Phylogeny and cross-regulation of the YjjM and LeuO transcription factors translated as multiple protein forms from one gene in Escherichia coli

Q3 Mathematics
T. Bessonova, A. A. Rybina, D. Marakulina, A. Kaznadzey, M. Gelfand, O. Ozoline, M. Tutukina
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Abstract

Until recently, no examples of the in-frame translation of several proteins from one gene in bacteria were known. The first one was the VirF transcription factor controlling pathogenicity development in Shigella flexneri and CobB sirtuin in Salmonella enterica. Recently, we observed synthesis of shortened protein products for YjjM (LgoR) and LeuO functioning as transcription factors in Escherichia coli. To determine the evolutionary factors that could lead to the appearance of alternative start codons, we performed phylogenetic analysis and showed that each protein had a unique phylogenetic history, and additional starting methionines appeared only in Enterobacteria. Using the Western-blot analysis of proteins synthesized from the Escherichia coli K-12 MG1655 chromosome with the his-tagged leuO gene two shortened variants of LeuO, corresponding to translation starting from Met34 and Met48 were detected. Synthesis of all three LeuO forms was inhibited in the absence of the yjjM gene, suggesting interplay of these transcription factors. The YjjM recognition motif revealed from the ChIP-seq data appeared to be very similar to that of LeuO, known previously. Taking this into account, we compared ChIP and SELEX data for LeuO and YjjM and found six common targets. At least five of them were confirmed to be under control of these regulators by qRT-PCR. Interestingly, the effects were more prominent during anaerobic growth at 37°C simulating conditions inside a host organism. Two genes, coding for the enterobactin transporter FepA, and a repressor of genes responsible for flagellar biosynthesis and virulence YjjQ, were repressed, mainly by YjjM, only in these conditions, while tsr coding for the chemotaxis receptor protein was more repressed under lower temperature and higher aeration.
YjjM和LeuO转录因子在大肠杆菌中的系统发育和交叉调控
直到最近,还没有人知道细菌中一个基因的几个蛋白质在框内翻译的例子。第一个是控制福氏志贺氏菌致病性发展的VirF转录因子和控制肠沙门氏菌致病性发展的CobB sirtuin转录因子。最近,我们观察到在大肠杆菌中合成了YjjM (LgoR)和LeuO作为转录因子的缩短蛋白产物。为了确定可能导致替代启动密码子出现的进化因素,我们进行了系统发育分析,结果表明每种蛋白质都有独特的系统发育历史,并且额外的启动蛋氨酸仅在肠杆菌中出现。用Western-blot方法对大肠杆菌K-12 MG1655染色体上带有his标记的leuO基因合成的蛋白进行分析,检测到两个缩短的leuO变异体,对应于Met34和Met48的翻译。在缺乏yjjM基因的情况下,所有三种LeuO形式的合成都受到抑制,这表明这些转录因子相互作用。从ChIP-seq数据中揭示的YjjM识别基序似乎与先前已知的LeuO非常相似。考虑到这一点,我们比较了LeuO和YjjM的ChIP和SELEX数据,发现了六个共同的目标。经qRT-PCR证实,其中至少有5只在这些调控因子的控制下。有趣的是,在宿主生物体内37°C模拟条件下厌氧生长时,效果更为突出。编码肠obactin转运体FepA和负责鞭毛生物合成和毒力基因YjjQ的两个基因仅在这些条件下被YjjM抑制,而编码趋化受体蛋白的tsr在低温和高通风条件下受到更多抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mathematical Biology and Bioinformatics
Mathematical Biology and Bioinformatics Mathematics-Applied Mathematics
CiteScore
1.10
自引率
0.00%
发文量
13
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