Keeney S, Kleckner N
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
Proc Natl Acad Sci U S A. 1995 Nov 21;92(24):11274-8. doi: 10.1073/pnas.92.24.11274.
During meiosis in Saccharomyces cerevisiae, the first chemical step in homologous recombination is the occurrence of site-specific DNA double-strand breaks (DSBs). In wild-type cells, these breaks undergo resection of their 5' strand termini to yield molecules with 3' single-stranded tails. We have further characterized the breaks that accumulate in rad50S mutant stains defective in DSB resection. We find that these DSBs are tightly associated with protein via what appears to be a covalent linkage. When genomic DNA is prepared from meiotic rad50S cultures without protease treatment steps, the restriction fragments diagnostic of DSBs selectively partition to the organic-aqueous interphase in phenol extractions and band at lower than normal density in CsCl density gradients. Selective partitioning and decreased buoyant density are abolished if the DNA is treated with proteinase K prior to analysis. Similar results are obtained with sae2-1 mutant strains, which have phenotypes identical to rad50S mutants. The protein is bound specifically to the 5' strand termini of DSBs and is present at both 5' ends in at least a fraction of breaks. The stability of the complex to various protein denaturants and the strand specificity of the attachment are most consistent with a covalent linkage to DSB termini. We propose that the DSB-associated protein is the catalytic subunit of the meiotic recombination initiation nuclease and that it cleaves DNA via a covalent protein-DNA intermediate.
在酿酒酵母减数分裂过程中,同源重组的第一个化学步骤是位点特异性DNA双链断裂(DSB)的出现。在野生型细胞中,这些断裂会经历其5'链末端的切除,产生带有3'单链尾巴的分子。我们进一步表征了在DSB切除缺陷的rad50S突变体菌株中积累的断裂。我们发现这些DSB通过一种看似共价连接的方式与蛋白质紧密结合。当从未经蛋白酶处理步骤的减数分裂rad50S培养物中制备基因组DNA时,诊断DSB的限制性片段在酚抽提中选择性地分配到有机-水界面,并且在CsCl密度梯度中以低于正常密度的条带形式存在。如果在分析之前用蛋白酶K处理DNA,则选择性分配和浮力密度降低的现象会消失。对于具有与rad50S突变体表型相同的sae2-1突变体菌株,也获得了类似的结果。该蛋白质特异性地结合到DSB的5'链末端,并且至少在一部分断裂的两个5'末端都存在。该复合物对各种蛋白质变性剂的稳定性以及附着的链特异性与与DSB末端的共价连接最为一致。我们提出与DSB相关的蛋白质是减数分裂重组起始核酸酶的催化亚基,并且它通过共价蛋白质-DNA中间体切割DNA。