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细菌膜泡作为一种新型策略,用于将抗微生物铋药物挤出幽门螺杆菌。

Bacterial Membrane Vesicles as a Novel Strategy for Extrusion of Antimicrobial Bismuth Drug in Helicobacter pylori.

机构信息

Institut Pasteurgrid.428999.7, Département de Microbiologie, Unité Pathogenèse de Helicobacter, CNRS UMR 6047, Paris, France.

Institut Pasteurgrid.428999.7, Unité Technologie et Service Bio-lmagerie Ultrastructurale, Paris, France.

出版信息

mBio. 2022 Oct 26;13(5):e0163322. doi: 10.1128/mbio.01633-22. Epub 2022 Sep 26.

Abstract

Bacterial antibiotic resistance is a major threat to human health. A combination of antibiotics with metals is among the proposed alternative treatments. Only one such combination is successfully used in clinics; it associates antibiotics with the metal bismuth to treat infections by Helicobacter pylori. This bacterial pathogen colonizes the human stomach and is associated with gastric cancer, killing 800,000 individuals yearly. The effect of bismuth in H. pylori treatment is not well understood in particular for sublethal doses such as those measured in the plasma of treated patients. We addressed this question and observed that bismuth induces the formation of homogeneously sized membrane vesicles (MVs) with unique protein cargo content enriched in bismuth-binding proteins, as shown by quantitative proteomics. Purified MVs of bismuth-exposed bacteria were strongly enriched in bismuth as measured by inductively coupled plasma optical emission spectrometry (ICP-OES), unlike bacterial cells from which they originate. Thus, our results revealed a novel function of MVs in bismuth detoxification, where secreted MVs act as tool to discard bismuth from the bacteria. Bismuth also induces the formation of intracellular polyphosphate granules that are associated with changes in nucleoid structure. Nucleoid compaction in response to bismuth was established by immunogold electron microscopy and refined by the first chromosome conformation capture (Hi-C) analysis of H. pylori. Our results reveal that even low doses of bismuth induce profound changes in H. pylori physiology and highlight a novel defense mechanism that involves MV-mediated bismuth extrusion from the bacteria and a probable local DNA protective response where polyphosphate granules are associated with nucleoid compaction. Bacterial resistance to antibiotics is a major threat to human health. Treatments combining antibiotics with metals were proposed to circumvent this hurdle. Only one such combination is successfully used in clinics associating antibiotics with the metal bismuth to treat infections by the human pathogen Helicobacter pylori. H. pylori causes 800,000 deaths by gastric cancer yearly. How bismuth impacts H. pylori and its response to this toxic metal were ill defined. We discovered that upon bismuth exposure, H. pylori secretes membrane vesicles that are enriched in bismuth. Bismuth also induces the formation of intracellular polyphosphate granules associated with compaction of the chromosome. Upon bismuth exposure, H. pylori displays both defense and protection mechanisms, with bismuth extrusion by vesicles and shielding of the chromosome.

摘要

细菌对抗生素的耐药性是对人类健康的主要威胁。将抗生素与金属结合是提出的替代治疗方法之一。只有一种这样的组合成功地用于临床;它将抗生素与金属铋结合起来,用于治疗幽门螺杆菌感染。这种细菌病原体在人类胃中定殖,与胃癌有关,每年导致 80 万人死亡。铋在 H. pylori 治疗中的作用,特别是对于亚致死剂量(如治疗患者血浆中测量的剂量),尚未得到很好的理解。我们解决了这个问题,观察到铋诱导形成具有独特蛋白质货物含量的均匀大小的膜囊泡 (MVs),这些货物内容物富含铋结合蛋白,这是通过定量蛋白质组学显示的。用电感耦合等离子体发射光谱法 (ICP-OES) 测量,与源自它们的细菌细胞相比,暴露于铋的细菌的纯化 MV 强烈富集铋。因此,我们的结果揭示了 MVs 在铋解毒中的新功能,其中分泌的 MVs 充当从细菌中排出铋的工具。铋还诱导形成与核区结构变化相关的细胞内多磷酸盐颗粒。用免疫金电子显微镜证实了铋诱导的核区致密化,并通过对 H. pylori 的第一个染色体构象捕获 (Hi-C) 分析进行了细化。我们的结果表明,即使低剂量的铋也会引起 H. pylori 生理学的深刻变化,并强调了一种新的防御机制,其中包括 MV 介导的铋从细菌中排出和可能的局部 DNA 保护反应,其中多磷酸盐颗粒与核区致密化相关。细菌对抗生素的耐药性是对人类健康的主要威胁。将抗生素与金属结合的治疗方法被提出以规避这一障碍。只有一种这样的组合成功地用于临床,将抗生素与金属铋结合起来治疗人类病原体幽门螺杆菌的感染。H. pylori 每年因胃癌导致 80 万人死亡。铋如何影响 H. pylori 及其对这种有毒金属的反应尚不清楚。我们发现,在暴露于铋后,H. pylori 会分泌富含铋的膜囊泡。铋还诱导形成与染色体压缩相关的细胞内多磷酸盐颗粒。在暴露于铋后,H. pylori 表现出防御和保护机制,通过囊泡排出铋和保护染色体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e06/9601102/2e72c260c3f1/mbio.01633-22-f001.jpg

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