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Sequential steps in DNA replication are inhibited to ensure reduction of ploidy in meiosis

机译:DNA复制中的顺序步骤被抑制,以确保减数分裂中倍性的减少

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摘要

Meiosis involves two successive rounds of chromosome segregation without an intervening S phase. Exit from meiosis I is distinct from mitotic exit, in that replication origins are not licensed by Mcm2-7 chromatin binding, but spindle disassembly occurs during a transient interphase-like state before meiosis II. The absence of licensing is assumed to explain the block to DNA replication, but this has not been formally tested. Here we attempt to subvert this block by expressing the licensing control factors Cdc18 and Cdt1 during the interval between meiotic nuclear divisions. Surprisingly, this leads only to a partial round of DNA replication, even when these factors are overexpressed and effect clear Mcm2-7 chromatin binding. Combining Cdc18 and Cdt1 expression with modulation of cyclin-dependent kinase activity, activation of Dbf4-dependent kinase, or deletion of the Spd1 inhibitor of ribonucleotide reductase has little additional effect on the extent of DNA replication. Single-molecule analysis indicates this partial round of replication results from inefficient progression of replication forks, and thus both initiation and elongation replication steps may be inhibited in late meiosis. In addition, DNA replication or damage during the meiosis I–II interval fails to arrest meiotic progress, suggesting absence of checkpoint regulation of meiosis II entry.
机译:减数分裂涉及连续的两轮染色体分离,而中间没有S期。减数分裂I的退出与有丝分裂的退出不同,因为复制起点未获得Mcm2-7染色质结合的许可,但纺锤体的分解发生在减数分裂II之前的短暂的中间相状态。假定没有许可可以解释DNA复制的障碍,但这尚未经过正式测试。在这里,我们试图通过表达减数分裂核分裂之间的时间间隔内的许可控制因子Cdc18和Cdt1来颠覆这一块。出人意料的是,即使这些因子过表达并实现了清晰的Mcm2-7染色质结合,也只能导致部分DNA复制。将Cdc18和Cdt1表达与细胞周期蛋白依赖性激酶活性的调节,Dbf4依赖性激酶的激活或核糖核苷酸还原酶Spd1抑制剂的缺失相结合,对DNA复制的程度几乎没有其他影响。单分子分析表明,该部分复制是由于复制叉的效率低下导致的,因此起始和延伸复制步骤在减数分裂后期均可能受到抑制。此外,在减数分裂I–II间隔期间的DNA复制或破坏无法阻止减数分裂的进展,这表明缺乏对减数分裂II进入的检查点调节。

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