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鉴定出酿脓链球菌中一种新型阳离子糖脂,该糖脂有助于细菌进入大脑并引发脑膜炎。

Identification of a novel cationic glycolipid in Streptococcus agalactiae that contributes to brain entry and meningitis.

机构信息

Department of Biological Sciences, The University of Texas at Dallas, Richardson, Texas, United States of America.

Department of Immunology and Microbiology, University of Colorado School of Medicine, Aurora, Colorado, United States of America.

出版信息

PLoS Biol. 2022 Feb 18;20(2):e3001555. doi: 10.1371/journal.pbio.3001555. eCollection 2022 Feb.

Abstract

Bacterial membrane lipids are critical for membrane bilayer formation, cell division, protein localization, stress responses, and pathogenesis. Despite their critical roles, membrane lipids have not been fully elucidated for many pathogens. Here, we report the discovery of a novel cationic glycolipid, lysyl-glucosyl-diacylglycerol (Lys-Glc-DAG), which is synthesized in high abundance by the bacterium Streptococcus agalactiae (Group B Streptococcus, GBS). To our knowledge, Lys-Glc-DAG is more positively charged than any other known lipids. Lys-Glc-DAG carries 2 positive net charges per molecule, distinct from the widely described lysylated phospholipid lysyl-phosphatidylglycerol (Lys-PG) that carries one positive net charge due to the presence of a negatively charged phosphate moiety. We use normal phase liquid chromatography (NPLC) coupled with electrospray ionization (ESI) high-resolution tandem mass spectrometry (HRMS/MS) and genetic approaches to determine that Lys-Glc-DAG is synthesized by the enzyme MprF in GBS, which covalently modifies the neutral glycolipid Glc-DAG with the cationic amino acid lysine. GBS is a leading cause of neonatal meningitis, which requires traversal of the endothelial blood-brain barrier (BBB). We demonstrate that GBS strains lacking mprF exhibit a significant decrease in the ability to invade BBB endothelial cells. Further, mice challenged with a GBSΔmprF mutant developed bacteremia comparably to wild-type (WT) infected mice yet had less recovered bacteria from brain tissue and a lower incidence of meningitis. Thus, our data suggest that Lys-Glc-DAG may contribute to bacterial uptake into host cells and disease progression. Importantly, our discovery provides a platform for further study of cationic lipids at the host-pathogen interface.

摘要

细菌膜脂质对于膜双层形成、细胞分裂、蛋白质定位、应激反应和发病机制至关重要。尽管它们具有关键作用,但许多病原体的膜脂质尚未得到充分阐明。在这里,我们报告了一种新型阳离子糖脂,赖氨酸-葡萄糖基-二酰基甘油(Lys-Glc-DAG)的发现,该糖脂由细菌酿脓链球菌(B 组链球菌,GBS)大量合成。据我们所知,Lys-Glc-DAG 的正电荷比任何其他已知脂质都多。Lys-Glc-DAG 每个分子带有 2 个正净电荷,与广泛描述的带一个正净电荷的赖氨酸化磷脂酰甘油(Lys-PG)不同,由于存在带负电荷的磷酸部分,Lys-PG 只带有一个正净电荷。我们使用正相液相色谱(NPLC)与电喷雾电离(ESI)高分辨率串联质谱(HRMS/MS)和遗传方法相结合,确定 Lys-Glc-DAG 是由 GBS 中的酶 MprF 合成的,它将中性糖脂 Glc-DAG 与带正电荷的氨基酸赖氨酸共价修饰。GBS 是导致新生儿脑膜炎的主要原因,需要穿过内皮血脑屏障(BBB)。我们证明,缺乏 mprF 的 GBS 菌株在侵袭 BBB 内皮细胞的能力上显著降低。此外,用 GBSΔmprF 突变体感染的小鼠与野生型(WT)感染的小鼠相比,血液中的细菌数量相当,但从脑组织中恢复的细菌数量较少,脑膜炎的发生率也较低。因此,我们的数据表明 Lys-Glc-DAG 可能有助于细菌进入宿主细胞和疾病进展。重要的是,我们的发现为进一步研究宿主-病原体界面的阳离子脂质提供了一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efbb/8893666/9f546c685862/pbio.3001555.g001.jpg

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