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Publication : Essential Roles for Polymerase θ-Mediated End Joining in the Repair of Chromosome Breaks.

First Author  Wyatt DW Year  2016
Journal  Mol Cell Volume  63
Issue  4 Pages  662-673
PubMed ID  27453047 Mgi Jnum  J:249194
Mgi Id  MGI:6093971 Doi  10.1016/j.molcel.2016.06.020
Citation  Wyatt DW, et al. (2016) Essential Roles for Polymerase theta-Mediated End Joining in the Repair of Chromosome Breaks. Mol Cell 63(4):662-673
abstractText  DNA polymerase theta (Pol theta)-mediated end joining (TMEJ) has been implicated in the repair of chromosome breaks, but its cellular mechanism and role relative to canonical repair pathways are poorly understood. We show that it accounts for most repairs associated with microhomologies and is made efficient by coupling a microhomology search to removal of non-homologous tails and microhomology-primed synthesis across broken ends. In contrast to non-homologous end joining (NHEJ), TMEJ efficiently repairs end structures expected after aborted homology-directed repair (5' to 3' resected ends) or replication fork collapse. It typically does not compete with canonical repair pathways but, in NHEJ-deficient cells, is engaged more frequently and protects against translocation. Cell viability is also severely impaired upon combined deficiency in Pol theta and a factor that antagonizes end resection (Ku or 53BP1). TMEJ thus helps to sustain cell viability and genome stability by rescuing chromosome break repair when resection is misregulated or NHEJ is compromised.
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