Single-cell transcriptomics defines keratinocyte differentiation in avian scutate scales

生物 角质形成细胞 细胞生物学 转录组 细胞分化 表皮(动物学) 电池类型 基因 干细胞
作者
Julia Lachner,Florian Ehrlich,Matthias Wielscher,Matthias Farlik,Marcela Hermann,Erwin Tschachler,Leopold Eckhart
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:12 (1)
标识
DOI:10.1038/s41598-021-04082-1
摘要

Abstract The growth of skin appendages, such as hair, feathers and scales, depends on terminal differentiation of epidermal keratinocytes. Here, we investigated keratinocyte differentiation in avian scutate scales. Cells were isolated from the skin on the legs of 1-day old chicks and subjected to single-cell transcriptomics. We identified two distinct populations of differentiated keratinocytes. The first population was characterized by mRNAs encoding cysteine-rich keratins and corneous beta-proteins (CBPs), also known as beta-keratins, of the scale type, indicating that these cells form hard scales. The second population of differentiated keratinocytes contained mRNAs encoding cysteine-poor keratins and keratinocyte-type CBPs, suggesting that these cells form the soft interscale epidermis. We raised an antibody against keratin 9-like cysteine-rich 2 (KRT9LC2), which is encoded by an mRNA enriched in the first keratinocyte population. Immunostaining confirmed expression of KRT9LC2 in the suprabasal epidermal layers of scutate scales but not in interscale epidermis. Keratinocyte differentiation in chicken leg skin resembled that in human skin with regard to the transcriptional upregulation of epidermal differentiation complex genes and genes involved in lipid metabolism and transport. In conclusion, this study defines gene expression programs that build scutate scales and interscale epidermis of birds and reveals evolutionarily conserved keratinocyte differentiation genes.

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