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培养的大鼠虹膜中神经生长因子蛋白水平及其信使核糖核酸变化的时间进程比较。

Comparison between the time course of changes in nerve growth factor protein levels and those of its messenger RNA in the cultured rat iris.

作者信息

Heumann R, Thoenen H

出版信息

J Biol Chem. 1986 Jul 15;261(20):9246-9.

PMID:2424906
Abstract

In previous experiments, it has been demonstrated that, in rat irides in culture, a rapid increase in nerve growth factor (NGF) levels occurred (see Barth, E.-M., Korsching, S., and Thoenen, H. (1984) J. Cell Biol. 99, 839-843). We have now determined the levels of mRNANGF in rat irides as a function of time in culture as well. After an initial lag period of 2 h, mRNANGF levels were transiently increased, so that after 12 h, they had increased 35-fold with respect to zero time. In contrast, poly(A)+ RNA levels dropped to 55% of the zero time values within 5 h, recovered to 85% after 24 h, and remained constant until the end of the observation period. Total ribosomal RNA was found to remain constant, indicating that there was no nonspecific decline of overall metabolic function. Actinomycin D prevented the increase in mRNANGF without reducing the basic mRNANGF levels over a 5-h time period, indicating that the enhanced synthesis of NGF in the rat iris in culture is primarily mediated by an augmented production of mRNANGF. The increases of mRNANGF, cellular NGF, and NGF released into the medium were found to be strictly sequential. Monensin selectively abolished the increased production of mature NGF (see Barth et al.) but not of mRNANGF, suggesting that the processing of NGF precursor is prevented.

摘要

在先前的实验中已经证明,在培养的大鼠虹膜中,神经生长因子(NGF)水平迅速升高(见Barth,E.-M.,Korsching,S.和Thoenen,H.(1984年)J. Cell Biol. 99,839 - 843)。我们现在也确定了培养过程中大鼠虹膜中NGF mRNA水平随时间的变化。在最初2小时的延迟期后,NGF mRNA水平短暂升高,因此在12小时后,相对于零时间,它们增加了35倍。相比之下,聚腺苷酸加尾RNA(poly(A)+ RNA)水平在5小时内降至零时间值的55%,24小时后恢复到85%,并在观察期结束前保持恒定。发现总核糖体RNA保持不变,这表明整体代谢功能没有非特异性下降。放线菌素D阻止了NGF mRNA的增加,但在5小时内没有降低基础NGF mRNA水平,这表明培养的大鼠虹膜中NGF合成的增强主要是由NGF mRNA产量的增加介导的。发现NGF mRNA、细胞内NGF和释放到培养基中的NGF的增加是严格按顺序发生的。莫能菌素选择性地消除了成熟NGF产量的增加(见Barth等人),但没有消除NGF mRNA的增加,这表明NGF前体的加工受到了阻止。

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