Talasz H, Helliger W, Puschendorf B, Lindner H
Institute of Medical Chemistry and Biochemistry, University of Innsbruck, Austria.
Biochemistry. 1996 Feb 13;35(6):1761-7. doi: 10.1021/bi951914e.
In vivo phosphorylation of the five histone H1 variants H1a-H1e including H1(0) in NIH 3T3 mouse fibroblasts was examined during the cell cycle by using a combination of HPLC techniques and conventional AU gel electrophoresis. Phosphorylation starts during the late G1 phase and increases throughout the S phase. In the late S phase, the H1 variants exist as a combination of molecules containing 0 or 1 (H1a, H1c), 0-2 (H1d), or 0-3 (H1b, H1e) phosphate groups with a share of unphosphorylated protein ranging between 35% and 75%, according to the particular subtype. Pulse-chase experiments show that phosphorylation during the S phase is a dynamic phosphorylation process with a limited phosphorylation maximum. In most H1 subtypes, phosphorylation occurs very rapidly at the G2/M transition with only small amounts of intermediate phosphorylated molecules. Phosphorylation of mouse H1c, however, occurs stepwise during this transition. Phosphorylated mouse histone subtypes from cells in mitosis contain four phosphate groups in the case of H1a, H1c, and H1e and five in the case of H1b and H1d. Comparison of the mouse phosphorylation pattern to that in rat C-6 glioma cells showed differences for H1e and H1d. By comparing the different phosphorylation patterns of the individual H1 variants during the cell cycle, we were able to classify the H1 histones into subtypes with low (H1a, H1c, H1(0)) and high (H1b, H1d, H1e) phosphorylation levels.
运用高效液相色谱技术与传统的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳相结合的方法,检测了NIH 3T3小鼠成纤维细胞在细胞周期中5种组蛋白H1变体H1a - H1e(包括H1(0))的体内磷酸化情况。磷酸化在G1期晚期开始,并在整个S期增加。在S期晚期,根据特定亚型,H1变体以含有0或1个(H1a、H1c)、0 - 2个(H1d)或0 - 3个(H1b、H1e)磷酸基团的分子组合形式存在,未磷酸化蛋白的比例在35%至75%之间。脉冲追踪实验表明,S期的磷酸化是一个具有有限磷酸化最大值的动态磷酸化过程。在大多数H1亚型中,磷酸化在G2/M期转换时非常迅速,只有少量中间磷酸化分子。然而,小鼠H1c的磷酸化在此转换过程中是逐步发生的。有丝分裂细胞中磷酸化的小鼠组蛋白亚型,H1a、H1c和H1e含有4个磷酸基团,H1b和H1d含有5个磷酸基团。将小鼠的磷酸化模式与大鼠C - 6胶质瘤细胞中的模式进行比较,发现H1e和H1d存在差异。通过比较细胞周期中各个H1变体的不同磷酸化模式,我们能够将H1组蛋白分为低磷酸化水平(H1a、H1c、H1(0))和高磷酸化水平(H1b、H1d、H1e)的亚型。