Break-Induced Replication and Recombinational Telomere Elongation in Yeast

Author:

McEachern Michael J.1,Haber James E.2

Affiliation:

1. Department of Genetics, University of Georgia, Athens, Georgia 30602;

2. Department of Biology and Rosenstiel Center, Brandeis University, Waltham, Massachusetts 02454-9110;

Abstract

When a telomere becomes unprotected or if only one end of a chromosomal double-strand break succeeds in recombining with a template sequence, DNA can be repaired by a recombination-dependent DNA replication process termed break-induced replication (BIR). In budding yeasts, there are two BIR pathways, one dependent on the Rad51 recombinase protein and one Rad51 independent; these two repair processes lead to different types of survivors in cells lacking the telomerase enzyme that is required for normal telomere maintenance. Recombination at telomeres is triggered by either excessive telomere shortening or disruptions in the function of telomere-binding proteins. Telomere elongation by BIR appears to often occur through a “roll and spread” mechanism. In this process, a telomeric circle produced by recombination at a dysfunctional telomere acts as a template for a rolling circle BIR event to form an elongated telomere. Additional BIR events can then copy the elongated sequence to all other telomeres.

Publisher

Annual Reviews

Subject

Biochemistry

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