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14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices

Ca(2+)/CaM‐dependent protein kinase kinases 1 and 2 (CaMKK1 and CaMKK2) phosphorylate and enhance the catalytic activity of downstream kinases CaMKI, CaMKIV, and protein kinase B. Accordingly, CaMKK1 and CaMKK2 regulate key physiological and pathological processes, such as tumorigenesis, neuronal mo...

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Autores principales: Petrvalska, Olivia, Honzejkova, Karolina, Koupilova, Nicola, Herman, Petr, Obsilova, Veronika, Obsil, Tomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10588359/
https://www.ncbi.nlm.nih.gov/pubmed/37817008
http://dx.doi.org/10.1002/pro.4805
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author Petrvalska, Olivia
Honzejkova, Karolina
Koupilova, Nicola
Herman, Petr
Obsilova, Veronika
Obsil, Tomas
author_facet Petrvalska, Olivia
Honzejkova, Karolina
Koupilova, Nicola
Herman, Petr
Obsilova, Veronika
Obsil, Tomas
author_sort Petrvalska, Olivia
collection PubMed
description Ca(2+)/CaM‐dependent protein kinase kinases 1 and 2 (CaMKK1 and CaMKK2) phosphorylate and enhance the catalytic activity of downstream kinases CaMKI, CaMKIV, and protein kinase B. Accordingly, CaMKK1 and CaMKK2 regulate key physiological and pathological processes, such as tumorigenesis, neuronal morphogenesis, synaptic plasticity, transcription factor activation, and cellular energy homeostasis, and promote cell survival. Both CaMKKs are partly inhibited by phosphorylation, which in turn triggers adaptor and scaffolding protein 14‐3‐3 binding. However, 14‐3‐3 binding only significantly affects CaMKK1 function. CaMKK2 activity remains almost unchanged after complex formation for reasons still unclear. Here, we aim at structurally characterizing CaMKK1:14‐3‐3 and CaMKK2:14‐3‐3 complexes by SAXS, H/D exchange coupled to MS, and fluorescence spectroscopy. The results revealed that complex formation suppresses the interaction of both phosphorylated CaMKKs with Ca(2+)/CaM and affects the structure of their kinase domains and autoinhibitory segments. But these effects are much stronger on CaMKK1 than on CaMKK2 because the CaMKK1:14‐3‐3γ complex has a more compact and rigid structure in which the active site of the kinase domain directly interacts with the last two C‐terminal helices of the 14‐3‐3γ protein, thereby inhibiting CaMKK1. In contrast, the CaMKK2:14‐3‐3 complex has a looser and more flexible structure, so 14‐3‐3 binding only negligibly affects the catalytic activity of CaMKK2. Therefore, Ca(2+)/CaM binding suppression and the interaction of the kinase active site of CaMKK1 with the last two C‐terminal helices of 14‐3‐3γ protein provide the structural basis for 14‐3‐3‐mediated CaMKK1 inhibition.
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spelling pubmed-105883592023-11-01 14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices Petrvalska, Olivia Honzejkova, Karolina Koupilova, Nicola Herman, Petr Obsilova, Veronika Obsil, Tomas Protein Sci Research Articles Ca(2+)/CaM‐dependent protein kinase kinases 1 and 2 (CaMKK1 and CaMKK2) phosphorylate and enhance the catalytic activity of downstream kinases CaMKI, CaMKIV, and protein kinase B. Accordingly, CaMKK1 and CaMKK2 regulate key physiological and pathological processes, such as tumorigenesis, neuronal morphogenesis, synaptic plasticity, transcription factor activation, and cellular energy homeostasis, and promote cell survival. Both CaMKKs are partly inhibited by phosphorylation, which in turn triggers adaptor and scaffolding protein 14‐3‐3 binding. However, 14‐3‐3 binding only significantly affects CaMKK1 function. CaMKK2 activity remains almost unchanged after complex formation for reasons still unclear. Here, we aim at structurally characterizing CaMKK1:14‐3‐3 and CaMKK2:14‐3‐3 complexes by SAXS, H/D exchange coupled to MS, and fluorescence spectroscopy. The results revealed that complex formation suppresses the interaction of both phosphorylated CaMKKs with Ca(2+)/CaM and affects the structure of their kinase domains and autoinhibitory segments. But these effects are much stronger on CaMKK1 than on CaMKK2 because the CaMKK1:14‐3‐3γ complex has a more compact and rigid structure in which the active site of the kinase domain directly interacts with the last two C‐terminal helices of the 14‐3‐3γ protein, thereby inhibiting CaMKK1. In contrast, the CaMKK2:14‐3‐3 complex has a looser and more flexible structure, so 14‐3‐3 binding only negligibly affects the catalytic activity of CaMKK2. Therefore, Ca(2+)/CaM binding suppression and the interaction of the kinase active site of CaMKK1 with the last two C‐terminal helices of 14‐3‐3γ protein provide the structural basis for 14‐3‐3‐mediated CaMKK1 inhibition. John Wiley & Sons, Inc. 2023-11-01 /pmc/articles/PMC10588359/ /pubmed/37817008 http://dx.doi.org/10.1002/pro.4805 Text en © 2023 The Authors. Protein Science published by Wiley Periodicals LLC on behalf of The Protein Society. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Petrvalska, Olivia
Honzejkova, Karolina
Koupilova, Nicola
Herman, Petr
Obsilova, Veronika
Obsil, Tomas
14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices
title 14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices
title_full 14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices
title_fullStr 14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices
title_full_unstemmed 14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices
title_short 14‐3‐3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C‐terminal helices
title_sort 14‐3‐3 protein inhibits camkk1 by blocking the kinase active site with its last two c‐terminal helices
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10588359/
https://www.ncbi.nlm.nih.gov/pubmed/37817008
http://dx.doi.org/10.1002/pro.4805
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