Meiotic spindle formation in mammalian oocytes: implications for human infertility

被引:35
作者
Namgoong, Suk [1 ]
Kim, Nam-Hyung [1 ]
机构
[1] Chungbuk Natl Univ, Dept Anim Sci, 52 Naesudong Seowongu, Cheongju 361763, Chungbuk, South Korea
关键词
meiosis; spindle; microtubule-organization centers; aneuploidy; oocyte maturation; SISTER-CHROMATID COHESION; MOUSE OOCYTES; ASSEMBLY CHECKPOINT; CHROMOSOME SEGREGATION; AURORA-B; GAMMA-TUBULIN; PREIMPLANTATION DEVELOPMENT; PERICENTRIOLAR MATERIAL; CENTROSOME FUNCTION; PASSENGER COMPLEX;
D O I
10.1093/biolre/iox145
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
In the final stage of oogenesis, mammalian oocytes generate a meiotic spindle and undergo chromosome segregation to yield an egg that is ready for fertilization. Herein, we describe the recent advances in understanding the mechanisms controlling formation of the meiotic spindle in metaphase I (MI) and metaphase II (MII) in mammalian oocytes, and focus on the differences between mouse and human oocytes. Unlike mitotic cells, mammalian oocytes lack typical centrosomes that consist of two centrioles and the surrounding pericentriolar matrix proteins, which serve as microtubule-organizing centers (MTOCs) inmost somatic cells. Instead, oocytes rely on different mechanisms for the formation of microtubules in MI spindles. Two different mechanisms have been described for MI spindle formation in mammalian oocytes. Chromosome-mediated microtubule formation, including RAN-mediated spindle formation and chromosomal passenger complex-mediated spindle elongation, controls the growth of microtubules from chromatin, while acentriolar MTOC-mediated microtubule formation contributes to spindle formation. Mouse oocytes utilize both chromatin-and MTOC-mediated pathways for microtubule formation. The existence of both pathways may provide a fail-safe mechanism to ensure high fidelity of chromosome segregation during meiosis. Unlike mouse oocytes, human oocytes considered unsuitable for clinical in vitro fertilization procedures, lack MTOCs; this may explain why meiosis in human oocytes is often error-prone. Understanding the mechanisms of MI/MII spindle formation, spindle assembly checkpoint, and chromosome segregation, in mammalian oocytes, will provide valuable insights into the molecular mechanisms of human infertility.
引用
收藏
页码:153 / 161
页数:9
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