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钙信号以及钙离子对嗜麦芽窄食单胞菌多药耐药外排泵LmrS活性的调节作用的证据 。 (注:原文中“in.”后面内容不完整,此译文根据现有内容尽量完善了语义)

Evidence of Calcium Signaling and Modulation of the LmrS Multidrug Resistant Efflux Pump Activity by Ca Ions in .

作者信息

Nava Amy R, Mauricio Natalia, Sanca Angel J, Domínguez Delfina C

机构信息

Department of Interdisciplinary Health Sciences, The University of Texas at El Paso, El Paso, TX, United States.

Biology Department, El Paso Community College, El Paso, TX, United States.

出版信息

Front Microbiol. 2020 Oct 22;11:573388. doi: 10.3389/fmicb.2020.573388. eCollection 2020.

Abstract

Calcium ions (Ca) play a pivotal role in eukaryote cell signaling and regulate many physiological functions. Although a similar role for Ca in prokaryotes has been difficult to demonstrate, there is increasing evidence for Ca as a cell regulator in bacteria. The purpose of this study was to investigate Ca signaling and the effect of Ca on the s multidrug resistant efflux pump LmrS. We hypothesized that antibiotics act by increasing Ca concentrations, which in turn enhance the efflux activity of LmrS. These Ca transients were measured by luminometry in response to various antibiotics by using the photoprotein aequorin reconstituted within live bacterial cells. Efflux associated with LmrS was measured by the increase in fluorescence due to the loss of ethidium bromide (EtBr) from both cells and from cells in which the gene of was expressed. We found that addition of antibiotics to cells generated unique cytosolic Ca transients and that addition of CaCl to cells enhanced EtBr efflux whereas addition of Ca chelators or efflux pump inhibitors significantly decreased EtBr efflux from cells. We conclude that antibiotics induce a Ca mediated response through transients in cytosolic Ca, which then stimulates LmrS efflux pump.

摘要

钙离子(Ca)在真核细胞信号传导中起关键作用,并调节许多生理功能。尽管在原核生物中Ca的类似作用难以证明,但越来越多的证据表明Ca在细菌中作为细胞调节剂。本研究的目的是研究Ca信号传导以及Ca对多药耐药外排泵LmrS的影响。我们假设抗生素通过增加Ca浓度起作用,这反过来又增强了LmrS的外排活性。通过使用在活细菌细胞内重组的光蛋白水母发光蛋白,通过发光法测量响应各种抗生素的这些Ca瞬变。通过细胞和表达了的基因的细胞中溴化乙锭(EtBr)损失导致的荧光增加来测量与LmrS相关的外排。我们发现向细胞中添加抗生素会产生独特的胞质Ca瞬变,向细胞中添加CaCl可增强EtBr外排,而添加Ca螯合剂或外排泵抑制剂会显著降低细胞中EtBr的外排。我们得出结论,抗生素通过胞质Ca的瞬变诱导Ca介导的反应,然后刺激LmrS外排泵。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1206/7642317/0bb901ddb9d3/fmicb-11-573388-g001.jpg

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