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Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency

Mevalonate kinase deficiency (MKD) is characterized by recurrent fevers and flares of systemic inflammation, caused by biallelic loss-of-function mutations in MVK. The underlying disease mechanisms and triggers of inflammatory flares are poorly understood because of the lack of in vivo models. We de...

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Autores principales: Munoz, Marcia A., Skinner, Oliver P., Masle-Farquhar, Etienne, Jurczyluk, Julie, Xiao, Ya, Fletcher, Emma K., Kristianto, Esther, Hodson, Mark P., O’Donoghue, Seán I., Kaur, Sandeep, Brink, Robert, Zahra, David G., Deenick, Elissa K., Perry, Kristen A., Robertson, Avril A.B., Mehr, Sam, Hissaria, Pravin, Mulders-Manders, Catharina M., Simon, Anna, Rogers, Michael J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525117/
https://www.ncbi.nlm.nih.gov/pubmed/36189795
http://dx.doi.org/10.1172/JCI160929
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author Munoz, Marcia A.
Skinner, Oliver P.
Masle-Farquhar, Etienne
Jurczyluk, Julie
Xiao, Ya
Fletcher, Emma K.
Kristianto, Esther
Hodson, Mark P.
O’Donoghue, Seán I.
Kaur, Sandeep
Brink, Robert
Zahra, David G.
Deenick, Elissa K.
Perry, Kristen A.
Robertson, Avril A.B.
Mehr, Sam
Hissaria, Pravin
Mulders-Manders, Catharina M.
Simon, Anna
Rogers, Michael J.
author_facet Munoz, Marcia A.
Skinner, Oliver P.
Masle-Farquhar, Etienne
Jurczyluk, Julie
Xiao, Ya
Fletcher, Emma K.
Kristianto, Esther
Hodson, Mark P.
O’Donoghue, Seán I.
Kaur, Sandeep
Brink, Robert
Zahra, David G.
Deenick, Elissa K.
Perry, Kristen A.
Robertson, Avril A.B.
Mehr, Sam
Hissaria, Pravin
Mulders-Manders, Catharina M.
Simon, Anna
Rogers, Michael J.
author_sort Munoz, Marcia A.
collection PubMed
description Mevalonate kinase deficiency (MKD) is characterized by recurrent fevers and flares of systemic inflammation, caused by biallelic loss-of-function mutations in MVK. The underlying disease mechanisms and triggers of inflammatory flares are poorly understood because of the lack of in vivo models. We describe genetically modified mice bearing the hypomorphic mutation p.Val377Ile (the commonest variant in patients with MKD) and amorphic, frameshift mutations in Mvk. Compound heterozygous mice recapitulated the characteristic biochemical phenotype of MKD, with increased plasma mevalonic acid and clear buildup of unprenylated GTPases in PBMCs, splenocytes, and bone marrow. The inflammatory response to LPS was enhanced in compound heterozygous mice and treatment with the NLRP3 inflammasome inhibitor MCC950 prevented the elevation of circulating IL-1β, thus identifying a potential inflammasome target for future therapeutic approaches. Furthermore, lines of mice with a range of deficiencies in mevalonate kinase and abnormal prenylation mirrored the genotype-phenotype relationship in human MKD. Importantly, these mice allowed the determination of a threshold level of residual enzyme activity, below which protein prenylation is impaired. Elevated temperature dramatically but reversibly exacerbated the deficit in the mevalonate pathway and the defective prenylation in vitro and in vivo, highlighting increased body temperature as a likely trigger of inflammatory flares.
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spelling pubmed-95251172022-10-05 Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency Munoz, Marcia A. Skinner, Oliver P. Masle-Farquhar, Etienne Jurczyluk, Julie Xiao, Ya Fletcher, Emma K. Kristianto, Esther Hodson, Mark P. O’Donoghue, Seán I. Kaur, Sandeep Brink, Robert Zahra, David G. Deenick, Elissa K. Perry, Kristen A. Robertson, Avril A.B. Mehr, Sam Hissaria, Pravin Mulders-Manders, Catharina M. Simon, Anna Rogers, Michael J. J Clin Invest Research Article Mevalonate kinase deficiency (MKD) is characterized by recurrent fevers and flares of systemic inflammation, caused by biallelic loss-of-function mutations in MVK. The underlying disease mechanisms and triggers of inflammatory flares are poorly understood because of the lack of in vivo models. We describe genetically modified mice bearing the hypomorphic mutation p.Val377Ile (the commonest variant in patients with MKD) and amorphic, frameshift mutations in Mvk. Compound heterozygous mice recapitulated the characteristic biochemical phenotype of MKD, with increased plasma mevalonic acid and clear buildup of unprenylated GTPases in PBMCs, splenocytes, and bone marrow. The inflammatory response to LPS was enhanced in compound heterozygous mice and treatment with the NLRP3 inflammasome inhibitor MCC950 prevented the elevation of circulating IL-1β, thus identifying a potential inflammasome target for future therapeutic approaches. Furthermore, lines of mice with a range of deficiencies in mevalonate kinase and abnormal prenylation mirrored the genotype-phenotype relationship in human MKD. Importantly, these mice allowed the determination of a threshold level of residual enzyme activity, below which protein prenylation is impaired. Elevated temperature dramatically but reversibly exacerbated the deficit in the mevalonate pathway and the defective prenylation in vitro and in vivo, highlighting increased body temperature as a likely trigger of inflammatory flares. American Society for Clinical Investigation 2022-10-03 /pmc/articles/PMC9525117/ /pubmed/36189795 http://dx.doi.org/10.1172/JCI160929 Text en © 2022 Munoz et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Munoz, Marcia A.
Skinner, Oliver P.
Masle-Farquhar, Etienne
Jurczyluk, Julie
Xiao, Ya
Fletcher, Emma K.
Kristianto, Esther
Hodson, Mark P.
O’Donoghue, Seán I.
Kaur, Sandeep
Brink, Robert
Zahra, David G.
Deenick, Elissa K.
Perry, Kristen A.
Robertson, Avril A.B.
Mehr, Sam
Hissaria, Pravin
Mulders-Manders, Catharina M.
Simon, Anna
Rogers, Michael J.
Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency
title Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency
title_full Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency
title_fullStr Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency
title_full_unstemmed Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency
title_short Increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency
title_sort increased core body temperature exacerbates defective protein prenylation in mouse models of mevalonate kinase deficiency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525117/
https://www.ncbi.nlm.nih.gov/pubmed/36189795
http://dx.doi.org/10.1172/JCI160929
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