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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
p53 and Nur77/TR3 - transcription factors that directly target mitochondria for cell death induction
U M Moll1, N Marchenko, X-K Zhang
1Department of Pathology Stony Brook University, Stony Brook, New York 11794-8691, USA. umoll@notes.cc.sunysb.edu
Abstract:
The complex apoptotic functions of the p53 tumor suppressor are central to its antineoplastic activity in vivo. Conversely, p53 function is altered or attenuated in one way or another in the majority of human cancers. Besides its well-understood action as a transcriptional regulator of multiple apoptotic genes, p53 also exerts a direct pro-apoptotic role at the mitochondria by engaging in protein-protein interactions with anti- and pro-apoptotic Bcl2 family members, thereby executing the shortest known circuitry of p53 death signaling. Nur77, also known as TR3 or NGFI-B, is a unique transcription factor belonging to the orphan nuclear receptor superfamily. Even more extreme than p53, Nur77 can exert opposing biological activities of survival and death. Its activities are regulated by subcellular distribution, expression levels, protein modification and heterodimerization with retinoid X receptor. In cancer cells, Nur77 functions in the nucleus as an oncogenic survival factor, but becomes a potent killer when certain death stimuli induce its migration to mitochondria, where it binds to Bcl2 and conformationally converts it to a killer that triggers cytochrome c release and apoptosis. This review focuses on their unexpected transcription-independent pro-death programs at mitochondria and highlights the remarkable mechanistic similarities between them. Moreover, an accumulating body of evidence provides ample rationale to further investigate how these mitochondrial p53 and Nur77 pathways could become exploitable targets for new cancer therapeutics.
Insights
The tumor suppressor p53 and orphan nuclear receptor Nur77 have transcription-independent pro-death roles at mitochondria. These pathways offer potential new targets for cancer therapeutics.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- The p53 tumor suppressor's antineoplastic activity is linked to its complex apoptotic functions.
- p53 regulates apoptosis transcriptionally and directly at the mitochondria via Bcl2 family interactions.
- Nur77 (TR3/NGFI-B), an orphan nuclear receptor, exhibits dual survival and death activities, influenced by its cellular localization and modifications.
Purpose of the Study:
- To review the transcription-independent pro-death roles of p53 and Nur77 at the mitochondria.
- To highlight the mechanistic similarities between the mitochondrial p53 and Nur77 death pathways.
- To explore the potential of these mitochondrial pathways as therapeutic targets in cancer.
Main Methods:
- Literature review focusing on p53 and Nur77 functions.
- Analysis of protein-protein interactions at the mitochondria.
- Comparison of signaling pathways involved in apoptosis.
Main Results:
- Both p53 and Nur77 engage in direct pro-apoptotic signaling at the mitochondria, independent of their transcriptional roles.
- p53 interacts with Bcl2 family members to initiate apoptosis.
- Nur77 translocates to mitochondria upon death stimuli, binding Bcl2 and inducing apoptosis via cytochrome c release.
Conclusions:
- The mitochondrial localization of p53 and Nur77 reveals a conserved, transcription-independent apoptotic pathway.
- These findings suggest that targeting mitochondrial p53 and Nur77 pathways could lead to novel cancer therapies.
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