Shibata K, Ajiro K
Laboratory of Cell Biology, Research Institute, Aichi Cancer Center, Nagoya, Japan.
J Biol Chem. 1993 Sep 5;268(25):18431-4.
To analyze the mechanism by which histone H3 phosphorylation occurs specifically during mitosis, the effect of H1 on mitosis-specific H3 phosphorylation (Ser-10) was investigated in nucleosomes. H1 interaction with H1-depleted nucleosomes suppressed H3 phosphorylation including Ser-10 by approximately 50%. However, H1 interaction with DNA-free histone octamers failed to suppress H3 phosphorylation. The extent of suppression of H3 phosphorylation in nucleosomes with H1 prepared from synchronized HeLa cells was cell cycle-dependent. Binding with a highly phosphorylated mitotic H1 produced the least suppression of H3 phosphorylation, whereas binding with a lower H1 phosphorylation from G1 phase resulted in the greatest suppression. The results suggest that 1) mitotic H3 phosphorylation is suppressed with a lower level of H1 phosphorylation during interphase and 2) highly phosphorylated H1 during mitosis partially releases the suppression of mitotic H3 phosphorylation.
为了分析组蛋白H3磷酸化在有丝分裂期间特异性发生的机制,研究了H1对核小体中有丝分裂特异性H3磷酸化(Ser-10)的影响。H1与H1缺失的核小体相互作用可使包括Ser-10在内的H3磷酸化抑制约50%。然而,H1与无DNA的组蛋白八聚体相互作用未能抑制H3磷酸化。用同步化的HeLa细胞制备的含H1的核小体中H3磷酸化的抑制程度是细胞周期依赖性的。与高度磷酸化的有丝分裂H1结合对H3磷酸化的抑制作用最小,而与G1期较低水平的H1磷酸化结合则导致最大程度的抑制。结果表明:1) 间期较低水平的H1磷酸化可抑制有丝分裂H3磷酸化;2) 有丝分裂期间高度磷酸化的H1可部分解除对有丝分裂H3磷酸化的抑制。