Literature DB >> 10681451

Meiotic instability of CAG repeat tracts occurs by double-strand break repair in yeast.

C Jankowski1, F Nasar, D K Nag.   

Abstract

Expansion of trinucleotide repeats is associated with a growing number of human diseases. The mechanism and timing of expansion of the repeat tract are poorly understood. In humans, trinucleotide repeats show extreme meiotic instability, and expansion of the repeat tract has been suggested to occur in the germ-line mitotic divisions or postmeiotically during early divisions of the embryo. Studies in model organisms have indicated that polymerase slippage plays a major role in the repeat tract instability and meiotic instability is severalfold higher than the mitotic instability. We show here that meiotic instability of the CAG/CTG repeat tract in yeast is associated with double-strand break (DSB) formation within the repeated sequences, and that the DSB formation is dependent on the meiotic recombination machinery. The DSB repair results in both expansions and contractions of the CAG repeat tract.

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Year:  2000        PMID: 10681451      PMCID: PMC15766          DOI: 10.1073/pnas.040460297

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  51 in total

Review 1.  Dynamic mutations: a new class of mutations causing human disease.

Authors:  R I Richards; G R Sutherland
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Review 2.  Multiple pathways of recombination induced by double-strand breaks in Saccharomyces cerevisiae.

Authors:  F Pâques; J E Haber
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Review 3.  Long DNA palindromes, cruciform structures, genetic instability and secondary structure repair.

Authors:  D R Leach
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4.  Preferential nucleosome assembly at DNA triplet repeats from the myotonic dystrophy gene.

Authors:  Y H Wang; S Amirhaeri; S Kang; R D Wells; J D Griffith
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5.  Unequal crossing-over and gene conversion at the amplified CUP1 locus of yeast.

Authors:  J W Welch; D H Maloney; S Fogel
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6.  Meiosis-induced double-strand break sites determined by yeast chromatin structure.

Authors:  T C Wu; M Lichten
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Review 7.  Trinucleotide repeat expansions and human genetic disease.

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10.  Changes in chromatin structure at recombination initiation sites during yeast meiosis.

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