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ECB-ART-46233
Proc Jpn Acad Ser B Phys Biol Sci 2018 Jan 01;944:180-203. doi: 10.2183/pjab.94.013.
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MPF-based meiotic cell cycle control: Half a century of lessons from starfish oocytes.

Kishimoto T .


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In metazoans that undergo sexual reproduction, genomic inheritance is ensured by two distinct types of cell cycle, mitosis and meiosis. Mitosis maintains the genomic ploidy in somatic cells reproducing within a generation, whereas meiosis reduces by half the ploidy in germ cells to prepare for successive generations. The meiotic cell cycle is believed to be a derived form of the mitotic cell cycle; however, the molecular mechanisms underlying both of these processes remain elusive. My laboratory has long studied the meiotic cell cycle in starfish oocytes, particularly the control of meiotic M-phase by maturation- or M phase-promoting factor (MPF) and the kinase cyclin B-associated Cdk1 (cyclin B-Cdk1). Using this system, we have unraveled the molecular principles conserved in metazoans that modify M-phase progression from the mitotic type to the meiotic type needed to produce a haploid genome. Furthermore, we have solved a long-standing enigma concerning the molecular identity of MPF, a universal inducer of M-phase both in mitosis and meiosis of eukaryotic cells.

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Species referenced: Echinodermata
Genes referenced: apc cdc45 cdk1 LOC100893461 LOC100893907 LOC105441782 LOC115919910 LOC115925415 LOC115929578 LOC574811 LOC576121 LOC576799 LOC582192 LOC582503 LOC585694 LOC586734 LOC586799 LOC588695 LOC588766 LOC589944 LOC591219 LOC764031 mcm4 mos plk1 psmg1 srpl wee1


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References [+] :
Abe, A single starfish Aurora kinase performs the combined functions of Aurora-A and Aurora-B in human cells. 2010, Pubmed, Echinobase