Mre11 Is Essential for the Removal of Lethal Topoisomerase 2 Covalent Cleavage Complexes

作者:Nguyen Ngoc Hoa; Shimizu Tsubasa; Zhou Zhong Wei; Wang Zhao Qi; Deshpande Rajashree A; Paull Tanya T; Akter Salma; Tsuda Masataka; Furuta Ryohei; Tsutsui Ken; Takeda Shunichi; Sasanuma Hiroyuki*
来源:Molecular Cell, 2016, 64(3): 580-592.
DOI:10.1016/j.molcel.2016.10.011

摘要

The Mre11/Rad50/Nbs1 complex initiates double-strand break repair by homologous recombination (HR). Loss of Mre11 or its nuclease activity in mouse cells is known to cause genome aberrations and cellular senescence, although the molecular basis for this phenotype is not clear. To identify the origin of these defects, we characterized Mre11-deficient (MRE11(-/-)) and nuclease-deficient Mre11 (MRE11(-/H129N)) chicken DT40 and human lymphoblast cell lines. These cells exhibit increased spontaneous chromosomal DSBs and extreme sensitivity to topoisomerase 2 poisons. The defects in Mre11 compromise the repair of etoposide-induced Top2-DNA covalent complexes, and MRE11(-/-) and MRE11(-/H129N) cells accumulate high levels of Top2 covalent conjugates even in the absence of exogenous damage. We demonstrate that both the genome instability and mortality of MRE11(-/-) and MRE11(-/H129N) cells are significantly reversed by overexpression of Tdp2, an enzyme that eliminates covalent Top2 conjugates; thus, the essential role of Mre11 nuclease activity is likely to remove these lesions.

  • 出版日期2016-11-3