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Reproduction (2007) 134 731-738
DOI: 10.1530/REP-07-0149
Copyright © 2007 Society for Reproduction and Fertility
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RESEARCH

Spindle assembly in the absence of chromosomes in mouse oocytes

Ji-Wen Yang1,2, Zi-Li Lei1,2, Yi-Liang Miao1,2, Jun-Cheng Huang1,2, Li-Hong Shi1,2, Ying-Chun OuYang1, Qing-Yuan Sun1 and Da-Yuan Chen1

1 State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, # 5 Da Tun Road, Chaoyang, Beijing 100101, People’s Republic of China and 2 Graduate School, Chinese Academy of Sciences, Beijing 100039, People’s Republic of China

Correspondence should be addressed to D-Y Chen; Email: chendy{at}ioz.ac.cn

This study was carried out to investigate the contributions of chromosomes to spindle assembly in mouse oocytes. We generated two groups of cytoplasts (holo- and hemi-cytoplasts) by enucleation of germinal vesicle (GV), metaphase I (MI), and metaphase II (MII) oocytes using micromanipulation technology. After in vitro culture for 18 h, spindles with different shapes (bi-, mono-, or multipolar) formed in most of these cytoplasts except in hemi-GV cytoplasts. Two or more spindles were observed in most of holo-GV, holo-MI, and holo-MII cytoplasts (76.1, 77.0, and 83.7% respectively). However, the proportions of hemi-MI and hemi-MII cytoplasts with multiple sets of spindles decreased to 17.6 and 20.7% respectively. A single bipolar spindle was observed in each sham-operated oocyte generated by removing different volumes of cytoplasm from the oocytes and keeping nuclei intact. Localization of {gamma}-tubulin showed that microtubule organizing centers (MTOCs) were dispersed at each pole of the multiple sets of spindles formed in holo-cytoplasts. However, most of the MTOCs aggregated at the two poles of the bipolar spindle in sham-operated oocytes. Our results demonstrate that chromosomes are not essential for initiating spindle assembly but for directing distinct MTOCs to aggregate to form a bipolar spindle. Some factors of undetermined nature may pre-exist in an inactive form in GV-stage ooplasm, serving as initiators of spindle assembly upon their activation. Moreover, GV materials released into the cytoplasm may facilitate spindle assembly in normal meiotic maturation.







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Copyright © 2007 by the Society for Reproduction and Fertility.