Oren M, Maltzman W, Levine A J
Department of Microbiology, State University of New York, Stony Brook 11794.
Mol Cell Biol. 1981 Feb;1(2):101-10. doi: 10.1128/mcb.1.2.101-110.1981.
The 54K cellular tumor antigen has been translated in vitro, using messenger ribonucleic acids from simian virus 40 (SV40)-transformed cells or 3T3 cells. The in vitro 54K product could be immunoprecipitated with SV40 tumor serum and had a peptide map that was similar, but not identical, to the in vivo product. The levels of this 54K protein in SV3T3 cells were significantly higher than those detected in 3T3 cells (D. I. H. Linzer, W. Maltzman, and A. J. Levine, Virology 98:308-318, 1979). In spite of this, the levels of translatable 54K messenger ribonucleic acid from 3T3 and SV3T3 cells were roughly equivalent or often greater in 3T3 cells. Pulse-chase experiments with the 54K protein from 3T3 or SV3T3 cells demonstrated that this protein, once synthesized, was rapidly degraded in 3T3 cells but was extremely stable in SV3T3 cells. Similarly, in an SV40 tsA-transformed cell line, temperature sensitive for the SV40 T-antigen, the 54K protein was rapidly turned over at the nonpermissive temperature and stable at the permissive temperature, whereas the levels of translatable 54K messenger ribonucleic acid at each temperature were roughly equal. These results demonstrate a post-translational regulation of the 54K cellular tumor antigen and suggest that this control is mediated by the SV40 large T-antigen.
已使用来自猿猴病毒40(SV40)转化细胞或3T3细胞的信使核糖核酸在体外翻译了54K细胞肿瘤抗原。体外产生的54K产物可用SV40肿瘤血清进行免疫沉淀,其肽图与体内产物相似,但不完全相同。SV3T3细胞中这种54K蛋白的水平明显高于在3T3细胞中检测到的水平(D. I. H. 林泽、W. 马尔茨曼和A. J. 莱文,《病毒学》98:308 - 318,1979)。尽管如此,3T3细胞和SV3T3细胞中可翻译的54K信使核糖核酸水平大致相当,在3T3细胞中往往更高。对来自3T3或SV3T3细胞的54K蛋白进行脉冲追踪实验表明,这种蛋白一旦合成,在3T3细胞中会迅速降解,但在SV3T3细胞中极其稳定。同样,在对SV40 T抗原温度敏感的SV40 tsA转化细胞系中,54K蛋白在非允许温度下迅速周转,在允许温度下稳定,而每个温度下可翻译的54K信使核糖核酸水平大致相等。这些结果证明了54K细胞肿瘤抗原的翻译后调控,并表明这种调控是由SV40大T抗原介导的。