Abstract
Inactivation of p53-dependent apoptosis promotes oncogenic transformation, tumor development, and resistance to many cytotoxic anticancer agents. p53 can transcriptionally activate bax, a bcl-2 family member that promotes apoptosis. To determine whether bax is required for p53-dependent apoptosis, the effects of bax deficiency were examined in primary fibroblasts expressing the E1A oncogene, a setting where apoptosis is dependent on endogenous p53. We demonstrate that bax can function as an effector of p53 in chemotherapy-induced apoptosis and contributes to a p53 pathway to suppress oncogenic transformation. Furthermore, we show that additional p53 effectors participate in these processes. These p53-controlled factors act synergistically with Bax to promote a full apoptotic response, and their action is suppressed by the Bcl-2 and E1B 19K oncoproteins. These studies demonstrate that Bax is a determinant of p53-dependent chemosensitivity and illustrate how p53 can promote apoptosis by coordinating the activities of multiple effectors.
MeSH Terms
Animals
Apoptosis
Cell Survival/drug effects
Cell Transformation, Neoplastic
Cells, Cultured
Cisplatin/pharmacology
Crosses, Genetic
Doxorubicin/pharmacology
Drug Resistance/genetics
Embryo, Mammalian
Etoposide/pharmacology
Fibroblasts
Genes, p53
Mice
Mice, Knockout
Proto-Oncogene Proteins/deficiency,genetics
Proto-Oncogene Proteins c-bcl-2
RNA, Messenger/biosynthesis
Recombination, Genetic
Transcription, Genetic
Tumor Suppressor Protein p53/biosynthesis,metabolism
bcl-2-Associated X Protein
Chemicals
Bax protein, mouse
Proto-Oncogene Proteins
Proto-Oncogene Proteins c-bcl-2
RNA, Messenger
Tumor Suppressor Protein p53
bcl-2-Associated X Protein
Etoposide
Doxorubicin
Cisplatin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
McCurrach M E
Cold Spring Harbor Laboratory, New York 11724, USA.
Connor T M
Knudson C M
Korsmeyer S J
Lowe S W
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