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Interaction of a rhizobial DNA-binding protein with the promoter region of a plant leghemoglobin gene.

机译:根瘤菌DNA结合蛋白与植物豆血红蛋白基因启动子区域的相互作用。

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摘要

A nucleotide sequence was identified approximately 650 bp upstream of the Sesbania rostrata leghemoglobin gene Srglb3 start codon, which interacts specifically with a proteinaceous DNA-binding factor found in nodule extracts but not in extracts from leaves or roots. The binding site for this factor was delimited using footprinting techniques. The DNA-binding activity of this factor was found to be heat stable, dependent on divalent cations, and derived from the (infecting) Azorhizobium caulinodans bacteria or bacteroids (A. caulinodans bacterial binding factor 1, AcBBF1). A 9- to 10-kD protein was isolated from a free-living culture of A. caulinodans that co-purifies with the DNA-binding activity (A. caulinodans bacterial binding protein 1, AcBBP1) and interacts specifically with its target (S. rostrata bacterial binding site 1, SrBBS1). The amino acid sequence of the N-terminal 27 residues of AcBBP1 was determined and was found to share significant similarity (46% identity; 68% similarity) with a domain of the herpes simplex virus major DNA-binding protein infected cell protein 8 (ICP8). An insertion mutation in the SrBBS1 was found to result in a substantial reduction of the expression of a Srglb3-gus reporter gene fusion in nodules of transgenic Lotus corniculatus plants, suggesting a role for this element in Srglb3 promoter activity. Based on these results, we propose that (a) bacterial transacting factor(s) may play a role in infected cell-specific expression of the symbiotically induced plant lb genes.
机译:在Sesbania rostrata leghemoglobin基因Srglb3起始密码子上游约650 bp处确定了一个核苷酸序列,该密码子与结节提取物中的蛋白质DNA结合因子特异性相互作用,但不从叶或根的提取物中相互作用。使用足迹技术来划定该因子的结合位点。发现该因子的DNA结合活性是热稳定的,取决于二价阳离子,并且源自(感染的)拟南芥属Caulinodans细菌或类细菌(A. caulinodans细菌结合因子1,AcBBF1)。从菜青曲霉的自由生活培养物中分离出一个9至10 kD的蛋白,该培养物可与DNA结合活性共纯化(菜青曲霉细菌结合蛋白1,AcBBP1),并与其靶标(S.轮状细菌结合位点1,SrBBS1)。确定了AcBBP1 N末端27个残基的氨基酸序列,发现与单纯疱疹病毒主要DNA结合蛋白感染细胞蛋白8(ICP8)的结构域具有显着相似性(46%相同; 68%相似性) )。发现在SrBBS1中的插入突变导致转基因Lotus Corniculatus植物结节中Srglb3-gus报告基因融合体的表达大大降低,表明该元素在Srglb3启动子活性中的作用。基于这些结果,我们提出(a)细菌交易因子可能在共生诱导的植物1b基因的感染细胞特异性表达中起作用。

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