Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.

RB-E2F transcriptional control plays a key role in regulating the timing of cell cycle progression from G1 to S-phase in response to growth factor stimulation. Despite this role, it is genetically dispensable for cell cycle exit in primary fibroblasts in response to growth arrest signals. Mice engin...

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Main Authors: Michael J Thwaites, Matthew J Cecchini, Daniel T Passos, Komila Zakirova, Frederick A Dick
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0203577
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spelling doaj-43ee85ef5b7d4cba9f4e255f17daa5152021-03-03T20:55:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01141e020357710.1371/journal.pone.0203577Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.Michael J ThwaitesMatthew J CecchiniDaniel T PassosKomila ZakirovaFrederick A DickRB-E2F transcriptional control plays a key role in regulating the timing of cell cycle progression from G1 to S-phase in response to growth factor stimulation. Despite this role, it is genetically dispensable for cell cycle exit in primary fibroblasts in response to growth arrest signals. Mice engineered to be defective for RB-E2F transcriptional control at cell cycle genes were also found to live a full lifespan with no susceptibility to cancer. Based on this background we sought to probe the vulnerabilities of RB-E2F transcriptional control defects found in Rb1R461E,K542E mutant mice (Rb1G) through genetic crosses with other mouse strains. We generated Rb1G/G mice in combination with Trp53 and Cdkn1a deficiencies, as well as in combination with KrasG12D. The Rb1G mutation enhanced Trp53 cancer susceptibility, but had no effect in combination with Cdkn1a deficiency or KrasG12D. Collectively, this study indicates that compromised RB-E2F transcriptional control is not uniformly cancer enabling, but rather has potent oncogenic effects when combined with specific vulnerabilities.https://doi.org/10.1371/journal.pone.0203577
collection DOAJ
language English
format Article
sources DOAJ
author Michael J Thwaites
Matthew J Cecchini
Daniel T Passos
Komila Zakirova
Frederick A Dick
spellingShingle Michael J Thwaites
Matthew J Cecchini
Daniel T Passos
Komila Zakirova
Frederick A Dick
Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.
PLoS ONE
author_facet Michael J Thwaites
Matthew J Cecchini
Daniel T Passos
Komila Zakirova
Frederick A Dick
author_sort Michael J Thwaites
title Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.
title_short Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.
title_full Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.
title_fullStr Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.
title_full_unstemmed Context dependent roles for RB-E2F transcriptional regulation in tumor suppression.
title_sort context dependent roles for rb-e2f transcriptional regulation in tumor suppression.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description RB-E2F transcriptional control plays a key role in regulating the timing of cell cycle progression from G1 to S-phase in response to growth factor stimulation. Despite this role, it is genetically dispensable for cell cycle exit in primary fibroblasts in response to growth arrest signals. Mice engineered to be defective for RB-E2F transcriptional control at cell cycle genes were also found to live a full lifespan with no susceptibility to cancer. Based on this background we sought to probe the vulnerabilities of RB-E2F transcriptional control defects found in Rb1R461E,K542E mutant mice (Rb1G) through genetic crosses with other mouse strains. We generated Rb1G/G mice in combination with Trp53 and Cdkn1a deficiencies, as well as in combination with KrasG12D. The Rb1G mutation enhanced Trp53 cancer susceptibility, but had no effect in combination with Cdkn1a deficiency or KrasG12D. Collectively, this study indicates that compromised RB-E2F transcriptional control is not uniformly cancer enabling, but rather has potent oncogenic effects when combined with specific vulnerabilities.
url https://doi.org/10.1371/journal.pone.0203577
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