Goldstein D, Leavitt J
Cancer Res. 1985 Jul;45(7):3256-61.
Two sets of abundant cytoplasmic transformation-specific polypeptides, p788/p789 and p219/p220, have been identified by comparing in vitro-transformed human fibroblasts with diploid human fibroblasts. These polypeptides are also expressed by the human fibrosarcoma and osteosarcoma cell lines HT1080 the human fibrosarcoma and osteosarcoma cell lines HT1080 and HOS, respectively. HOS cells, however, synthesize only one of the two electrophoretic forms of each marker set, p789 and p219, at greatly reduced rates compared to the rates of synthesis found for HT1080 cells and the in vitro-transformed cell lines. Induction of expression of these neoplastic marker polypeptides is independent of the activation of a transforming gene that will induce focus formation in confluent mouse 3T3 cell monolayers. Activation of the met oncogene in MNNG-HOS cells and simultaneous elevation of tumorigenic potential did not lead to a significant change in the rate of the 600 most abundant polypeptide species with the exception of one of the two cytoplasmic actin polypeptides. While the normal ratio of beta-to gamma-actin which is approximately 2:1 was expressed in "untransformed" HOS cells, MNNG-HOS cells synthesized 50% less beta-actin resulting in a 1:1 ratio of beta-actin to gamma-actin. Our finding here, together with our previous characterization of the human beta-actin gene, leads us to predict that one of two functional beta-actin genes expressed in HOS cells has been inactivated in MNNG-HOS cells by either a regulatory or structural gene mutation.
通过比较体外转化的人成纤维细胞与二倍体人成纤维细胞,已鉴定出两组丰富的细胞质转化特异性多肽,即p788/p789和p219/p220。这些多肽也分别由人纤维肉瘤和骨肉瘤细胞系HT1080和HOS表达。然而,与HT1080细胞和体外转化细胞系的合成速率相比,HOS细胞仅以大大降低的速率合成每个标记组的两种电泳形式之一,即p789和p219。这些肿瘤标记多肽表达的诱导与能在汇合的小鼠3T3细胞单层中诱导灶形成的转化基因的激活无关。MNNG-HOS细胞中met癌基因的激活以及致瘤潜能的同时升高,除了两种细胞质肌动蛋白多肽之一外,并未导致600种最丰富多肽种类的合成速率发生显著变化。在“未转化”的HOS细胞中,β-肌动蛋白与γ-肌动蛋白的正常比例约为2:1,而MNNG-HOS细胞合成的β-肌动蛋白减少了50%,导致β-肌动蛋白与γ-肌动蛋白的比例为1:1。我们在此的发现,连同我们先前对人β-肌动蛋白基因的表征,使我们预测,在HOS细胞中表达的两个功能性β-肌动蛋白基因之一已在MNNG-HOS细胞中因调控或结构基因突变而失活。