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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Cro's role in the CI Cro bistable switch is critical for {lambda}'s transition from lysogeny to lytic development.
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Cro's role in the CI Cro bistable switch is critical for {lambda}'s transition from lysogeny to lytic development.

机译:Cro在CI中的作用Cro双稳态转换对于{lambda}从溶源性到溶解性发育的转变至关重要。

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摘要

CI represses cro; Cro represses cI. This double negative feedback loop is the core of the classical CI-Cro epigenetic switch of bacteriophage lambda. Despite the classical status of this switch, the role in lambda development of Cro repression of the P(RM) promoter for CI has remained unclear. To address this, we created binding site mutations that strongly impaired Cro repression of P(RM) with only minimal effects on CI regulation of P(RM). These mutations had little impact on lambda development after infection but strongly inhibited the transition from lysogeny to the lytic pathway. We demonstrate that following inactivation of CI by ultraviolet treatment of lysogens, repression of P(RM) by Cro is needed to prevent synthesis of new CI that would otherwise significantly impede lytic development. Thus a bistable CI-Cro circuit reinforces the commitment to a developmental transition.
机译:CI抑制cro; Cro抑制cI。这个双负反馈回路是经典噬菌体λ-Cro表观遗传开关的核心。尽管此开关具有经典地位,但尚不清楚在CI的P(RM)启动子的Cro抑制Cro发育中的作用。为了解决这个问题,我们创建了结合位点突变,该结合位点突变严重削弱了P(RM)的Cro抑制,而对P(RM)的CI调节作用却很小。这些突变对感染后的λ发育几乎没有影响,但是强烈抑制了从溶源性到裂解途径的转变。我们证明,通过溶菌原的紫外线处理灭活CI后,需要通过Cro抑制P(RM)来防止新CI的合成,否则会显着阻碍裂解发展。因此,双稳态CI-Cro电路加强了对发展过渡的承诺。

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