极体
卵母细胞
生物
减数分裂
主轴装置
细胞生物学
中心体
有丝分裂
微管
主轴杆体
染色体分离
人类受精
细胞分裂
解剖
遗传学
胚胎
细胞
染色体
细胞周期
基因
作者
Binyam Mogessie,Kathleen Scheffler,Melina Schuh
标识
DOI:10.1146/annurev-cellbio-100616-060553
摘要
Fertilizable eggs develop from diploid precursor cells termed oocytes. Once every menstrual cycle, an oocyte matures into a fertilizable egg in the ovary. To this end, the oocyte eliminates half of its chromosomes into a small cell termed a polar body. The egg is then released into the Fallopian tube, where it can be fertilized. Upon fertilization, the egg completes the second meiotic division, and the mitotic division of the embryo starts. This review highlights recent work that has shed light on the cytoskeletal structures that drive the meiotic divisions of the oocyte in mammals. In particular, we focus on how mammalian oocytes assemble a microtubule spindle in the absence of centrosomes, how they position the spindle in preparation for polar body extrusion, and how the spindle segregates the chromosomes. We primarily focus on mouse oocytes as a model system but also highlight recent insights from human oocytes.
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