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在女性中,依赖年龄的减数分裂纺锤体组装检查点的完整性需要 Aurora 激酶 B。

Age-dependent integrity of the meiotic spindle assembly checkpoint in females requires Aurora kinase B.

机构信息

Department of Genetics; Rutgers, The State University of New Jersey, Piscataway, NJ, USA.

Human Genetics Institute of New Jersey, Piscataway, NJ, USA.

出版信息

Aging Cell. 2021 Nov;20(11):e13489. doi: 10.1111/acel.13489. Epub 2021 Oct 26.

Abstract

A hallmark of advanced maternal age is a significant increase in meiotic chromosome segregation errors, resulting in early miscarriages and congenital disorders. These errors most frequently occur during meiosis I (MI). The spindle assembly checkpoint (SAC) prevents chromosome segregation errors by arresting the cell cycle until proper chromosome alignment is achieved. Unlike in mitosis, the SAC in oocytes is desensitized, allowing chromosome segregation in the presence of improperly aligned chromosomes. Whether SAC integrity further deteriorates with advancing maternal age, and if this decline contributes to increased segregation errors remains a fundamental question. In somatic cells, activation of the SAC depends upon Aurora kinase B (AURKB), which functions to monitor kinetochore-microtubule attachments and recruit SAC regulator proteins. In mice, oocyte-specific deletion of AURKB (Aurkb cKO) results in an increased production of aneuploid metaphase II-arrested eggs and premature age-related infertility. Here, we aimed to understand the cause of the short reproductive lifespan and hypothesized that SAC integrity was compromised. In comparing oocytes from young and sexually mature Aurkb cKO females, we found that SAC integrity becomes compromised rapidly with maternal age. We show that the increased desensitization of the SAC is driven by reduced expression of MAD2, ZW10 and Securin proteins, key contributors to the SAC response pathway. The reduced expression of these proteins is the result of altered protein homeostasis, likely caused by the accumulation of reactive oxygen species. Taken together, our results demonstrate a novel function for AURKB in preserving the female reproductive lifespan possibly by protecting oocytes from oxidative stress.

摘要

高龄产妇的一个显著特征是减数分裂染色体分离错误显著增加,导致早期流产和先天性疾病。这些错误最常发生在减数分裂 I(MI)期间。纺锤体装配检查点(SAC)通过阻止细胞周期直到实现适当的染色体排列来防止染色体分离错误。与有丝分裂不同,卵母细胞中的 SAC 脱敏,允许在染色体排列不正确的情况下进行染色体分离。随着母体年龄的增长,SAC 的完整性是否进一步恶化,以及这种下降是否导致分离错误增加,仍然是一个基本问题。在体细胞中,SAC 的激活依赖于 Aurora 激酶 B(AURKB),其作用是监测着丝粒-微管附着,并招募 SAC 调节蛋白。在小鼠中,卵母细胞特异性敲除 AURKB(Aurkb cKO)会导致非整倍体中期 II 期阻滞卵母细胞的产量增加和过早的与年龄相关的不育。在这里,我们旨在了解生殖寿命缩短的原因,并假设 SAC 的完整性受到损害。在比较年轻和性成熟 Aurkb cKO 雌性的卵母细胞时,我们发现 SAC 的完整性随着母体年龄的增长而迅速受损。我们表明,SAC 脱敏的增加是由 MAD2、ZW10 和 Securin 蛋白表达减少驱动的,这些蛋白是 SAC 反应途径的关键贡献者。这些蛋白的表达减少是蛋白质动态平衡改变的结果,可能是由于活性氧的积累造成的。总之,我们的结果表明 AURKB 在保护卵母细胞免受氧化应激方面具有新的功能,可能是通过保护卵母细胞来延长雌性生殖寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e037/8590096/5754106ff2cf/ACEL-20-e13489-g005.jpg

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