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应激小体在营养丰富的培养基中是可有可无的。

The stressosome is dispensable in nutrient-rich media.

作者信息

Cutugno Laura, Mc Cafferty Jennifer, Pané-Farré Jan, O'Byrne Conor, Boyd Aoife

机构信息

School of Natural Sciences, University of Galway, Galway, Ireland.

Centre for Synthetic Microbiology (SYNMIKRO) and Department of Chemistry, Philipps-University Marburg, Marburg, Germany.

出版信息

Access Microbiol. 2023 Jul 13;5(7). doi: 10.1099/acmi.0.000523.v4. eCollection 2023.

Abstract

The stressosome is a protein complex that senses environmental stresses and mediates the stress response in several Gram-positive bacteria through the activation of the alternative sigma factor SigB. The stressosome locus is found in 44 % of Gram-negative isolates. However, does not possess SigB. Nonetheless, in nutrient-limited media, the stressosome modulates gene transcription and bacterial behaviour. In this work, the expression of the stressosome genes was proven during stationary phase in nutrient-rich media and co-transcription as one operonic unit of the stressosome locus and its putative downstream regulatory locus was demonstrated. The construction of a stressosome mutant lacking the genes encoding the four proteins constituting the stressosome complex (VvRsbR, VvRsbS, VvRsbT, VvRsbX) allowed us to examine the role of this complex . Extensive phenotypic characterization of the ΔRSTX mutant in nutrient-rich media showed that the stressosome does not contribute to growth of . Moreover, the stressosome did not modulate the tolerance or survival response of to the range of stresses tested, which included ethanol, hyperosmolarity, hypoxia, high temperature, acidity and oxidative stress. Furthermore, the stressosome was dispensable for motility and exoenzyme production of in nutrient-rich media. Therefore, in conclusion, although stressosome gene transcription occurs in nutrient-rich media, the stressosome neither has an essential role in stress responses of nor does it seem to modulate these activities in these conditions. We hypothesise that the stressosome is expressed in nutrient-rich conditions as a sensor complex, but that activation of the complex does not occur in this environment.

摘要

应激体是一种蛋白质复合物,可感知环境压力,并通过激活替代西格玛因子SigB在几种革兰氏阳性细菌中介导应激反应。在44%的革兰氏阴性分离株中发现了应激体基因座。然而,其不具有SigB。尽管如此,在营养受限的培养基中,应激体可调节基因转录和细菌行为。在这项研究中,已证实在营养丰富的培养基中,应激体基因在稳定期表达,并证明应激体基因座及其假定的下游调控基因座作为一个操纵子单元共同转录。构建一个缺乏编码构成应激体复合物的四种蛋白质(VvRsbR、VvRsbS、VvRsbT、VvRsbX)的基因的应激体突变体,使我们能够研究该复合物的作用。对富含营养的培养基中的ΔRSTX突变体进行广泛的表型特征分析表明,应激体对该菌的生长没有贡献。此外,应激体并未调节该菌对所测试的一系列应激的耐受性或存活反应,这些应激包括乙醇、高渗、缺氧、高温、酸性和氧化应激。此外,在营养丰富的培养基中,应激体对于该菌的运动性和胞外酶产生是可有可无的。因此,总之,尽管应激体基因转录发生在营养丰富的培养基中,但应激体在该菌的应激反应中既没有重要作用,在这些条件下似乎也不调节这些活动。我们推测,应激体在营养丰富的条件下作为一种传感复合物表达,但在这种环境中该复合物不会被激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c7c/10436020/736a2f306f3b/acmi-5-523.v4-g001.jpg

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