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Regulation of the meiotic divisions of mammalian oocytes and eggs
Author(s) -
Jessica R. Sanders,
Keith T. Jones
Publication year - 2018
Publication title -
biochemical society transactions
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.562
H-Index - 144
eISSN - 1470-8752
pISSN - 0300-5127
DOI - 10.1042/bst20170493
Subject(s) - meiosis , oocyte , gamete , microbiology and biotechnology , biology , homologous chromosome , meiosis ii , ovulation , human fertilization , cell division , chromosome segregation , andrology , genetics , chromosome , embryo , cell , medicine , pregnancy , gene
Initiated by luteinizing hormone and finalized by the fertilizing sperm, the mammalian oocyte completes its two meiotic divisions. The first division occurs in the mature Graafian follicle during the hours preceding ovulation and culminates in an extreme asymmetric cell division and the segregation of the two pairs of homologous chromosomes. The newly created mature egg rearrests at metaphase of the second meiotic division prior to ovulation and only completes meiosis following a Ca 2+ signal initiated by the sperm at gamete fusion. Here, we review the cellular events that govern the passage of the oocyte through meiosis I with a focus on the role of the spindle assembly checkpoint in regulating its timing. In meiosis II, we examine how the egg achieves its arrest and how the fertilization Ca 2+ signal allows the initiation of embryo development.

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