Clemens M J, Tilleray V J
Biochem J. 1986 Aug 1;237(3):877-84. doi: 10.1042/bj2370877.
The accompanying paper [McNurlan & Clemens (1986) Biochem. J. 237, 871-876] shows that the inhibition of proliferation of Daudi cells by human interferons is associated with impairment of the overall rate of protein synthesis. We have examined whether two of the mechanisms which are believed to control translation in interferon-treated virus-infected cells may be responsible for the inhibition of protein synthesis during the antiproliferative response in these uninfected cells. Although the rate of polypeptide chain initiation is lower in interferon-treated Daudi cells, as indicated by the disaggregation of polysomes, there is no significant inhibition of activity of initiation factor eIF-2 or of [40 S . Met-tRNAf] initiation complex formation in cell extracts. The phosphorylation state of the alpha subunit of eIF-2 remains unaltered. There is no major decrease in mRNA content as a proportion of total RNA up to 4 days of interferon treatment, as judged by poly(A) content, although the amount of total mRNA/10(6) cells eventually declines. The mRNA present in extracts from interferon-treated cells remains translatable when added to an mRNA-dependent reticulocyte lysate system. We conclude that neither the interferon-inducible eIF-2 protein kinase pathway nor the 2',5'-oligo(adenylate)-ribonuclease L pathway are responsible for the inhibition of polypeptide chain initiation. Rather, the data suggest impairment at the level of formation of [80 S ribosome X mRNA] initiation complexes.
随附论文[麦克努尔兰和克莱门斯(1986年),《生物化学杂志》第237卷,871 - 876页]表明,人干扰素对多毛细胞白血病细胞增殖的抑制与蛋白质合成总体速率的受损有关。我们研究了在经干扰素处理的病毒感染细胞中被认为控制翻译的两种机制是否可能是这些未感染细胞抗增殖反应期间蛋白质合成受到抑制的原因。尽管如多核糖体解聚所示,经干扰素处理的多毛细胞白血病细胞中多肽链起始速率较低,但细胞提取物中起始因子eIF - 2的活性或[40S·甲硫氨酰 - tRNAf]起始复合物的形成没有受到显著抑制。eIF - 2α亚基的磷酸化状态保持不变。根据多聚腺苷酸含量判断,在长达4天的干扰素处理期间,作为总RNA比例的mRNA含量没有大幅下降,尽管每10⁶个细胞中总mRNA的量最终会下降。当添加到依赖mRNA的网织红细胞裂解物系统中时,经干扰素处理的细胞提取物中存在的mRNA仍然可翻译。我们得出结论,干扰素诱导的eIF - 2蛋白激酶途径和2',5'-寡腺苷酸 - 核糖核酸酶L途径都不是多肽链起始受到抑制的原因。相反,数据表明在[80S核糖体×mRNA]起始复合物形成水平存在受损。