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Spheres of influence:Porphyromonas gingivalisouter membrane vesicles

机译:影响的球体:卟啉龙位于膜膜囊泡

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摘要

Outer membrane vesicles (OMVs) are asymmetrical single bilayer membranous nanostructures produced by Gram-negative bacteria important for bacterial interaction with the environment. Porphyromonas gingivalis, a keystone pathogen associated with chronic periodontitis, produces OMVs that act as a virulence factor secretion system contributing to its pathogenicity. Despite their biological importance, the mechanisms of OMV biogenesis have not been fully elucidated. The ~14 times more curvature of the OMV membrane than cell outer membrane (OM) indicates that OMV biogenesis requires energy expenditure for significant curvature of the OMV membrane. In P. gingivalis, we propose that this may be achieved by upregulating the production of certain inner or outer leaflet lipids, which causes localized outward curvature of the OM. This results in selection of anionic lipopolysaccharide (A-LPS) and associated C-terminal domain (CTD) -family proteins on the outer surface due to their ability to accommodate the curvature. Deacylation of A-LPS may further enable increased curvature leading to OMV formation. Porphyromonas gingivalis OMVs that are selectively enriched in CTD-family proteins, largely the gingipains, can support bacterial coaggregation, promote biofilm development and act as an intercessor for the transport of non-motile bacteria by motile bacteria. The P. gingivalis OMVs are also believed to contribute to host interaction and colonization, evasion of immune defense mechanisms, and destruction of periodontal tissues. They may be crucial for both micro- and macronutrient capture, especially heme and probably other assimilable compounds for its own benefit and that of the wider biofilm community.
机译:外膜囊泡(OMV)是由革兰氏阴性细菌产生的不对称单双层膜纳米结构,对于细菌与环境进行细菌相互作用。 Porphyromonas Gingivalis是一种与慢性牙周炎相关的梯形病原体,产生omv,其作为一种有助于其致病性的毒力因子分泌系统。尽管他们的生物重要性,但OMV生物生成的机制尚未完全阐明。 OMV膜的曲率比细胞外膜(OM)更多的〜14倍表明OMV生物生成需要用于OMV膜的显着曲率的能量消耗。在P. Gingivalis中,我们提出了这可以通过上调某些内或外叶脂质的产生来实现,这导致OM的局部外向曲率。这导致在外表面上选择阴离子脂多糖(A-LPS)和相关的C末端结构域(CTD) - 细胞蛋白,其由于它们适应曲率的能力。 A-LP的脱酰化可以进一步使得能够增加导致OMV形成的曲率。在CTD-Family蛋白中选择性地富集的卟啉核苷酸OMV在很大程度上是Gingipains,可支持细菌共grgation,促进生物膜发育,并作为运动细菌运输非运动细菌的反体。也认为P.Gingivalis omvs有助于宿主相互作用和定植,免疫防御机制的逃避和破坏牙周组织。它们可能对微量和Macronurient捕获,特别是血红素,以及可能是其自身的益处和更广泛的生物膜界的其他可吸收的化合物。

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