bioRxiv Science⌕ Search

Biology subjects

Kirma, J.

Publications and source records attributed to Kirma, J..

2 recordsLinked to original sources

Positionally distinct interferon stimulated dermal immune acting fibroblasts promote neutrophil recruitment in Sweet's syndrome

Sweets syndrome is a poorly understood inflammatory skin disease characterized by neutrophil infiltration to the dermis. Single-nucleus and bulk transcriptomics of archival clinical samples of Sweets syndrome revealed a prominent interferon signature in Sweets syndrome skin that was reduced in tissue from other neutrophilic dermatoses. This signature was observed in different subsets of cells, including fibroblasts that expressed interferon-induced genes. Functionally, this response was supported by analysis of cultured primary human dermal fibroblasts that were observed to highly express neutrophil chemokines in response to activation by type I interferon. Furthermore, single-molecule resolution spatial transcriptomics of skin in Sweets syndrome identified positionally distinct immune acting fibroblasts that included a CXCL1+ subset proximal to neutrophils and a CXCL12+ subset distal to the neutrophilic infiltrate. This study defines the cellular landscape of neutrophilic dermatoses and suggests dermal immune acting fibroblasts play a role in the pathogenesis of Sweets syndrome through recognition of type I interferons.

immunology↗

Transcriptional profiling of rare acantholytic disorders suggests common mechanisms of pathogenesis

BackgroundDarier, Hailey-Hailey, and Grovers diseases are rare non-autoimmune acantholytic skin diseases. While these diseases have different underlying causes, they share defects in cell-cell adhesion in the epidermis and desmosome organization. ObjectiveTo better understand the underlying mechanisms leading to disease in these conditions we performed RNA-seq on lesional skin samples from Darier, Hailey-Hailey, and Grovers disease patients. MethodsRNA-seq and bioinformatics analyses were performed on banked paraffin embedded diagnostic samples from each disease. For detailed Methods, please see the Methods section in this articles Online Repository at www.jacionline.org. ResultsThe transcriptomic profiles of Darier, Hailey-Hailey, and Grovers disease were found to share a remarkable overlap, which did not extend to other common inflammatory skin diseases, psoriasis and atopic dermatitis. Analysis of enriched pathways showed a shared upregulation in keratinocyte differentiation and Th17 inflammatory pathways, and a decrease in cell adhesion and actin organization pathways in Darier, Hailey-Hailey, and Grovers disease. Direct comparison to atopic dermatitis and psoriasis showed that the downregulation in actin organization pathways was a unique feature in Darier, Hailey-Hailey, and Grovers disease. Further, upstream regulator analysis suggests that a decrease in SRF/MRTF activity may be responsible for the downregulation of actin organization pathways. Staining for MRTFA in lesional skin samples showed a decrease in nuclear MRTFA in patient skin compared to normal skin. ConclusionThese findings highlight the significant level of similarity in the transcriptome of Darier, Hailey-Hailey, and Grovers disease, and identify decreases in actin organization pathways as a unique signature present in these conditions. Key MessagesO_LIDarier Disease, Hailey-Hailey Disease, and Grovers Disease share similar transcriptional profiles suggesting common mechanisms of pathogenesis. C_LIO_LISRF/MRTFA activity is reduced in Darier Disease, Hailey-Hailey Disease and Grovers disease, implicating actin organization in acantholysis. C_LI

genomics↗