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Pal 耗竭导致过度囊泡化,并影响博德特氏菌的细胞形态和外膜脂质不对称性。

Pal depletion results in hypervesiculation and affects cell morphology and outer-membrane lipid asymmetry in bordetellae.

机构信息

Section Molecular Microbiology, Department of Biology, Faculty of Science, Utrecht University, Utrecht, the Netherlands; Institute of Biomembranes, Utrecht University, Utrecht, the Netherlands.

Section Molecular Microbiology, Department of Biology, Faculty of Science, Utrecht University, Utrecht, the Netherlands.

出版信息

Res Microbiol. 2022 May-Jun;173(4-5):103937. doi: 10.1016/j.resmic.2022.103937. Epub 2022 Mar 3.

Abstract

Current vaccines against Bordetella pertussis do not prevent colonization and transmission of the bacteria, and vaccine-induced immunity wanes rapidly. Besides, efficacy of vaccines for Bordetella bronchiseptica remains unclear. Novel vaccines could be based on outer-membrane vesicles (OMVs), but vesiculation of bordetellae needs to be increased for cost-effective vaccine production. Here, we focused on increasing OMV production by reducing the anchoring of the outer membrane to the peptidoglycan layer. Inactivation of rmpM, tolR, and pal failed, presumably because their products are essential in bordetellae. Conditional pal mutants were constructed, which were hypervesiculating under Pal-depletion conditions. SDS-PAGE and Western blot analyses showed that the protein composition of OMVs produced under Pal-depletion conditions resembled that of the outer membrane but differed from that of OMVs released by the wild type. Pal depletion affected the cell morphology and appeared to increase the amounts of cell-surface-exposed phospholipids, possibly reflecting a role for the Tol-Pal system in retrograde phospholipid transport. We also identified additional lipoproteins in bordetellae with a putative peptidoglycan-anchoring domain. However, their inactivation did not influence OMV production. We conclude that the conditional pal mutants could be valuable for the development of OMV-based vaccines.

摘要

目前针对百日咳博德特氏菌的疫苗不能预防细菌的定植和传播,并且疫苗诱导的免疫力迅速减弱。此外,百白破疫苗的疗效仍不清楚。新型疫苗可以基于外膜囊泡(OMV),但为了实现具有成本效益的疫苗生产,需要增加博德特氏菌的囊泡化。在这里,我们专注于通过减少外膜与肽聚糖层的锚定来增加 OMV 的产量。rmpM、tolR 和 pal 的失活失败了,大概是因为它们的产物在博德特氏菌中是必不可少的。构建了条件性 pal 突变体,在 Pal 耗尽条件下它们会过度囊泡化。SDS-PAGE 和 Western blot 分析表明,在 Pal 耗尽条件下产生的 OMV 的蛋白质组成类似于外膜,但与野生型释放的 OMV 不同。Pal 耗尽会影响细胞形态,似乎会增加细胞表面暴露的磷脂量,这可能反映了 Tol-Pal 系统在逆行磷脂转运中的作用。我们还鉴定了具有潜在肽聚糖锚定结构域的博德特氏菌中的其他脂蛋白。然而,它们的失活并不影响 OMV 的产生。我们得出结论,条件性 pal 突变体可能对基于 OMV 的疫苗的开发具有重要价值。

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