Li Deng Wen, Yang Qin, Chen Jia Tong, Zhou Hao, Liu Ru Ming, Huang Xi Tai
Department of Biochemistry and molecular biology, College of Life Sciences, Nankai University, Tianjin 300071, China.
Cell Res. 2005 Feb;15(2):120-6. doi: 10.1038/sj.cr.7290276.
The dynamic distribution of phosphorylated Histone H3 on Ser10 (phospho-H3) in cells was investigated to determine its function during mitosis. Human breast adenocarcinoma cells MCF-7, and Chinese hamster cells CHO were analyzed by indirect immunofluorescence staining with an antibody against phospho-H3. We found that the phosphorylation begins at early prophase, and spreads throughout the chromosomes at late prophase. At metaphase, most of the phospho-H3 aggregates at the end of the condensed entity of chromosomes at equatorial plate. During anaphase and telophase, the fluorescent signal of phospho-H3 is detached from chromosomes into cytoplasm. At early anaphase, phospho-H3 shows ladder bands between two sets of separated chromosome, and forms "sandwich-like structure" when the chromosomes condensed. With the cleavage progressing, the "ladders" of the histone contract into a bigger bright dot. Then the histone aggregates and some of compacted microtubules in the midbody region are composed into a "bar-like" complex to separate daughter cells. The daughter cells seal their plasma membrane along with the ends of the "bar", inside which locates microtubules and modified histones, to finish the cytokinesis and keep the "bar complex" out of the cells. The specific distribution and kinetics of phospho-H3 in cytoplasm suggest that the modified histones may take part in the formation of midbody and play a crucial role in cytokinesis.
为了确定磷酸化组蛋白H3在丝氨酸10位点(磷酸化H3)在细胞有丝分裂过程中的功能,对其动态分布进行了研究。使用抗磷酸化H3抗体通过间接免疫荧光染色分析了人乳腺癌细胞MCF-7和中国仓鼠细胞CHO。我们发现磷酸化始于前期早期,并在前期晚期扩散到整个染色体。在中期,大多数磷酸化H3聚集在赤道板染色体浓缩实体末端。在后期和末期,磷酸化H3的荧光信号从染色体脱离进入细胞质。在后期早期,磷酸化H3在两组分离的染色体之间显示梯状条带,并在染色体浓缩时形成“三明治样结构”。随着分裂的进行,组蛋白的“梯状条带”收缩成一个更大的亮点。然后组蛋白聚集,中体区域一些紧密的微管组成一个“棒状”复合体以分离子细胞。子细胞沿着“棒”的末端封闭其质膜,“棒”内部有微管和修饰的组蛋白,以完成胞质分裂并将“棒状复合体”排出细胞外。磷酸化H3在细胞质中的特定分布和动力学表明,修饰的组蛋白可能参与中体的形成并在胞质分裂中起关键作用。