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Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease

The identification of disease alleles underlying human autoinflammatory diseases can provide important insights into the mechanisms that maintain neutrophil homeostasis. Here, we focused our attention on generalized pustular psoriasis (GPP), a potentially life-threatening disorder presenting with cu...

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Autores principales: Vergnano, Marta, Mockenhaupt, Maja, Benzian-Olsson, Natashia, Paulmann, Maren, Grys, Katarzyna, Mahil, Satveer K., Chaloner, Charlotte, Barbosa, Ines A., August, Suzannah, Burden, A. David, Choon, Siew-Eng, Cooper, Hywel, Navarini, Alex A., Reynolds, Nick J., Wahie, Shyamal, Warren, Richard B., Wright, Andrew, Huffmeier, Ulrike, Baum, Patrick, Visvanathan, Sudha, Barker, Jonathan N., Smith, Catherine H., Capon, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477255/
https://www.ncbi.nlm.nih.gov/pubmed/32758448
http://dx.doi.org/10.1016/j.ajhg.2020.06.020
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author Vergnano, Marta
Mockenhaupt, Maja
Benzian-Olsson, Natashia
Paulmann, Maren
Grys, Katarzyna
Mahil, Satveer K.
Chaloner, Charlotte
Barbosa, Ines A.
August, Suzannah
Burden, A. David
Choon, Siew-Eng
Cooper, Hywel
Navarini, Alex A.
Reynolds, Nick J.
Wahie, Shyamal
Warren, Richard B.
Wright, Andrew
Huffmeier, Ulrike
Baum, Patrick
Visvanathan, Sudha
Barker, Jonathan N.
Smith, Catherine H.
Capon, Francesca
author_facet Vergnano, Marta
Mockenhaupt, Maja
Benzian-Olsson, Natashia
Paulmann, Maren
Grys, Katarzyna
Mahil, Satveer K.
Chaloner, Charlotte
Barbosa, Ines A.
August, Suzannah
Burden, A. David
Choon, Siew-Eng
Cooper, Hywel
Navarini, Alex A.
Reynolds, Nick J.
Wahie, Shyamal
Warren, Richard B.
Wright, Andrew
Huffmeier, Ulrike
Baum, Patrick
Visvanathan, Sudha
Barker, Jonathan N.
Smith, Catherine H.
Capon, Francesca
author_sort Vergnano, Marta
collection PubMed
description The identification of disease alleles underlying human autoinflammatory diseases can provide important insights into the mechanisms that maintain neutrophil homeostasis. Here, we focused our attention on generalized pustular psoriasis (GPP), a potentially life-threatening disorder presenting with cutaneous and systemic neutrophilia. Following the whole-exome sequencing of 19 unrelated affected individuals, we identified a subject harboring a homozygous splice-site mutation (c.2031−2A>C) in MPO. This encodes myeloperoxidase, an essential component of neutrophil azurophil granules. MPO screening in conditions phenotypically related to GPP uncovered further disease alleles in one subject with acral pustular psoriasis (c.2031−2A>C;c.2031−2A>C) and in two individuals with acute generalized exanthematous pustulosis (c.1705C>T;c.2031−2A>C and c.1552_1565del;c.1552_1565del). A subsequent analysis of UK Biobank data demonstrated that the c.2031−2A>C and c.1705C>T (p.Arg569Trp) disease alleles were also associated with increased neutrophil abundance in the general population (p = 5.1 × 10(−6) and p = 3.6 × 10(−5), respectively). The same applied to three further deleterious variants that had been genotyped in the cohort, with two alleles (c.995C>T [p.Ala332Val] and c.752T>C [p.Met251Thr]) yielding p values < 10(−10). Finally, treatment of healthy neutrophils with an MPO inhibitor (4-Aminobenzoic acid hydrazide) increased cell viability and delayed apoptosis, highlighting a mechanism whereby MPO mutations affect granulocyte numbers. These findings identify MPO as a genetic determinant of pustular skin disease and neutrophil abundance. Given the recent interest in the development of MPO antagonists for the treatment of neurodegenerative disease, our results also suggest that the pro-inflammatory effects of these agents should be closely monitored.
