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Published on: April 4, 2018
Rare and common variants in CARD14, encoding an epidermal regulator of NF-kappaB, in psoriasis
Catherine T Jordan1, Li Cao, Elisha D O Roberson
1Division of Human Genetics, Department of Genetics, Washington University School of Medicine, St. Louis, MO 63110, USA.
Insights
Mutations in CARD14, a gene regulating skin inflammation, are linked to psoriasis (PSORS2). Rare variants in CARD14 increase nuclear factor-kappa B (NF-kB) activation, contributing to psoriasis development.
Area of Science:
- Genetics
- Dermatology
- Immunology
Background:
- Psoriasis is a common inflammatory skin condition.
- CARD14 gene mutations are associated with a subset of psoriasis cases (PSORS2).
Purpose of the Study:
- To identify and characterize additional rare CARD14 variants in psoriasis patients.
- To investigate the functional impact of these variants on NF-kB activation and keratinocyte gene expression.
Main Methods:
- Genotyping of CARD14 variants in over 6,000 psoriasis cases and 4,000 controls.
- Functional assays measuring NF-kB activation in keratinocytes transfected with wild-type and variant CARD14.
- Transcriptome profiling to assess gene expression changes.
- Meta-analysis of CARD14 polymorphisms and psoriasis association.
Main Results:
- Increased burden of rare CARD14 variants in psoriasis cases compared to controls (p=0.0015).
- Identified several putative pathogenic CARD14 mutations, including those in the coiled-coil domain, associated with increased NF-kB activity (>2.5x).
- A specific CARD14 polymorphism (rs11652075) showed a strong association with psoriasis (p=2.1 × 10⁻⁶), particularly when conditioned on HLA-Cw*0602.
Conclusions:
- CARD14 variants contribute to psoriasis pathogenesis through altered NF-kB signaling.
- Functional studies are crucial for distinguishing pathogenic mutations from neutral variants.
- Genetic associations highlight the complex interplay of multiple genetic factors in psoriasis.
Abstract:
Psoriasis is a common inflammatory disorder of the skin and other organs. We have determined that mutations in CARD14, encoding a nuclear factor of kappa light chain enhancer in B cells (NF-kB) activator within skin epidermis, account for PSORS2. Here, we describe fifteen additional rare missense variants in CARD14, their distribution in seven psoriasis cohorts (>6,000 cases and >4,000 controls), and their effects on NF-kB activation and the transcriptome of keratinocytes. There were more CARD14 rare variants in cases than in controls (burden test p value = 0.0015). Some variants were only seen in a single case, and these included putative pathogenic mutations (c.424G>A [p.Glu142Lys] and c.425A>G [p.Glu142Gly]) and the generalized-pustular-psoriasis mutation, c.413A>C (p.Glu138Ala); these three mutations lie within the coiled-coil domain of CARD14. The c.349G>A (p.Gly117Ser) familial-psoriasis mutation was present at a frequency of 0.0005 in cases of European ancestry. CARD14 variants led to a range of NF-kB activities; in particular, putative pathogenic variants led to levels >2.5× higher than did wild-type CARD14. Two variants (c.511C>A [p.His171Asn] and c.536G>A [p.Arg179His]) required stimulation with tumor necrosis factor alpha (TNF-α) to achieve significant increases in NF-kB levels. Transcriptome profiling of wild-type and variant CARD14 transfectants in keratinocytes differentiated probably pathogenic mutations from neutral variants such as polymorphisms. Over 20 CARD14 polymorphisms were also genotyped, and meta-analysis revealed an association between psoriasis and rs11652075 (c.2458C>T [p.Arg820Trp]; p value = 2.1 × 10(-6)). In the two largest psoriasis cohorts, evidence for association increased when rs11652075 was conditioned on HLA-Cw*0602 (PSORS1). These studies contribute to our understanding of the genetic basis of psoriasis and illustrate the challenges faced in identifying pathogenic variants in common disease.
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