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脯氨酰异构酶 Pin1 控制小鼠卵母细胞的减数分裂进程。

Prolyl Isomerase, Pin1, Controls Meiotic Progression in Mouse Oocytes.

机构信息

Laboratory of Animal Reproduction, Graduate School of Integrated Science for Life, Hiroshima University, Hiroshima 739-8528, Japan.

Laboratory of Reproductive Biology, Faculty of Science, Japan Women's University, Tokyo 112-8681, Japan.

出版信息

Cells. 2022 Nov 25;11(23):3772. doi: 10.3390/cells11233772.

Abstract

During meiotic maturation, accurate progression of meiosis is ensured by multiple protein kinases and by signal transduction pathways they are involved in. However, the mechanisms regulating the functions of phosphorylated proteins are unclear. Herein, we investigated the role of Pin1, a peptidyl-prolyl cis-trans isomerase family member that regulates protein functions by altering the structure of the peptide bond of proline in phosphorylated proteins in meiosis. First, we analyzed changes in the expression of Pin1 during meiotic maturation and found that although its levels were constant, its localization was dynamic in different stages of meiosis. Furthermore, we confirmed that the spindle rotates near the cortex when Pin1 is inhibited by juglone during meiotic maturation, resulting in an error in the extrusion of the first polar body. In Pin1 mice, frequent polar body extrusion errors were observed in ovulation, providing insights into the mechanism underlying the errors in the extrusion of the polar body. Although multiple factors and mechanisms might be involved, Pin1 functions in meiosis progression via actin- and microtubule-associated phosphorylated protein targets. Our results show that functional regulation of Pin1 is indispensable in oocyte production and should be considered while developing oocyte culture technologies for reproductive medicine and animal breeding.

摘要

在减数分裂成熟过程中,多种蛋白激酶和它们所参与的信号转导途径确保了减数分裂的精确进行。然而,调节磷酸化蛋白功能的机制尚不清楚。在此,我们研究了 Pin1 在减数分裂中的作用,Pin1 是一种肽基脯氨酰顺反异构酶家族成员,通过改变磷酸化蛋白中脯氨酸肽键的结构来调节蛋白质的功能。首先,我们分析了 Pin1 在减数分裂成熟过程中的表达变化,发现尽管其水平保持不变,但在减数分裂的不同阶段其定位是动态的。此外,我们证实,在减数分裂成熟过程中,当 Pin1 被 Juglone 抑制时,纺锤体在皮层附近旋转,导致第一次极体挤出错误。在 Pin1 小鼠中,排卵时经常观察到极体挤出错误,这为极体挤出错误的机制提供了见解。虽然可能涉及多种因素和机制,但 Pin1 通过与肌动蛋白和微管相关的磷酸化蛋白靶标在减数分裂进程中发挥作用。我们的结果表明,Pin1 的功能调节在卵子发生中是必不可少的,在开发生殖医学和动物繁殖的卵子培养技术时应考虑这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc29/9739419/4d6550750407/cells-11-03772-g001.jpg

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