State Key Laboratory of Molecular Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.
Acta Biochim Biophys Sin (Shanghai). 2012 Apr;44(4):323-9. doi: 10.1093/abbs/gms002. Epub 2012 Feb 15.
The nodFEL and nodMNT operons in Rhizobium leguminosarum biovar viciae are transcribed in the same orientation and induced by NodD in response to flavonoids secreted by legumes. In the narrow intergenic region between nodFEL and nodMNT, we identified a small gene divergently transcribed from nodM to the 3' end of nodL. Unlike the promoters upstream of nodF and nodM, the promoter of this gene is constitutively expressed. It appeared that its promoter might partially overlap with that of nodM and its expression was repressed by nodD. A deletion mutation was made and proteins produced by the mutant were compared with those by wild-type using 2D gel electrophoresis. Several protein differences were identified suggesting that this small gene influences the expression or stability of these proteins. However, the mutant nodulated its host plant (pea) normally.
根瘤菌属中豌豆根瘤菌生物变种的 nodFEL 和 nodMNT 操纵子以相同的方向转录,并响应豆科植物分泌的类黄酮由 NodD 诱导。在 nodFEL 和 nodMNT 之间狭窄的基因间区域,我们鉴定出一个从 nodM 到 nodL 3' 端反方向转录的小基因。与 nodF 和 nodM 上游的启动子不同,这个基因的启动子是组成型表达的。似乎它的启动子可能部分与 nodM 的启动子重叠,并且它的表达受 nodD 抑制。进行了缺失突变,并使用 2D 凝胶电泳比较突变体和野生型产生的蛋白质。鉴定出几种蛋白质差异表明,该小基因影响这些蛋白质的表达或稳定性。然而,突变体仍能正常结瘤其宿主植物(豌豆)。