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spelling pubmed-74772552020-10-09 Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease Vergnano, Marta Mockenhaupt, Maja Benzian-Olsson, Natashia Paulmann, Maren Grys, Katarzyna Mahil, Satveer K. Chaloner, Charlotte Barbosa, Ines A. August, Suzannah Burden, A. David Choon, Siew-Eng Cooper, Hywel Navarini, Alex A. Reynolds, Nick J. Wahie, Shyamal Warren, Richard B. Wright, Andrew Huffmeier, Ulrike Baum, Patrick Visvanathan, Sudha Barker, Jonathan N. Smith, Catherine H. Capon, Francesca Am J Hum Genet Report The identification of disease alleles underlying human autoinflammatory diseases can provide important insights into the mechanisms that maintain neutrophil homeostasis. Here, we focused our attention on generalized pustular psoriasis (GPP), a potentially life-threatening disorder presenting with cutaneous and systemic neutrophilia. Following the whole-exome sequencing of 19 unrelated affected individuals, we identified a subject harboring a homozygous splice-site mutation (c.2031−2A>C) in MPO. This encodes myeloperoxidase, an essential component of neutrophil azurophil granules. MPO screening in conditions phenotypically related to GPP uncovered further disease alleles in one subject with acral pustular psoriasis (c.2031−2A>C;c.2031−2A>C) and in two individuals with acute generalized exanthematous pustulosis (c.1705C>T;c.2031−2A>C and c.1552_1565del;c.1552_1565del). A subsequent analysis of UK Biobank data demonstrated that the c.2031−2A>C and c.1705C>T (p.Arg569Trp) disease alleles were also associated with increased neutrophil abundance in the general population (p = 5.1 × 10(−6) and p = 3.6 × 10(−5), respectively). The same applied to three further deleterious variants that had been genotyped in the cohort, with two alleles (c.995C>T [p.Ala332Val] and c.752T>C [p.Met251Thr]) yielding p values < 10(−10). Finally, treatment of healthy neutrophils with an MPO inhibitor (4-Aminobenzoic acid hydrazide) increased cell viability and delayed apoptosis, highlighting a mechanism whereby MPO mutations affect granulocyte numbers. These findings identify MPO as a genetic determinant of pustular skin disease and neutrophil abundance. Given the recent interest in the development of MPO antagonists for the treatment of neurodegenerative disease, our results also suggest that the pro-inflammatory effects of these agents should be closely monitored. Elsevier 2020-09-03 2020-08-05 /pmc/articles/PMC7477255/ /pubmed/32758448 http://dx.doi.org/10.1016/j.ajhg.2020.06.020 Text en © 2020 The Author(s) http://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 Report
Vergnano, Marta
Mockenhaupt, Maja
Benzian-Olsson, Natashia
Paulmann, Maren
Grys, Katarzyna
Mahil, Satveer K.
Chaloner, Charlotte
Barbosa, Ines A.
August, Suzannah
Burden, A. David
Choon, Siew-Eng
Cooper, Hywel
Navarini, Alex A.
Reynolds, Nick J.
Wahie, Shyamal
Warren, Richard B.
Wright, Andrew
Huffmeier, Ulrike
Baum, Patrick
Visvanathan, Sudha
Barker, Jonathan N.
Smith, Catherine H.
Capon, Francesca
Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease
title Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease
title_full Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease
title_fullStr Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease
title_full_unstemmed Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease
title_short Loss-of-Function Myeloperoxidase Mutations Are Associated with Increased Neutrophil Counts and Pustular Skin Disease
title_sort loss-of-function myeloperoxidase mutations are associated with increased neutrophil counts and pustular skin disease
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477255/
https://www.ncbi.nlm.nih.gov/pubmed/32758448
http://dx.doi.org/10.1016/j.ajhg.2020.06.020
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