Chiu I M, Marzluff W F
Biochim Biophys Acta. 1982 Dec 31;699(3):173-82. doi: 10.1016/0167-4781(82)90105-1.
It has been known for several years that DNA replication and histone synthesis occur concomitantly in cultured mammalian cells. Normally all five classes of histones are synthesized coordinately. However, mouse myeloma cells, synchronized by starvation for isoleucine, synthesize increased amounts of histone H1 relative to the four nucleosomal core histones. This unscheduled synthesis of histone H1 is reduced within 1 h after refeeding isoleucine, and is not a normal component of G1. The synthesis of H1 increases coordinately again with other histones during the S phase. The DNA synthesis inhibitors, cytosine arabinoside and hydroxyurea, block all histone synthesis in S-phase cells. The levels of histone H1 mRNA, relative to the other histone mRNAs, is increased in isoleucine-starved cells and decreases rapidly after refeeding isoleucine. The increased incorporation of histone H1 is at least partially due to the low isoleucine content of histone H1. Starvation of cells for lysine resulted in a decrease in H1 synthesis relative to core histones. Again the ratio was altered on refeeding the amino acid. 3T3 cells starved for serum also incorporated only H1 histones into chromatin. The ratio of different H1 proteins also changed. The synthesis of the H1(0) protein was predominant in G0 cells, and reduced in S-phase cells. These data indicate the metabolism of H1 is independent of the other histones when cell growth is arrested.
多年来人们已经知道,在培养的哺乳动物细胞中,DNA复制和组蛋白合成是同时发生的。正常情况下,所有五类组蛋白都是协调合成的。然而,通过异亮氨酸饥饿同步化的小鼠骨髓瘤细胞,相对于四种核小体核心组蛋白,会合成增加量的组蛋白H1。这种组蛋白H1的异常合成在重新供给异亮氨酸后1小时内减少,并且不是G1期的正常组成部分。在S期,H1的合成再次与其他组蛋白协调增加。DNA合成抑制剂阿糖胞苷和羟基脲可阻断S期细胞中的所有组蛋白合成。相对于其他组蛋白mRNA,组蛋白H1 mRNA的水平在异亮氨酸饥饿的细胞中升高,并在重新供给异亮氨酸后迅速下降。组蛋白H1掺入增加至少部分是由于组蛋白H1的异亮氨酸含量低。细胞赖氨酸饥饿导致相对于核心组蛋白,H1合成减少。再次,在重新供给氨基酸后比例发生了变化。血清饥饿的3T3细胞也仅将H1组蛋白掺入染色质中。不同H1蛋白的比例也发生了变化。H1(0)蛋白的合成在G0期细胞中占主导,而在S期细胞中减少。这些数据表明,当细胞生长停滞时,H1的代谢独立于其他组蛋白。