Human skin specific long noncoding RNA HOXC13-AS regulates epidermal differentiation by interfering with Golgi-ER retrograde transport

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作者
Letian Zhang
Minna Piipponen
Zhuang Liu
Dongqing Li
Xiaowei Bian
Guanglin Niu
Jennifer Geara
Maria A. Toma
Pehr Sommar
Ning Xu Landén
机构
[1] Karolinska Institutet,Dermatology and Venereology Division, Department of Medicine Solna, Center for Molecular Medicine
[2] Chinese Academy of Medical Sciences and Peking Union Medical College,Key Laboratory of Basic and Translational Research on Immune
[3] Karolinska University Hospital,Mediated Skin Diseases, Chinese Academy of Medical Sciences, Jiangsu Key Laboratory of Molecular Biology for Skin Diseases and STIs, Institute of Dermatology
[4] Karolinska Institutet,Department of Plastic and Reconstructive Surgery
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After a skin injury, keratinocytes switch from a state of homeostasis to one of regeneration leading to the reconstruction of the epidermal barrier. The regulatory mechanism of gene expression underpinning this key switch during human skin wound healing is enigmatic. Long noncoding RNAs (lncRNAs) constitute a new horizon in the understanding of the regulatory programs encoded in the mammalian genome. By comparing the transcriptome of an acute human wound and skin from the same donor as well as keratinocytes isolated from these paired tissue samples, we generated a list of lncRNAs showing changed expression in keratinocytes during wound repair. Our study focused on HOXC13-AS, a recently evolved human lncRNA specifically expressed in epidermal keratinocytes, and we found that its expression was temporally downregulated during wound healing. In line with its enrichment in suprabasal keratinocytes, HOXC13-AS was found to be increasingly expressed during keratinocyte differentiation, but its expression was reduced by EGFR signaling. After HOXC13-AS knockdown or overexpression in human primary keratinocytes undergoing differentiation induced by cell suspension or calcium treatment and in organotypic epidermis, we found that HOXC13-AS promoted keratinocyte differentiation. Moreover, RNA pull-down assays followed by mass spectrometry and RNA immunoprecipitation analysis revealed that mechanistically HOXC13-AS sequestered the coat complex subunit alpha (COPA) protein and interfered with Golgi-to-endoplasmic reticulum (ER) molecular transport, resulting in ER stress and enhanced keratinocyte differentiation. In summary, we identified HOXC13-AS as a crucial regulator of human epidermal differentiation.
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页码:1334 / 1348
页数:14
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  • [1] Human skin specific long noncoding RNA HOXC13-AS regulates epidermal differentiation by interfering with Golgi-ER retrograde transport
    Zhang, Letian
    Piipponen, Minna
    Liu, Zhuang
    Li, Dongqing
    Bian, Xiaowei
    Niu, Guanglin
    Geara, Jennifer
    Toma, Maria A.
    Sommar, Pehr
    Landen, Ning Xu
    [J]. CELL DEATH AND DIFFERENTIATION, 2023, 30 (05): : 1334 - 1348