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包膜应激反应对磷脂酰丝氨酸脱羧酶表达的双重调控

Dual Regulation of Phosphatidylserine Decarboxylase Expression by Envelope Stress Responses.

作者信息

Hassoun Yasmine, Bartoli Julia, Wahl Astrid, Viala Julie Pamela, Bouveret Emmanuelle

机构信息

LISM, Institut de Microbiologie de la Méditerranée, UMR 7255, CNRS and Aix-Marseille Université, Marseille, France.

SAMe Unit, UMR 2001, Microbiology Department, Pasteur Institute, Paris, France.

出版信息

Front Mol Biosci. 2021 May 7;8:665977. doi: 10.3389/fmolb.2021.665977. eCollection 2021.

Abstract

Bacteria adapt to versatile environments by modulating gene expression through a set of stress response regulators, alternative Sigma factors, or two-component systems. Among the central processes that must be finely tuned is membrane homeostasis, including synthesis of phospholipids (PL). However, few genetic regulations of this process have been reported. We have previously shown that the gene coding the first step of PL synthesis is regulated by σ and ppGpp, and that the BasRS (PmrAB) two component system controls the expression of the DgkA PL recycling enzyme. The gene coding for phosphatidylserine decarboxylase, the last step in phosphatidylethanolamine synthesis is another gene in the PL synthesis pathway susceptible of stress response regulation. Indeed, appears in transcriptome studies of the σ envelope stress Sigma factor and of the CpxAR two component system. Interestingly, this gene is presumably in operon with coding for a miniconductance mechanosensitive channel. In this study, we dissected the promoter region of the operon and studied its regulation by σ and CpxR. By artificial activation of σ and CpxRA stress response pathways, using GFP transcriptional fusion and western-blot analysis of Psd and MscM enzyme production, we showed that the operon is under the control of two distinct promoters. One is activated by σ, the second is activated by CpxRA and also responsible for basal expression of the operon. The fact that the phosphatidylethanolamine synthesis pathway is controlled by envelope stress responses at both its first and last steps might be important for adaptation of the membrane to envelope perturbations.

摘要

细菌通过一组应激反应调节因子、替代西格玛因子或双组分系统来调节基因表达,从而适应多种环境。其中必须精细调节的核心过程之一是膜稳态,包括磷脂(PL)的合成。然而,关于这一过程的遗传调控报道较少。我们之前已经表明,编码PL合成第一步的基因受σ和ppGpp调控,并且BasRS(PmrAB)双组分系统控制DgkA PL循环酶的表达。编码磷脂酰丝氨酸脱羧酶(磷脂酰乙醇胺合成的最后一步)的基因是PL合成途径中另一个易受应激反应调控的基因。事实上,它出现在σ包膜应激西格玛因子和CpxAR双组分系统的转录组研究中。有趣的是,该基因可能与编码一种小电导机械敏感通道的基因在操纵子中。在本研究中,我们剖析了该操纵子的启动子区域,并研究了其受σ和CpxR的调控。通过人工激活σ和CpxRA应激反应途径,利用绿色荧光蛋白转录融合以及对Psd和MscM酶产生进行蛋白质免疫印迹分析,我们表明该操纵子受两个不同启动子的控制。一个由σ激活,另一个由CpxRA激活,并且也负责该操纵子的基础表达。磷脂酰乙醇胺合成途径在其第一步和最后一步都受包膜应激反应控制,这一事实可能对膜适应包膜扰动很重要。

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