Related Experiment Videos
Genes that cooperate with tumor promoters in transformation
Abstract:
Tumor-promoting phorbol esters, like growth factors, elicit pleiotropic responses involving biochemical pathways that lead to different biological responses. Genetic variant cell lines that are resistant to mitogenic, differentiation, or transformation responses to tumor promoters have been valuable tools for understanding the molecular bases of these responses. Studies using the mouse epidermal JB6 cell lines that are sensitive or resistant to tumor promoter-induced transformation have yielded new understanding of genetic and signal transduction events involved in neoplastic transformation. The isolation and characterization of cloned mouse promotion sensitivity genes pro-1 and pro-2 is reviewed. A new activity of pro-1 has been identified: when transfected into human cancer prone basal cell nevus syndrome fibroblasts but not normal fibroblasts mouse pro-1 confers lifespan extension on these cells. Recently, we have found that a pro-1 homolog from a library of nasopharyngeal carcinoma, but not the homolog from a normal human library, is activated for transferring promotion sensitivity. The many genetic variants for responses to tumor promoters have also proved valuable for signal transduction studies. JB6 P- cells fail to show the 12-O-tetradecanoyl-phorbol-13-acetate (TPA)-induced synthesis of two proteins of 15 and 16 kD seen in P+ cells. P-, P+, and TPA transformed cells show a progressive decrease in both basal and TPA-inducible levels of a protein kinase C substrate of 80 kD. P- cells are relatively resistant both to anchorage-independent transformation and to a protein band shift induced by the calcium analog lanthanum. It appears that one or more calcium-binding proteins and one or more pro genes may be critical determinants of tumor promoter-induced neoplastic transformation.
Insights
Tumor promoters like phorbol esters trigger cell responses. Mouse cell lines resistant to these promoters revealed that pro-1 and pro-2 genes are key to neoplastic transformation and cell lifespan extension.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Tumor-promoting phorbol esters elicit complex cellular responses through various biochemical pathways.
- Genetic variants of mouse JB6 epidermal cell lines, differing in sensitivity to tumor promoters, have been instrumental in dissecting neoplastic transformation.
- Understanding the genetic and signal transduction events underlying these responses is crucial for cancer research.
Purpose of the Study:
- To review the isolation and characterization of mouse promotion sensitivity genes pro-1 and pro-2.
- To investigate the role of pro-1 in conferring lifespan extension to human fibroblasts.
- To explore the function of pro-1 homologs in nasopharyngeal carcinoma and their role in promotion sensitivity.
Main Methods:
- Utilizing genetically variant mouse JB6 cell lines (sensitive and resistant to tumor promoters).
- Transfection of mouse pro-1 into human cancer-prone and normal fibroblasts.
- Analysis of protein synthesis, kinase activity, and cellular responses to tumor promoters and calcium analogs.
Main Results:
- Mouse pro-1 gene confers lifespan extension to human basal cell nevus syndrome fibroblasts.
- A pro-1 homolog from a nasopharyngeal carcinoma library, but not from a normal library, is activated for transferring promotion sensitivity.
- JB6 P- cells exhibit altered protein synthesis and reduced responsiveness to tumor promoter-induced transformation and calcium analog lanthanum compared to P+ cells.
Conclusions:
- Pro-1 and pro-2 genes are critical determinants of tumor promoter-induced neoplastic transformation.
- Calcium-binding proteins and pro genes likely play pivotal roles in neoplastic transformation.
- The findings provide insights into the genetic regulation of cell growth, transformation, and potential therapeutic targets in cancer.