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LIM激酶活性是小鼠卵母细胞减数分裂中微管组织中心定位所必需的。

LIM kinase activity is required for microtubule organising centre positioning in mouse oocyte meiosis.

作者信息

Li Xin, Zhu Yubo, Cao Yan, Wang Qian, Du Juan, Tian Jianhui, Liang Yuanjing, Ma Wei

机构信息

Department of Histology and Embryology, School of Basic Medical Sciences, Capital Medical University, Beijing, 100069, China.

College of Animal Science and Veterinary Medicine, Shenyang Agricultural University, Shenyang, 110886, China.

出版信息

Reprod Fertil Dev. 2017 Apr;29(4):791-804. doi: 10.1071/RD15406.

Abstract

LIM kinase 1 (LIMK1) activity is essential for cell migration and cell cycle progression. Little is known about LIMK1 expression and function in mammalian oocytes. In the present study we assessed LIMK1 protein expression, subcellular distribution and function during mouse oocyte meiosis. Western blot analysis revealed high and stable expression of LIMK1 from the germinal vesicle (GV) to MII stage. In contrast, activated LIMK1 (i.e. LIMK1 phosphorylated at threonine 508 (pLIMK1)) was only detected after GV breakdown, with levels increasing gradually to peak at MI and MII. Immunofluorescence showed pLIMK1 was colocalised with the microtubule organising centre (MTOC) components pericentrin and γ-tubulin at the spindle poles. A direct interaction between γ-tubulin and pLIMK1 was confirmed by co-immunoprecipitation. LIMK inhibition with 1μM BMS3 damaged MTOC protein localisation to spindle poles, undermined the formation and positioning of functional MTOC and thus disrupted spindle formation and chromosome alignment. These effects were phenocopied by microinjection of LIMK1 antibody into mouse oocytes. In summary, the data demonstrate that LIMK activity is essential for MTOC organisation and distribution and so bipolar spindle formation and maintenance in mouse oocytes.

摘要

LIM激酶1(LIMK1)活性对于细胞迁移和细胞周期进程至关重要。关于LIMK1在哺乳动物卵母细胞中的表达和功能知之甚少。在本研究中,我们评估了小鼠卵母细胞减数分裂过程中LIMK1蛋白的表达、亚细胞分布及功能。蛋白质免疫印迹分析显示,从生发泡(GV)期到减数第二次分裂中期(MII)期,LIMK1均有高且稳定的表达。相比之下,活化的LIMK1(即苏氨酸508位点磷酸化的LIMK1(pLIMK1))仅在GV期破裂后被检测到,其水平在减数第一次分裂中期(MI)和MII期逐渐升高至峰值。免疫荧光显示,pLIMK1与纺锤体极处的微管组织中心(MTOC)成分中心体蛋白和γ-微管蛋白共定位。通过免疫共沉淀证实了γ-微管蛋白与pLIMK1之间存在直接相互作用。用1μM BMS3抑制LIMK会破坏MTOC蛋白在纺锤体极的定位,破坏功能性MTOC的形成和定位,从而扰乱纺锤体形成和染色体排列。将LIMK1抗体显微注射到小鼠卵母细胞中可模拟这些效应。总之,数据表明LIMK活性对于小鼠卵母细胞中MTOC的组织和分布至关重要,因此对于双极纺锤体的形成和维持也至关重要。

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