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p53 and Egr-1 additively suppress transformed growth in HT1080 cells but Egr-1 counteracts p53-dependent apoptosis
1La Jolla Cancer Research Center, The Burnham Institute, California 92037, USA.
Abstract:
The human fibrosarcoma cell line, HT1080, clone H4, was used to determine if the transformation suppressive functions of p53 and Egr-1 have the same underlying mechanism. This cell line expresses only mutant p53 and no detectable Egr-1. H4 clones stably expressing Egr-1 are less transformed in proportion to the level of Egr-1 expressed, acting through the induction of the TGFbeta1 gene. Here, H4 cells and the highest Egr-1 expressing clone were transfected with a vector expressing normal human p53 to derive stable clones expressing p53. The expression of p53 in H4 cells inhibited transformed growth and reduced tumorigenicity. The effect of coexpression of both p53 and Egr-1 was additive, producing cell lines with 30% of normal growth rate and sevenfold reduced tumorigenicity compared with control lines. These results indicated that each factor may act independently by different pathways, although each additively increased the level of p21WAF1 cell cycle inhibitor. However, exposure of the H4-derived cells to UV-C irradiation produced contrasting effects. Cell cycle analyses showed that the presence of p53 was associated with loss of the G1 and S cells to apoptosis after irradiation. In contrast, the expression of Egr-1 increased entry into S/G2 phase of the cell cycle with little apoptosis via a mechanism involving elevated FAK and low caspase activities. Apoptosis was observed only in the cell lines that expressed no Egr-1, especially those expressing wt-p53, and was preceded by high caspase activity. In summary, Egr-1 suppressed transformation and counteracted apoptosis by the coordinated activation of TGFbeta1, FN, p21 and FAK, leading to enhanced cell attachment and reduced caspase activity. In the doubly expressing cell line, the survival effect of Egr-1 was dominant over the apoptotic effect of p53.
Insights
The tumor suppressor proteins p53 and Egr-1 independently inhibit fibrosarcoma cell transformation and reduce tumorigenicity. While both increase cell cycle inhibitor p21WAF1, Egr-1 promotes survival, overriding p53
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- The human fibrosarcoma cell line HT1080 (clone H4) expresses mutant p53 and lacks Egr-1.
- Egr-1 expression in H4 cells suppresses transformation via TGF-beta1 induction.
- p53 and Egr-1 are key tumor suppressors with potentially overlapping functions.
Purpose of the Study:
- To investigate if p53 and Egr-1 share common mechanisms for suppressing tumor transformation.
- To compare the effects of p53 and Egr-1, individually and coexpressed, on fibrosarcoma cell growth and tumorigenicity.
- To analyze the differential responses of p53 and Egr-1 expressing cells to UV-C irradiation.
Main Methods:
- Transfection of H4 cells with vectors expressing normal human p53 and/or Egr-1.
- Assessment of transformed growth and tumorigenicity in engineered cell lines.
- Cell cycle analysis and apoptosis assays following UV-C irradiation.
- Measurement of protein levels including p21WAF1, FAK, and caspase activity.
Main Results:
- Egr-1 and p53 expression individually reduced H4 cell transformation and tumorigenicity.
- Coexpression of p53 and Egr-1 showed additive effects on growth inhibition and tumorigenicity reduction.
- UV-C irradiation induced apoptosis in p53-expressing cells but promoted cell cycle progression with low apoptosis in Egr-1-expressing cells.
- Egr-1 counteracted p53-mediated apoptosis, with its survival effect dominating in doubly expressing cells.
Conclusions:
- p53 and Egr-1 suppress fibrosarcoma transformation through distinct pathways, additively enhancing p21WAF1 levels.
- Egr-1 promotes cell survival and attachment by activating TGF-beta1, FN, p21, and FAK, while reducing caspase activity.
- The anti-apoptotic effect of Egr-1 is dominant over the pro-apoptotic effect of p53 in HT1080 cells.
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