White E, Cipriani R
Cold Spring Harbor Laboratory, New York 11724.
Mol Cell Biol. 1990 Jan;10(1):120-30. doi: 10.1128/mcb.10.1.120-130.1990.
Cooperation of the nuclear oncogene E1A with the E1B oncogene is required for transformation of primary cells. Expression vectors were constructed to produce the 19-kilodalton (19K) and 55K E1B proteins under the direction of heterologous promoters in order to investigate the role of individual E1B proteins in transformation. Coexpression of E1A and either the 19K or 55K E1B gene products was sufficient for the formation of transformed foci in primary rat cells at half the frequency of an intact E1B gene, suggesting that the 19K and 55K proteins function via independent pathways in transformation. Furthermore, the effects of Ha-ras and the E1B 19K gene product were additive when cotransfected with E1A, suggesting that the 19K protein functions in transformation by a mechanism independent from that of ras as well. Although expression of E1A and either E1B protein was sufficient for the subsequent growth of cells in long-term culture, the 19K protein was required to support growth in semisolid media. As the 19K protein has been shown to associate with and disrupt intermediate filaments (IFs) when transiently expressed with plasmid vectors (E. White and R. Cipriani, Proc. Natl. Acad. Sci. USA, 86:9886-9890, 1989), the organization of IFs in transformed cells was investigated. Primary rat cells transformed by plasmids encoding E1A plus the E1B 19K protein showed gross perturbations of IFs, whereas cell lines transformed by plasmids encoding E1A plus the E1B 55K protein or E1A plus Ha-ras did not. These results suggest that an intact IF cytoskeleton may inhibit anchorage-independent growth and that the E1B 19K protein can overcome this inhibition by disrupting the IF cytoskeleton.
原代细胞的转化需要核癌基因E1A与E1B癌基因的协同作用。构建表达载体以在异源启动子的指导下产生19千道尔顿(19K)和55K的E1B蛋白,以便研究单个E1B蛋白在转化中的作用。E1A与19K或55K E1B基因产物的共表达足以在原代大鼠细胞中形成转化灶,其频率为完整E1B基因的一半,这表明19K和55K蛋白在转化中通过独立途径发挥作用。此外,当与E1A共转染时,Ha-ras和E1B 19K基因产物的作用是相加的,这表明19K蛋白在转化中的作用机制也独立于ras。虽然E1A和任一E1B蛋白的表达足以支持细胞在长期培养中的后续生长,但在半固体培养基中生长则需要19K蛋白。由于已显示19K蛋白与质粒载体瞬时表达时会与中间丝(IFs)结合并破坏中间丝(E. White和R. Cipriani,美国国家科学院院刊,86:9886-9890,1989),因此研究了转化细胞中IFs的组织情况。用编码E1A加E1B 19K蛋白的质粒转化的原代大鼠细胞显示出IFs的严重紊乱,而用编码E1A加E1B 55K蛋白或E1A加Ha-ras的质粒转化的细胞系则没有。这些结果表明完整的IF细胞骨架可能抑制非锚定依赖性生长,并且E1B 19K蛋白可以通过破坏IF细胞骨架来克服这种抑制作用。