Babić Andrea C, Little John W
Department of Biochemistry and Molecular Biophysics, University of Arizona, Tucson, AZ 85721, USA.
Proc Natl Acad Sci U S A. 2007 Nov 6;104(45):17741-6. doi: 10.1073/pnas.0602223104. Epub 2007 Oct 25.
Complex gene regulatory circuits contain many interacting components. In principle, all of these components and interactions may be essential to the function of the circuit. Alternatively, some of them may be refinements to a simpler version of the circuit that improve its fitness. In this work, we have tested whether a particular property of a critical regulatory protein, CI, is essential to the behavior of the phage lambda regulatory circuit. In the lysogenic state, CI represses the expression of the lytic genes, allowing a stable lysogenic state, by binding cooperatively to six operators. A mutant phage lacking cooperativity because of a change in cI could not form stable lysogens; however, this defect could be suppressed by the addition of mutations that altered two cis-acting sites but did not restore cooperativity. The resulting triple mutant was able to grow lytically, form stable single lysogens, and switch to lytic growth upon prophage induction, showing a threshold response in switching similar to that of wild-type lambda. We conclude that cooperative DNA binding by CI is not essential for these properties of the lambda circuitry, provided that suppressors increase the level of CI. Unlike wild-type lysogens, mutant lysogens were somewhat unstable under certain growth conditions. We surmise that cooperativity is a refinement to a more basic circuit, and that it affords increased stability to the lysogenic state in response to environmental variations.
复杂的基因调控回路包含许多相互作用的组件。原则上,所有这些组件和相互作用对于回路的功能可能都是必不可少的。或者,其中一些可能是对更简单回路版本的优化,以提高其适应性。在这项工作中,我们测试了关键调控蛋白CI的一种特定特性对于噬菌体λ调控回路的行为是否至关重要。在溶原状态下,CI通过与六个操纵子协同结合来抑制裂解基因的表达,从而实现稳定的溶原状态。由于cI发生变化而缺乏协同性的突变噬菌体无法形成稳定的溶原菌;然而,这种缺陷可以通过添加改变两个顺式作用位点但未恢复协同性的突变来抑制。产生的三重突变体能够进行裂解生长、形成稳定的单溶原菌,并在原噬菌体诱导后切换到裂解生长,在切换时表现出与野生型λ类似的阈值响应。我们得出结论,只要抑制子提高CI的水平,CI与DNA的协同结合对于λ回路的这些特性就不是必不可少的。与野生型溶原菌不同,突变溶原菌在某些生长条件下有些不稳定。我们推测协同性是对更基本回路的一种优化,并且它能使溶原状态在应对环境变化时具有更高的稳定性。