Single cell transcriptional zonation of human psoriasis skin identifies an alternative immunoregulatory axis conducted by skin resident cells.
Yuge GaoXinyu YaoYumeng ZhaiLi LiHuini LiXianqi SunPei YuTiankuo XueYuzhen LiYizhou HuPublished in: Cell death & disease (2021)
Psoriasis is the most common skin disease in adults. Current experimental and clinical evidences suggested the infiltrating immune cells could target local skin cells and thus induce psoriatic phenotype. However, recent studies indicated the existence of a potential feedback signaling loop from local resident skin cells to infiltrating immune cells. Here, we deconstructed the full-thickness human skins of both healthy donors and patients with psoriasis vulgaris at single cell transcriptional level, and further built a neural-network classifier to evaluate the evolutional conservation of skin cell types between mouse and human. Last, we systematically evaluated the intrinsic and intercellular molecular alterations of each cell type between healthy and psoriatic skin. Cross-checking with psoriasis susceptibility gene loci, cell-type based differential expression, and ligand-receptor communication revealed that the resident psoriatic skin cells including mesenchymal and epidermis cell types, which specifically harbored the target genes of psoriasis susceptibility loci, intensively evoked the expression of major histocompatibility complex (MHC) genes, upregulated interferon (INF), tumor necrosis factor (TNF) signalling and increased cytokine gene expression for primarily aiming the neighboring dendritic cells in psoriasis. The comprehensive exploration and pathological observation of psoriasis patient biopsies proposed an uncovered immunoregulatory axis from skin local resident cells to immune cells, thus provided a novel insight for psoriasis treatment. In addition, we published a user-friendly website to exhibit the transcriptional change of each cell type between healthy and psoriatic human skin.
Keyphrases
- induced apoptosis
- single cell
- gene expression
- soft tissue
- cell cycle arrest
- rheumatoid arthritis
- wound healing
- genome wide
- dendritic cells
- endothelial cells
- ankylosing spondylitis
- randomized controlled trial
- transcription factor
- rna seq
- oxidative stress
- dna methylation
- cell death
- neural network
- patient safety
- stem cells
- cell therapy
- disease activity
- mesenchymal stem cells
- systemic lupus erythematosus
- heat shock
- copy number
- long non coding rna
- single molecule
- smoking cessation
- regulatory t cells
- heat stress
- case control