Coté Atina G, Lewis Susanna M
Program in Genetics and Genome Biology, Hospital for Sick Children Research Institute, 1 King's College Circle, University of Toronto, Toronto, ON M5S 1A8, Canada.
Mol Cell. 2008 Sep 26;31(6):800-12. doi: 10.1016/j.molcel.2008.08.025.
Long DNA palindromes are implicated in chromosomal rearrangement, but their roles in the underlying molecular events remain a matter of conjecture. One notion is that palindromes induce DNA breaks after assuming a cruciform structure, the four-way DNA junction providing a target for cleavage by Holliday junction (HJ)-specific enzymes. Though compelling, few components of the "cruciform resolution" proposal are established. Here we address fundamental properties and genetic dependencies of palindromic DNA metabolism in eukaryotes. Plasmid-borne palindromes introduced into S. cerevisiae are site-specifically broken in vivo, and the breaks exhibit unique hallmarks of an HJ resolvase mechanism. In vivo resolution requires Mus81, for which the bacterial HJ resolvase RusA will substitute. These results provide confirmation of cruciform extrusion and resolution in the context of eukaryotic chromatin. Related observations are that, unchecked by a nuclease function provided by Mre11, episomal palindromes launch a self-perpetuating breakage-fusion-bridge-independent copy number increase termed "escape."
长DNA回文序列与染色体重排有关,但其在潜在分子事件中的作用仍存在猜测。一种观点认为,回文序列在形成十字形结构后会诱导DNA断裂,这种四向DNA连接为Holliday连接(HJ)特异性酶的切割提供了靶点。尽管这一观点很有说服力,但“十字形结构解析”假说的几个组成部分尚未得到证实。在这里,我们研究了真核生物中回文DNA代谢的基本特性和遗传依赖性。导入酿酒酵母的质粒携带的回文序列在体内会发生位点特异性断裂,并且这些断裂表现出HJ解旋酶机制的独特特征。体内解析需要Mus81,细菌HJ解旋酶RusA可替代它。这些结果证实了在真核染色质背景下十字形结构的挤出和解析。相关观察结果是,在没有Mre11提供的核酸酶功能的情况下,游离型回文序列会引发一种称为“逃逸”的自我延续的、不依赖断裂-融合-桥的拷贝数增加。