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Harnessing the vulnerabilities of p53 mutants in lung cancer - Focusing on the proteasome: a new trick for an old foe? | LitMetric

AI Article Synopsis

  • Gain-of-function (GOF) mutations in the p53 gene are prevalent in human cancers, resulting in both loss of tumor suppression and more aggressive cancer characteristics.
  • In lung cancer, which has the highest cancer-related death rates, 33-90% of tumors carry GOF p53 mutations, leading to abnormal protein stability in comparison to normal p53.
  • The study highlights the potential of targeting GOF p53 for treatment, recommending a re-evaluation of proteasome inhibitors since they may effectively reduce GOF p53 levels in lung cancer.

Article Abstract

Gain-of-function (GOF) p53 mutations occur commonly in human cancer and lead to both loss of p53 tumor suppressor function and acquisition of aggressive cancer phenotypes. The oncogenicity of GOF mutant p53 is highly related to its abnormal protein stability relative to wild type p53, and overall stoichiometric excess. We provide an overview of the mechanisms of dysfunction and abnormal stability of GOF p53 specifically in lung cancer, the leading cause of cancer-related mortality, where, depending on histologic subtype, 33-90% of tumors exhibit GOF p53 mutations. As a distinguishing feature and oncogenic mechanism in lung and many other cancers, GOF p53 represents an appealing and cancer-specific therapeutic target. We review preclinical evidence demonstrating paradoxical depletion of GOF p53 by proteasome inhibitors, as well as preclinical and clinical studies of proteasome inhibition in lung cancer. Finally, we provide a rationale for a reexamination of proteasome inhibition in lung cancer, focusing on tumors expressing GOF p53 alleles.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7515531PMC
http://dx.doi.org/10.1080/15384047.2019.1702403DOI Listing

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