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一种不稳定蛋白质对细胞生长的限制点控制:转化细胞中稳定性增加的证据。

Restriction point control of cell growth by a labile protein: evidence for increased stability in transformed cells.

作者信息

Campisi J, Medrano E E, Morreo G, Pardee A B

出版信息

Proc Natl Acad Sci U S A. 1982 Jan;79(2):436-40. doi: 10.1073/pnas.79.2.436.

Abstract

It has been proposed that animal cells must accumulate a labile protein(s) before they can pass the restriction (R) point in the G1 phase of the cell cycle [Rossow, P. W., Riddle, V. G. H. & Pardee, A. B. (1979) Proc. Natl. Acad. Sci. USA 76, 4446--4450]. Here, we present evidence that this R protein acquires increased stability in transformed 3T3 cells, thereby allowing these cells to continue growth under conditions that arrest untransformed cells. Low doses of cycloheximide or histidinol drastically reduced the rate at which normal 3T3 (A31) fibroblasts in early G1 could enter DNA synthesis. These drugs had less effect on entry of two tumorigenic A31 derivatives, BPA31 and SVA31, in S, although measurement of [3H]leucine incorporation showed that the inhibitors were equally effective in the three cell lines. The hypothesis is that the transformed lines are less sensitive because moderate inhibition of their R protein synthesis is compensated by lower rates of protein degradation. To test this idea, we completely inhibited cytoplasmic protein synthesis for several hours shortly before A31 and BPA31 cells had reached the R point. After removal of inhibitor, A31 cells showed delays in the onset of S that were in excess of the inhibitor pulse, consistent with decay of labile protein during the pulse. BPA31 cells showed no excess delays, suggesting a much more stable R protein. The half-life of the R protein was estimated as 2.5 hr in A31 cells, indicating that, in these cells, R protein synthesis starts at the beginning of G1. In the BPA31 cells the R protein showed no signs of decay for at least 8 hr.

摘要

有人提出,动物细胞在能够通过细胞周期G1期的限制(R)点之前,必须积累一种不稳定的蛋白质[Rossow, P. W., Riddle, V. G. H. & Pardee, A. B. (1979) Proc. Natl. Acad. Sci. USA 76, 4446 - 4450]。在此,我们提供证据表明,这种R蛋白在转化的3T3细胞中稳定性增加,从而使这些细胞能够在使未转化细胞停滞的条件下继续生长。低剂量的环己酰亚胺或组氨醇显著降低了处于G1早期的正常3T3(A31)成纤维细胞进入DNA合成的速率。这些药物对两种致瘤性A31衍生物BPA31和SVA31进入S期的影响较小,尽管对[3H]亮氨酸掺入的测量表明抑制剂在这三种细胞系中同样有效。假说是转化细胞系不太敏感,因为对其R蛋白合成的适度抑制可由较低的蛋白质降解速率来补偿。为了验证这一观点,我们在A31和BPA31细胞到达R点前不久,完全抑制细胞质蛋白合成数小时。去除抑制剂后,A31细胞在S期开始时出现的延迟超过了抑制剂脉冲时间,这与脉冲期间不稳定蛋白的降解一致。BPA31细胞没有出现额外的延迟,表明R蛋白的稳定性更高。估计A31细胞中R蛋白的半衰期为2.5小时,这表明在这些细胞中,R蛋白合成在G1期开始时启动。在BPA31细胞中,R蛋白至少8小时没有降解迹象。

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