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Thr11 phosphorylated H3 is associated with centromere DNA during mitosis in MCF-7 cells

机译:Thr11磷酸化的H3与MCF-7细胞有丝分裂期间的着丝粒DNA相关

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In this study, indirect immunofluorescence labeling was used to examine the cellular dynamic distribution of Thr11 phosphorylated H3 at mitosis in MCF-7 cells. The Thr11 phosphorylation was observed beginning at prophase at centromeres. Upon progression of mitosis, fluorescence signal was enhanced in the central region of the metaphase plate and maintained till anaphase at centromeres. During telophase, the fluorescent signal of Thr11 phosphorylated H3 disappears from centromeres, but the signal appears again at the midbody during cytokinesis, which suggests that the modified histones may take part in the formation of the midbody and play a crucial role in cytokinesis. Chromatin immunoprecipitation (ChIP) was used to confirm that Thr11 phosphorylated H3 is specifically associated with centromere DNA at prophase to metaphase, which is coincident with the results observed by immunofluorescence. In conclusion, there was a precise spatial and temporal correlation between H3 phosphorylation of Thr11 and stages of chromatin condensation. The timing of Thr11 phosphorylation and dephosphorylation in mitosis were similar to that reported for Ser10 phosphorylation of H3. The Thr11 phosphorylated H3 localized at centromeres during mitosis, which was different from the Ser10 phosphorylated H3 localized at telomere regions and Thr3 phosphorylated H3 localized along the chromosome arms. The results suggest that the Thr11 phosphorylation of histone H3 may play a specific role which was different from Ser10 and Thr3 phosphorylation in mitosis.
机译:在这项研究中,间接免疫荧光标记用于检查MCF-7细胞中有丝分裂时Thr11磷酸化H3的细胞动态分布。在着丝粒的前期开始观察到Thr11的磷酸化。随着有丝分裂的进行,荧光信号在中期板的中央区域增强并一直保持到着丝粒的后期。在末期,Thr11磷酸化的H3的荧光信号从着丝粒消失,但在胞质分裂过程中该信号再次出现在中体,这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。染色质免疫沉淀(ChIP)用于确认Thr11磷酸化的H3在着床中期到中期与着丝粒DNA特异性缔合,这与免疫荧光观察到的结果一致。总之,Thr11的H3磷酸化与染色质浓缩阶段之间存在精确的时空相关性。 Thr11磷酸化和去磷酸化在有丝分裂中的时间与所报道的H3的Ser10磷酸化的时间相似。 Thr11磷酸化的H3定位在有丝分裂过程中的着丝粒上,这与Ser10磷酸化的H3定位在端粒区域和Thr3磷酸化的H3沿着染色体臂不同。结果表明,组蛋白H3的Thr11磷酸化可能发挥了与Ser10和Thr3磷酸化在有丝分裂中不同的特定作用。

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