物理相互作用。我们的结果与yejm直接通过ftsh-lapb调节LPS合成和维持膜稳态的模型一致。

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