In contrast to numerous enzymes involved in c-di-GMP synthesis and degradation in enterobacteria, only a handful of c-di-GMP receptors/effectors have been identified. In search of new c-di-GMP receptors, we screened the Escherichia coliâ ASKA overexpression gene library using the Differential Radial Capillary Action of Ligand Assay (DRaCALA) with fluorescently and radioisotope-labelled c-di-GMP. We uncovered three new candidate c-di-GMP receptors in E. coli and characterized one of them, BcsE. The bcsE gene is encoded in cellulose synthase operons in representatives of Gammaproteobacteria and Betaproteobacteria. The purified BcsE proteins from E. coli, Salmonella enterica and Klebsiella pneumoniae bind c-di-GMP via the domain of unknown function, DUF2819, which is hereby designated GIL, GGDEF I-site like domain. The RxGD motif of the GIL domain is required for c-di-GMP binding, similar to the c-di-GMP-binding I-site of the diguanylate cyclase GGDEF domain. Thus, GIL is the second protein domain, after PilZ, dedicated to c-di-GMP-binding. We show that in S.â enterica, BcsE is not essential for cellulose synthesis but is required for maximal cellulose production, and that c-di-GMP binding is critical for BcsE function. It appears that cellulose production in enterobacteria is controlled by a two-tiered c-di-GMP-dependent system involving BcsE and the PilZ domain containing glycosyltransferase BcsA.
GIL, a new c-di-GMP-binding protein domain involved in regulation of cellulose synthesis in enterobacteria.
GIL 是一种新的 c-di-GMP 结合蛋白结构域,参与肠杆菌中纤维素合成的调控
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作者:Fang Xin, Ahmad Irfan, Blanka Andrea, Schottkowski Marco, Cimdins Annika, Galperin Michael Y, Römling Ute, Gomelsky Mark
| 期刊: | Molecular Microbiology | 影响因子: | 2.600 |
| 时间: | 2014 | 起止号: | 2014 Aug;93(3):439-52 |
| doi: | 10.1111/mmi.12672 | 研究方向: | 免疫/内分泌 |
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