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细胞生长过程中鸟氨酸脱羧酶的调节。mRNA稳定性和可翻译性以及蛋白质周转的变化。

Regulation of ornithine decarboxylase during cell growth. Changes in the stability and translatability of the mRNA, and in the turnover of the protein.

作者信息

Wallon U M, Persson L, Heby O

机构信息

Department of Animal Physiology, University of Lund, Sweden.

出版信息

Mol Cell Biochem. 1995 May 10;146(1):39-44. doi: 10.1007/BF00926879.

Abstract

When Ehrlich ascites tumor cells were stimulated to grow, their ornithine decarboxylase (ODC) activity increased 20- to 30-fold. The increase in ODC mRNA content was one order of magnitude less during the corresponding period. Likewise, the subsequent changes in ODC activity failed to show proportionality to those of the ODC mRNA content. The changes in ODC activity were not attributable to changes in ODC turnover, even though the half-life of the enzyme decreased from 56 min during the period of increasing, to 36 min during the period of decreasing ODC activity. There was no evidence of an activation-inactivation-cycle for the enzyme. In view of these findings it appears that ODC mRNA alterations are amplified mainly at the translational level. The biphasic change in ODC mRNA content was partly attributable to a change in turnover of the message, as determined after inhibition of transcription with actinomycin D. Thus, the ODC mRNA half-life was estimated to decrease from 8.7 h during the period of increasing ODC activity to 4.0 h during the period of decreasing ODC activity. Despite the inhibition of transcription by actinomycin D, there was a marked superinduction of ODC activity. Our data demonstrate that the regulation of ODC expression is a complex phenomenon, involving controls at many levels.

摘要

当艾氏腹水瘤细胞被刺激生长时,其鸟氨酸脱羧酶(ODC)活性增加了20至30倍。在相应时期,ODC mRNA含量的增加幅度小一个数量级。同样,ODC活性随后的变化与ODC mRNA含量的变化不成比例。ODC活性的变化并非归因于ODC周转的变化,尽管该酶的半衰期从ODC活性增加期间的56分钟降至ODC活性降低期间的36分钟。没有证据表明该酶存在激活-失活循环。鉴于这些发现,似乎ODC mRNA的改变主要在翻译水平上被放大。ODC mRNA含量的双相变化部分归因于信息周转的变化,这是在用放线菌素D抑制转录后确定的。因此,估计ODC mRNA半衰期从ODC活性增加期间的8.7小时降至ODC活性降低期间的4.0小时。尽管放线菌素D抑制了转录,但ODC活性仍有明显的超诱导。我们的数据表明,ODC表达的调控是一个复杂的现象,涉及多个层面的控制。

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