Cell cycle transition from S-phase to G1 in Caulobacter is mediated by ancestral virulence regulators

被引:70
作者
Fumeaux, Coralie [1 ]
Radhakrishnan, Sunish Kumar [1 ]
Ardissone, Silvia [1 ]
Theraulaz, Laurence [1 ]
Frandi, Antonio [1 ]
Martins, Daniel [1 ]
Nesper, Jutta [2 ]
Abel, Soeren [2 ]
Jenal, Urs [2 ]
Viollier, Patrick H. [1 ]
机构
[1] Univ Geneva, Inst Genet & Genom Geneva iGE3, Fac Med CMU, Dept Microbiol & Mol Med, CH-1211 Geneva 4, Switzerland
[2] Univ Basel, Biozentrum, CH-4056 Basel, Switzerland
基金
瑞士国家科学基金会;
关键词
SINORHIZOBIUM-MELILOTI; ALPHA-PROTEOBACTERIA; AGROBACTERIUM-TUMEFACIENS; TRANSCRIPTION FACTOR; HISTIDINE KINASE; MASTER REGULATOR; GENE-CLUSTER; CRESCENTUS; IDENTIFICATION; DIVISION;
D O I
10.1038/ncomms5081
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Zinc-finger domain transcriptional regulators regulate a myriad of functions in eukaryotes. Interestingly, ancestral versions (MucR) from Alpha-proteobacteria control bacterial virulence/symbiosis. Whether virulence regulators can also control cell cycle transcription is unknown. Here we report that MucR proteins implement a hitherto elusive primordial S -> G1 transcriptional switch. After charting G1-specific promoters in the cell cycle model Caulobacter crescentus by comparative ChIP-seq, we use one such promoter as genetic proxy to unearth two MucR paralogs, MucR1/2, as constituents of a quadripartite and homeostatic regulatory module directing the S -> G1 transcriptional switch. Surprisingly, MucR orthologues that regulate virulence and symbiosis gene transcription in Brucella, Agrobacterium or Sinorhizobium support this S -> G1 switch in Caulobacter. Pan-genomic ChIP-seq analyses in Sinorhizobium and Caulobacter show that this module indeed targets orthologous genes. We propose that MucR proteins and possibly other virulence regulators primarily control bacterial cell cycle (G1-phase) transcription, rendering expression of target (virulence) genes periodic and in tune with the cell cycle.
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页数:14
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