RNA Sequencing Reveals the Long Non-Coding RNA Signature in Psoriasis Keratinocytes and Identifies CYDAER as a Long Non-Coding RNA Regulating Epidermal Differentiation

IF 3.5 3区 医学 Q1 DERMATOLOGY
Jan Cedric Freisenhausen, Longlong Luo, Evelyn Kelemen, Jonathan Elton, Viktor Skoog, Andor Pivarcsi, Enikö Sonkoly
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引用次数: 0

Abstract

Psoriasis is a common chronic inflammatory skin disease determined by genetic and environmental factors, resulting in the activation of IL-23/IL-17-mediated immune response, epidermal hyperproliferation, and keratinocyte activation. Long non-coding RNAs (lncRNAs) are non-protein-coding transcripts > 500 nucleotides with diverse regulatory functions; their role in epidermal dysfunction in psoriasis is poorly understood. To identify epidermal transcripts with potential roles in psoriasis, including lncRNAs, we performed RNA sequencing on keratinocytes from psoriasis and healthy skin. We identified 889 differentially expressed lncRNAs, many of which with yet unknown functions. RP11-295G20.2 was identified as a lncRNA significantly induced in psoriasis keratinocytes, and this was verified by qRT-PCR and by single-molecule in situ hybridisation. Analysis of subcellular fractions of epidermis revealed a cytoplasmic localisation in line with results of single molecule in situ hybridisation. We report that RP11-295G20.2 has a skin-enriched expression, and within skin it is mainly expressed in suprabasal epidermal layers. Moreover, RP11-295G20.2 is induced by the key psoriasis cytokine IL-17A and shows a dynamic regulation during keratinocyte differentiation with upregulation during early differentiation and downregulation in the late stage. Knockdown of RP11-295G20.2 in keratinocytes promotes terminal differentiation. Based on our findings, we named RP11-295G20.2 Cytoplasmic Differentiation-Associated Epidermal RNA, CYDAER. In summary, our study provides a comprehensive characterisation of the non-coding RNA landscape of psoriasis keratinocytes and identifies CYDAER as a skin-enriched lncRNA regulating keratinocyte differentiation. Our data suggest that overexpression of CYDAER may contribute to altered differentiation in psoriatic epidermis.

Abstract Image

RNA测序揭示银屑病角质形成细胞的长链非编码RNA特征,并鉴定CYDAER是调节表皮分化的长链非编码RNA
银屑病是一种常见的慢性炎症性皮肤病,由遗传和环境因素决定,导致IL-23/ il -17介导的免疫反应激活,表皮增生,角质细胞活化。长链非编码rna (Long non-coding rna, lncRNAs)是500个核苷酸的非蛋白质编码转录物,具有多种调控功能;它们在牛皮癣表皮功能障碍中的作用尚不清楚。为了鉴定在牛皮癣中具有潜在作用的表皮转录物,包括lncRNAs,我们对牛皮癣和健康皮肤的角质形成细胞进行了RNA测序。我们鉴定了889个差异表达的lncrna,其中许多具有未知的功能。RP11-295G20.2被鉴定为银屑病角化细胞中显著诱导的lncRNA,并通过qRT-PCR和单分子原位杂交验证。对表皮亚细胞部分的分析显示细胞质定位与单分子原位杂交结果一致。我们报道了RP11-295G20.2具有皮肤富集表达,在皮肤内主要表达于基底上表皮层。此外,RP11-295G20.2受银屑病关键细胞因子IL-17A诱导,在角化细胞分化过程中表现出分化早期上调、分化后期下调的动态调控。在角质形成细胞中,RP11-295G20.2的下调促进了终末分化。基于我们的发现,我们将RP11-295G20.2细胞质分化相关表皮RNA命名为CYDAER。总之,我们的研究提供了银屑病角质形成细胞的非编码RNA景观的全面特征,并确定CYDAER是一个皮肤富集的调节角质形成细胞分化的lncRNA。我们的数据表明,CYDAER的过度表达可能有助于银屑病表皮分化的改变。
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来源期刊
Experimental Dermatology
Experimental Dermatology 医学-皮肤病学
CiteScore
6.70
自引率
5.60%
发文量
201
审稿时长
2 months
期刊介绍: Experimental Dermatology provides a vehicle for the rapid publication of innovative and definitive reports, letters to the editor and review articles covering all aspects of experimental dermatology. Preference is given to papers of immediate importance to other investigators, either by virtue of their new methodology, experimental data or new ideas. The essential criteria for publication are clarity, experimental soundness and novelty. Letters to the editor related to published reports may also be accepted, provided that they are short and scientifically relevant to the reports mentioned, in order to provide a continuing forum for discussion. Review articles represent a state-of-the-art overview and are invited by the editors.
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