UCD School of Bimolecular and Biomedical Science, UCD Conway Institute of Biomolecular and Biomedical Research, Belfield, Dublin 4, Ireland.
Cell Death Dis. 2013 Nov 7;4(11):e908. doi: 10.1038/cddis.2013.435.
We have analyzed the expression and function of the cell death and cell cycle regulator Aven in Xenopus. Analysis of Xenopus Aven expression in oocytes and embryos revealed a band close to the predicted molecular weight of the protein (36 kDa) in addition to two bands of higher molecular weight (46 and 49 kDa), one of which was determined to be due to phosphorylation of the protein. The protein is primarily detected in the cytoplasm of oocytes and is tightly regulated during meiotic and mitotic cell cycles. Progesterone stimulation of oocytes resulted in a rapid loss of Aven expression with the protein levels recovering before germinal vesicle breakdown (GVBD). This loss of Aven is required for the G2-M1 cell cycle transition. Aven morpholino knockdown experiments revealed that early depletion of the protein increases progesterone sensitivity and facilitates GVBD, but prolonged depletion of Aven results in caspase-3 activation and oocyte death by apoptosis. Phosphorylated Aven (46 kDa) was found to bind Bcl-xL in oocytes, but this interaction was lost in apoptotic oocytes. Thus, Aven alters progesterone sensitivity in oocytes and is critical for oocyte survival.
我们分析了细胞凋亡和细胞周期调控因子 Aven 在非洲爪蟾中的表达和功能。在卵母细胞和胚胎中分析非洲爪蟾 Aven 的表达时,除了两个分子量更高的条带(46 和 49 kDa)外,还发现了一条接近该蛋白预测分子量(36 kDa)的条带,其中一条被确定是由于该蛋白的磷酸化。该蛋白主要在卵母细胞的细胞质中检测到,并在减数分裂和有丝分裂细胞周期中受到严格调控。孕激素刺激卵母细胞导致 Aven 表达迅速丧失,蛋白水平在生发泡破裂(GVBD)前恢复。这种 Aven 的丧失对于 G2-M1 细胞周期转变是必需的。Aven 吗啉代寡核苷酸敲低实验表明,早期耗尽该蛋白会增加孕激素的敏感性并促进 GVBD,但 Aven 的长期耗尽会导致半胱天冬酶-3 的激活和卵母细胞通过细胞凋亡死亡。在卵母细胞中发现磷酸化 Aven(46 kDa)与 Bcl-xL 结合,但这种相互作用在凋亡卵母细胞中丢失。因此,Aven 改变了卵母细胞中孕激素的敏感性,对于卵母细胞的存活至关重要。