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脂多糖的外膜蛋白 LptO 对于 P 牙龈卟啉单胞菌 LPS 的 O-脱酰基化以及 A-LPS 和 CTD 蛋白的协调分泌和附着是必需的。

The outer membrane protein LptO is essential for the O-deacylation of LPS and the co-ordinated secretion and attachment of A-LPS and CTD proteins in Porphyromonas gingivalis.

机构信息

Oral Health Cooperative Research Centre, Melbourne Dental School, and Bio21 Institute, The University of Melbourne, Vic. 3010, Australia.

出版信息

Mol Microbiol. 2011 Mar;79(5):1380-401. doi: 10.1111/j.1365-2958.2010.07530.x. Epub 2011 Jan 18.

Abstract

Protein substrates of a novel secretion system of Porphyromonas gingivalis contain a conserved C-terminal domain (CTD) essential for secretion and attachment to the cell surface. Inactivation of lptO (PG0027) or porT produced mutants that lacked surface protease activity and an electron-dense surface layer. Both mutants showed co-accumulation of A-LPS and unmodified CTD proteins in the periplasm. Lipid profiling by mass spectrometry showed the presence of both tetra- and penta-acylated forms of mono-phosphorylated lipid A in the wild-type and porT mutant, while only the penta-acylated forms of mono-phosphorylated lipid A were found in the lptO mutant, indicating a specific role of LptO in the O-deacylation of mono-phosphorylated lipid A. Increased levels of non-phosphorylated lipid A and the presence of novel phospholipids in the lptO mutant were also observed that may compensate for the missing mono-phosphorylated tetra-acylated lipid A in the outer membrane (OM). Molecular modelling predicted LptO to adopt a β-barrel structure characteristic of an OM protein, supported by the enrichment of LptO in OM vesicles. The results suggest that LPS deacylation by LptO is linked to the co-ordinated secretion of A-LPS and CTD proteins by a novel secretion and attachment system to form a structured surface layer.

摘要

牙龈卟啉单胞菌新型分泌系统的蛋白底物含有一个保守的 C 端结构域(CTD),对于分泌和附着到细胞表面是必需的。lptO(PG0027)或 porT 的失活产生了缺乏表面蛋白酶活性和电子致密表面层的突变体。这两种突变体都表现出 A-LPS 和未经修饰的 CTD 蛋白在周质中的共同积累。通过质谱法进行脂质分析显示,野生型和 porT 突变体中存在四酰化和五酰化的单磷酸化脂质 A,而 lptO 突变体中仅发现五酰化的单磷酸化脂质 A,表明 LptO 在单磷酸化脂质 A 的 O-去酰化中具有特定作用。在 lptO 突变体中还观察到非磷酸化脂质 A 水平增加和新型磷脂的存在,这可能补偿了外膜(OM)中缺失的单磷酸化四酰化脂质 A。分子建模预测 LptO 采用β-桶结构,这是 OM 蛋白的特征,这得到了 OM 小泡中 LptO 富集的支持。结果表明,LptO 介导的 LPS 去酰化与 A-LPS 和 CTD 蛋白的协调分泌有关,通过一种新型的分泌和附着系统形成一个结构化的表面层。

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