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Dissection of the transcription machinery for housekeeping genes of Bradyrhizobium japonicum.

机译:解析日本根瘤菌(Bradyrhizobium japonicum)管家基因的转录机制。

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摘要

By using a PCR approach, the Bradyrhizobium japonicum sigA gene, which encodes the primary RNA polymerase sigma factor, sigma80, was cloned and its nucleotide sequence was established. The deduced protein is highly homologous to the SigA protein of Rhizobium meliloti (72% amino acid sequence identity) but less so to RpoD of Escherichia coli (51% identity). Well conserved is the C-terminal end of the protein, which is probably involved in promoter recognition and binding of the RNA polymerase core enzyme. A remarkable feature of the primary sequence is an alanine- and proline-rich segment of 24 amino acids between conserved regions 1 and 2, which might function as an interdomain linker. We purified the B. japonicum RNA polymerase holoenzyme. One of the subunits had an apparent molecular mass of 90 kDa and corresponded to the sigA gene product, as judged by N-terminal amino acid sequencing. The purified RNA polymerase was used in an in vitro transcription system to determine the transcription start sites of the rrn and groESL4 operons. They were identical to those previously identified in vivo. The rrn promoter was cloned upstream of a rho-independent terminator, yielding a transcript of about 240 bases. This served as a suitable template to analyze promoter activity. Then mutant derivatives of the rrn promoter were constructed and tested in in vitro transcription experiments. Several base pairs essential for promoter activity were thus identified. The results suggest that the well-characterized -35/-10 promoter class is predominantly used in B. japonicum for the expression of "housekeeping" genes.
机译:通过PCR方法,克隆了日本根瘤菌(Bradyrhizobium japonicum)sigA基因,该基因编码主要的RNA聚合酶sigma因子sigma80,并确定了其核苷酸序列。推导的蛋白质与苜蓿根瘤菌的SigA蛋白高度同源(氨基酸序列同一性为72%),而与大肠杆菌的RpoD同源性较低(同源性为51%)。蛋白质的C末端保守性很强,可能与启动子识别和RNA聚合酶核心酶的结合有关。一级序列的显着特征是保守区1和2之间的24个氨基酸的富含丙氨酸和脯氨酸的片段,可能充当域间连接子。我们纯化了日本血吸虫RNA聚合酶全酶。通过N-末端氨基酸测序判断,其中一个亚基的表观分子量为90 kDa,对应于sigA基因产物。纯化的RNA聚合酶用于体外转录系统,以确定rrn和groESL4操纵子的转录起始位点。它们与先前在体内鉴定的那些相同。将rrn启动子克隆到rho非依赖性终止子的上游,产生约240个碱基的转录本。这用作分析启动子活性的合适模板。然后构建rrn启动子的突变体衍生物并在体外转录实验中进行测试。因此鉴定了启动子活性必不可少的几个碱基对。结果表明,特征充分的-35 / -10启动子类别主要用于日本芽孢杆菌中,用于表达“管家”基因。

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