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Involvement of Sir2/4 in Silencing of DNA Breakage and Recombination on Mouse YACs during Yeast Meiosis

机译:Sir2 / 4参与沉默酵母减数分裂过程中小鼠YAC DNA断裂和重组的沉默。

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摘要

Yeast artificial chromosomes (YACs) that contain human DNA backbone undergo DNA double-strand breaks (DSBs) and recombination during yeast meiosis at rates similar to the yeast native chromosomes. Surprisingly, YACs containing DNA covering a recombination hot spot in the mouse major histocompatibility complex class III region do not show meiotic DSBs and undergo meiotic recombination at reduced levels. Moreover, segregation of these YACs during meiosis is seriously compromised. In meiotic yeast cells carrying the mutations sir2 or sir4, but not sir3, these YACs show DSBs, suggesting that a unique chromatin structure of the YACs, involving Sir2 and Sir4, protects the YACs from the meiotic recombination machinery. We speculate that the paucity of DSBs and recombination events on these YACs during yeast meiosis may reflect the refractory nature of the corresponding region in the mouse genome.
机译:包含人类DNA主链的酵母人工染色体(YAC)经历了DNA双链断裂(DSB),并在酵母减数分裂过程中以与酵母天然染色体相似的速率重组。令人惊讶地,包含覆盖小鼠主要组织相容性复合物III类区域中的重组热点的DNA的YAC不显示减数分裂DSB并且以降低的水平进行减数分裂重组。此外,减数分裂过程中这些YAC的分离受到严重损害。在携带突变sir2或sir4而不是sir3的减数分裂酵母细胞中,这些YAC显示DSB,表明YAC的独特染色质结构涉及Sir2和Sir4,可保护YAC免受减数分裂重组机制的影响。我们推测,在酵母减数分裂期间,这些YAC上DSBs的缺乏和重组事件可能反映了小鼠基因组中相应区域的难治性。

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