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必需脂多糖转运蛋白LptA的突变与抑制子分析揭示了克服大肠杆菌严重外膜通透性缺陷的策略。

Mutation and Suppressor Analysis of the Essential Lipopolysaccharide Transport Protein LptA Reveals Strategies To Overcome Severe Outer Membrane Permeability Defects in Escherichia coli.

作者信息

Falchi Federica A, Maccagni Elisa A, Puccio Simone, Peano Clelia, De Castro Cristina, Palmigiano Angelo, Garozzo Domenico, Martorana Alessandra M, Polissi Alessandra, Dehò Gianni, Sperandeo Paola

机构信息

Dipartimento di Bioscienze, Università degli Studi di Milano, Milan, Italy.

Dipartimento di Scienze Farmacologiche e Biomolecolari, Università degli Studi di Milano, Milan, Italy.

出版信息

J Bacteriol. 2017 Dec 20;200(2). doi: 10.1128/JB.00487-17. Print 2018 Jan 15.

Abstract

In Gram-negative bacteria, lipopolysaccharide (LPS) contributes to the robust permeability barrier of the outer membrane (OM), preventing the entry of toxic molecules, such as detergents and antibiotics. LPS is transported from the inner membrane (IM) to the OM by the Lpt multiprotein machinery. Defects in LPS transport compromise LPS assembly at the OM and result in increased antibiotic sensitivity. LptA is a key component of the Lpt machine that interacts with the IM protein LptC and chaperones LPS through the periplasm. We report here the construction of , a quadruple mutant in four conserved amino acids potentially involved in LPS or LptC binding. Although viable, the mutant displays increased sensitivity to several antibiotics (bacitracin, rifampin, and novobiocin) and the detergent SDS, suggesting that affects LPS transport. Indeed, is defective in Lpt complex assembly, and its lipid A carries modifications diagnostic of LPS transport defects. We also selected and characterized two phenotypic bacitracin-resistant suppressors of One mutant, in which only bacitracin sensitivity is suppressed, harbors a small in-frame deletion in , which codes for an OM lipoprotein involved in maintaining OM asymmetry by reducing accumulation of phospholipids in the outer leaflet. The other mutant, in which bacitracin, rifampin, and SDS sensitivity is suppressed, harbors an additional amino acid substitution in LptA41 and a nonsense mutation in , encoding a glycosyltransferase involved in periplasmic membrane-derived oligosaccharide synthesis. Characterization of the suppressor mutants highlights different strategies adopted by the cell to overcome OM defects caused by impaired LPS transport. Lipopolysaccharide (LPS) is the major constituent of the outer membrane (OM) of most Gram-negative bacteria, forming a barrier against antibiotics. LPS is synthesized at the inner membrane (IM), transported across the periplasm, and assembled at the OM by the multiprotein Lpt complex. LptA is the periplasmic component of the Lpt complex, which bridges IM and OM and ferries LPS across the periplasm. How the cell coordinates the processes involved in OM biogenesis is not completely understood. We generated a mutant partially defective in that exhibited increased sensitivity to antibiotics and selected for suppressors of the mutant. The analysis of two independent suppressors revealed different strategies adopted by the cell to overcome defects in LPS biogenesis.

摘要

在革兰氏阴性菌中,脂多糖(LPS)有助于外膜(OM)形成强大的渗透屏障,阻止诸如去污剂和抗生素等有毒分子进入。LPS通过Lpt多蛋白机制从内膜(IM)转运至OM。LPS转运缺陷会损害其在OM处的组装,并导致抗生素敏感性增加。LptA是Lpt机制的关键组分,它与IM蛋白LptC相互作用,并通过周质护送LPS。我们在此报告了 的构建,这是一个在四个可能参与LPS或LptC结合的保守氨基酸处发生的四重突变体。尽管该突变体能够存活,但它对几种抗生素(杆菌肽、利福平、新生霉素)和去污剂SDS的敏感性增加,这表明 影响LPS转运。事实上, 在Lpt复合物组装方面存在缺陷,并且其脂质A带有诊断LPS转运缺陷的修饰。我们还筛选并鉴定了 的两个表型为杆菌肽抗性的抑制子。其中一个突变体仅杆菌肽敏感性得到抑制,它在 中存在一个小的框内缺失, 编码一种OM脂蛋白,通过减少外小叶中磷脂的积累来维持OM不对称性。另一个突变体中杆菌肽、利福平和SDS敏感性均得到抑制,它在LptA41中存在一个额外的氨基酸替换以及在 中存在一个无义突变, 编码一种参与周质膜衍生寡糖合成的糖基转移酶。对抑制子突变体的表征突出了细胞为克服由LPS转运受损引起的OM缺陷所采用的不同策略。脂多糖(LPS)是大多数革兰氏阴性菌外膜(OM)的主要成分,形成对抗生素的屏障。LPS在内膜(IM)合成,穿过周质进行转运,并通过多蛋白Lpt复合物在OM处组装。LptA是Lpt复合物的周质组分,它连接IM和OM,并将LPS运送穿过周质。细胞如何协调参与OM生物合成的过程尚未完全了解。我们生成了一个在 方面存在部分缺陷的突变体,该突变体对抗生素的敏感性增加,并筛选出了该突变体的抑制子。对两个独立抑制子的分析揭示了细胞为克服LPS生物合成缺陷所采用的不同策略。

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