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Bactericidal activity of both secreted and nonsecreted microcin E492 requires the mannose permease

机译:分泌型和非分泌型微蛋白E492的杀菌活性都需要甘露糖通透酶

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摘要

Microcin E492 (MccE492) is a bactericidal protein secreted by Klebsiella pneumoniae that is active against various species of Enterobacteriaceae. Interaction of MccE492 with target cells leads to the depolarization and permeabilization of their inner membranes. Several MccE492-specific proteins are required for the maturation and secretion of active MccE492. Surprisingly, the expression of only MceA, the polypeptide backbone of MccE492, is shown here to be toxic by itself. We refer to this phenomenon as endogenous MceA bactericidal activity to differentiate it from the action of extracellularly secreted MccE492. The toxicity of endogenous MceA is enhanced by an efficient targeting to the inner membrane. However, a periplasmic intermediate state is not required for MceA toxicity. Indeed, endogenous MceA remains fully active when it is fused to thioredoxin-1, a fast-folding protein that promotes retention of the C terminus of MceA in the cytoplasm. The C-terminal domain of MccE492 is required only for delivery from the extracellular environment to the periplasm, and it is not required for inner membrane damage. A common component is absolutely essential for the bactericidal activity of both endogenous MceA and extracellular MccE492. Indeed, toxicity is strictly dependent on the presence of ManYZ, an inner membrane protein complex involved in mannose uptake. Based on these findings, we propose a new model for cell entry, inner membrane insertion, and toxic activity of MccE492.
机译:Microcin E492(MccE492)是由肺炎克雷伯氏菌(Klebsiella pneumoniae)分泌的一种杀菌蛋白,对多种肠杆菌科细菌具有活性。 MccE492与靶细胞的相互作用导致其内膜去极化和通透化。活性MccE492的成熟和分泌需要几种MccE492特异性蛋白。令人惊讶地,仅MceA(MccE492的多肽主链)的表达在此处显示本身具有毒性。我们将此现象称为内源性MceA杀菌活性,以区别于细胞外分泌MccE492的作用。内源性MceA的毒性通过有效靶向内膜而增强。但是,MceA毒性不需要周质中间状态。实际上,内源性MceA与硫氧还蛋白1融合时仍保持完全活性,硫氧还蛋白1是一种快速折叠的蛋白,可促进MceA的C末端在细胞质中的保留。 MccE492的C末端结构域仅用于从细胞外环境递送至周质,而对于内膜损伤则不需要。一个共同的成分对于内源性MceA和细胞外MccE492的杀菌活性都是绝对必要的。确实,毒性严格取决于ManYZ(一种参与甘露糖摄取的内膜蛋白复合物)的存在。基于这些发现,我们提出了细胞进入,内膜插入和MccE492毒性活性的新模型。

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