Department of Genetics, University of Cambridge, Downing Street , Cambridge, UK.
Department of Zoology, University of Cambridge, Downing Street , Cambridge, UK.
Open Biol. 2024 Jun;14(6):240065. doi: 10.1098/rsob.240065. Epub 2024 Jun 19.
The transition from oocyte to embryo requires translation of maternally provided transcripts that in is activated by Pan Gu kinase to release a rapid succession of 13 mitotic cycles. Mitotic entry is promoted by several protein kinases that include Greatwall/Mastl, whose Endosulfine substrates antagonize Protein Phosphatase 2A (PP2A), facilitating mitotic Cyclin-dependent kinase 1/Cyclin B kinase activity. Here we show that hyperactive can not only be suppressed by mutants in its Endos substrate but also by mutants in Pan Gu kinase subunits. Conversely, mutants in or which encode a complex that represses hundreds of maternal mRNAs, enhance . Me31B and Trailer Hitch proteins, known substrates of Pan Gu kinase, copurify with Endos. This echoes findings that budding yeast Dhh1, orthologue of Me31B, associates with Igo1/2, orthologues of Endos and substrates of the Rim15, orthologue of Greatwall. derived mutant embryos show reduced Me31B and elevated transcripts for the mitotic activators Cyclin B, Polo and Twine/Cdc25. Together, our findings demonstrate a previously unappreciated conservation of the Greatwall-Endosulfine pathway in regulating translational repressors and its interactions with the Pan Gu kinase pathway to regulate translation and/or stability of maternal mRNAs upon egg activation.
从卵母细胞到胚胎的转变需要翻译母体提供的转录本,这些转录本在 中被 Pan Gu 激酶激活,以释放一连串快速的 13 次有丝分裂周期。有丝分裂的进入是由几种蛋白激酶促进的,包括 Greatwall/Mastl,其 Endosulfine 底物拮抗蛋白磷酸酶 2A(PP2A),促进有丝分裂周期蛋白依赖性激酶 1/周期蛋白 B 激酶活性。在这里,我们表明,过度活跃的 不仅可以被其 Endos 底物的突变体抑制,也可以被 Pan Gu 激酶亚基的突变体抑制。相反,编码抑制数百种母体 mRNA 的复合物的 或 突变体增强了 。已知 Pan Gu 激酶的底物 Me31B 和 Trailer Hitch 蛋白与 Endos 共纯化。这与芽殖酵母 Dhh1(Me31B 的同源物)与 Igo1/2(Endos 的同源物)以及 Rim15(Greatwall 的同源物)的底物结合的发现相呼应。衍生的突变体胚胎显示 Me31B 减少和有丝分裂激活物 Cyclin B、Polo 和 Twine/Cdc25 的转录本升高。总之,我们的研究结果表明,在调节翻译抑制剂及其与 Pan Gu 激酶途径的相互作用以调节卵母细胞激活时母体 mRNA 的翻译和/或稳定性方面,Greatwall-Endosulfine 途径的保守性以前未被认识到。