DNA double-strand breaks (DSBs) are particularly challenging to repair in pericentromeric heterochromatin because of the increased risk of aberrant recombination in highly repetitive sequences. Recent studies have identified specialized mechanisms enabling 'safe' homologous recombination (HR) repair in heterochromatin. These include striking nuclear actin filaments (F-actin) and myosins that drive the directed motion of repair sites to the nuclear periphery for 'safe' repair. Here, we summarize our current understanding of the mechanisms involved, and propose how they might operate in the context of a phase-separated environment.
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NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263
HUI, SW
BONI, LT
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NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263
BONI, LT
STEWART, TP
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NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263
STEWART, TP
ISAC, T
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NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263NEW YORK STATE DEPT HLTH,ROSWELL PK MEM INST,DEPT BIOPHYS,BUFFALO,NY 14263