Tang Wanli, Wu Judy Qiju, Guo Yanxiang, Hansen David V, Perry Jennifer A, Freel Christopher D, Nutt Leta, Jackson Peter K, Kornbluth Sally
Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, NC 27710, USA.
Mol Biol Cell. 2008 Aug;19(8):3536-43. doi: 10.1091/mbc.e08-04-0417. Epub 2008 Jun 11.
The transition of oocytes from meiosis I (MI) to meiosis II (MII) requires partial cyclin B degradation to allow MI exit without S phase entry. Rapid reaccumulation of cyclin B allows direct progression into MII, producing a cytostatic factor (CSF)-arrested egg. It has been reported that dampened translation of the anaphase-promoting complex (APC) inhibitor Emi2 at MI allows partial APC activation and MI exit. We have detected active Emi2 translation at MI and show that Emi2 levels in MI are mainly controlled by regulated degradation. Emi2 degradation in MI depends not on Ca(2+)/calmodulin-dependent protein kinase II (CaMKII), but on Cdc2-mediated phosphorylation of multiple sites within Emi2. As in MII, this phosphorylation is antagonized by Mos-mediated recruitment of PP2A to Emi2. Higher Cdc2 kinase activity in MI than MII allows sufficient Emi2 phosphorylation to destabilize Emi2 in MI. At MI anaphase, APC-mediated degradation of cyclin B decreases Cdc2 activity, enabling Cdc2-mediated Emi2 phosphorylation to be successfully antagonized by Mos-mediated PP2A recruitment. These data suggest a model of APC autoinhibition mediated by stabilization of Emi2; Emi2 proteins accumulate at MI exit and inhibit APC activity sufficiently to prevent complete degradation of cyclin B, allowing MI exit while preventing interphase before MII entry.
卵母细胞从减数分裂I(MI)向减数分裂II(MII)的转变需要细胞周期蛋白B部分降解,以允许退出MI而不进入S期。细胞周期蛋白B的快速重新积累允许直接进入MII,产生一个细胞静止因子(CSF)阻滞的卵子。据报道,在MI期后期促进复合物(APC)抑制剂Emi2的翻译受到抑制,从而允许部分APC激活并退出MI期。我们检测到MI期有活跃的Emi2翻译,并表明MI期的Emi2水平主要受调控降解的控制。MI期Emi2的降解不依赖于钙/钙调蛋白依赖性蛋白激酶II(CaMKII),而是依赖于Cdc2介导的Emi2多个位点的磷酸化。与MII期一样,这种磷酸化被Mos介导的PP2A募集到Emi2所拮抗。MI期的Cdc2激酶活性高于MII期,使得足够的Emi2磷酸化能够使MI期的Emi2不稳定。在MI期后期,APC介导的细胞周期蛋白B降解降低了Cdc2活性,使得Cdc2介导的Emi2磷酸化能够被Mos介导的PP2A募集成功拮抗。这些数据提示了一种由Emi2稳定介导的APC自抑制模型;Emi2蛋白在MI期退出时积累,并充分抑制APC活性,以防止细胞周期蛋白B完全降解,从而允许退出MI期,同时防止在进入MII期之前进入间期。