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Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling

DVL proteins are central mediators of the Wnt pathway and relay complex input signals into different branches of the Wnt signaling network. However, molecular mechanism(s) that regulate DVL-mediated relay of Wnt signals still remains unclear. Here, for the first time, we elucidate the functional sig...

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Autores principales: Sharma, Monica, Castro-Piedras, Isabel, Rasha, Fahmida, Ramachandran, Sabarish, Sennoune, Souad R., Furr, Kathryn, Almodovar, Sharilyn, Ganapathy, Vadivel, Grisham, Matthew B., Rahman, Rakhshanda Layeequr, Pruitt, Kevin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8555683/
https://www.ncbi.nlm.nih.gov/pubmed/34733415
http://dx.doi.org/10.18632/oncotarget.28089
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author Sharma, Monica
Castro-Piedras, Isabel
Rasha, Fahmida
Ramachandran, Sabarish
Sennoune, Souad R.
Furr, Kathryn
Almodovar, Sharilyn
Ganapathy, Vadivel
Grisham, Matthew B.
Rahman, Rakhshanda Layeequr
Pruitt, Kevin
author_facet Sharma, Monica
Castro-Piedras, Isabel
Rasha, Fahmida
Ramachandran, Sabarish
Sennoune, Souad R.
Furr, Kathryn
Almodovar, Sharilyn
Ganapathy, Vadivel
Grisham, Matthew B.
Rahman, Rakhshanda Layeequr
Pruitt, Kevin
author_sort Sharma, Monica
collection PubMed
description DVL proteins are central mediators of the Wnt pathway and relay complex input signals into different branches of the Wnt signaling network. However, molecular mechanism(s) that regulate DVL-mediated relay of Wnt signals still remains unclear. Here, for the first time, we elucidate the functional significance of three DVL-1 lysines (K/Lys) which are subject to post-translational acetylation. We demonstrate that K34 Lys residue in the DIX domain regulates subcellular localization of β-catenin, thereby influencing downstream Wnt target gene expression. Additionally, we show that K69 (DIX domain) and K285 (PDZ domain) regulate binding of DVL-1 to Wnt target gene promoters and modulate expression of Wnt target genes including CMYC, OCT4, NANOG, and CCND1, in cell line models and xenograft tumors. Finally, we report that conserved DVL-1 lysines modulate various oncogenic functions such as cell migration, proliferation, cell-cycle progression, 3D-spheroid formation and in-vivo tumor growth in breast cancer models. Collectively, these findings highlight the importance of DVL-1 domain-specific lysines which were recently shown to be acetylated and characterize their influence on Wnt signaling. These site-specific modifications may be subject to regulation by therapeutics already in clinical use (lysine deacetylase inhibitors such as Panobinostat and Vorinostat) or may possibly have prognostic utility in translational efforts that seek to modulate dysfunctional Wnt signaling.
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spelling pubmed-85556832021-11-02 Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling Sharma, Monica Castro-Piedras, Isabel Rasha, Fahmida Ramachandran, Sabarish Sennoune, Souad R. Furr, Kathryn Almodovar, Sharilyn Ganapathy, Vadivel Grisham, Matthew B. Rahman, Rakhshanda Layeequr Pruitt, Kevin Oncotarget Research Paper DVL proteins are central mediators of the Wnt pathway and relay complex input signals into different branches of the Wnt signaling network. However, molecular mechanism(s) that regulate DVL-mediated relay of Wnt signals still remains unclear. Here, for the first time, we elucidate the functional significance of three DVL-1 lysines (K/Lys) which are subject to post-translational acetylation. We demonstrate that K34 Lys residue in the DIX domain regulates subcellular localization of β-catenin, thereby influencing downstream Wnt target gene expression. Additionally, we show that K69 (DIX domain) and K285 (PDZ domain) regulate binding of DVL-1 to Wnt target gene promoters and modulate expression of Wnt target genes including CMYC, OCT4, NANOG, and CCND1, in cell line models and xenograft tumors. Finally, we report that conserved DVL-1 lysines modulate various oncogenic functions such as cell migration, proliferation, cell-cycle progression, 3D-spheroid formation and in-vivo tumor growth in breast cancer models. Collectively, these findings highlight the importance of DVL-1 domain-specific lysines which were recently shown to be acetylated and characterize their influence on Wnt signaling. These site-specific modifications may be subject to regulation by therapeutics already in clinical use (lysine deacetylase inhibitors such as Panobinostat and Vorinostat) or may possibly have prognostic utility in translational efforts that seek to modulate dysfunctional Wnt signaling. Impact Journals LLC 2021-10-26 /pmc/articles/PMC8555683/ /pubmed/34733415 http://dx.doi.org/10.18632/oncotarget.28089 Text en Copyright: © 2021 Sharma et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Sharma, Monica
Castro-Piedras, Isabel
Rasha, Fahmida
Ramachandran, Sabarish
Sennoune, Souad R.
Furr, Kathryn
Almodovar, Sharilyn
Ganapathy, Vadivel
Grisham, Matthew B.
Rahman, Rakhshanda Layeequr
Pruitt, Kevin
Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling
title Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling
title_full Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling
title_fullStr Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling
title_full_unstemmed Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling
title_short Dishevelled-1 DIX and PDZ domain lysine residues regulate oncogenic Wnt signaling
title_sort dishevelled-1 dix and pdz domain lysine residues regulate oncogenic wnt signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8555683/
https://www.ncbi.nlm.nih.gov/pubmed/34733415
http://dx.doi.org/10.18632/oncotarget.28089
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