Abstract

Normal cells enter a senescent state upon aberrant oncogenic signals and this response inhibits tumor initiation and progression. It is now well admitted that intracellular and membrane localized oncogenes can illicit oncogene induced senescence. However, the effect of mitogenic growth factor on cellular senescence is so far largely unknown. Here we show that normal human dermal fibroblasts display a complex response to Platelet derived growth factor B (PDGFB) expression. Indeed, PDGFB expression induces, in the same cell population, both senescence and cellular transformation. Remarkably both populations are sustained with passages suggesting that transformed cells eventually enter a senescent state. This senescence state is p53 dependent as inhibiting the p53 pathway blocks the ability of PDGFB to induce senescence and results in strong cellular transformation increase upon PDGFB expression. The relevance of these observations is supported by the fact that human dermatofibrosarcoma protuberans, skin tumors arising from constitutive PDGFB production with little aggressiveness, also display some senescence hallmarks. Together these data support the view that PDGFB, a mitogenic growth factor, has a limited ability to induce senescence. We propose that this low level of senescence might decrease the transforming ability of this factor without totally abolishing it.

Highlights

  • Tissue homeostasis is dependent upon cellular responses that cells will engage following various detrimental signals

  • Oncogenic stress induced senescence has initially been described in response to oncogenic Ras [6] in normal human fibroblasts

  • We have investigated the ability of the Platelet derived growth factor B (PDGFB) growth factor to regulate oncogene induced senescence in normal human dermal fibroblasts

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Summary

Introduction

Tissue homeostasis is dependent upon cellular responses that cells will engage following various detrimental signals. Oncogenic stress induced senescence has initially been described in response to oncogenic Ras [6] in normal human fibroblasts. Platelet-derived growth factor B (PDGFB), which is a known oncogene able to transform NIH 3T3 cells [10] and is amplified in some human cancers |11, 12] has never been tested for its ability to activate oncogene induced senescence failsafe program in normal human cells.

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