| Literature DB >> 33664254 |
Guolong Zhang1, Guorong Yan1, Zhiliang Fu2,3, Yuhao Wu1, Fei Wu4, Zhe Zheng1, Shan Fang1, Ying Gao1, Xunxia Bao2,3, Yeqiang Liu5, Xiuli Wang6, Sibo Zhu7,8.
Abstract
Cutaneous squamous cell carcinoma (cSCC) is prevalent in the world, accounting for a huge part of non-melanoma skin cancer. Most cSCCs are associated with a distinct pre-cancerous lesion, the actinic keratosis (AK). However, the progression trajectory from normal skin to AK and cSCC has not been fully demonstrated yet. To identify genes involved in this progression trajectory and possible therapeutic targets for cSCC, here we constructed a UV-induced cSCC mouse model covering the progression from normal skin to AK to cSCC, which mimicked the solar UV radiation perfectly using the solar-like ratio of UVA and UVB, firstly. Then, transcriptome analysis and a series of bioinformatics analyses and cell experiments proved that Rorα is a key transcript factor during cSCC progression. Rorα could downregulate the expressions of S100a9 and Sprr2f in cSCC cells, which can inhibit the proliferation and migration in cSCC cells, but not the normal keratinocyte. Finally, further animal experiments confirmed the inhibitory effect of cSCC growth by Rorα in vivo. Our findings showed that Rorα would serve as a potential novel target for cSCC, which will facilitate the treatment of cSCC in the future.Entities:
Year: 2021 PMID: 33664254 PMCID: PMC7933246 DOI: 10.1038/s41419-021-03525-x
Source DB: PubMed Journal: Cell Death Dis Impact factor: 8.469