Lumbroso Gal, Cairo Gisela, Lacefield Soni, Murray Andrew W
Department of Molecular and Cellular Biology, Harvard University, Cambridge MA, USA.
Department of Biochemistry and Cell Biology, the Geisel School of Medicine at Dartmouth, Hanover NH, USA.
bioRxiv. 2024 Dec 19:2024.12.18.629243. doi: 10.1101/2024.12.18.629243.
In meiosis, one round of DNA replication followed by two rounds of chromosome segregation halves the ploidy of the original cell. Accurate chromosome segregation in meiosis I depends on recombination between homologous chromosomes. Sister centromeres attach to the same spindle pole in this division and only segregate in meiosis II. We used budding yeast to select for mutations that produced viable spores in the absence of recombination. The most frequent mutations inactivated , which encodes one of four B-type cyclins. In two wild yeast isolates, Y55 and SK1, but not the W303 laboratory strain, deleting causes premature sister centromere separation and segregation in meiosis I and frequent termination of meiosis after a single division, demonstrating a novel role for Clb4 in meiotic chromosome dynamics and meiotic progression. This role depends on the genetic background since meiosis in W303 is largely independent of .
在减数分裂过程中,一轮DNA复制后紧接着两轮染色体分离,使原始细胞的倍性减半。减数分裂I中准确的染色体分离依赖于同源染色体之间的重组。在这次分裂中,姐妹着丝粒附着于同一纺锤极,并且仅在减数分裂II中分离。我们利用芽殖酵母筛选在无重组情况下产生有活力孢子的突变。最常见的突变使 失活, 编码四种B型细胞周期蛋白之一。在两个野生酵母分离株Y55和SK1中,但不是在W303实验室菌株中,缺失 会导致减数分裂I中姐妹着丝粒过早分离和分离,并且在单次分裂后减数分裂频繁终止,这证明了Clb4在减数分裂染色体动态变化和减数分裂进程中的新作用。该作用取决于遗传背景,因为W303中的减数分裂在很大程度上不依赖于 。