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豌豆根瘤菌蚕豆生物变种FixL蛋白的C末端受体结构域是fnrN启动子自由生活微需氧诱导所必需的。

The C-terminal receiver domain of the Rhizobium leguminosarum bv. viciae FixL protein is required for free-living microaerobic induction of the fnrN promoter.

作者信息

Boesten Bert, Priefer Ursula B

机构信息

Ökologie des Bodens, Botanisches Institut, RWTH-Aachen, Worringerweg 1, 52056 Aachen, Germany.

出版信息

Microbiology (Reading). 2004 Nov;150(Pt 11):3703-3713. doi: 10.1099/mic.0.27323-0.

Abstract

The Rhizobium leguminosarum bv. viciae VF39 FixL protein belongs to a distinct group of hybrid regulatory sensor proteins that bear a covalently linked C-terminal receiver domain. FixL has an unorthodox histidine kinase domain, which is shared with many other hybrid regulators. The purified FixL protein had autophosphorylation activity. A truncated protein, lacking the receiver domain, had a much-reduced autophosphorylation activity. However, this truncated protein still efficiently phosphorylated the purified receiver domain in trans. This indicates that, in the full-length FixL protein, the conserved histidine residue in the kinase domain is phosphorylated only transiently and that most of the phosphoryl label accumulates in the C-terminal receiver domain. Gene-fusion studies showed that the fixL gene is required for free-living microaerobic induction of the fnrN promoter. The presence of a functional fixK gene is not required. An R. leguminosarum strain lacking fixL could not be complemented with a truncated copy of the gene lacking the receiver domain. This indicates that the C-terminal receiver domain is an intermediate in the signal transduction pathway that links oxygen limitation to induction of the fnrN promoter in R. leguminosarum bv. viciae VF39.

摘要

豌豆根瘤菌蚕豆生物变种VF39的FixL蛋白属于一类独特的杂合调节传感器蛋白,其C末端受体结构域通过共价键相连。FixL具有一个非传统的组氨酸激酶结构域,这与许多其他杂合调节因子相同。纯化后的FixL蛋白具有自磷酸化活性。一个缺少受体结构域的截短蛋白,其自磷酸化活性大幅降低。然而,这种截短蛋白仍能有效地反式磷酸化纯化后的受体结构域。这表明,在全长FixL蛋白中,激酶结构域中保守的组氨酸残基仅被短暂磷酸化,并且大部分磷酸化标记物积累在C末端受体结构域中。基因融合研究表明,fixL基因是fnrN启动子在自由生活微需氧诱导过程中所必需的。功能性fixK基因的存在并非必需。一个缺少fixL的豌豆根瘤菌菌株不能被缺少受体结构域的截短基因所互补。这表明C末端受体结构域是信号转导途径中的一个中间体,该信号转导途径将氧气限制与豌豆根瘤菌蚕豆生物变种VF39中fnrN启动子的诱导联系起来。

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