McLeod M, Stein M, Beach D
EMBO J. 1987 Mar;6(3):729-36. doi: 10.1002/j.1460-2075.1987.tb04814.x.
In fission yeast the ability to undergo meiosis and sporulation is conferred by the matP+ and matM+ genes of the mating-type locus. Inactivation of ran1+, a negative regulator of meiosis, is thought to be an essential step in meiotic initiation. We have isolated a further meiotic control gene mei3+, and have shown the following: a null allele of mei3 totally inhibits meiosis; the mei3+ RNA transcript and its translational product are expressed only in matP+/matM+ diploids entering meiosis; forced expression of mei3+ in vegetative cells provokes haploid meiosis and sporulation. We suggest that the product of mei3+ gene, a protein of 21 kd, initiates meiosis by inactivating ran1+.
在裂殖酵母中,进行减数分裂和孢子形成的能力由交配型位点的matP⁺和matM⁺基因赋予。减数分裂的负调控因子ran1⁺的失活被认为是减数分裂起始的关键步骤。我们分离出了另一个减数分裂控制基因mei3⁺,并得到了以下结果:mei3的无效等位基因完全抑制减数分裂;mei3⁺RNA转录本及其翻译产物仅在进入减数分裂的matP⁺/matM⁺二倍体中表达;在营养细胞中强制表达mei3⁺会引发单倍体减数分裂和孢子形成。我们认为,mei3⁺基因的产物,一种21kd的蛋白质,通过使ran1⁺失活来启动减数分裂。