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首页> 外文期刊>Journal of bacteriology >Characterization of a fixLJ-regulated Bradyrhizobium japonicum gene sharing similarity with the Escherichia coli fnr and Rhizobium meliloti fixK genes.
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Characterization of a fixLJ-regulated Bradyrhizobium japonicum gene sharing similarity with the Escherichia coli fnr and Rhizobium meliloti fixK genes.

机译:fixLJ调控的日本根瘤菌基因与大肠杆菌fnr和根瘤菌fixK基因相似的特征。

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We describe the cloning, sequencing, regulation, and mutational analysis of a Bradyrhizobium japonicum fixK-like gene whose product belongs to the family of Fnr-Crp-related regulatory proteins. The predicted 237-amino-acid FixK protein was found to share between 28 and 38% sequence identity with the Escherichia coli Fnr protein, other bacterial Fnr-like proteins (FnrN, Anr, and HlyX), and two rhizobial FixK proteins. The B. japonicum fixK-like gene, when expressed from a lac promoter, could functionally complement an fnr mutant strain of E. coli and activate transcription from an fnr-dependent promoter in the E. coli background; this activation was sixfold higher in anaerobic cultures than in aerobically grown cells, a finding that suggested oxygen sensitivity of the FixK protein and was consistent with the presence of a cysteine-rich, putatively oxygen-responsive domain at its N-terminal end. Similar to the situation in Rhizobium meliloti, expression of the fixK gene in B. japonicum was shown to be induced at low O2 tension and this induction was dependent on the two-component regulatory system FixLJ. Despite this dependency, however, a B. japonicum fixK mutant did not have the phenotypic characteristics of B. japonicum fixL and fixJ mutants: the fixK mutant was neither Fix- in symbiosis with soybean plants nor defective in anaerobic respiration with nitrate as the terminal electron acceptor. Also, the fixK mutant was unaffected in the expression of one of the two B. japonicum sigma 54 genes, rpoN1, which was previously shown to be controlled by the fixLJ genes. When fixK was introduced into the B. japonicum fixJ mutant and expressed therein from a constitutive promoter (i.e., uncoupling it from regulation by FixJ), the FixK protein thus synthesized fully restored anaerobic nitrate respiration in that strain. We interpret this to mean that the B. japonicum wild type has two homologs of fixLJ-regulated fixK genes which can functionally substitute for each other.
机译:我们描述了其商品属于Fnr-Crp相关调节蛋白家族的日本根瘤菌(Bradyrhizobium japonicum fixK-like)基因的克隆,测序,调控和突变分析。发现预测的237个氨基酸的FixK蛋白与大肠杆菌Fnr蛋白,其他细菌Fnr样蛋白(FnrN,Anr和HlyX)以及两个根瘤菌FixK蛋白具有28%至38%的序列同一性。当从lac启动子表达时,日本血吸虫fixK样基因可以在功能上与大肠杆菌的fnr突变株互补,并激活大肠杆菌背景中依赖于fnr的启动子的转录。在厌氧培养物中,这种活化比在需氧培养的细胞中高六倍,这一发现表明FixK蛋白具有氧敏感性,并且与在其N末端存在一个富含半胱氨酸,推定的氧响应域相一致。与苜蓿根瘤菌中的情况相似,在低的O2张力下诱导了日本血吸虫中fixK基因的表达,并且这种诱导依赖于两组分调节系统FixLJ。尽管存在这种依赖性,但是日本血吸虫fixK突变体不具有日本血吸虫fixL和fixJ突变体的表型特征:fixK突变体既不与大豆植株共生,也不存在以硝酸盐为末端电子的厌氧呼吸缺陷。受体。同样,fixK突变体在两个日本根瘤菌sigma 54基因之一rpoN1的表达中也不受影响,该基因先前已显示受fixLJ基因控制。当将fixK引入日本根瘤菌fixJ突变体并从组成型启动子中表达(即,使其与FixJ的调节脱钩)时,FixK蛋白由此在该菌株中合成了完全恢复的厌氧硝酸盐呼吸。我们将其解释为意味着日本血吸虫野生型具有fixLJ调控的fixK基因的两个同源物,它们在功能上可以彼此替代。

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