Joyce Eric F, McKim Kim S
Waksman Institute and Department of Genetics, Rutgers the State University of New Jersey, Piscataway, NJ, USA.
Fly (Austin). 2011 Apr-Jun;5(2):134-40. doi: 10.4161/fly.5.2.14767. Epub 2011 Apr 1.
During prophase of meiosis I, genetic recombination is initiated with a Spo11-dependent DNA double-strand break (DSB). Repair of these DSBs can generate crossovers, which become chiasmata and are important for the process of chromosome segregation. To ensure at least one chiasma per homologous pair of chromosomes, the number and distribution of crossovers is regulated. One system contributing to the distribution of crossovers is the pachytene checkpoint, which requires the conserved gene pch2 that encodes an AAA+ATPase family member. Pch2-dependent pachytene checkpoint function causes delays in pachytene progression when there are defects in processes required for crossover formation, such as mutations in DSB-repair genes and when there are defects in the structure of the meiotic chromosome axis. Thus, the pachytene checkpoint appears to monitor events leading up to the generation of crossovers. Interestingly, heterozygous chromosome rearrangements cause Pch2-dependent pachytene delays and as little as two breaks in the continuity of the paired chromosome axes are sufficient to evoke checkpoint activity. These chromosome rearrangements also cause an interchromosomal effect on recombination whereby crossing over is suppressed between the affected chromosomes but is increased between the normal chromosome pairs. We have shown that this phenomenon is also due to pachytene checkpoint activity.
在减数分裂I前期,遗传重组由Spo11依赖性DNA双链断裂(DSB)引发。这些DSB的修复可产生交叉,交叉会形成交叉点,对染色体分离过程很重要。为确保每对同源染色体至少有一个交叉点,交叉的数量和分布受到调控。一个有助于交叉分布的系统是粗线期检查点,它需要保守基因pch2,该基因编码一个AAA + ATP酶家族成员。当交叉形成所需过程存在缺陷时,例如DSB修复基因突变以及减数分裂染色体轴结构存在缺陷时,依赖Pch2的粗线期检查点功能会导致粗线期进程延迟。因此,粗线期检查点似乎在监测导致交叉产生的事件。有趣的是,杂合染色体重排会导致依赖Pch2的粗线期延迟,并且配对染色体轴连续性中只要有两个断裂就足以引发检查点活性。这些染色体重排还会对重组产生染色体间效应,即受影响染色体之间的交叉受到抑制,但正常染色体对之间的交叉增加。我们已经表明,这种现象也是由于粗线期检查点活性所致。