bioRxiv Science⌕ Search

Biology subjects

Warren, R. B.

Publications and source records attributed to Warren, R. B..

2 recordsLinked to original sources

Transcriptomic profiling and machine learning uncover gene signatures of psoriasis endotypes and disease severity

BackgroundDespite increased understanding of psoriasis pathogenesis, molecular classification of clinical phenotypes and disease severity is poorly defined. Knowledge gaps include whether molecular endotypes of psoriasis underlie distinct clinical phenotypes and the positive and negative molecular regulators of disease severity across tissue compartments. MethodsWe performed comprehensive RNA-sequencing of skin and blood (n=718) from prospectively-recruited, deeply-phenotyped discovery and replication cohorts of 146 subjects with moderate-to-severe psoriasis initiating TNF-inhibitor (adalimumab) or IL-12/23-inhibitor (ustekinumab) therapy. ResultsUsing two complementary methods for dimensionality reduction, we defined distinct but interconnected co-expression modules and factors within skin and blood that were significantly associated with disease phenotypes and disease severity, as measured by Psoriasis Area Severity Index (PASI). We identified a 14-gene signature negatively associated with BMI in nonlesional skin and disease severity in lesional skin, respectively. Genotype integration revealed that HLA-DQA1*01 and HLA-DRB1*15 genotypes were positively associated with baseline disease severity. Using Gaussian process regression followed by SHAP (SHapley Additive exPlanations), we defined two core drug independent and disease severity-associated gene modules in lesional skin - one positive, one negative - and a lesional 9-gene signature predictive of disease severity. Disease severity signatures in blood were only seen following adalimumab exposure, suggesting greater systemic impact of adalimumab compared to ustekinumab, in line with its side effect profile. In contrast, a gene signature in blood linked to HLA-C*06:02 status was independent of disease severity or drug. ConclusionsThese findings delineate gene-environmental and genetic effects on the psoriasis transcriptome linked to disease severity. Plain Language SummaryPsoriasis is a common and debilitating skin disease, linked to multiple other inflammatory conditions. A lot is known about the mechanism of psoriasis and its inherited and external influences. Despite this, doctors cannot yet offer personalised treatments as it has been difficult to discover whether biological pathways are associated with disease severity, response to treatment or a persons likelihood of having other linked diseases. To help address this, we collected skin and blood samples and the personal characteristics of a group of people with severe psoriasis across the United Kingdom. Using computer-based methods, we discovered common biological processes underlying different psoriasis types, including genes that connect psoriasis severity with obesity, and another set of genes that help predict disease severity.

systems biology↗

Dissection of a non-coding risk locus at 1p36.23 identifies ERRFI1 as a novel gene in the pathogenesis of psoriasis and psoriatic arthritis

BackgroundPsoriasis and its associated inflammatory arthritis Psoriatic Arthritis (PsA) are potentially life-ruining conditions associated with numerous comorbidities. A previously-identified genetic risk association for psoriasis and PsA lies in a non-coding region at chromosome 1p36.23, and as such functional validation is required to determine the genetic mechanism contributing to psoriatic disease risk. Resultsrs11121131 - a variant in tight linkage with rs11121129, the lead GWAS variant for the 1p36.23 association - lies in a putative enhancer active in keratinocytes but not in immune cells. Promoter-capture Hi-C and H3K27Ac HiChIP showed keratinocyte-specific interactions between 1p36.23 and the TNFRSF9/PARK7/ERRFI1 gene locus [~]200Kb upstream of the risk locus. Deletion of the enhancer in HaCat keratinocytes led to a reduction in transcript levels of the gene ERRFI1, a negative regulator of Epidermal Growth Factor Receptor (EGFR) signalling. CRISPR activation of the enhancer also affected ERRFI1 levels, but paradoxically showed that steady-state activation led to repression of ERRFI1, accompanied by significant deposition of H3K27Me3 histone marks at both the enhancer and the ERRFI1 gene locus. ERRFI1 levels were shown to be increased in inflamed skin from a mouse model of psoriasis, further suggesting its involvement in disease. ConclusionsThese data indicate rs11121131 lies in an enhancer which modulates ERRFI1 expression in keratinocytes, providing a likely risk mechanism for the 1p36.23 risk association. ERRFI1 represents a novel gene in the pathogenesis of psoriasis and PsA - improving our understanding of these diseases - and the ERRFI1/EGFR signalling axis may therefore be a target for new treatment modalities for psoriatic disease.

genomics↗