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实时跟踪细菌膜泡显示抗生素暴露时增强的膜运输。

Real-time tracking of bacterial membrane vesicles reveals enhanced membrane traffic upon antibiotic exposure.

机构信息

Unité Plasticité du Génome Bactérien, Institut Pasteur, UMR3525, CNRS, Paris 75015, France.

The Biodesign Center for Biocomputing, Security and Society, and BEYOND Center for Fundamental Concepts in Science, Arizona State University, Tempe, AZ, USA.

出版信息

Sci Adv. 2021 Jan 20;7(4). doi: 10.1126/sciadv.abd1033. Print 2021 Jan.

Abstract

Membrane vesicles are ubiquitous carriers of molecular information. A broad understanding of the biological functions of membrane vesicles in bacteria remains elusive because of the imaging challenges during real-time in vivo experiments. Here, we provide a quantitative analysis of the motion of individual vesicles in living microbes using fluorescence microscopy, and we show that while vesicle free diffusion in the intercellular space is rare, vesicles mostly disperse along the bacterial surfaces. Most remarkably, when bacteria are challenged with low doses of antibiotics, vesicle production and traffic, quantified by instantaneous vesicle speeds and total traveled distance per unit time, are significantly enhanced. Furthermore, the enhanced vesicle movement is independent of cell clustering properties but rather is associated with a reduction of the density of surface appendages in response to antibiotics. Together, our results provide insights into the emerging field of spatial organization and dynamics of membrane vesicles in microcolonies.

摘要

膜泡是分子信息的普遍载体。由于实时体内实验中的成像挑战,细菌中膜泡的生物学功能仍难以捉摸。在这里,我们使用荧光显微镜对活微生物中单个囊泡的运动进行了定量分析,结果表明,虽然细胞间空间中的囊泡自由扩散很少见,但囊泡主要沿着细菌表面扩散。最显著的是,当细菌受到低剂量抗生素的挑战时,囊泡的产生和运输(通过瞬时囊泡速度和单位时间内的总行进距离来量化)显著增强。此外,增强的囊泡运动与细胞聚集特性无关,而是与抗生素作用下表面附属物密度的降低有关。总之,我们的研究结果为膜泡在微菌落中的空间组织和动力学这一新兴领域提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a467/7817102/4d7c2bc4644b/abd1033-F1.jpg

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