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Wild-type p53 in cancer cells: when a guardian turns into a blackguard
Ella Kim1, Alf Giese, Wolfgang Deppert
1The Translational Neurooncology Research Group, Department of Neurosurgery, Georg-August-University of Göttingen, Robert-Koch-Strasse 40, 37074 Göttingen, Germany. ella.kim@med.uni-goettingen.de
Abstract:
The tumor suppressor p53 controls a broad range of cellular responses. Induction of a transient (cell cycle arrest) or a permanent (senescence) block of cell proliferation, or the activation of cell death pathways in response to genotoxic stress comprise the major arms of the survival-death axis governed by p53. Due to these biological properties, inactivation of p53 is a crucial step in tumor development and progression, reflected by the high incidence of TP53 mutations in different types of human cancers. The remarkable potency of p53 in suppressing tumorigenic outgrowth has promoted the expectation that tumor cells expressing wild-type p53 (wtp53) should be more prone to elimination by cytotoxic treatments than tumor cells expressing mutant p53 (mutp53) with defunct wtp53 activities. However, recent findings yielded somewhat unexpected insights concerning the preponderance of the survival-promoting effects of wtp53 in cancer cells, a rather undesired property from the therapeutic point of view. In this commentary we will discuss the possibility that the developmentally established distinct patterns of wtp53 mediated responses in different tissues are an important factor in determining the ultimate outcome of cellular responses mediated by wtp53 in different types of tumor cells, with a particular focus on the divergent impact of wtp53 in malignant tumors of the central nervous system. We infer that a selective gain of pro-survival functions of wtp53 in cancer cells will confer a survival advantage that counteracts tumor therapy.
Insights
The tumor suppressor p53 (also known as wild-type p53 or wtp53) normally fights tumors, but in cancer cells, it can surprisingly promote survival, hindering cancer therapy. This commentary explores how tissue-specific p53 functions impact cancer treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- The p53 protein is a critical tumor suppressor involved in cell cycle arrest, senescence, and apoptosis.
- TP53 mutations are frequent in human cancers, leading to the loss of p53's tumor-suppressing functions.
- Wild-type p53 (wtp53) is expected to enhance cancer therapy effectiveness, but recent findings suggest otherwise.
Purpose of the Study:
- To discuss the paradoxical pro-survival role of wtp53 in cancer cells.
- To explore how tissue-specific developmental patterns of wtp53 responses influence cancer outcomes.
- To highlight the implications of wtp53's divergent impact in central nervous system tumors.
Main Methods:
- Literature review and commentary on existing research findings.
- Analysis of the dual role of p53 in cancer cell survival and death pathways.
- Focus on the differential effects of wtp53 in various tumor types, particularly CNS malignancies.
Main Results:
- Recent findings indicate that wtp53 can promote cancer cell survival, counteracting therapeutic strategies.
- Tissue-specific expression and function of wtp53 may dictate its ultimate effect in different tumor contexts.
- A selective gain of pro-survival functions by wtp53 in cancer cells confers a survival advantage.
Conclusions:
- The pro-survival functions of wtp53 in cancer cells represent an undesired therapeutic property.
- Understanding tissue-specific wtp53 responses is crucial for predicting treatment efficacy.
- Further research into the context-dependent roles of wtp53 is needed to overcome therapeutic resistance.
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