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Fission yeast mfr1 activates APC and coordinates meiotic nuclear division with sporulation.

机译:裂变酵母mfr1激活APC并与减数分裂协调减数分裂核分裂。

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摘要

Meiosis is the developmental program by which sexually reproducing diploid organisms generate haploid gametes. In yeast, meiosis is followed by spore morphogenesis. These two events are normally coordinated in such a way that spore formation is dependent upon completion of the meiotic nuclear divisions. Here we describe a meiosis-specific protein, mfr1, that is involved in this coordination. mfr1 is an activator of the anaphase-promoting complex (APC), which is necessary for the rapid degradation of the cdc13 cyclin at the end of meiosis II, prior to the formation of spores. An mfr1 null mutant completes meiosis II but remains with high levels of cdc13 and cdc2 kinase activity and has considerably delayed spore formation. By analogy with the mitotic cell cycle, where proteolysis and inactivation of cdc2 kinase are necessary to trigger mitotic exit and cytokinesis, we propose that at the end of meiosis rapid and timely proteolysis of cyclins is required to switch on the differentiation program that eventually leads to the formation of haploid gametes.
机译:减数分裂是有性繁殖二倍体生物体产生单倍体配子的发育程序。在酵母中,减数分裂后是孢子形态发生。通常以这样的方式协调这两个事件,即孢子的形成取决于减数分裂核分裂的完成。在这里,我们描述了减数分裂特异性蛋白mfr1,它参与了这种协调。 mfr1是后期促进复合物(APC)的激活剂,这对于在形成孢子之前在减数分裂II末期的cdc13细胞周期蛋白快速降解是必需的。一个mfr1空突变体完成了减数分裂II,但仍具有高水平的cdc13和cdc2激酶活性,并大大延迟了孢子的形成。与有丝分裂细胞周期类似,其中需要通过蛋白水解和cdc2激酶失活来触发有丝分裂退出和胞质分裂,我们建议在减数分裂结束时,需要快速,及时地对细胞周期蛋白进行蛋白水解,以启动分化程序,最终导致单倍体配子的形成。

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