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首页> 外文期刊>Molecular Microbiology >Subcellular location characteristics of the Pseudomonas aeruginosa GGDEF protein, WspR, indicate that it produces cyclic-di-GMP in response to growth on surfaces
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Subcellular location characteristics of the Pseudomonas aeruginosa GGDEF protein, WspR, indicate that it produces cyclic-di-GMP in response to growth on surfaces

机译:铜绿假单胞菌GGDEF蛋白WspR的亚细胞定位特征表明,它会响应于表面的生长而产生环状di-GMP

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The Pseudomonas aeruginosa Wsp signal transduction system produces cyclic-di-GMP (c-di-GMP), an intracellular messenger that stimulates biofilm formation and suppresses motility. The Wsp system is homologous to chemotaxis systems and includes a membrane-bound receptor protein, WspA, and a response regulator GGDEF protein, WspR, that catalyses c-di-GMP synthesis when phosphorylated. We found that the subcellular distributions of fluorescent protein-tagged WspA and WspR differed markedly from their chemotaxis counterparts. WspA-YFP formed patches in cells whereas WspR-YFP was dispersed when unphosphorylated and formed bright cytoplasmic clusters when phosphorylated. WspR formed clusters in cells of a Delta wspF mutant, a genetic background that causes constitutive phosphorylation of WspR, but was dispersed in cells of a wspA mutant, a genetic background necessary for WspR phosphorylation. In addition, WspR mutated at Asp70, its predicted site of phosphorylation, did not form clusters. C-di-GMP synthesis was not required for cluster formation. WspR-YFP was dispersed in liquid-grown wild-type cells, but formed clusters that sometimes appeared and disappeared over the course of a few minutes in cells grown on an agar surface. Our results suggest that the compartmentalized production of c-di-GMP in response to a stimulus associated with growth on a surface is an important functional characteristic of the Wsp system.
机译:铜绿假单胞菌Wsp信号转导系统可产生环-di-GMP(c-di-GMP),一种刺激生物膜形成并抑制运动性的细胞内信使。 Wsp系统与趋化性系统同源,包括膜结合受体蛋白WspA和响应调节剂GGDEF蛋白WspR,当磷酸化时可催化c-di-GMP合成。我们发现荧光蛋白标记的WspA和WspR的亚细胞分布明显不同于其趋化性对应物。 WspA-YFP在细胞中形成斑块,而WspR-YFP在未磷酸化时分散,而在磷酸化时形成明亮的细胞质簇。 WspR在Delta wspF突变体的细胞中形成簇,该遗传背景导致WspR组成型磷酸化,但分散在wspA突变体的细胞中,wspA突变体是WspR磷酸化所必需的遗传背景。此外,WspR在其磷酸化的预测位点Asp70突变,没有形成簇。 C-di-GMP合成不需要形成簇。 WspR-YFP分散在液体生长的野生型细胞中,但形成的簇有时在琼脂表面上生长的细胞中在几分钟的时间内出现和消失。我们的结果表明,响应于与表面生长相关的刺激,c-di-GMP的分区生产是Wsp系统的重要功能特征。

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