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多胺耗竭期间中国仓鼠卵巢细胞中低分子量染色体蛋白的量和共价修饰的变化

Alterations in amounts and covalent modifications of low-molecular-weight chromosomal proteins in Chinese hamster ovary cells during polyamine depletion.

作者信息

Palvimo J, Pohjanpelto P, Linnala-Kankkunen A, Mäenpää P H

出版信息

Biochim Biophys Acta. 1987 Jun 6;909(1):21-9. doi: 10.1016/0167-4781(87)90042-x.

Abstract

The effect of polyamine depletion on phosphorylation and ADP-ribosylation of low-Mr chromosomal proteins was studied in intact, mutant Chinese hamster ovary cells (CHO-P22) devoid of ornithine decarboxylase activity. When starved of polyamines for 6 days, severe polyamine deficiency develops and the cells gradually stop growing. The rate of DNA synthesis was retarded to 16% of the control value and to 29% in density-inhibited cells. The synthesis of high-mobility-group (HMG) proteins was decreased by 65% in polyamine-depleted cells and by 40% in density-inhibited cells. The synthesis of core histones was decreased by 40% both in polyamine-depleted and density-inhibited cells. In polyamine-depleted cells the molar ratio of the higher-Mr HMG proteins (HMG 1 + 2) to the lower-Mr HMG proteins (HMG 14 + P) was about one-half of that found in cells grown in the presence of putrescine or in density-inhibited cells. In contrast to HMG proteins, no major differences were found in the content of core histones in these cell populations. In the perchloric acid-soluble fraction of nuclear proteins, 32P was incorporated mainly into histone H1, HMG P and a protein migrating more slowly than HMG 1 (protein P1). Specific changes in the 32P-labeling and migration of a number of protein bands, including histone H1, was observed in polyamine-depleted cells as compared to cells grown in the presence of putrescine or to density-inhibited cells. ADP-ribosylation experiments using [3H]adenosine showed a different pattern of label distribution; the higher-Mr HMG proteins from polyamine-depleted cells contained about one-half the amount of label found in the proteins from control cells. The lower-Mr HMG proteins and histone H1 were the preferentially labeled proteins in polyamine-depleted cells. Labeling of core histones with [32P]orthophosphate or [3H]adenosine did not differ markedly in the two cell populations. The results obtained using intact polyamine auxotrophic cells indicated that polyamine depletion is connected with more severe alterations in amounts and covalent modifications (phosphorylation and ADP-ribosylation) of HMG chromosomal proteins and histone H1 than core histones.

摘要

在缺乏鸟氨酸脱羧酶活性的完整突变型中国仓鼠卵巢细胞(CHO-P22)中,研究了多胺耗竭对低分子量染色体蛋白磷酸化和ADP核糖基化的影响。当细胞饥饿6天缺乏多胺时,会出现严重的多胺缺乏,细胞逐渐停止生长。DNA合成速率减慢至对照值的16%,在密度抑制细胞中减慢至29%。多胺耗竭细胞中高迁移率族(HMG)蛋白的合成减少了65%,密度抑制细胞中减少了40%。多胺耗竭细胞和密度抑制细胞中核心组蛋白的合成均减少了40%。在多胺耗竭细胞中,较高分子量的HMG蛋白(HMG 1 + 2)与较低分子量的HMG蛋白(HMG 14 + P)的摩尔比约为在腐胺存在下生长的细胞或密度抑制细胞中的一半。与HMG蛋白不同,这些细胞群体中核心组蛋白的含量没有发现主要差异。在核蛋白的高氯酸可溶性部分中,32P主要掺入组蛋白H1、HMG P和一种迁移速度比HMG 1慢的蛋白(蛋白P1)。与在腐胺存在下生长的细胞或密度抑制细胞相比,在多胺耗竭细胞中观察到包括组蛋白H1在内的一些蛋白带的32P标记和迁移有特异性变化。使用[3H]腺苷进行的ADP核糖基化实验显示了不同的标记分布模式;多胺耗竭细胞中较高分子量的HMG蛋白所含的标记量约为对照细胞中蛋白的一半。较低分子量的HMG蛋白和组蛋白H1是多胺耗竭细胞中优先标记的蛋白。用[32P]正磷酸盐或[3H]腺苷对核心组蛋白的标记在这两个细胞群体中没有明显差异。使用完整的多胺营养缺陷型细胞获得的结果表明,多胺耗竭与HMG染色体蛋白和组蛋白H1的数量和共价修饰(磷酸化和ADP核糖基化)的更严重改变有关,而不是与核心组蛋白有关。

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