Cell cycle arrest is sufficient for p53-mediated tumor regression.

L Dubrez, J L Coll, A Hurbin, F de Fraipont, S Lantejoul, M C Favrot
Author Information
  1. L Dubrez: Groupe de Recherche sur le Cancer du Poumon, Equipe INSERM 9924, Institut Albert Bonniot, France.

Abstract

p53 gene therapy can induce tumor regression, but the low efficacy of in vivo gene transfer has greatly hampered the mechanistic analysis of this antitumoral activity. We therefore used a p53-null human NSCLC cell line in which we reintroduced the wild-type p53 gene under control of a tetracycline-dependent promoter. P53 induction provokes cell cycle arrest in G0/G1 and G2/M phase, an up-regulation of p21, a down-regulation of cyclin B1 and appearance of senescence features without down-regulation of human telomerase reverse transcriptase. No detectable morphological changes of apoptosis nor procaspase-3 activation are observed. In subcutaneous tumors grafted in nude mice, the induction of p53 expression leads to a complete and longlasting tumor regression in 28 days which is associated with cell cycle arrest, but not detectable apoptosis nor inhibition of angiogenesis. These results show that irreversible cell cycle arrest is sufficient to elicit tumor regression after p53 gene transfer in p53-deficient tumor cells.

MeSH Term

Animals
Apoptosis
Carcinoma, Non-Small-Cell Lung
Cell Cycle
Cellular Senescence
Female
Gene Expression
Genes, p53
Genetic Therapy
Humans
Lung Neoplasms
Mice
Mice, Nude
Microscopy, Fluorescence
Transfection
Tumor Cells, Cultured

Word Cloud

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