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The Caulobacter crescentus ctrA P1 promoter is essential for the coordination of cell cycle events that prevent the overinitiation of DNA replication

机译:Carobacter Crescentus Ctra P1启动子对于细胞周期事件的协调是必不可少的,这是防止DNA复制过度的细胞循环事件

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The master regulator CtrA oscillates during the Caulobacter cell cycle due to temporally regulated proteolysis and transcription. It is proteolysed during the G1–S transition and reaccumulates in predivisional cells as a result of transcription from two sequentially activated promoters, P1 and P2. CtrA reinforces its own synthesis by directly mediating the activation of P2 concurrently with repression of P1. To explore the role of P1 in cell cycle control, we engineered a mutation into the native ctrA locus that prevents transcription from P1 but not P2. As expected, the ctrA P1 mutant exhibits striking growth, morphological and DNA replication defects. Unexpectedly, we found CtrA and its antagonist SciP, but not DnaA, GcrA or CcrM accumulation to be dramatically reduced in the ctrA P1 mutant. SciP levels closely paralleled CtrA accumulation, suggesting that CtrA acts as a rheostat to modulate SciP abundance. Furthermore, the reappearance of CtrA and CcrM in predivisional cells was delayed in the P1 mutant by 0.125 cell cycle unit in synchronized cultures. High levels of ccrM transcription despite low levels of CtrA and increased transcription of ctrA P2 in the ctrA P1 mutant are two examples of robustness in the cell cycle. Thus, Caulobacter can adjust regulatory pathways to partially compensate for reduced and delayed CtrA accumulation in the ctrA P1 mutant.
机译:由于时间上调的蛋白水解和转录,脑稳压剂CTRA振荡在裂变细胞周期中。在G1-S转变期间,在序列激活的启动子,P1和P2的转录中,在G1-S转变期间和ReaCclumulate。 CTRA通过直接介导P2的激活,通过抑制P1,通过直接介导P2的激活来加强其自身的合成。为了探讨P1在细胞周期控制中的作用,我们将突变设计成突变的CTRA基因座,以防止来自P1但不是P2的转录。如预期的那样,CTRA P1突变体表现出显着的生长,形态和DNA复制缺陷。出乎意料的是,我们发现CTRA及其拮抗液,但不是DNAA,GCRA或CCRM积累在CTRA P1突变体中显着降低。 SCIP水平与CTRA积累的紧密级别紧密相连,表明CTRA充当调节煤层丰富的变阻器。此外,在同步培养物中将CTRA和CCRM的再现和CCRM在P1突变体中延迟了0.125细胞循环单元。尽管CTRA水平低,CTRA P1突变体中的CTRA P2的转录增加了高水平的CCRM转录是细胞周期中鲁棒性的两个例子。因此,肝动杆菌可以调节调节途径以部分地补偿CTRA P1突变体中的减少和延迟的CTRA积累。

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