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Ammonia-Induced Formation of an AmtB-GlnK Complex Is Not Sufficient for Nitrogenase Regulation in the Photosynthetic Bacterium Rhodobacter capsulatus▿

机译:氨诱导的AmtB-GlnK复合物的形成不足以对光合细菌荚膜红细菌中的固氮酶进行调节

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摘要

A series of Rhodobacter capsulatus AmtB variants were created and assessed for effects on ammonia transport, formation of AmtB-GlnK complexes, and regulation of nitrogenase activity and NifH ADP-ribosylation. Confirming previous reports, H193 and H342 were essential for ammonia transport and the replacement of aspartate 185 with glutamate reduced ammonia transport. Several amino acid residues, F131, D334, and D335, predicted to be critical for AmtB activity, are shown here for the first time by mutational analysis to be essential for transport. Alterations of the C-terminal tail reduced methylamine transport, prevented AmtB-GlnK complex formation, and abolished nitrogenase switch-off and NifH ADP-ribosylation. On the other hand, D185E, with a reduced level of transport, was capable of forming an ammonium-induced complex with GlnK and regulating nitrogenase. This reinforces the notions that ammonia transport is not sufficient for nitrogenase regulation and that formation of an AmtB-GlnK complex is necessary for these processes. However, some transport-incompetent AmtB variants, i.e., F131A, H193A, and H342A, form ammonium-induced complexes with GlnK but fail to properly regulate nitrogenase. These results show that formation of an AmtB-GlnK complex is insufficient in itself for nitrogenase regulation and suggest that partial ammonia transport or occupation of the pore by ammonia is essential for this function.
机译:创建了一系列荚膜红细菌AmtB变体,并评估了其对氨转运,AmtB-GlnK复合物形成,以及调节固氮酶活性和NifH ADP-核糖基化的作用。证实先前的报道,H193和H342对于氨气运输和用谷氨酸替代天冬氨酸185减少氨气运输至关重要。通过突变分析首次显示了几个预测为AmtB活性至关重要的氨基酸残基F131,D334和D335,这对转运至关重要。 C末端尾部的变化减少了甲胺的转运,防止了AmtB-GlnK复合物的形成,并消除了固氮酶的关闭和NifH ADP-核糖基化。另一方面,具有降低的运输水平的D185E能够与GlnK形成铵诱导的复合物并调节固氮酶。这强化了以下观念:氨运输不足以调节固氮酶,并且对于这些过程而言,必须形成AmtB-GlnK复合物。但是,某些不适合运输的AmtB变体,即F131A,H193A和H342A,与GlnK形成了铵诱导的复合物,但不能适当地调节固氮酶。这些结果表明,AmtB-GlnK复合物的形成本身不足以用于固氮酶的调节,并且表明该功能必不可少。

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