Mulder K M, Brattain M G
Department of Pharmacology, Baylor College of Medicine, Houston, Texas 77030.
J Cell Physiol. 1989 Mar;138(3):450-8. doi: 10.1002/jcp.1041380303.
We report the continuous growth maintenance of untransformed and chemically transformed fibroblasts (AKR-2B, AKR-MCA cells) in low concentrations of serum (0.1% FBS). The cell lines established (AKR-0.1F, MCA-0.1F) proliferated at rates comparable to cells maintained under high serum conditions (10% FBS). Complete removal of serum from the cells did not induce quiescence. The MCA-0.1F cells were more similar to the untransformed AKR-2B fibroblasts in their morphology, saturation density, inability to form colonies under anchorage-independent conditions, steady-state level of c-myc expression, and kinetics of induction of c-myc in response to specific growth factors. This report demonstrates the utility of this cell line as a nonquiescent model system for investigating growth factor-specific effects in serum-free, cycling cells. Addition of transforming growth factor-beta (TGF-beta) (5 ng/ml) to proliferating MCA-0.1F cells, in the absence of any serum, induced a multilayered growth pattern at confluency, similar to that of AKR-MCA cells maintained in 10% FBS. Other growth factors tested did not elicit this effect. The induction of this growth pattern by TGF-beta was associated with a sustained induction of the c-myc proto-oncogene at confluency, but not with a restoration of anchorage-independent growth. The data suggest that TGF-beta may play a role in the up-regulation of c-myc at confluency previously described for AKR-MCA cells maintained in 10% serum.
我们报道了未转化和化学转化的成纤维细胞(AKR-2B、AKR-MCA细胞)在低浓度血清(0.1%胎牛血清)中持续生长维持的情况。所建立的细胞系(AKR-0.1F、MCA-0.1F)的增殖速率与在高血清条件(10%胎牛血清)下维持的细胞相当。完全去除细胞中的血清不会诱导静止。MCA-0.1F细胞在形态、饱和密度、在非锚定依赖条件下无法形成集落、c-myc表达的稳态水平以及对特定生长因子诱导c-myc的动力学方面,与未转化的AKR-2B成纤维细胞更为相似。本报告证明了该细胞系作为一种非静止模型系统在研究无血清、处于增殖周期的细胞中生长因子特异性效应方面的实用性。在无任何血清的情况下,向增殖的MCA-0.1F细胞中添加转化生长因子-β(TGF-β)(5 ng/ml),在汇合时诱导出多层生长模式,类似于在10%胎牛血清中维持的AKR-MCA细胞。测试的其他生长因子未引发这种效应。TGF-β诱导这种生长模式与汇合时c-myc原癌基因的持续诱导相关,但与非锚定依赖生长的恢复无关。数据表明,TGF-β可能在先前描述的在10%血清中维持的AKR-MCA细胞汇合时c-myc的上调中发挥作用。