Harris R S, Feng G, Ross K J, Sidhu R, Thulin C, Longerich S, Szigety S K, Winkler M E, Rosenberg S M
Department of Biochemistry, University of Alberta Faculty of Medicine, Edmonton, Canada.
Genes Dev. 1997 Sep 15;11(18):2426-37. doi: 10.1101/gad.11.18.2426.
Postsynthesis mismatch repair is an important contributor to mutation avoidance and genomic stability in bacteria, yeast, and humans. Regulation of its activity would allow organisms to regulate their ability to evolve. That mismatch repair might be down-regulated in stationary-phase Escherichia coli was suggested by the sequence spectrum of some stationary-phase ("adaptive") mutations and by the observations that MutS and MutH levels decline during stationary phase. We report that overproduction of MutL inhibits mutation in stationary phase but not during growth. MutS overproduction has no such effect, and MutL overproduction does not prevent stationary-phase decline of either MutS or MutH. These results imply that MutS and MutH decline to levels appropriate for the decreased DNA synthesis in stationary phase, whereas functional MutL is limiting for mismatch repair specifically during stationary phase. Modulation of mutation rate and genetic stability in response to environmental or developmental cues, such as stationary phase and stress, could be important in evolution, development, microbial pathogenicity, and the origins of cancer.
合成后错配修复对于细菌、酵母和人类避免突变及维持基因组稳定性起着重要作用。对其活性的调控将使生物体能够调节自身的进化能力。一些稳定期(“适应性”)突变的序列谱以及MutS和MutH水平在稳定期下降的观察结果表明,错配修复在稳定期的大肠杆菌中可能会下调。我们报道,MutL的过量表达会抑制稳定期的突变,但在生长期间不会。MutS的过量表达没有这种效果,并且MutL的过量表达不会阻止MutS或MutH在稳定期的下降。这些结果表明,MutS和MutH下降到适合稳定期DNA合成减少的水平,而功能性MutL在稳定期对错配修复具有特异性限制作用。响应环境或发育信号(如稳定期和应激)来调节突变率和遗传稳定性,可能在进化、发育、微生物致病性和癌症起源中具有重要意义。