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首页> 外文期刊>Applied and Environmental Microbiology >Transcriptional Regulator LsrB of Sinorhizobium meliloti Positively Regulates the Expression of Genes Involved in Lipopolysaccharide Biosynthesis
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Transcriptional Regulator LsrB of Sinorhizobium meliloti Positively Regulates the Expression of Genes Involved in Lipopolysaccharide Biosynthesis

机译:苜蓿中华根瘤菌的转录调节因子LsrB积极调节参与脂多糖生物合成的基因的表达。

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Rhizobia induce nitrogen-fixing nodules on host legumes, which is important in agriculture and ecology. Lipopolysaccharide (LPS) produced by rhizobia is required for infection or bacteroid survival in host cells. Genes required for LPS biosynthesis have been identified in several Rhizobium species. However, the regulation of their expression is not well understood. Here, Sinorhizobium meliloti LsrB, a member of the LysR family of transcriptional regulators, was found to be involved in LPS biosynthesis by positively regulating the expression of the lrp3-lpsCDE operon. An lsrB in-frame deletion mutant displayed growth deficiency, sensitivity to the detergent sodium dodecyl sulfate, and acidic pH compared to the parent strain. This mutant produced slightly less LPS due to lower expression of the lrp3 operon. Analysis of the transcriptional start sites of the lrp3 and lpsCDE gene suggested that they constitute one operon. The expression of lsrB was positively autoregulated. The promoter region of lrp3 was specifically precipitated by anti-LsrB antibodies in vivo. The promoter DNA fragment containing TN11A motifs was bound by the purified LsrB protein in vitro. These new findings suggest that S. meliloti LsrB is associated with LPS biosynthesis, which is required for symbiotic nitrogen fixation on some ecotypes of alfalfa plants.
机译:根瘤菌在宿主豆科植物上诱导固氮根瘤,这在农业和生态学中很重要。根瘤菌产生的脂多糖(LPS)是宿主细胞中感染或类细菌存活所必需的。 LPS生物合成所需的基因已在几种根瘤菌中鉴定出来。但是,对其表达的调控还不十分了解。在这里,发现苜蓿中华根瘤菌LsrsR家族的转录调节因子的成员,通过积极调节lrp3-lpsCDE操纵子的表达,参与了LPS的生物合成。与亲本菌株相比,一个lsrB框内缺失突变体显示出生长缺陷,对去污剂十二烷基硫酸钠的敏感性和酸性pH。由于lrp3操纵子的较低表达,该突变体产生的LPS略少。 Lrp3和lpsCDE基因的转录起始位点的分析表明,它们构成一个操纵子。 lsrB的表达呈正向自调控。 lrp3的启动子区域在体内被抗LsrB抗体特异性沉淀。含有TN11A基序的启动子DNA片段在体外与纯化的LsrB蛋白结合。这些新发现表明,苜蓿链球菌LsrB与LPS生物合成有关,这是苜蓿植物某些生态型上共生固氮所需的。

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