Wang Qian, Wei Haojie, Du Juan, Cao Yan, Zhang Nana, Liu Xiaoyun, Liu Xiaoyu, Chen Dandan, Ma Wei
a Department of Histology and Embryology , School of Basic Medical Sciences, Capital Medical University , Beijing , China.
Cell Cycle. 2016;15(2):213-24. doi: 10.1080/15384101.2015.1121330. Epub 2015 Dec 4.
Haspin-catalyzed histone H3 threonine 3 (Thr3) phosphorylation facilitates chromosomal passenger complex (CPC) docking at centromeres, regulating indirectly chromosome behavior during somatic mitosis. It is not fully known about the expression and function of H3 with phosphorylated Thr3 (H3T3-P) during meiosis in oocytes. In this study, we investigated the expression and sub-cellular distribution of H3T3-P, as well as its function in mouse oocytes during meiotic division. Western blot analysis revealed that H3T3-P expression was only detected after germinal vesicle breakdown (GVBD), and gradually increased to peak level at metaphase I (MI), but sharply decreased at metaphase II (MII). Immunofluorescence showed H3T3-P was only brightly labeled on chromosomes after GVBD, with relatively high concentration across the whole chromosome axis from pro-metaphase I (pro-MI) to MI. Specially, H3T3-P distribution was exclusively limited to the local space between sister centromeres at MII stage. Haspin inhibitor, 5-iodotubercidin (5-ITu), dose- and time-dependently blocked H3T3-P expression in mouse oocytes. H3T3-P inhibition delayed the resumption of meiosis (GVBD) and chromatin condensation. Moreover, the loss of H3T3-P speeded up the meiotic transition to MII of pro-MI oocytes in spite of the presence of non-aligned chromosomes, even reversed MI-arrest induced with Nocodazole. The inhibition of H3T3-P expression distinguishably damaged MAD1 recruitment on centromeres, which indicates the spindle assembly checkpoint was impaired in function, logically explaining the premature onset of anaphase I. Therefore, Haspin-catalyzed histone H3 phosphorylation is essential for chromatin condensation and the following timely transition from meiosis I to meiosis II in mouse oocytes during meiotic division.
Haspin催化的组蛋白H3苏氨酸3(Thr3)磷酸化促进染色体乘客复合体(CPC)在着丝粒处对接,间接调节体细胞有丝分裂过程中的染色体行为。卵母细胞减数分裂过程中,苏氨酸3磷酸化的H3(H3T3-P)的表达和功能尚不完全清楚。在本研究中,我们调查了H3T3-P在小鼠卵母细胞减数分裂过程中的表达、亚细胞分布及其功能。蛋白质免疫印迹分析显示,H3T3-P的表达仅在生发泡破裂(GVBD)后检测到,并在中期I(MI)逐渐增加至峰值水平,但在中期II(MII)急剧下降。免疫荧光显示,GVBD后H3T3-P仅在染色体上有明亮标记,从前中期I(pro-MI)到MI,整个染色体轴上浓度相对较高。特别地,在MII期,H3T3-P的分布仅限于姐妹着丝粒之间的局部空间。Haspin抑制剂5-碘杀结核菌素(5-ITu)在小鼠卵母细胞中呈剂量和时间依赖性地阻断H3T3-P的表达。抑制H3T3-P会延迟减数分裂的恢复(GVBD)和染色质凝聚。此外,尽管存在未对齐的染色体,H3T3-P的缺失仍加速了pro-MI期卵母细胞向MII期的减数分裂转变,甚至逆转了用诺考达唑诱导的MI期阻滞。抑制H3T3-P的表达显著破坏了着丝粒上MAD1的募集,这表明纺锤体组装检查点功能受损,从逻辑上解释了后期I的过早开始。因此,Haspin催化的组蛋白H3磷酸化对于小鼠卵母细胞减数分裂过程中的染色质凝聚以及随后从减数分裂I到减数分裂II的及时转变至关重要。