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MPS1活性受损导致老龄母马卵母细胞出现多极纺锤体形成:将马确立为研究年龄诱导的卵母细胞减数分裂纺锤体不稳定的天然动物模型。

Compromised MPS1 Activity Induces Multipolar Spindle Formation in Oocytes From Aged Mares: Establishing the Horse as a Natural Animal Model to Study Age-Induced Oocyte Meiotic Spindle Instability.

作者信息

Rizzo Marilena, Stout Tom A E, Cristarella Santo, Quartuccio Marco, Kops Geert J P L, De Ruijter-Villani Marta

机构信息

Department of Clinical Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, Netherlands.

Department of Veterinary Sciences, Messina University, Messina, Italy.

出版信息

Front Cell Dev Biol. 2021 May 6;9:657366. doi: 10.3389/fcell.2021.657366. eCollection 2021.

Abstract

Aneuploidy originating during meiosis in oocytes is the major cause of reduced fertility, implantation failure and miscarriage in women beyond their mid-thirties. Loss of chromosome cohesion, and defective microtubule dynamics and spindle assembly are, in turn, the major contributors to the error-prone nature of chromosome segregation in the oocytes of older women. However, the underlying molecular defects are not well understood. Altered function of MPS1 and AURKC have been shown to induce multipolar spindle phenotypes in murine oocytes and cancer cells, however, their role in reproductive aging associated oocyte aneuploidy is not known. Although age-related gamete and embryonic aneuploidy has been studied in female rodents, the horse may be a more appropriate animal model. Similar to women, aged mares suffer from reduced fertility and an increased incidence of oocyte aneuploidy. Moreover, mares show a long interval (decades) to reproductive senescence and, unlike rodents but similar to women, horse oocytes assemble the meiotic spindle in a slow and unstable manner, independent of microtubule organizing centers. In this study we found that oocytes from aged mares have lower expression of mRNA for and than oocytes from young mares while gene expression for other meiosis regulators did not differ. To assess the ability of horse oocytes to correctly form a bipolar spindle, matured MII oocytes were allowed to re-form their spindle after nocodazole-induced microtubule depolymerization. To investigate the importance of MPS1 and AURKC function in spindle (re)assembly, various concentrations of a MPS1 inhibitor (MPS1i, Compound 5) or an AURK inhibitor (AURKi, ZM447439) were included after nocodazole washout. MII oocytes from aged mares showed a higher incidence of spindle abnormalities after exposure to MPS1i. In contrast, Aurora kinase inhibition severely impaired microtubule organization and spindle formation in all oocytes, irrespective of mare age. In conclusion, gene expression for the kinases , and is reduced in oocytes from aged mares. Moreover, spindle (re)assembly in aged mares' oocytes is more unstable when Mps1 is inhibited. Overall, this suggests that compromised Mps1 activity predisposes to meiotic spindle instability in aged mare oocytes. This spindle instability could predispose to chromosome segregation errors.

摘要

卵母细胞减数分裂过程中产生的非整倍体是35岁以上女性生育力下降、着床失败和流产的主要原因。染色体黏连丧失、微管动力学缺陷和纺锤体组装异常,反过来又是老年女性卵母细胞中染色体分离易出错的主要原因。然而,其潜在的分子缺陷尚不清楚。MPS1和AURKC功能改变已被证明可在小鼠卵母细胞和癌细胞中诱导多极纺锤体表型,然而,它们在与生殖衰老相关的卵母细胞非整倍体中的作用尚不清楚。尽管已在雌性啮齿动物中研究了与年龄相关的配子和胚胎非整倍体,但马可能是更合适的动物模型。与女性相似,老龄母马生育力下降,卵母细胞非整倍体发生率增加。此外,母马到生殖衰老的间隔时间很长(数十年),与啮齿动物不同但与女性相似,马的卵母细胞以缓慢且不稳定的方式组装减数分裂纺锤体,与微管组织中心无关。在本研究中,我们发现老龄母马的卵母细胞中 和 的mRNA表达低于年轻母马的卵母细胞,而其他减数分裂调节因子的基因表达没有差异。为了评估马卵母细胞正确形成双极纺锤体的能力,在诺考达唑诱导微管解聚后,让成熟的MII期卵母细胞重新组装纺锤体。为了研究MPS1和AURKC功能在纺锤体(重新)组装中的重要性,在诺考达唑洗脱后加入不同浓度的MPS1抑制剂(MPS1i,化合物5)或AURK抑制剂(AURKi,ZM447439)。老龄母马的MII期卵母细胞在暴露于MPS1i后纺锤体异常的发生率更高。相比之下,极光激酶抑制严重损害了所有卵母细胞中的微管组织和纺锤体形成,与母马年龄无关。总之,老龄母马卵母细胞中 、 和 激酶的基因表达降低。此外,当Mps1被抑制时,老龄母马卵母细胞中的纺锤体(重新)组装更不稳定。总体而言,这表明Mps1活性受损易导致老龄母马卵母细胞减数分裂纺锤体不稳定。这种纺锤体不稳定可能易导致染色体分离错误。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9945/8136435/e5b02613492e/fcell-09-657366-g001.jpg

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