Gurley L R, Walters R A, Tobey R A
J Biol Chem. 1975 May 25;250(10):3936-44.
Ion exchange chromatography and preparative electrophoresis were used to examine the phosphorylation of histone f1 and f3 subfractions in synchronized Chinese hamster cells (line CHO). Three discrete f1 phosphorylation events were demonstrated to occur in sequence during the cell cycle. The first event (f1G1) commenced in G1 2 hours prior to entry of cells into S phase; the second event (f1s) commenced simultaneously with initiation of DNA synthesis; and the third event (f1M) commenced when cells entered mitosis. F1M phosphorylation occurred simultaneously with the phosphorylation of histone f3 (which is not phosphorylated during G1, S, or G2). Fractionation of f1 and f3 revealed no differences in these sequential phosphorylation patterns among the various f1 and f3 subfractions, indicating that these phosphorylations are general biochemical events of the cell cycle. Phosphorylated (f1G1) was found to accumulate in cells as they traversed THEIR CELL CYCLE. F1s was phosphorylated to twice the extent of f1G1, but f1s did not accumulate in the cells as they passed through interphase. F1M was phosphorylated to about 4 times the extent of the first phosphorylated form (f1G1). A model of the relationship of histone phosphorylation to the cell cycle is presented which suggests that (a) f1G1 phosphorylation is involved with chromatin structural changes necessary for cell proliferation; (b) f1s phosphorylation is involved with DNA replication; (c) F1M and f3 phosphorylations are involved in chromosome condensation.
采用离子交换色谱法和制备电泳法检测同步化的中国仓鼠细胞(CHO细胞系)中组蛋白F1和F3亚组分的磷酸化情况。结果表明,在细胞周期中,三种离散的F1磷酸化事件依次发生。第一个事件(F1G1)在细胞进入S期前2小时的G1期开始;第二个事件(F1S)与DNA合成的起始同时开始;第三个事件(F1M)在细胞进入有丝分裂时开始。F1M磷酸化与组蛋白F3的磷酸化同时发生(F3在G1期、S期或G2期不发生磷酸化)。对F1和F3进行分级分离后发现,不同的F1和F3亚组分在这些连续的磷酸化模式上没有差异,这表明这些磷酸化是细胞周期中的一般生化事件。发现磷酸化的(F1G1)在细胞经历其细胞周期时会在细胞中积累。F1S的磷酸化程度是F1G1的两倍,但F1S在细胞通过间期时不会在细胞中积累。F1M的磷酸化程度约为第一种磷酸化形式(F1G1)的4倍。本文提出了一个组蛋白磷酸化与细胞周期关系的模型,该模型表明:(a)F1G1磷酸化与细胞增殖所需的染色质结构变化有关;(b)F1S磷酸化与DNA复制有关;(c)F1M和F3磷酸化与染色体凝聚有关。