生物
细胞周期蛋白B1
细胞生物学
减数分裂
细胞周期蛋白B
减数分裂II
卵母细胞
极体
中期
动细胞
有丝分裂
后期
主轴检查点
粘蛋白
主轴装置
细胞周期蛋白
遗传学
细胞周期
染色体
细胞分裂
细胞周期蛋白依赖激酶1
胚胎
细胞
基因
作者
Suzanne Madgwick,David V. Hansen,Mark Levasseur,Peter K. Jackson,Keith T. Jones
标识
DOI:10.1083/jcb.200604140
摘要
During interkinesis, a metaphase II (MetII) spindle is built immediately after the completion of meiosis I. Oocytes then remain MetII arrested until fertilization. In mouse, we find that early mitotic inhibitor 2 (Emi2), which is an anaphase-promoting complex inhibitor, is involved in both the establishment and the maintenance of MetII arrest. In MetII oocytes, Emi2 needs to be degraded for oocytes to exit meiosis, and such degradation, as visualized by fluorescent protein tagging, occurred tens of minutes ahead of cyclin B1. Emi2 antisense morpholino knockdown during oocyte maturation did not affect polar body (PB) extrusion. However, in interkinesis the central spindle microtubules from meiosis I persisted for a short time, and a MetII spindle failed to assemble. The chromatin in the oocyte quickly decondensed and a nucleus formed. All of these effects were caused by the essential role of Emi2 in stabilizing cyclin B1 after the first PB extrusion because in Emi2 knockdown oocytes a MetII spindle was recovered by Emi2 rescue or by expression of nondegradable cyclin B1 after meiosis I.
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