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蟾蜍卵母细胞成熟能力中的冬季冬眠与UCHL1-p34cdc2关联

Winter hibernation and UCHL1-p34cdc2 association in toad oocyte maturation competence.

作者信息

Kuang Zhichao, Yao Yuwei, Shi Yan, Gu Zheng, Sun Zhaogui, Tso Jiake

机构信息

Institute of Reproduction & Development, Shanghai Medical College, Fudan University, Shanghai, China.

出版信息

PLoS One. 2013 Oct 23;8(10):e78785. doi: 10.1371/journal.pone.0078785. eCollection 2013.

Abstract

Currently, it is believed that toad oocyte maturation is dependent on the physiological conditions of winter hibernation. Previous antibody-blocking experiments have demonstrated that toad ubiquitin carboxyl-terminal hydrolase L1 (tUCHL1) is necessary for germinal vesicle breakdown during toad oocyte maturation. In this paper, we first supply evidence that tUCHL1 is highly evolutionarily conserved. Then, we exclude protein availability and ubiquitin carboxyl-terminal hydrolase enzyme activity as factors in the response of oocytes to winter hibernation. In the context of MPF (maturation promoting factor) controlling oocyte maturation and to further understand the role of UCHL1 in oocyte maturation, we performed adsorption and co-immunoprecipitation experiments using toad oocyte protein extracts and determined that tUCHL1 is associated with MPF in toad oocytes. Recombinant tUCHL1 absorbed p34(cdc2), a component of MPF, in obviously larger quantities from mature oocytes than from immature oocytes, and p13(suc1) was isolated from tUCHL1 with a dependence on the ATP regeneration system, suggesting that still other functions may be involved in their association that require phosphorylation. In oocytes from hibernation-interrupted toads, the p34(cdc2) protein level was significantly lower than in oocytes from toads in artificial hibernation, providing an explanation for the different quantities isolated by recombinant tUCHL1 pull-down and, more importantly, identifying a mechanism involved in the toad oocyte's dependence on a low environmental temperature during winter hibernation. Therefore, in toads, tUCHL1 binds p34(cdc2) and plays a role in oocyte maturation. However, neither tUCHL1 nor cyclin B1 respond to low temperatures to facilitate oocyte maturation competence during winter hibernation.

摘要

目前,人们认为蟾蜍卵母细胞成熟依赖于冬季冬眠的生理条件。先前的抗体阻断实验表明,蟾蜍泛素羧基末端水解酶L1(tUCHL1)是蟾蜍卵母细胞成熟过程中核膜破裂所必需的。在本文中,我们首先提供证据表明tUCHL1在进化上高度保守。然后,我们排除了蛋白质可用性和泛素羧基末端水解酶活性作为卵母细胞对冬季冬眠反应的因素。在成熟促进因子(MPF)控制卵母细胞成熟的背景下,为了进一步了解UCHL1在卵母细胞成熟中的作用,我们使用蟾蜍卵母细胞蛋白提取物进行了吸附和免疫共沉淀实验,并确定tUCHL1在蟾蜍卵母细胞中与MPF相关。重组tUCHL1从成熟卵母细胞中吸附MPF的成分p34(cdc2)的量明显多于未成熟卵母细胞,并且p13(suc1)从tUCHL1中分离出来依赖于ATP再生系统,这表明它们的结合可能还涉及其他需要磷酸化的功能。在冬眠被打断的蟾蜍的卵母细胞中,p34(cdc2)蛋白水平显著低于处于人工冬眠状态的蟾蜍的卵母细胞,这为重组tUCHL1下拉实验中分离出的不同量提供了解释,更重要的是,确定了蟾蜍卵母细胞在冬季冬眠期间依赖低温的一种机制。因此,在蟾蜍中,tUCHL1与p34(cdc2)结合并在卵母细胞成熟中发挥作用。然而,在冬季冬眠期间,tUCHL1和细胞周期蛋白B1都不响应低温以促进卵母细胞的成熟能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/662d/3806854/a6fc1c4ba7d4/pone.0078785.g001.jpg

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