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Hfm1 参与小鼠卵母细胞减数分裂中与高尔基体相关的纺锤体组装和分裂。

Hfm1 participates in Golgi-associated spindle assembly and division in mouse oocyte meiosis.

机构信息

State Key Laboratory of Reproductive Medicine, Department of Obstetrics and Gynecology, The First Affiliated Hospital of Nanjing Medical University, Jiangsu Province Hospital, Jiangsu Women and Children Health Hospital, Nanjing, China.

出版信息

Cell Death Dis. 2020 Jun 30;11(6):490. doi: 10.1038/s41419-020-2697-4.

Abstract

HFM1 (helicase for meiosis 1) is widely recognized as an ATP-dependent DNA helicase and is expressed mainly in germ-line cells. HFM1 is a candidate gene of premature ovarian failure (POF), hence it is also known as POF9. However, the roles of HFM1 in mammalian oocytes remain uncertain. To investigate the functions of HFM1, we established a conditional knockout (cKO) mouse model. Specific knockout of Hfm1 in mouse oocytes from the primordial follicle stage resulted in depletion of ovarian follicular reserve and subfertility of mice. In particular, abnormal spindle, misaligned chromosomes, loss of cortical actin cap, and failing polar body extrusion were readily observed in Hfm1-cKO oocytes. Further studies indicated that in addition to its cytoplasmic distribution, Hfm1 accumulated at the spindle poles, colocalized with the Golgi marker protein, GM130. Generally, GM130 signals overlapped with p-Mapk at the two spindle poles to regulate meiotic spindle assembly and asymmetric division. In this research, centrosome associated proteins, such as GM130 and p-Mapk, detached from the spindle poles in Hfm1-cKO oocytes. In conclusion, our data suggest that Hfm1 participates in Golgi-associated spindle assembly and division in mouse oocyte meiosis. These findings provide clues for pathogenesis of POF.

摘要

HFM1(减数分裂 1 的解旋酶)被广泛认为是一种依赖 ATP 的 DNA 解旋酶,主要在生殖细胞中表达。HFM1 是卵巢早衰 (POF) 的候选基因,因此也被称为 POF9。然而,HFM1 在哺乳动物卵母细胞中的作用尚不清楚。为了研究 HFM1 的功能,我们建立了条件性敲除 (cKO) 小鼠模型。从原始卵泡阶段特异性敲除 Hfm1 导致卵巢卵泡储备耗竭和小鼠生育力下降。特别是,在 Hfm1-cKO 卵母细胞中容易观察到异常纺锤体、染色体错位、皮质肌动蛋白帽丢失和极体排出失败。进一步的研究表明,除了细胞质分布外,Hfm1 还聚集在纺锤体两极,与高尔基标记蛋白 GM130 共定位。通常,GM130 信号与两个纺锤体两极的 p-Mapk 重叠,以调节减数分裂纺锤体的组装和不对称分裂。在这项研究中,中心体相关蛋白,如 GM130 和 p-Mapk,在 Hfm1-cKO 卵母细胞中从纺锤体两极脱离。总之,我们的数据表明 Hfm1 参与了小鼠卵母细胞减数分裂中与高尔基体相关的纺锤体组装和分裂。这些发现为 POF 的发病机制提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4f1/7327073/a5e0ff70a4db/41419_2020_2697_Fig1_HTML.jpg

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