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c-myc编码蛋白的生长依赖性合成:血清因子对同步化小鼠3T3细胞的早期刺激作用

Growth-dependent synthesis of c-myc-encoded proteins: early stimulation by serum factors in synchronized mouse 3T3 cells.

作者信息

Persson H, Gray H E, Godeau F

出版信息

Mol Cell Biol. 1985 Nov;5(11):2903-12. doi: 10.1128/mcb.5.11.2903-2912.1985.

Abstract

Synthesis of the c-myc gene product was measured during the entire cell cycle of subconfluent mouse 3T3 cells with an antibody raised against a human c-myc synthetic peptide. The antiserum recognized two mouse c-myc-encoded proteins with apparent molecular weights in sodium dodecyl sulfate-polyacrylamide gels of 62,000 and 60,000. Cell-derived p62 was compared with the mouse c-myc gene product synthesized in vitro. Immunoprecipitation, electrophoretic analyses, and peptide mapping provided evidence that p62 is encoded by the mouse c-myc gene. The rate of synthesis of the c-myc proteins was tightly coupled to the cellular growth state of nontransformed A31 3T3 cells, but not to that of their benzo(a)pyrene-transformed derivative (BPA31). Furthermore, the synthesis of the c-myc proteins was stimulated by the exposure of confluent, density-arrested A31 cells to platelet-derived growth factor or fibroblast growth factor. Tightly synchronized cell populations were obtained on the addition of serum factors to subconfluent, serum-deprived A31 cells, and c-myc expression could be monitored for more than one complete cell cycle. One hour after stimulation the steady-state level of the 2.2 kilobase c-myc transcript increased 30-fold relative to that of quiescent cells and decreased thereafter to the level observed during exponential growth. The rate of synthesis of c-myc-encoded proteins was determined by immunoprecipitation after a 2-h labeling period. After an initial sevenfold increase detectable 2 h after serum addition, the rate of synthesis remained constant throughout the rest of the cell cycle. No further changes associated with the late prereplicative period, S phase, G2, or mitosis could be demonstrated. Pulse-chase and long-term labeling experiments revealed different half-lives for the two c-myc-encoded proteins. The half-lives of the c-myc proteins, however, were independent of the cellular growth state. The sustained expression observed throughout the cell cycle suggests that the growth-related function of c-myc may be required during the G0-G1 transition and in all phases of the cycle of the growing cell.

摘要

使用针对人c-myc合成肽产生的抗体,在亚汇合小鼠3T3细胞的整个细胞周期中测量c-myc基因产物的合成。抗血清识别出两种小鼠c-myc编码的蛋白质,在十二烷基硫酸钠-聚丙烯酰胺凝胶中的表观分子量分别为62,000和60,000。将细胞来源的p62与体外合成的小鼠c-myc基因产物进行比较。免疫沉淀、电泳分析和肽图谱分析提供了证据,证明p62由小鼠c-myc基因编码。c-myc蛋白的合成速率与未转化的A31 3T3细胞的细胞生长状态紧密相关,但与其苯并(a)芘转化衍生物(BPA31)的细胞生长状态无关。此外,汇合的、密度停滞的A31细胞暴露于血小板衍生生长因子或成纤维细胞生长因子可刺激c-myc蛋白的合成。向亚汇合的、血清饥饿的A31细胞中添加血清因子可获得紧密同步的细胞群体,并且可以在一个以上的完整细胞周期中监测c-myc的表达。刺激后1小时,2.2千碱基c-myc转录本的稳态水平相对于静止细胞增加了30倍,此后下降至指数生长期间观察到的水平。在2小时的标记期后,通过免疫沉淀确定c-myc编码蛋白的合成速率。血清添加后2小时可检测到最初增加了7倍,此后合成速率在细胞周期的其余时间保持恒定。未发现与复制前期晚期、S期、G2期或有丝分裂相关的进一步变化。脉冲追踪和长期标记实验揭示了两种c-myc编码蛋白的不同半衰期。然而,c-myc蛋白的半衰期与细胞生长状态无关。在整个细胞周期中观察到的持续表达表明,c-myc的生长相关功能可能在G0-G1转变期间以及生长细胞周期的所有阶段都是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5a8/369101/b2d809e55247/molcellb00141-0037-a.jpg

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