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蓝藻鱼腥藻PCC7120中LexA对多种非生物胁迫耐受性的调控

Regulation of multiple abiotic stress tolerance by LexA in the cyanobacterium Anabaena sp. strain PCC7120.

作者信息

Kumar Arvind, Kirti Anurag, Rajaram Hema

机构信息

Molecular Biology Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India; Homi Bhabha National Institute, Training School Complex, Anushakti Nagar, Trombay, Mumbai 400094, India.

Molecular Biology Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.

出版信息

Biochim Biophys Acta Gene Regul Mech. 2018 Jul 26. doi: 10.1016/j.bbagrm.2018.07.007.

Abstract

The paradigm of involvement of LexA in regulation of only SOS-response in bacteria through the down-regulation of DNA repair genes was challenged in the unicellular cyanobacterium, Synechocystis PCC6803, wherein it was originally shown not to be associated with DNA repair and later also involved in management of carbon-starvation through up-regulation of C-metabolism genes. In the filamentous cyanobacterium, Anabaena sp. strain PCC7120, global stress management role for LexA and a consensus LexA-binding box (AnLexA-box) has been established using a LexA-overexpressing recombinant strain, AnlexA. High levels of LexA rendered Anabaena cells sensitive to different DNA damage and oxidative stress-inducing agents, through the transcriptional down-regulation of the genes involved in DNA repair and alleviation of oxidative stress. LexA overexpression enhanced the ability of Anabaena to tolerate C-depletion, induced by inhibiting photosynthesis, by up-regulating genes involved in C-fixation and down-regulating those involved in C-breakdown, while maintaining the overall photosynthetic efficiency. A consensus LexA-binding box, AnLexA-box [AGT-N-ACT] was identified upstream of both up- and down-regulated genes using a subset of Anabaena genes identified on the basis of proteomic analysis of AnlexA strain along with a few DNA repair genes. A short genome search revealed the presence of AnLexA box in at least 40 more genes, with functional roles in fatty acid biosynthesis, toxin-antitoxin systems in addition to DNA repair, oxidative stress, metal tolerance and C-metabolism. Thus, Anabaena LexA modulates the tolerance to multitude of stresses through transcriptional up/down-regulation of their functional genes directly by binding to the AnLexA Box present in their promoter region.

摘要

LexA仅通过下调DNA修复基因参与细菌SOS反应调控的模式,在单细胞蓝藻集胞藻PCC6803中受到了挑战。在集胞藻中,最初发现LexA与DNA修复无关,后来又发现它通过上调碳代谢基因参与碳饥饿管理。在丝状蓝藻鱼腥藻PCC7120中,利用过表达LexA的重组菌株AnlexA,确定了LexA的全局应激管理作用以及一个共有LexA结合框(AnLexA框)。高水平的LexA通过转录下调参与DNA修复和减轻氧化应激的基因,使鱼腥藻细胞对不同的DNA损伤和氧化应激诱导剂敏感。LexA过表达通过上调参与碳固定的基因和下调参与碳分解的基因,同时维持整体光合效率,增强了鱼腥藻耐受因抑制光合作用而导致的碳耗尽的能力。利用基于AnlexA菌株蛋白质组分析鉴定的一部分鱼腥藻基因以及一些DNA修复基因,在上调和下调基因的上游都鉴定出了一个共有LexA结合框AnLexA框[AGT-N-ACT]。简短的基因组搜索显示,至少还有40个基因存在AnLexA框,这些基因除了在DNA修复、氧化应激、金属耐受性和碳代谢中发挥作用外,还在脂肪酸生物合成、毒素-抗毒素系统中发挥功能作用。因此,鱼腥藻LexA通过直接结合其启动子区域中存在AnLexA框,对功能基因进行转录上调/下调,从而调节对多种应激的耐受性。

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