Cargando…

A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53

p53 function is frequently inhibited in cancer either through mutations or by increased degradation via MDM2 and/or E6AP E3-ubiquitin ligases. Most agents that restore p53 expression act by binding MDM2 or E6AP to prevent p53 degradation. However, fewer compounds directly bind to and activate p53. H...

Descripción completa

Detalles Bibliográficos
Autores principales: Bechill, John, Zhong, Rong, Zhang, Chen, Solomaha, Elena, Spiotto, Michael T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4849654/
https://www.ncbi.nlm.nih.gov/pubmed/27124407
http://dx.doi.org/10.1371/journal.pone.0154125
_version_ 1782429571199533056
author Bechill, John
Zhong, Rong
Zhang, Chen
Solomaha, Elena
Spiotto, Michael T.
author_facet Bechill, John
Zhong, Rong
Zhang, Chen
Solomaha, Elena
Spiotto, Michael T.
author_sort Bechill, John
collection PubMed
description p53 function is frequently inhibited in cancer either through mutations or by increased degradation via MDM2 and/or E6AP E3-ubiquitin ligases. Most agents that restore p53 expression act by binding MDM2 or E6AP to prevent p53 degradation. However, fewer compounds directly bind to and activate p53. Here, we identified compounds that shared a core structure that bound p53, caused nuclear localization of p53 and caused cell death. To identify these compounds, we developed a novel cell-based screen to redirect p53 degradation to the Skip-Cullin-F-box (SCF) ubiquitin ligase complex in cells expressing high levels of p53. In a multiplexed assay, we coupled p53 targeted degradation with Rb1 targeted degradation in order to identify compounds that prevented p53 degradation while not inhibiting degradation through the SCF complex or other proteolytic machinery. High-throughput screening identified several leads that shared a common 2-[(E)-2-phenylvinyl]-8-quinolinol core structure that stabilized p53. Surface plasmon resonance analysis indicated that these compounds bound p53 with a K(D) of 200 ± 52 nM. Furthermore, these compounds increased p53 nuclear localization and transcription of the p53 target genes PUMA, BAX, p21 and FAS in cancer cells. Although p53-null cells had a 2.5±0.5-fold greater viability compared to p53 wild type cells after treatment with core compounds, loss of p53 did not completely rescue cell viability suggesting that compounds may target both p53-dependent and p53-independent pathways to inhibit cell proliferation. Thus, we present a novel, cell-based high-throughput screen to identify a 2-[(E)-2-phenylvinyl]-8-quinolinol core structure that bound to p53 and increased p53 activity in cancer cells. These compounds may serve as anti-neoplastic agents in part by targeting p53 as well as other potential pathways.
format Online
Article
Text
id pubmed-4849654
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-48496542016-05-07 A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53 Bechill, John Zhong, Rong Zhang, Chen Solomaha, Elena Spiotto, Michael T. PLoS One Research Article p53 function is frequently inhibited in cancer either through mutations or by increased degradation via MDM2 and/or E6AP E3-ubiquitin ligases. Most agents that restore p53 expression act by binding MDM2 or E6AP to prevent p53 degradation. However, fewer compounds directly bind to and activate p53. Here, we identified compounds that shared a core structure that bound p53, caused nuclear localization of p53 and caused cell death. To identify these compounds, we developed a novel cell-based screen to redirect p53 degradation to the Skip-Cullin-F-box (SCF) ubiquitin ligase complex in cells expressing high levels of p53. In a multiplexed assay, we coupled p53 targeted degradation with Rb1 targeted degradation in order to identify compounds that prevented p53 degradation while not inhibiting degradation through the SCF complex or other proteolytic machinery. High-throughput screening identified several leads that shared a common 2-[(E)-2-phenylvinyl]-8-quinolinol core structure that stabilized p53. Surface plasmon resonance analysis indicated that these compounds bound p53 with a K(D) of 200 ± 52 nM. Furthermore, these compounds increased p53 nuclear localization and transcription of the p53 target genes PUMA, BAX, p21 and FAS in cancer cells. Although p53-null cells had a 2.5±0.5-fold greater viability compared to p53 wild type cells after treatment with core compounds, loss of p53 did not completely rescue cell viability suggesting that compounds may target both p53-dependent and p53-independent pathways to inhibit cell proliferation. Thus, we present a novel, cell-based high-throughput screen to identify a 2-[(E)-2-phenylvinyl]-8-quinolinol core structure that bound to p53 and increased p53 activity in cancer cells. These compounds may serve as anti-neoplastic agents in part by targeting p53 as well as other potential pathways. Public Library of Science 2016-04-28 /pmc/articles/PMC4849654/ /pubmed/27124407 http://dx.doi.org/10.1371/journal.pone.0154125 Text en © 2016 Bechill et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bechill, John
Zhong, Rong
Zhang, Chen
Solomaha, Elena
Spiotto, Michael T.
A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53
title A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53
title_full A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53
title_fullStr A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53
title_full_unstemmed A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53
title_short A High-Throughput Cell-Based Screen Identified a 2-[(E)-2-Phenylvinyl]-8-Quinolinol Core Structure That Activates p53
title_sort high-throughput cell-based screen identified a 2-[(e)-2-phenylvinyl]-8-quinolinol core structure that activates p53
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4849654/
https://www.ncbi.nlm.nih.gov/pubmed/27124407
http://dx.doi.org/10.1371/journal.pone.0154125
work_keys_str_mv AT bechilljohn ahighthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT zhongrong ahighthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT zhangchen ahighthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT solomahaelena ahighthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT spiottomichaelt ahighthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT bechilljohn highthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT zhongrong highthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT zhangchen highthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT solomahaelena highthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53
AT spiottomichaelt highthroughputcellbasedscreenidentifieda2e2phenylvinyl8quinolinolcorestructurethatactivatesp53