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DivJ、CbrA 和 PleC 系统控制 Sinorhizobium meliloti 中 DivK 的磷酸化和共生。

The DivJ, CbrA and PleC system controls DivK phosphorylation and symbiosis in Sinorhizobium meliloti.

机构信息

Interdisciplinary Research Institute USR3078, CNRS-Université Lille Nord de France, 50 avenue de Halley, Villeneuve d'Ascq Cedex, France.

出版信息

Mol Microbiol. 2013 Oct;90(1):54-71. doi: 10.1111/mmi.12347. Epub 2013 Aug 19.

Abstract

Sinorhizobium meliloti is a soil bacterium that invades the root nodules it induces on Medicago sativa, whereupon it undergoes an alteration of its cell cycle and differentiates into nitrogen-fixing, elongated and polyploid bacteroid with higher membrane permeability. In Caulobacter crescentus, a related alphaproteobacterium, the principal cell cycle regulator, CtrA, is inhibited by the phosphorylated response regulator DivK. The phosphorylation of DivK depends on the histidine kinase DivJ, while PleC is the principal phosphatase for DivK. Despite the importance of the DivJ in C. crescentus, the mechanistic role of this kinase has never been elucidated in other Alphaproteobacteria. We show here that the histidine kinases DivJ together with CbrA and PleC participate in a complex phosphorylation system of the essential response regulator DivK in S. meliloti. In particular, DivJ and CbrA are involved in DivK phosphorylation and in turn CtrA inactivation, thereby controlling correct cell cycle progression and the integrity of the cell envelope. In contrast, the essential PleC presumably acts as a phosphatase of DivK. Interestingly, we found that a DivJ mutant is able to elicit nodules and enter plant cells, but fails to establish an effective symbiosis suggesting that proper envelope and/or low CtrA levels are required for symbiosis.

摘要

根瘤农杆菌是一种土壤细菌,它会侵入其诱导的紫花苜蓿根瘤,随后经历细胞周期的改变,并分化为具有更高膜通透性的固氮、伸长和多倍体类菌体。在相关的α变形菌根瘤菌中,主要的细胞周期调控因子 CtrA 被磷酸化的响应调节因子 DivK 抑制。DivK 的磷酸化依赖于组氨酸激酶 DivJ,而 PleC 是 DivK 的主要磷酸酶。尽管 DivJ 在 C. crescentus 中非常重要,但这种激酶在其他 α变形菌中的作用机制尚未阐明。我们在这里表明,组氨酸激酶 DivJ 与 CbrA 和 PleC 一起参与了 S. meliloti 中必需的响应调节因子 DivK 的复杂磷酸化系统。特别是,DivJ 和 CbrA 参与了 DivK 的磷酸化和 CtrA 的失活,从而控制正确的细胞周期进程和细胞包膜的完整性。相比之下,必需的 PleC 可能作为 DivK 的磷酸酶。有趣的是,我们发现 DivJ 突变体能引发根瘤并进入植物细胞,但不能建立有效的共生关系,这表明适当的包膜和/或低 CtrA 水平对于共生是必需的。

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