Expression of cfcR, encoding the only GGDEF/EAL response regulator in Pseudomonas putida, is transcriptionally regulated by RpoS, ANR and FleQ, and the functionality of CfcR as a diguanylate cyclase requires the multisensor CHASE3/GAF hybrid histidine kinase named CfcA. Here an additional level of cfcR control, operating post-transcriptionally via the RNA-binding proteins RsmA, RsmE and RsmI, is unraveled. Specific binding of the three proteins to an Rsm-binding motif (5'CANGGANG3') encompassing the translational start codon of cfcR was confirmed. Although RsmA exhibited the highest binding affinity to the cfcR transcript, single deletions of rsmA, rsmE or rsmI caused minor derepression in CfcR translation compared to a ÎrsmIEA triple mutant. RsmA also showed a negative impact on c-di-GMP levels in a double mutant ÎrsmIE through the control of cfcR, which is responsible for most of the free c-di-GMP during stationary phase in static conditions. In addition, a CfcR-dependent c-di-GMP boost was observed during this stage in ÎrsmIEA confirming the negative effect of Rsm proteins on CfcR translation and explaining the increased biofilm formation in this mutant compared to the wild type. Overall, these results suggest that CfcR is a key player in biofilm formation regulation by the Rsm proteins in P. putida.
The Pseudomonas putida CsrA/RsmA homologues negatively affect c-di-GMP pools and biofilm formation through the GGDEF/EAL response regulator CfcR.
恶臭假单胞菌 CsrA/RsmA 同源物通过 GGDEF/EAL 反应调节因子 CfcR 对 c-di-GMP 池和生物膜形成产生负面影响
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作者:Huertas-Rosales Ãscar, Romero Manuel, Heeb Stephan, Espinosa-Urgel Manuel, Cámara Miguel, Ramos-González MarÃa Isabel
| 期刊: | Environmental Microbiology | 影响因子: | 4.000 |
| 时间: | 2017 | 起止号: | 2017 Sep;19(9):3551-3566 |
| doi: | 10.1111/1462-2920.13848 | 研究方向: | 微生物学 |
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