Intrinsically Defective Microtubule Dynamics Contribute to Age-Related Chromosome Segregation Errors in Mouse Oocyte Meiosis-I

被引:74
作者
Nakagawa, Shoma [1 ]
FitzHarris, Greg [1 ,2 ]
机构
[1] CRCHUM, Montreal, PQ H2X 0A9, Canada
[2] Univ Montreal, Dept Obstet & Gynaecol, Montreal, PQ H3T 1J4, Canada
关键词
MATERNAL AGE; SELF-ORGANIZATION; HUMAN ANEUPLOIDY; SPINDLE FUNCTION; MICE; MECHANISM; COHESION; CELLS; EGGS; INHERITANCE;
D O I
10.1016/j.cub.2017.02.025
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Chromosome segregation errors in mammalian oocytes compromise development and are particularly prevalent in older females, but the aging-related cellular changes that promote segregation errors remain unclear [1, 2]. Aging causes a loss of meiotic chromosome cohesion, which can explain premature disjunction of sister chromatids [3-7], but why intact sister pairs should missegregate in meiosis-I (termed non-disjunction) remains unknown. Here, we show that oocytes from naturally aged mice exhibit substantially altered spindle microtubule dynamics, resulting in transiently multipolar spindles that predispose the oocytes to kinetochore-microtubule attachment defects and missegregation of intact sister chromatid pairs. Using classical micromanipulation approaches, including reciprocally transferring nuclei between young and aged oocytes, we show that altered microtubule dynamics are not attributable to age-related chromatin changes. We therefore report that altered microtubule dynamics is a novel primary lesion contributing to age-related oocyte segregation errors. We propose that, whereas cohesion loss can explain premature sister separation, classical non-disjunction is instead explained by altered microtubule dynamics, leading to aberrant spindle assembly.
引用
收藏
页码:1040 / 1047
页数:8
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