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PMID: 27829157 Published · ppublish English

Two Distinct Pathways Support Gene Correction by Single-Stranded Donors at DNA Nicks.

Cell reports ·Vol. 17 ·No. 7 ·0000-00-00

Davis Luther, Maizels Nancy

Abstract

Nicks are the most common form of DNA damage. The mechanisms of their repair are fundamental to genomic stability and of practical importance for genome engineering. We define two pathways that support homology-directed repair by single-stranded DNA donors. One depends upon annealing-driven strand synthesis and acts at both nicks and double-strand breaks. The other depends upon annealing-driven heteroduplex correction and acts at nicks. Homology-directed repair via these pathways, as well as mutagenic end joining, are inhibited by RAD51 at nicks but largely independent of RAD51 at double-strand breaks. Guidelines for coordinated design of targets and donors for gene correction emerge from definition of these pathways. This analysis further suggests that naturally occurring nicks may have significant recombinogenic and mutagenic potential that is normally inhibited by RAD51 loading onto DNA, thereby identifying a function for RAD51 in maintenance of genomic stability.

Keywords
DNA double-strand break DNA single-strand break breast cancer deletion gene correction gene therapy genome engineering mutagenesis recombination replication
Article Info
Journal
Cell reports
Abbr.
Cell Rep
ISSN
2211-1247
Published
0000-00-00
Indexed
2016-11-09
Updated
2016-11-16
Language
English
Country/Region
United States
NLM ID
101573691
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