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A homozygous loss-of-function variant in the MPO gene is associated with generalized pustular psoriasis
Mami Onitsuka1, Muhammad Farooq2, Muhammad Nasir Iqbal3
1Department of Dermatology, Yamaguchi University Graduate School of Medicine, Ube, Japan.
Abstract:
Generalized pustular psoriasis (GPP) is a rare form of psoriasis, which is characterized by sudden onset of repeated erythema and pustule formation with generalized inflammation. Recent advances in molecular genetics have led to the identification of several genes associated with GPP, including IL36RN, CARD14, AP1S3, SERPINA3, and MPO. Of these, only limited cases of GPP have been reported to carry mutations in the AP1S3, SERPINA3, or MPO to date. In the present study, we investigated a Japanese patient with GPP and found a homozygous missense mutation c.1769G>T (p.Arg590Leu) in the MPO gene. Structural analysis predicted that the mutant MPO protein would abolish its ability to bind with heme protein. In vitro studies using cultured cells revealed that the mutant MPO was stably expressed, but completely lost its myeloperoxidase activity. Immunohistochemistry (IHC) using an anti-MPO antibody showed markedly reduced expression of MPO protein in the patient's skin, suggesting that the mutation would lead to an instability of the MPO protein in vivo. Finally, IHC with an anti-citrullinated Histone H3 antibody demonstrated a sparse formation of neutrophil extracellular traps within a Kogoj's spongiform pustule of the patient's skin. Collectively, we conclude that the c.1769G>T (p.Arg590Leu) in the MPO is a complete loss-of-function mutation associated with GPP in the patient. Our data further underscore critical roles of the MPO gene in the pathogenesis of GPP.
Insights
A rare genetic mutation in the myeloperoxidase (MPO) gene causes generalized pustular psoriasis (GPP). This study identifies a complete loss-of-function mutation in MPO, highlighting its role in GPP pathogenesis.
Area of Science:
- Genetics
- Dermatology
- Molecular Biology
Background:
- Generalized pustular psoriasis (GPP) is a rare, severe inflammatory skin condition.
- Genetic factors, including mutations in IL36RN and CARD14, are implicated in GPP.
- Mutations in AP1S3, SERPINA3, and MPO are rarely reported in GPP cases.
Observation:
- A Japanese GPP patient presented with a homozygous missense mutation (c.1769G>T, p.Arg590Leu) in the myeloperoxidase (MPO) gene.
- The MPO mutation was predicted to impair heme binding and in vitro studies confirmed a complete loss of myeloperoxidase activity.
- Reduced MPO protein expression was observed in the patient's skin via immunohistochemistry, suggesting in vivo protein instability.
Findings:
- The identified MPO mutation (c.1769G>T, p.Arg590Leu) represents a complete loss-of-function.
- Sparse neutrophil extracellular traps were observed in skin lesions, indicating potential downstream effects of MPO deficiency.
- This study links a specific MPO loss-of-function mutation to GPP development.
Implications:
- The MPO gene plays a critical role in the pathogenesis of generalized pustular psoriasis.
- Understanding the genetic basis of GPP can inform future diagnostic and therapeutic strategies.
- This research expands the spectrum of known genetic contributors to rare psoriasis subtypes.
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