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首页> 外文期刊>Current Biology: CB >The Conserved Kinases CDK-1, GSK-3, KIN-19, and MBK-2 Promote OMA-1 Destruction to Regulate the Oocyte-to-Embryo Transition in C. elegans
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The Conserved Kinases CDK-1, GSK-3, KIN-19, and MBK-2 Promote OMA-1 Destruction to Regulate the Oocyte-to-Embryo Transition in C. elegans

机译:保守的激酶CDK-1,GSK-3,KIN-19和MBK-2促进OMA-1破坏,以调节秀丽隐杆线虫的卵母细胞向胚胎的过渡。

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摘要

BACKGROUND: At the onset of embryogenesis, key developmental regulators called determinants are activated asymmetrically to specify the body axes and tissue layers. In C. elegans, this process is regulated in part by a conserved family of CCCH-type zinc finger proteins that specify the fates of early embryonic cells. The asymmetric localization of these and other determinants is regulated in early embryos through motor-dependent physical translocation as well as selective proteolysis. RESULTS: We show here that the CCCH-type zinc finger protein OMA-1 serves as a nexus for signals that regulate the transition from oogenesis to embryogenesis. While OMA-1 promotes oocyte maturation during meiosis, destruction of OMA-1 is needed during the first cell division for the initiation of ZIF-1-dependent proteolysis of cell-fate determinants. Mutations in four conserved protein kinase genes-mbk-2/Dyrk, kin-19/CK1alpha, gsk-3, and cdk-1/CDC2-cause stabilization of OMA-1 protein, and their phenotypes are partially suppressed by an oma-1 loss-of-function mutation. OMA-1 proteolysis also depends on Cyclin B3 and on a ZIF-1-independent CUL-2-based E3 ubiquitin ligase complex, as well as the CUL-2-interacting protein ZYG-11 and the Skp1-related proteins SKR-1 and SKR-2. CONCLUSIONS: Our findings suggest that a CDK1/Cyclin B3-dependent activity links OMA-1 proteolysis to completion of the first cell cycle and support a model in which OMA-1 functions to prevent the premature activation of cell-fate determinants until after they are asymmetrically partitioned during the first mitosis.
机译:背景:在胚胎发生开始时,称为决定簇的关键发育调节因子被非对称激活,以指定体轴和组织层。在秀丽隐杆线虫中,此过程部分受保守的CCCH型锌指蛋白家族的调控,该家族指定了早期胚胎细胞的命运。这些和其他决定因素的不对称定位在早期胚胎中通过运动相关的物理易位以及选择性蛋白水解来调节。结果:我们在这里显示CCCH型锌指蛋白OMA-1充当调节从卵到胚发生过渡的信号的纽带。尽管OMA-1促进减数分裂过程中的卵母细胞成熟,但在第一个细胞分裂过程中需要破坏OMA-1来启动依赖ZIF-1的细胞命运决定因素的蛋白水解。四个保守的蛋白激酶基因mbk-2 / Dyrk,kin-19 / CK1alpha,gsk-3和cdk-1 / CDC2的突变导致OMA-1蛋白稳定,其表型被oma-1部分抑制功能丧失突变。 OMA-1蛋白水解还依赖于细胞周期蛋白B3和不依赖ZIF-1的基于CUL-2的E3泛素连接酶复合物,以及依赖于CUL-2的相互作用蛋白ZYG-11和Skp1相关蛋白SKR-1和SKR-2。结论:我们的研究结果表明,依赖CDK1 / Cyclin B3的活性将OMA-1蛋白水解与第一个细胞周期的完成联系起来,并支持一种模型,其中OMA-1起到阻止细胞命运决定簇过早激活的作用。在第一次有丝分裂期间不对称地分配。

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