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首页> 外文期刊>Environmental microbiology >An extracytoplasmic protein and a moonlighting enzyme modulate synthesis of c-di-AMP in Listeria monocytogenes
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An extracytoplasmic protein and a moonlighting enzyme modulate synthesis of c-di-AMP in Listeria monocytogenes

机译:胞质蛋白质和月光酶调节李斯特菌单核细胞增生中C-Di-AMP的合成

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摘要

The second messenger cyclic di-AMP (c-di-AMP) is essential for growth of many bacteria because it controls osmolyte homeostasis. c-di-AMP can regulate the synthesis of potassium uptake systems in some bacteria and it also directly inhibits and activates potassium import and export systems, respectively. Therefore, c-di-AMP production and degradation have to be tightly regulated depending on the environmental osmolarity. The Gram-positive pathogen Listeria monocytogenes relies on the membrane-bound diadenylate cyclase CdaA for c-di-AMP production and degrades the nucleotide with two phosphodiesterases. While the enzymes producing and degrading the dinucleotide have been reasonably well examined, the regulation of c-di-AMP production is not well understood yet. Here we demonstrate that the extracytoplasmic regulator CdaR interacts with CdaA via its transmembrane helix to modulate c-di-AMP production. Moreover, we show that the phosphoglucosamine mutase GlmM forms a complex with CdaA and inhibits the diadenylate cyclase activity in vitro. We also found that GlmM inhibits c-di-AMP production in L. monocytogenes when the bacteria encounter osmotic stress. Thus, GlmM is the major factor controlling the activity of CdaA in vivo. GlmM can be assigned to the class of moonlighting proteins because it is active in metabolism and adjusts the cellular turgor depending on environmental osmolarity.
机译:第二信使循环Di-AMP(C-DI-AMP)对于许多细菌的生长至关重要,因为它控制渗透态稳态。 C-Di-AMP可以调节一些细菌中钾摄取系统的合成,并且还分别直接抑制和激活钾进出口系统。因此,根据环境渗透性,必须紧密地调节C-Di-AMP生产和降解。革兰氏阳性病原体李斯特菌单核细胞增生依赖于膜结合的二丁酰基环酶CDAA,用于C-DI-AMP生产,并用两个磷酸二酯酶降解核苷酸。虽然产生和降解了二核苷酸的酶已经合理地检查,但尚未充分了解C-Di-AMP生产的调节。在这里,我们证明了外膜调节剂CDAR通过其跨膜螺旋与CDAA相互作用以调节C-DI-AMP生产。此外,我们表明磷光葡糖胺蛋白酶胶质胶片与CDAA形成复合物,并在体外抑制亚丁酸酯环化酶活性。我们还发现,当细菌遇到渗透胁迫时,GLMM在L.单核细胞增生中抑制C-Di-AMP生产。因此,GLMM是控制体内CDAA活性的主要因素。 GLMM可以分配给月光蛋白的类别,因为它在代谢中活跃并根据环境渗透性调节细胞Turgor。

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