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IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway

N-terminal phosphorylation at residues T3 and S13 is believed to have important beneficial implications for the biological and pathological properties of mutant huntingtin, where inhibitor of nuclear factor kappa B kinase subunit beta (IKBKB) was identified as a candidate regulator of huntingtin N-t...

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Autores principales: Cariulo, Cristina, Martufi, Paola, Verani, Margherita, Toledo-Sherman, Leticia, Lee, Ramee, Dominguez, Celia, Petricca, Lara, Caricasole, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410066/
https://www.ncbi.nlm.nih.gov/pubmed/37553253
http://dx.doi.org/10.26508/lsa.202302006
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author Cariulo, Cristina
Martufi, Paola
Verani, Margherita
Toledo-Sherman, Leticia
Lee, Ramee
Dominguez, Celia
Petricca, Lara
Caricasole, Andrea
author_facet Cariulo, Cristina
Martufi, Paola
Verani, Margherita
Toledo-Sherman, Leticia
Lee, Ramee
Dominguez, Celia
Petricca, Lara
Caricasole, Andrea
author_sort Cariulo, Cristina
collection PubMed
description N-terminal phosphorylation at residues T3 and S13 is believed to have important beneficial implications for the biological and pathological properties of mutant huntingtin, where inhibitor of nuclear factor kappa B kinase subunit beta (IKBKB) was identified as a candidate regulator of huntingtin N-terminal phosphorylation. The paucity of mechanistic information on IKK pathways, together with the lack of sensitive methods to quantify endogenous huntingtin phosphorylation, prevented detailed study of the role of IKBKB in Huntington’s disease. Using novel ultrasensitive assays, we demonstrate that IKBKB can regulate endogenous S13 huntingtin phosphorylation in a manner, dependent on its kinase activity and known regulators. We found that the ability of IKBKB to phosphorylate endogenous huntingtin S13 is mediated through a non-canonical interferon regulatory factor3–mediated IKK pathway, distinct from the established involvement of IKBKB in mutant huntingtin’s pathological mechanisms mediated via the canonical pathway. Furthermore, increased huntingtin S13 phosphorylation by IKBKB resulted in decreased aggregation of mutant huntingtin in cells, again dependent on its kinase activity. These findings point to a non-canonical IKK pathway linking S13 huntingtin phosphorylation to the pathological properties of mutant huntingtin aggregation, thought to be significant to Huntington’s disease.
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spelling pubmed-104100662023-08-10 IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway Cariulo, Cristina Martufi, Paola Verani, Margherita Toledo-Sherman, Leticia Lee, Ramee Dominguez, Celia Petricca, Lara Caricasole, Andrea Life Sci Alliance Research Articles N-terminal phosphorylation at residues T3 and S13 is believed to have important beneficial implications for the biological and pathological properties of mutant huntingtin, where inhibitor of nuclear factor kappa B kinase subunit beta (IKBKB) was identified as a candidate regulator of huntingtin N-terminal phosphorylation. The paucity of mechanistic information on IKK pathways, together with the lack of sensitive methods to quantify endogenous huntingtin phosphorylation, prevented detailed study of the role of IKBKB in Huntington’s disease. Using novel ultrasensitive assays, we demonstrate that IKBKB can regulate endogenous S13 huntingtin phosphorylation in a manner, dependent on its kinase activity and known regulators. We found that the ability of IKBKB to phosphorylate endogenous huntingtin S13 is mediated through a non-canonical interferon regulatory factor3–mediated IKK pathway, distinct from the established involvement of IKBKB in mutant huntingtin’s pathological mechanisms mediated via the canonical pathway. Furthermore, increased huntingtin S13 phosphorylation by IKBKB resulted in decreased aggregation of mutant huntingtin in cells, again dependent on its kinase activity. These findings point to a non-canonical IKK pathway linking S13 huntingtin phosphorylation to the pathological properties of mutant huntingtin aggregation, thought to be significant to Huntington’s disease. Life Science Alliance LLC 2023-08-08 /pmc/articles/PMC10410066/ /pubmed/37553253 http://dx.doi.org/10.26508/lsa.202302006 Text en © 2023 Cariulo et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Cariulo, Cristina
Martufi, Paola
Verani, Margherita
Toledo-Sherman, Leticia
Lee, Ramee
Dominguez, Celia
Petricca, Lara
Caricasole, Andrea
IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway
title IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway
title_full IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway
title_fullStr IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway
title_full_unstemmed IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway
title_short IKBKB reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical IKK pathway
title_sort ikbkb reduces huntingtin aggregation by phosphorylating serine 13 via a non-canonical ikk pathway
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410066/
https://www.ncbi.nlm.nih.gov/pubmed/37553253
http://dx.doi.org/10.26508/lsa.202302006
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