DYRK2 and GSK-3 phosphorylate and promote the timely degradation of OMA-1, a key regulator of the oocyte-to-embryo transition in C-elegans

被引:72
|
作者
Nishi, Y [1 ]
Lin, R [1 ]
机构
[1] Univ Texas, SW Med Ctr, Dept Mol Biol, Dallas, TX 75390 USA
关键词
OMA-1; C; elegans; DYRK; GSK-3; protein degradation; embryos; phosphorylation;
D O I
10.1016/j.ydbio.2005.09.053
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Oocyte maturation and fertilization initiates a dynamic and tightly regulated process in which a non-dividing oocyte is transformed into a rapidly dividing embryo. We have shown previously that two C. elegans CCCH zinc finger proteins, OMA-1 and OMA-2, have an essential and redundant function in oocyte maturation. Both OMA-1 and OMA-2 are expressed only in oocytes and 1-cell embryos, and need to be degraded rapidly after the first mitotic division for embryogenesis to proceed normally. We report here a distinct redundant function for OMA-1 and OMA-2 in the 1-cell embryo. Depletion of both oma-1 and oma-2 in embryos leads to embryonic lethality. We also show that OMA-1 protein is directly phosphorylated at T-239 by the DYRK kinase MBK-2, and that phosphorylation at T-239 is required both for OMA-1 function in the 1-cell embryo and its degradation after the first mitosis. OMA-1 phosphorylated at T-239 is only detected within a short developmental window of 1-cell embryos, beginning soon after the proposed activation of MBK-2. Phosphorylation at T-239 facilitates subsequent phosphorylation of OMA-1 by another kinase, GSK-3, at T-339 in vitro. Phosphorylation at both T-239 and T-339 are essential for correctly-timed OMA-1 degradation in vivo. We propose that a series of precisely-timed phosphorylation events regulates both the activity and the timing of degradation for OMA proteins, thereby allowing restricted and distinct functions of OMA-1 and OMA-2 in the maturing oocyte and 1-cell embryo, ensuring a normal oocyte-to-embryo transition in C elegans. (C) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:139 / 149
页数:11
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