MG-132是一种蛋白酶体和钙蛋白酶的抑制剂,可诱导小鼠卵母细胞成熟和非整倍体的抑制。

John B Mailhes, Colette Hilliard, Mary Lowery, Steve N London
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引用次数: 39

摘要

背景:尽管卵母细胞成熟(OM)过程中的染色体错分离是人类发病率和死亡率的重要因素,但对非整倍体的原因和机制知之甚少。一些研究人员提出,在OM期间的时间扰动易使卵母细胞发生异常染色体分离。测试这一建议的一种方法是在OM期间暂时抑制蛋白质水解活性。我们使用可逆性蛋白酶体抑制剂MG-132暂时扰乱OM期间事件的时间序列,随后分析小鼠中期II (MII)的细胞遗传学异常。MG-132对蛋白酶体活性的短暂抑制导致含有额外染色单体和染色体的卵母细胞水平升高。结果:MG-132对OM期间蛋白酶体介导的蛋白水解的短暂抑制导致OM期间的剂量反应延迟和非整倍体MII卵母细胞水平升高。体外暴露于MG-132的卵母细胞在I中期(MI)表现出更大的延迟,这表明MII卵母细胞中MI阻滞的卵母细胞水平显著(p < 0.01)提高,姐妹染色单体过早分离的频率显著降低。此外,随着MG-132剂量的增加,含有单个染色单体和额外染色体的MII卵母细胞比例显著增加(p < 0.01)。结论:这些数据表明,mg -132诱导的小鼠体外OM过程中蛋白酶体活性的短暂延迟易导致卵母细胞染色体分离异常。尽管这些发现支持了蛋白酶体活性紊乱与染色体分离之间的关系,但还需要大量额外的数据来进一步研究蛋白酶体介导的蛋白质水解和其他潜在的分子机制在OM过程中对染色体分离的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

MG-132, an inhibitor of proteasomes and calpains, induced inhibition of oocyte maturation and aneuploidy in mouse oocytes.

MG-132, an inhibitor of proteasomes and calpains, induced inhibition of oocyte maturation and aneuploidy in mouse oocytes.

BACKGROUND: Although chromosome missegregation during oocyte maturation (OM) is a significant contributor to human morbidity and mortality, very little is known about the causes and mechanisms of aneuploidy. Several investigators have proposed that temporal perturbations during OM predispose oocytes to aberrant chromosome segregation. One approach for testing this proposal is to temporarily inhibit the activity of protein proteolysis during OM. We used the reversible proteasome inhibitor MG-132 to transiently perturb the temporal sequence of events during OM and subsequently analyzed mouse metaphase II (MII) for cytogenetic abnormalities. The transient inhibition of proteasome activity by MG-132 resulted in elevated levels of oocytes containing extra chromatids and chromosomes. RESULTS: The transient inhibition of proteasome-mediated proteolysis during OM by MG-132 resulted in dose-response delays during OM and elevated levels of aneuploid MII oocytes. Oocytes exposed in vitro to MG-132 exhibited greater delays during metaphase I (MI) as demonstrated by significantly (p < 0.01) higher levels of MI arrested oocytes and lower frequencies of premature sister chromatid separation in MII oocytes. Furthermore, the proportions of MII oocytes containing single chromatids and extra chromosomes significantly (p < 0.01) increased with MG-132 dosage. CONCLUSIONS: These data suggest that the MG-132-induced transient delay of proteasomal activity during mouse OM in vitro predisposed oocytes to abnormal chromosome segregation. Although these findings support a relationship between disturbed proteasomal activity and chromosome segregation, considerable additional data are needed to further investigate the roles of proteasome-mediated proteolysis and other potential molecular mechanisms on chromosome segregation during OM.

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