Clute P, Pines J (1999) Temporal and spatial control of cyclin B1 destruction in metaphase. Nat Cell Biol 1:82–87
Article CAS PubMed Google Scholar
Fan L-H, Wang Z-B, Li Q-N, Meng T-G, Dong M-Z, Hou Y, Ouyang Y-C, Schatten H, Sun Q-Y (2019) Absence of mitochondrial DNA methylation in mouse oocyte maturation, aging and early embryo development. Biochem Biophys Res Commun 513:912–918
Article CAS PubMed Google Scholar
Hassold T, Hunt P (2001) To err (meiotically) is human: the genesis of human aneuploidy. Nat Rev Genet 2:280–291
Article CAS PubMed Google Scholar
Hodges CA, Hunt PA (2002) Simultaneous analysis of chromosomes and chromosome-associated proteins in mammalian oocytes and embryos. Chromosoma 111:165–169
Article CAS PubMed Google Scholar
Ito J, Yoon S-Y, Lee B, Vanderheyden V, Vermassen E, Wojcikiewicz R, Alfandari D, De Smedt H, Parys JB, Fissore RA (2008) Inositol 1,4,5-trisphosphate receptor 1, a widespread Ca2+ channel, is a novel substrate of polo-like kinase 1 in eggs. Dev Biol 320:402–413
Article CAS PubMed PubMed Central Google Scholar
Jones KT, Lane SI (2013) Molecular causes of aneuploidy in mammalian eggs. Development 140:3719–3730
Article CAS PubMed Google Scholar
Katis VL, Matos J, Mori S, Shirahige K, Zachariae W, Nasmyth K (2004) Spo13 facilitates monopolin recruitment to kinetochores and regulates maintenance of centromeric cohesion during yeast meiosis. Curr Biol 14:2183–2196
Article CAS PubMed Google Scholar
Kim J, Ishiguro K-I, Nambu A, Akiyoshi B, Yokobayashi S, Kagami A, Ishiguro T, Pendas AM, Takeda N, Sakakibara Y, Kitajima TS, Tanno Y, Sakuno T, Watanabe Y (2015) Meikin is a conserved regulator of meiosis-I-specific kinetochore function. Nature 517:466–471
Article CAS PubMed Google Scholar
Lee JY, Orr-Weaver TL (2001) The molecular basis of sister-chromatid cohesion. Annu Rev Cell Dev Biol 17:753–777
Article CAS PubMed Google Scholar
Lee BH, Kiburz BM, Amon A (2004) Spo13 maintains centromeric cohesion and kinetochore coorientation during meiosis I. Curr Biol 14:2168–2182
Article CAS PubMed Google Scholar
Li J, Qian WP, Sun QY (2019) Cyclins regulating oocyte meiotic cell cycle progression†. Biol Reprod 101:878–881
Article PubMed PubMed Central Google Scholar
Maier NK, Ma J, Lampson MA, Cheeseman IM (2021) Separase cleaves the kinetochore protein Meikin at the meiosis I/II transition. Dev Cell 56:2192-2206.e2198
Article CAS PubMed PubMed Central Google Scholar
Marston AL, Amon A (2004) Meiosis: cell-cycle controls shuffle and deal. Nat Rev Mol Cell Biol 5:983–997
Article CAS PubMed Google Scholar
Mihajlović AI, FitzHarris G (2018) Segregating chromosomes in the mammalian oocyte. Curr Biol 28:R895-r907
Miyazaki S, Kim J, Yamagishi Y, Ishiguro T, Okada Y, Tanno Y, Sakuno T, Watanabe Y (2017) Meikin-associated polo-like kinase specifies Bub1 distribution in meiosis I. Genes Cells Devoted Mol Cell Mech 22:552–567
Musacchio A, Salmon ED (2007) The spindle-assembly checkpoint in space and time. Nat Rev Mol Cell Biol 8:379–393
Article CAS PubMed Google Scholar
Peters J-M (2006) The anaphase promoting complex/cyclosome: a machine designed to destroy. Nat Rev Mol Cell Biol 7:644–656
Article CAS PubMed Google Scholar
Petronczki M, Siomos MF, Nasmyth K (2003) Un ménage à quatre: the molecular biology of chromosome segregation in meiosis. Cell 112:423–440
Article CAS PubMed Google Scholar
Qi S-T, Wang Z-B, Ouyang Y-C, Zhang Q-H, Hu M-W, Huang X, Ge Z, Guo L, Wang Y-P, Hou Y, Schatten H, Sun Q-Y (2013) Overexpression of SETβ, a protein localizing to centromeres, causes precocious separation of chromatids during the first meiosis of mouse oocytes. J Cell Sci 126:1595–1603
Qi S-T, Wang Z-B, Huang L, Liang L-F, Xian Y-X, Ouyang Y-C, Hou Y, Sun Q-Y, Wang W-H (2015) Casein kinase 1 (α, δ and ε) localize at the spindle poles, but may not be essential for mammalian oocyte meiotic progression. Cell Cycle 14:1675–1685
Article CAS PubMed PubMed Central Google Scholar
Ryu K-Y, Sinnar SA, Reinholdt LG, Vaccari S, Hall S, Garcia MA, Zaitseva TS, Bouley DM, Boekelheide K, Handel MA, Conti M, Kopito RR (2008) The mouse polyubiquitin gene Ubb is essential for meiotic progression. Mol Cell Biol 28:1136–1146
Article CAS PubMed Google Scholar
Sullivan M, Morgan DO (2007) A novel destruction sequence targets the meiotic regulator Spo13 for anaphase-promoting complex-dependent degradation in anaphase I. J Biol Chem 282:19710–19715
Article CAS PubMed Google Scholar
Sun SC, Kim NH (2012) Spindle assembly checkpoint and its regulators in meiosis. Hum Reprod Update 18:60–72
Article CAS PubMed Google Scholar
Tong C, Fan H-Y, Lian L, Li S-W, Chen D-Y, Schatten H, Sun Q-Y (2002) Polo-like kinase-1 is a pivotal regulator of microtubule assembly during mouse oocyte meiotic maturation, fertilization, and early embryonic mitosis. Biol Reprod 67:546–554
Article CAS PubMed Google Scholar
Xiong B, Sun S-C, Lin S-L, Li M, Xu B-Z, OuYang Y-C, Hou Y, Chen D-Y, Sun Q-Y (2008) Involvement of Polo-like kinase 1 in MEK1/2-regulated spindle formation during mouse oocyte meiosis. Cell Cycle 7:1804–1809
Article CAS PubMed Google Scholar
Yokobayashi S, Watanabe Y (2005) The kinetochore protein Moa1 enables cohesion-mediated monopolar attachment at meiosis I. Cell 123:803–817
Article CAS PubMed Google Scholar
Zhang T, Zhou Y, Qi S-T, Wang Z-B, Qian W-P, Ouyang Y-C, Shen W, Schatten H, Sun Q-Y (2015) Nuf2 is required for chromosome segregation during mouse oocyte meiotic maturation. Cell Cycle 14:2701–2710
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