Holliday junction resolution in human cells: two junction endonucleases with distinct substrate specificities
被引:124
作者:
Constantinou, A
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机构:Canc Res UK, London Res Inst, Clare Hall Labs, S Mimms EN6 3LD, Herts, England
Constantinou, A
Chen, XB
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机构:Canc Res UK, London Res Inst, Clare Hall Labs, S Mimms EN6 3LD, Herts, England
Chen, XB
McGowan, CH
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机构:Canc Res UK, London Res Inst, Clare Hall Labs, S Mimms EN6 3LD, Herts, England
McGowan, CH
West, SC
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机构:
Canc Res UK, London Res Inst, Clare Hall Labs, S Mimms EN6 3LD, Herts, EnglandCanc Res UK, London Res Inst, Clare Hall Labs, S Mimms EN6 3LD, Herts, England
West, SC
[1
]
机构:
[1] Canc Res UK, London Res Inst, Clare Hall Labs, S Mimms EN6 3LD, Herts, England
[2] Scripps Res Inst, Dept Mol Biol, La Jolla, CA 92037 USA
DNA repair;
genome instability;
Mus81;
recombination;
replication restart;
D O I:
10.1093/emboj/cdf554
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
Enzymatic activities that cleave Holliday junctions are required for the resolution of recombination intermediates and for the restart of stalled replication forks. Here we show that human cell-free extracts possess two distinct endonucleases that can cleave Holliday junctions. The first cleaves Holliday junctions in a structure- and sequence-specific manner, and associates with an ATP-dependent branch migration activity. Together, these activities promote branch migration/resolution reactions similar to those catalysed by the Escherichia coli RuvABC resolvasome. Like RuvC-mediated resolution, the products can be religated. The second, containing Mus8l protein, cuts Holliday junctions but the products are mostly non-ligatable. Each nuclease has a defined substrate specificity: the branch migration-associated resolvase is highly specific for Holliday junctions, whereas the Mus81-associated endonuclease is one order of magnitude more active upon replication fork and 3'-flap structures. Thus, both nucleases are capable of cutting Holliday junctions formed during recombination or through the regression of stalled replication forks. However, the Mus81-associated endonuclease may play a more direct role in replication fork collapse by catalysing the cleavage of stalled fork structures.