College of Animal Science and Technology, Nanjing Agricultural University, Nanjing, China.
State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
J Cell Physiol. 2018 Aug;233(8):6088-6097. doi: 10.1002/jcp.26450. Epub 2018 Mar 6.
LIM kinases (LIMK1/2) are LIM domain-containing serine/threonine/tyrosine kinases that mediate multiple cellular processes in mitosis. In the present study, we explored the functional roles and potential signaling pathway of LIMK1/2 during mouse oocyte meiosis. Disruption of LIMK1/2 activity and expression significantly decreased oocyte polar body extrusion. Live-cell imaging revealed that spindle migration was disturbed after both LIMK1 and LIMK2 knock down, and this might be due to aberrant distribution of actin filaments in the oocyte cytoplasm and cortex. Meanwhile, our results demonstrated that the function of LIMK1 and LIMK2 in actin assembly was related to cofilin phosphorylation levels. In addition, disruption of LIMK1/2 activity significantly increased the percentage of oocytes with abnormal spindle morphologies, which was confirmed by the abnormal p-MAPK localization. We further, explored the upstream molecules of LIMK1/2, and we found that after depletion of ROCK, phosphorylation of LIMK1/2 and cofilin were significantly decreased. Moreover, RhoA inhibition caused the decreased expression of ROCK, p-LIMK1/2, and cofilin. In summary, our results indicated that the small GTPase RhoA regulated LIMK1/2-cofilin to modulate cytoskeletal dynamics during mouse oocyte meiosis.
LIM 激酶(LIMK1/2)是 LIM 结构域富含丝氨酸/苏氨酸/酪氨酸激酶,在有丝分裂中介导多种细胞过程。在本研究中,我们探讨了 LIMK1/2 在小鼠卵母细胞减数分裂过程中的功能作用和潜在信号通路。LIMK1/2 活性和表达的破坏显著降低了卵母细胞第一极体的挤出。活细胞成像显示,在 LIMK1 和 LIMK2 敲低后,纺锤体迁移受到干扰,这可能是由于卵母细胞质和皮质中肌动蛋白丝的异常分布所致。同时,我们的结果表明,LIMK1 和 LIMK2 在肌动蛋白组装中的功能与丝切蛋白磷酸化水平有关。此外,LIMK1/2 活性的破坏显著增加了具有异常纺锤体形态的卵母细胞的比例,这通过异常的 p-MAPK 定位得到了证实。我们进一步探索了 LIMK1/2 的上游分子,发现 ROCK 耗竭后,LIMK1/2 和丝切蛋白的磷酸化明显减少。此外,RhoA 抑制导致 ROCK、p-LIMK1/2 和丝切蛋白的表达减少。总之,我们的结果表明,小 GTP 酶 RhoA 通过调节 LIMK1/2-丝切蛋白来调节小鼠卵母细胞减数分裂中的细胞骨架动态。