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Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits

The Hedgehog (Hh) pathway is essential for organ development, homeostasis, and regeneration. Dysfunction of this cascade drives several cancers. To control expression of pathway target genes, the G protein–coupled receptor (GPCR) Smoothened (SMO) activates glioma-associated (GLI) transcription facto...

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Autores principales: Arveseth, Corvin D., Happ, John T., Hedeen, Danielle S., Zhu, Ju-Fen, Capener, Jacob L., Klatt Shaw, Dana, Deshpande, Ishan, Liang, Jiahao, Xu, Jiewei, Stubben, Sara L., Nelson, Isaac B., Walker, Madison F., Kawakami, Kouki, Inoue, Asuka, Krogan, Nevan J., Grunwald, David J., Hüttenhain, Ruth, Manglik, Aashish, Myers, Benjamin R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8096101/
https://www.ncbi.nlm.nih.gov/pubmed/33886552
http://dx.doi.org/10.1371/journal.pbio.3001191
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author Arveseth, Corvin D.
Happ, John T.
Hedeen, Danielle S.
Zhu, Ju-Fen
Capener, Jacob L.
Klatt Shaw, Dana
Deshpande, Ishan
Liang, Jiahao
Xu, Jiewei
Stubben, Sara L.
Nelson, Isaac B.
Walker, Madison F.
Kawakami, Kouki
Inoue, Asuka
Krogan, Nevan J.
Grunwald, David J.
Hüttenhain, Ruth
Manglik, Aashish
Myers, Benjamin R.
author_facet Arveseth, Corvin D.
Happ, John T.
Hedeen, Danielle S.
Zhu, Ju-Fen
Capener, Jacob L.
Klatt Shaw, Dana
Deshpande, Ishan
Liang, Jiahao
Xu, Jiewei
Stubben, Sara L.
Nelson, Isaac B.
Walker, Madison F.
Kawakami, Kouki
Inoue, Asuka
Krogan, Nevan J.
Grunwald, David J.
Hüttenhain, Ruth
Manglik, Aashish
Myers, Benjamin R.
author_sort Arveseth, Corvin D.
collection PubMed
description The Hedgehog (Hh) pathway is essential for organ development, homeostasis, and regeneration. Dysfunction of this cascade drives several cancers. To control expression of pathway target genes, the G protein–coupled receptor (GPCR) Smoothened (SMO) activates glioma-associated (GLI) transcription factors via an unknown mechanism. Here, we show that, rather than conforming to traditional GPCR signaling paradigms, SMO activates GLI by binding and sequestering protein kinase A (PKA) catalytic subunits at the membrane. This sequestration, triggered by GPCR kinase (GRK)-mediated phosphorylation of SMO intracellular domains, prevents PKA from phosphorylating soluble substrates, releasing GLI from PKA-mediated inhibition. Our work provides a mechanism directly linking Hh signal transduction at the membrane to GLI transcription in the nucleus. This process is more fundamentally similar between species than prevailing hypotheses suggest. The mechanism described here may apply broadly to other GPCR- and PKA-containing cascades in diverse areas of biology.
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spelling pubmed-80961012021-05-13 Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits Arveseth, Corvin D. Happ, John T. Hedeen, Danielle S. Zhu, Ju-Fen Capener, Jacob L. Klatt Shaw, Dana Deshpande, Ishan Liang, Jiahao Xu, Jiewei Stubben, Sara L. Nelson, Isaac B. Walker, Madison F. Kawakami, Kouki Inoue, Asuka Krogan, Nevan J. Grunwald, David J. Hüttenhain, Ruth Manglik, Aashish Myers, Benjamin R. PLoS Biol Research Article The Hedgehog (Hh) pathway is essential for organ development, homeostasis, and regeneration. Dysfunction of this cascade drives several cancers. To control expression of pathway target genes, the G protein–coupled receptor (GPCR) Smoothened (SMO) activates glioma-associated (GLI) transcription factors via an unknown mechanism. Here, we show that, rather than conforming to traditional GPCR signaling paradigms, SMO activates GLI by binding and sequestering protein kinase A (PKA) catalytic subunits at the membrane. This sequestration, triggered by GPCR kinase (GRK)-mediated phosphorylation of SMO intracellular domains, prevents PKA from phosphorylating soluble substrates, releasing GLI from PKA-mediated inhibition. Our work provides a mechanism directly linking Hh signal transduction at the membrane to GLI transcription in the nucleus. This process is more fundamentally similar between species than prevailing hypotheses suggest. The mechanism described here may apply broadly to other GPCR- and PKA-containing cascades in diverse areas of biology. Public Library of Science 2021-04-22 /pmc/articles/PMC8096101/ /pubmed/33886552 http://dx.doi.org/10.1371/journal.pbio.3001191 Text en © 2021 Arveseth et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Arveseth, Corvin D.
Happ, John T.
Hedeen, Danielle S.
Zhu, Ju-Fen
Capener, Jacob L.
Klatt Shaw, Dana
Deshpande, Ishan
Liang, Jiahao
Xu, Jiewei
Stubben, Sara L.
Nelson, Isaac B.
Walker, Madison F.
Kawakami, Kouki
Inoue, Asuka
Krogan, Nevan J.
Grunwald, David J.
Hüttenhain, Ruth
Manglik, Aashish
Myers, Benjamin R.
Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits
title Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits
title_full Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits
title_fullStr Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits
title_full_unstemmed Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits
title_short Smoothened transduces Hedgehog signals via activity-dependent sequestration of PKA catalytic subunits
title_sort smoothened transduces hedgehog signals via activity-dependent sequestration of pka catalytic subunits
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8096101/
https://www.ncbi.nlm.nih.gov/pubmed/33886552
http://dx.doi.org/10.1371/journal.pbio.3001191
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