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HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma

We previously demonstrated that pan-HDAC inhibitors could limit escape from MEK inhibitor (MEKi) therapy in uveal melanoma (UM) through suppression of AKT and YAP/TAZ signaling. Here, we focused on the role of specific HDACs in therapy adaptation. Class 2 UM displayed higher expression of HDACs 1, 2...

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Autores principales: Sriramareddy, Sathya Neelature, Faião-Flores, Fernanda, Emmons, Michael F., Saha, Biswarup, Chellappan, Srikumar, Wyatt, Clayton, Smalley, Inna, Licht, Jonathan D., Durante, Michael A., Harbour, J. William, Smalley, Keiran S.M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9508287/
https://www.ncbi.nlm.nih.gov/pubmed/35332245
http://dx.doi.org/10.1038/s41417-022-00452-7
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author Sriramareddy, Sathya Neelature
Faião-Flores, Fernanda
Emmons, Michael F.
Saha, Biswarup
Chellappan, Srikumar
Wyatt, Clayton
Smalley, Inna
Licht, Jonathan D.
Durante, Michael A.
Harbour, J. William
Smalley, Keiran S.M.
author_facet Sriramareddy, Sathya Neelature
Faião-Flores, Fernanda
Emmons, Michael F.
Saha, Biswarup
Chellappan, Srikumar
Wyatt, Clayton
Smalley, Inna
Licht, Jonathan D.
Durante, Michael A.
Harbour, J. William
Smalley, Keiran S.M.
author_sort Sriramareddy, Sathya Neelature
collection PubMed
description We previously demonstrated that pan-HDAC inhibitors could limit escape from MEK inhibitor (MEKi) therapy in uveal melanoma (UM) through suppression of AKT and YAP/TAZ signaling. Here, we focused on the role of specific HDACs in therapy adaptation. Class 2 UM displayed higher expression of HDACs 1, 2 and 3 than Class 1, whereas HDACs 6, 8 and 11 were uniformly expressed. Treatment of UM cells with MEKi led to modulation of multiple HDACs, with the strongest increases observed in HDAC11. RNA-seq analysis showed MEKi to decrease expression of multiple HDAC11 target genes. Silencing of HDAC11 significantly reduced protein deacetylation, enhanced the apoptotic response to MEKi and reduced growth in long-term colony formation assays across multiple UM cell lines. Knockdown of HDAC11 led to decreased expression of TAZ in some UM cell lines, accompanied by decreased YAP/TAZ transcriptional activity and reduced expression of multiple YAP/TAZ target genes. Further studies showed this decrease in TAZ expression to be associated with increased LKB1 activation and modulation of glycolysis. In an in vivo model of uveal melanoma, silencing of HDAC11 limited the escape to MEKi therapy, an effect associated with reduced levels of Ki67 staining and increased cleaved caspase-3. We have demonstrated a novel role for adaptive HDAC11 activity in UM cells, that in some cases modulates YAP/TAZ signaling leading to MEKi escape.
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spelling pubmed-95082872023-06-01 HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma Sriramareddy, Sathya Neelature Faião-Flores, Fernanda Emmons, Michael F. Saha, Biswarup Chellappan, Srikumar Wyatt, Clayton Smalley, Inna Licht, Jonathan D. Durante, Michael A. Harbour, J. William Smalley, Keiran S.M. Cancer Gene Ther Article We previously demonstrated that pan-HDAC inhibitors could limit escape from MEK inhibitor (MEKi) therapy in uveal melanoma (UM) through suppression of AKT and YAP/TAZ signaling. Here, we focused on the role of specific HDACs in therapy adaptation. Class 2 UM displayed higher expression of HDACs 1, 2 and 3 than Class 1, whereas HDACs 6, 8 and 11 were uniformly expressed. Treatment of UM cells with MEKi led to modulation of multiple HDACs, with the strongest increases observed in HDAC11. RNA-seq analysis showed MEKi to decrease expression of multiple HDAC11 target genes. Silencing of HDAC11 significantly reduced protein deacetylation, enhanced the apoptotic response to MEKi and reduced growth in long-term colony formation assays across multiple UM cell lines. Knockdown of HDAC11 led to decreased expression of TAZ in some UM cell lines, accompanied by decreased YAP/TAZ transcriptional activity and reduced expression of multiple YAP/TAZ target genes. Further studies showed this decrease in TAZ expression to be associated with increased LKB1 activation and modulation of glycolysis. In an in vivo model of uveal melanoma, silencing of HDAC11 limited the escape to MEKi therapy, an effect associated with reduced levels of Ki67 staining and increased cleaved caspase-3. We have demonstrated a novel role for adaptive HDAC11 activity in UM cells, that in some cases modulates YAP/TAZ signaling leading to MEKi escape. 2022-12 2022-03-24 /pmc/articles/PMC9508287/ /pubmed/35332245 http://dx.doi.org/10.1038/s41417-022-00452-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Sriramareddy, Sathya Neelature
Faião-Flores, Fernanda
Emmons, Michael F.
Saha, Biswarup
Chellappan, Srikumar
Wyatt, Clayton
Smalley, Inna
Licht, Jonathan D.
Durante, Michael A.
Harbour, J. William
Smalley, Keiran S.M.
HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma
title HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma
title_full HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma
title_fullStr HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma
title_full_unstemmed HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma
title_short HDAC11 activity contributes to MEK inhibitor escape in uveal melanoma
title_sort hdac11 activity contributes to mek inhibitor escape in uveal melanoma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9508287/
https://www.ncbi.nlm.nih.gov/pubmed/35332245
http://dx.doi.org/10.1038/s41417-022-00452-7
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