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大肠杆菌细胞中蛋白质的定位:细胞质膜蛋白 ProP、LacY、ProW、AqpZ、MscS 和 MscL 的比较。

Protein localization in Escherichia coli cells: comparison of the cytoplasmic membrane proteins ProP, LacY, ProW, AqpZ, MscS, and MscL.

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario, Canada.

出版信息

J Bacteriol. 2010 Feb;192(4):912-24. doi: 10.1128/JB.00967-09. Epub 2009 Dec 11.

Abstract

Fluorescence microscopy has revealed that the phospholipid cardiolipin (CL) and FlAsH-labeled transporters ProP and LacY are concentrated at the poles of Escherichia coli cells. The proportion of CL among E. coli phospholipids can be varied in vivo as it is decreased by cls mutations and it increases with the osmolality of the growth medium. In this report we compare the localization of CL, ProP, and LacY with that of other cytoplasmic membrane proteins. The proportion of cells in which FlAsH-labeled membrane proteins were concentrated at the cell poles was determined as a function of protein expression level and CL content. Each tagged protein was expressed from a pBAD24-derived plasmid; tagged ProP was also expressed from the chromosome. The osmosensory transporter ProP and the mechanosensitive channel MscS concentrated at the poles at frequencies correlated with the cellular CL content. The lactose transporter LacY was found at the poles at a high and CL-independent frequency. ProW (a component of the osmoregulatory transporter ProU), AqpZ (an aquaporin), and MscL (a mechanosensitive channel) were concentrated at the poles in a minority of cells, and this polar localization was CL independent. The frequency of polar localization was independent of induction (at arabinose concentrations up to 1 mM) for proteins encoded by pBAD24-derived plasmids. Complementation studies showed that ProW, AqpZ, MscS, and MscL remained functional after introduction of the FlAsH tag (CCPGCC). These data suggest that CL-dependent polar localization in E. coli cells is not a general characteristic of transporters, channels, or osmoregulatory proteins. Polar localization can be frequent and CL independent (as observed for LacY), frequent and CL dependent (as observed for ProP and MscS), or infrequent (as observed for AqpZ, ProW, and MscL).

摘要

荧光显微镜已显示,磷脂心磷脂(CL)和 FlAsH 标记的转运蛋白 ProP 和 LacY 集中在大肠杆菌细胞的两极。CL 在大肠杆菌磷脂中的比例可以在体内变化,因为 cls 突变会减少它,而渗透压的生长介质会增加它。在本报告中,我们比较了 CL、ProP 和 LacY 的定位与其他细胞质膜蛋白的定位。通过确定 FlAsH 标记的膜蛋白在细胞极浓缩的细胞比例,作为蛋白表达水平和 CL 含量的函数。每个标记的蛋白均由 pBAD24 衍生的质粒表达;标记的 ProP 也由染色体表达。渗透压感受转运蛋白 ProP 和机械敏感通道 MscS 以与细胞 CL 含量相关的频率集中在两极。乳糖转运蛋白 LacY 以高且与 CL 无关的频率出现在两极。ProW(渗透压调节转运蛋白 ProU 的组成部分)、AqpZ(水通道蛋白)和 MscL(机械敏感通道)在少数细胞中集中在两极,这种极定位与 CL 无关。极定位的频率与诱导无关(在阿拉伯糖浓度高达 1mM 时),对于由 pBAD24 衍生的质粒编码的蛋白。互补研究表明,ProW、AqpZ、MscS 和 MscL 在引入 FlAsH 标签(CCPGCC)后仍然具有功能。这些数据表明,CL 依赖性的大肠杆菌细胞中极定位不是转运蛋白、通道或渗透压调节蛋白的一般特征。极定位可以是频繁的和 CL 独立的(如 LacY 观察到的),频繁的和 CL 依赖的(如 ProP 和 MscS 观察到的),或者是不频繁的(如 AqpZ、ProW 和 MscL 观察到的)。

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