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在核糖体合成缺失的情况下,血清刺激细胞的多聚腺苷酸(poly A(+))mRNA含量增加。

Increasing content of poly A(+) mRNA of serum-stimulated cells in the absence of ribosome synthesis.

作者信息

Johnson L F, Penman S, Green H

出版信息

J Cell Physiol. 1975 Dec;87(2):141-6. doi: 10.1002/jcp.1040870202.

Abstract

When 3T6 cells undergo a serum-induced transition from resting to growing state, the number of ribosomes and the amounts of mRNA increase as the cells prepare for DNA synthesis. We have examined the effect of preventing ribosome synthesis during this transition. When resting cells are stimulated to grow in the presence of 5-fluorouridine, mRNA accumulates normally during the first eight hours, though new ribosome formation is completely blocked by the drug. At later times, mRNA continues to accumulate, but at a reduced rate. The ratio of poly A(+) mRNA to rRNA increases from the value characteristic of resting 3T6 (1.8%) to that of growing 3T6 (2.7%) by five hours, and continues to increase to abnormally high values after this time. Although labelling of tRNA is not affected after brief exposure of cells to fluorouridine, the drug prevents the later accumulation of tRNA that ordinarily occurs following serum stimulation of resting cells. This failure of accumulation is not the result of increased lability of fluorinated tRNA, but is probably due to failure of the transcription rate of pre-tRNA to increase. It is possible that this effect might be due to a regulatory system coupling tRNA content to ribosome content. In cultures stimulated with serum in the presence of fluorouridine the rate of protein synthesis increases with poly A(+) mRNA content during the first eight hours; it then fails to increase further, possibly because ribosomes become rate-limiting.

摘要

当3T6细胞经历血清诱导的从静止状态到生长状态的转变时,随着细胞为DNA合成做准备,核糖体数量和mRNA量会增加。我们研究了在此转变过程中阻止核糖体合成的影响。当静止细胞在5-氟尿苷存在下被刺激生长时,在前八个小时mRNA正常积累,尽管药物完全阻断了新核糖体的形成。在随后的时间里,mRNA继续积累,但速率降低。多聚A(+)mRNA与rRNA的比率在五小时内从静止3T6细胞的特征值(1.8%)增加到生长3T6细胞的特征值(2.7%),并在此之后继续增加到异常高的值。虽然细胞短暂暴露于氟尿苷后tRNA的标记不受影响,但该药物阻止了静止细胞血清刺激后通常发生的tRNA后期积累。这种积累失败不是氟化tRNA稳定性增加的结果,可能是由于前体tRNA转录速率未能增加。这种效应可能是由于一种将tRNA含量与核糖体含量耦合的调节系统。在用氟尿苷存在下血清刺激的培养物中,在前八个小时蛋白质合成速率随多聚A(+)mRNA含量增加;然后它不再进一步增加,可能是因为核糖体成为限速因素。

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