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Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases

BACKGROUND: In the isoprenoid biosynthesis pathway, mevalonate is phosphorylated in 2 subsequent enzyme steps by MVK and PMVK to generate mevalonate pyrophosphate that is further metabolized to produce sterol and nonsterol isoprenoids. Biallelic pathogenic variants in MVK result in the autoinflammat...

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Autores principales: Berner, Jakob, van de Wetering, Cheryl, Jimenez Heredia, Raul, Rashkova, Christina, Ferdinandusse, Sacha, Koster, Janet, Weiss, Johannes G., Frohne, Alexandra, Giuliani, Sarah, Waterham, Hans R., Castanon, Irinka, Brunner, Jürgen, Boztug, Kaan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mosby 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10549927/
https://www.ncbi.nlm.nih.gov/pubmed/37364720
http://dx.doi.org/10.1016/j.jaci.2023.06.013
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author Berner, Jakob
van de Wetering, Cheryl
Jimenez Heredia, Raul
Rashkova, Christina
Ferdinandusse, Sacha
Koster, Janet
Weiss, Johannes G.
Frohne, Alexandra
Giuliani, Sarah
Waterham, Hans R.
Castanon, Irinka
Brunner, Jürgen
Boztug, Kaan
author_facet Berner, Jakob
van de Wetering, Cheryl
Jimenez Heredia, Raul
Rashkova, Christina
Ferdinandusse, Sacha
Koster, Janet
Weiss, Johannes G.
Frohne, Alexandra
Giuliani, Sarah
Waterham, Hans R.
Castanon, Irinka
Brunner, Jürgen
Boztug, Kaan
author_sort Berner, Jakob
collection PubMed
description BACKGROUND: In the isoprenoid biosynthesis pathway, mevalonate is phosphorylated in 2 subsequent enzyme steps by MVK and PMVK to generate mevalonate pyrophosphate that is further metabolized to produce sterol and nonsterol isoprenoids. Biallelic pathogenic variants in MVK result in the autoinflammatory metabolic disorder MVK deficiency. So far, however, no patients with proven PMVK deficiency due to biallelic pathogenic variants in PMVK have been reported. OBJECTIVES: This study reports the first patient with functionally confirmed PMVK deficiency, including the clinical, biochemical, and immunological consequences of a homozygous missense variant in PMVK. METHODS: The investigators performed whole-exome sequencing and functional studies in cells from a patient who, on clinical and immunological evaluation, was suspected of an autoinflammatory disease. RESULTS: The investigators identified a homozygous PMVK p.Val131Ala (NM_006556.4: c.392T>C) missense variant in the index patient. Pathogenicity was supported by genetic algorithms and modeling analysis and confirmed in patient cells that revealed markedly reduced PMVK enzyme activity due to a virtually complete absence of PMVK protein. Clinically, the patient showed various similarities as well as distinct features compared to patients with MVK deficiency and responded well to therapeutic IL-1 inhibition. CONCLUSIONS: This study reported the first patient with proven PMVK deficiency due to a homozygous missense variant in PMVK, leading to an autoinflammatory disease. PMVK deficiency expands the genetic spectrum of systemic autoinflammatory diseases, characterized by recurrent fevers, arthritis, and cytopenia and thus should be included in the differential diagnosis and genetic testing for systemic autoinflammatory diseases.
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spelling pubmed-105499272023-10-05 Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases Berner, Jakob van de Wetering, Cheryl Jimenez Heredia, Raul Rashkova, Christina Ferdinandusse, Sacha Koster, Janet Weiss, Johannes G. Frohne, Alexandra Giuliani, Sarah Waterham, Hans R. Castanon, Irinka Brunner, Jürgen Boztug, Kaan J Allergy Clin Immunol Brief Report BACKGROUND: In the isoprenoid biosynthesis pathway, mevalonate is phosphorylated in 2 subsequent enzyme steps by MVK and PMVK to generate mevalonate pyrophosphate that is further metabolized to produce sterol and nonsterol isoprenoids. Biallelic pathogenic variants in MVK result in the autoinflammatory metabolic disorder MVK deficiency. So far, however, no patients with proven PMVK deficiency due to biallelic pathogenic variants in PMVK have been reported. OBJECTIVES: This study reports the first patient with functionally confirmed PMVK deficiency, including the clinical, biochemical, and immunological consequences of a homozygous missense variant in PMVK. METHODS: The investigators performed whole-exome sequencing and functional studies in cells from a patient who, on clinical and immunological evaluation, was suspected of an autoinflammatory disease. RESULTS: The investigators identified a homozygous PMVK p.Val131Ala (NM_006556.4: c.392T>C) missense variant in the index patient. Pathogenicity was supported by genetic algorithms and modeling analysis and confirmed in patient cells that revealed markedly reduced PMVK enzyme activity due to a virtually complete absence of PMVK protein. Clinically, the patient showed various similarities as well as distinct features compared to patients with MVK deficiency and responded well to therapeutic IL-1 inhibition. CONCLUSIONS: This study reported the first patient with proven PMVK deficiency due to a homozygous missense variant in PMVK, leading to an autoinflammatory disease. PMVK deficiency expands the genetic spectrum of systemic autoinflammatory diseases, characterized by recurrent fevers, arthritis, and cytopenia and thus should be included in the differential diagnosis and genetic testing for systemic autoinflammatory diseases. Mosby 2023-10 /pmc/articles/PMC10549927/ /pubmed/37364720 http://dx.doi.org/10.1016/j.jaci.2023.06.013 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Brief Report
Berner, Jakob
van de Wetering, Cheryl
Jimenez Heredia, Raul
Rashkova, Christina
Ferdinandusse, Sacha
Koster, Janet
Weiss, Johannes G.
Frohne, Alexandra
Giuliani, Sarah
Waterham, Hans R.
Castanon, Irinka
Brunner, Jürgen
Boztug, Kaan
Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases
title Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases
title_full Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases
title_fullStr Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases
title_full_unstemmed Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases
title_short Phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases
title_sort phosphomevalonate kinase deficiency expands the genetic spectrum of systemic autoinflammatory diseases
topic Brief Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10549927/
https://www.ncbi.nlm.nih.gov/pubmed/37364720
http://dx.doi.org/10.1016/j.jaci.2023.06.013
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