4.6 Article

Differential regulation of cyclin B1 degradation between the first and second meiotic divisions of bovine oocytes

期刊

THERIOGENOLOGY
卷 78, 期 6, 页码 1171-1181

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.theriogenology.2012.06.006

关键词

Cyclin B1; Securin; MPF; Meiosis; Bovine; Oocytes

资金

  1. National Natural Science Foundation of China [31172280]
  2. National High Technology Research and Development Program of China (863 Program) [2008AA101010]

向作者/读者索取更多资源

During mammalian oocyte maturation, two consecutive meiotic divisions are required to form a haploid gamete. For each meiotic division, oocytes must transfer from metaphase,to anaphase, but maturation promoting factor (cyclin-dependent kinase I/cyclin B1) activity would keep the oocytes at metaphase. Therefore, inactivation of maturation promoting factor is needed to finish the transition and complete both these divisions; this is provided through anaphase-promoting complex/cyclosome-dependent degradation of cyclin B1. The objective of this study was to examine meiotic divisions in. bovine. oocytes after expression of a full length cyclin B1 and a nondegradable N-terminal 87 amino acid deletion, coupled with the fluorochrome Venus, by microinjecting their complementary RNA (cRNA). Overexpression of full-length cyclin B1-Venus inhibited homologue disjunction and first polar body formation in maturing oocytes (control 70% vs. overexpression 16%; P < 0.05). However at the same levels of expression, it did not block second meiotic metaphase and cleavage of eggs after parthenogenetic activation (control: 82% pronuclei and 79% cleaved; overexpression: 91% pronuclei and 89% cleaved). The full length cyclin B1 and a nondegradable N-terminal 87 amino acid deletion caused metaphase arrest in both meiotic divisions, whereas degradation of securin was unaffected. Roscovitine, a potent cyclin-dependent kinase I (CDKI) inhibitor, overcame this metaphase arrest in maturing oocytes at 140 mu M, but higher doses (200 mu M) were needed to overcome arrest in eggs. In conclusion, because metaphase I (MI) blocked by nondegradable cyclin B1 was distinct from metaphase II (MII) in their different sensitivities to trigger CDKI inactivation, we concluded that mechanisms of MI arrest differed from MII arrest. (c) 2012 Elsevier Inc. All rights reserved.

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