TY - JOUR
T1 - Pharmacologic activation of p53 elicits Bax-dependent apoptosis in the absence of transcription
AU - Chipuk, Jerry E.
AU - Maurer, Ulrich
AU - Green, Douglas R.
AU - Schuler, Martin
N1 - Funding Information:
We thank Pat Fitzgerald for help and advice; Arnold Levine, Trevor Littlewood, and Walter Nishioka for providing expression vectors; Geoff Wahl and Jayne Stommel for expression vectors, Trp53 QS MEF, suggestions, and advice; and Bert Vogelstein for providing BAX +/− and BAX −/− HCT116 cells. This work was supported by NIH grants GM52735 and AI40646 (to D.R.G.) and the Max-Eder-Programm of the Deutsche Krebshilfe (70-2952, to M.S.). J.E.C. is supported by a Ruth Kirschstein National Research Service Award. U.M. was supported by a fellowship from the Dr. Mildred Scheel Stiftung.
PY - 2003/11
Y1 - 2003/11
N2 - Recent efforts to develop pharmacologic agents that restore function to mutant forms of p53 hold significant promise in cancer therapy. Here, we examine the effects of such pharmacologic activation of p53 function using a small molecule, PRIMA-1, and a model system employing a p53 protein fused to a mutant steroid binding domain of the murine estrogen receptor (p53ER tam) that renders it responsive only in the presence of 4-hydroxytamoxifen. In either case, p53 activation triggered apoptosis that was not inhibited by the presence of macromolecular synthesis inhibitors. This p53-induced, transcription-independent apoptosis is Bax dependent, proceeds in the absence of a nucleus, and involves Bax translocation and cytochrome c release. Hence, pharmacologic p53 modulators can activate a transcription- independent apoptotic program.
AB - Recent efforts to develop pharmacologic agents that restore function to mutant forms of p53 hold significant promise in cancer therapy. Here, we examine the effects of such pharmacologic activation of p53 function using a small molecule, PRIMA-1, and a model system employing a p53 protein fused to a mutant steroid binding domain of the murine estrogen receptor (p53ER tam) that renders it responsive only in the presence of 4-hydroxytamoxifen. In either case, p53 activation triggered apoptosis that was not inhibited by the presence of macromolecular synthesis inhibitors. This p53-induced, transcription-independent apoptosis is Bax dependent, proceeds in the absence of a nucleus, and involves Bax translocation and cytochrome c release. Hence, pharmacologic p53 modulators can activate a transcription- independent apoptotic program.
UR - https://www.scopus.com/pages/publications/0344925540
U2 - 10.1016/S1535-6108(03)00272-1
DO - 10.1016/S1535-6108(03)00272-1
M3 - Article
C2 - 14667504
AN - SCOPUS:0344925540
SN - 1535-6108
VL - 4
SP - 371
EP - 381
JO - Cancer Cell
JF - Cancer Cell
IS - 5
ER -