» Articles » PMID: 19411846

The Transcription-independent Mitochondrial P53 Program is a Major Contributor to Nutlin-induced Apoptosis in Tumor Cells

Overview
Journal Cell Cycle
Specialty Cell Biology
Date 2009 May 5
PMID 19411846
Citations 42
Authors
Affiliations
Soon will be listed here.
Abstract

Strategies to induce p53 activation in tumors that retain wild-type p53 are promising for cancer therapy. Nutlin is a potent and selective pharmacological MDM2 inhibitor that competitively binds to its p53-binding pocket, thereby leading to non-genotoxic p53 stabilization and activation of growth arrest and apoptosis pathways. Nutlin-induced apoptosis is thought to occur via p53's transcriptional program. Here we report that the transcription-independent mitochondrial p53 program plays an important role in Nutlin-induced p53-mediated tumor cell death. Aside from nuclear stabilization, Nutlin causes cytoplasmic p53 accumulation and translocation to mitochondria. Monoubiquitinated p53, originating from a distinct cytoplasmic pool, is the preferred p53 species that translocates to mitochondria in response to stress. Nutlin does not interfere with MDM2's ability to monoubiquitinate p53, due to the fact that MDM2-p53 complexes are only partially disrupted and that Nutlin-stabilized MDM2 retains its E3 ubiquitin ligase activity. Nutlin-induced mitochondrial p53 translocation is rapid and associated with cytochrome C release that precedes induction of p53 target genes. Specific inhibition of mitochondrial p53 translocation by Pifithrin mu reduces the apoptotic Nutlin response by 2.5-fold, underlining the significance of p53's mitochondrial program in Nutlin-induced apoptosis. Surprisingly, blocking the transcriptional arm of p53, either via alpha-Amanitin or the p53-specific transcriptional inhibitor Pifithrin alpha, not only fails to inhibit, but greatly potentiates Nutlin-induced apoptosis. In sum, the direct mitochondrial program is a major mechanism in Nutlin-induced p53-mediated apoptosis. Moreover, at least in some tumors the transcriptional p53 activities in net balance not only are dispensable for the apoptotic Nutlin response, but appear to actively block its therapeutic effect.

Citing Articles

A Novel MDM2-Binding Chalcone Induces Apoptosis of Oral Squamous Cell Carcinoma.

Wermelinger G, Rubini L, da Fonseca A, Ouverney G, de Oliveira R, de Souza A Biomedicines. 2023; 11(6).

PMID: 37371806 PMC: 10295897. DOI: 10.3390/biomedicines11061711.


MDM2 inhibitors-mediated disruption of mitochondrial metabolism: A novel therapeutic strategy for retinoblastoma.

Romani A, Zauli E, Zauli G, AlMesfer S, Al-Swailem S, Voltan R Front Oncol. 2022; 12:1000677.

PMID: 36338723 PMC: 9632280. DOI: 10.3389/fonc.2022.1000677.


Resistance mechanisms to inhibitors of p53-MDM2 interactions in cancer therapy: can we overcome them?.

Haronikova L, Bonczek O, Zatloukalova P, Kokas-Zavadil F, Kucerikova M, Coates P Cell Mol Biol Lett. 2021; 26(1):53.

PMID: 34911439 PMC: 8903693. DOI: 10.1186/s11658-021-00293-6.


Signaling Pathways Regulating Redox Balance in Cancer Metabolism.

De Santis M, Porporato P, Martini M, Morandi A Front Oncol. 2018; 8:126.

PMID: 29740540 PMC: 5925761. DOI: 10.3389/fonc.2018.00126.


Emerging Non-Canonical Functions and Regulation of p53.

Ranjan A, Iwakuma T Int J Mol Sci. 2018; 19(4).

PMID: 29597309 PMC: 5979425. DOI: 10.3390/ijms19041015.


References
1.
Culmsee C, Siewe J, Junker V, Retiounskaia M, Schwarz S, Camandola S . Reciprocal inhibition of p53 and nuclear factor-kappaB transcriptional activities determines cell survival or death in neurons. J Neurosci. 2003; 23(24):8586-95. PMC: 6740374. View

2.
Salmena L, Pandolfi P . Changing venues for tumour suppression: balancing destruction and localization by monoubiquitylation. Nat Rev Cancer. 2007; 7(6):409-13. DOI: 10.1038/nrc2145. View

3.
Mihara M, Erster S, Zaika A, Petrenko O, Chittenden T, Pancoska P . p53 has a direct apoptogenic role at the mitochondria. Mol Cell. 2003; 11(3):577-90. DOI: 10.1016/s1097-2765(03)00050-9. View

4.
Leu J, George D . Hepatic IGFBP1 is a prosurvival factor that binds to BAK, protects the liver from apoptosis, and antagonizes the proapoptotic actions of p53 at mitochondria. Genes Dev. 2007; 21(23):3095-109. PMC: 2081976. DOI: 10.1101/gad.1567107. View

5.
Gu L, Zhu N, Findley H, Zhou M . MDM2 antagonist nutlin-3 is a potent inducer of apoptosis in pediatric acute lymphoblastic leukemia cells with wild-type p53 and overexpression of MDM2. Leukemia. 2008; 22(4):730-9. PMC: 3477706. DOI: 10.1038/leu.2008.11. View