The Circadian Clock Component RORA Increases Immunosurveillance in Melanoma by Inhibiting PD-L1 Expression

Author:

Liu Dandan12ORCID,Wei Benliang3ORCID,Liang Long2ORCID,Sheng Yue2ORCID,Sun Shengjie4ORCID,Sun Xing2ORCID,Li Maohua2ORCID,Li Haobo2ORCID,Yang Chaoying2ORCID,Peng Yuanliang2ORCID,Xie Yifang2ORCID,Wen Chengcai2ORCID,Chen Lu5ORCID,Liu Xionghao6ORCID,Chen Xiang1ORCID,Liu Hong1ORCID,Liu Jing2ORCID

Affiliation:

1. Department of Dermatology, Hunan Key Laboratory of Skin Cancer and Psoriasis, Hunan Engineering Research Center of Skin Health and Disease, Xiangya Clinical Research Center for Cancer Immunotherapy, Xiangya Hospital, Central South University, Changsha, China. 1

2. Department of Hematology, The Second Xiangya Hospital, Molecular Biology Research Center, Center for Medical Genetics, School of Life Sciences, Hunan Province Key Laboratory of Basic and Applied Hematology, Central South University, Changsha, China. 2

3. Big Data Institute, Central South University, Changsha, China. 3

4. Department of Biomedical Informatic, School of Life Sciences, Central South University, Changsha, China. 4

5. Department of General Surgery, Xiangya Hospital, Central South University, Changsha, China. 5

6. Center for Medical Genetics, School of Life Sciences, Hunan Province Key Laboratory of Medical Genetics, Central South University, Changsha, China. 6

Abstract

Abstract Circadian clock perturbation frequently occurs in cancer and facilitates tumor progression by regulating malignant growth and shaping the immune microenvironment. Emerging evidence has indicated that clock genes are disrupted in melanoma and linked to immune escape. Herein, we found that the expression of retinoic acid receptor–related orphan receptor-α (RORA) is downregulated in melanoma patients and that patients with higher RORA expression have a better prognosis after immunotherapy. Additionally, RORA was significantly positively correlated with T-cell infiltration and recruitment. Overexpression or activation of RORA stimulated cytotoxic T-cell–mediated antitumor responses. RORA bound to the CD274 promoter and formed an inhibitory complex with HDAC3 to suppress PD-L1 expression. In contrast, the DEAD-box helicase family member DDX3X competed with HDAC3 for binding to RORA, and DDX3X overexpression promoted RORA release from the suppressive complex and thereby increased PD-L1 expression to generate an inhibitory immune environment. The combination of a RORA agonist with an anti-CTLA4 antibody synergistically increased T-cell antitumor immunity in vivo. A score based on the combined expression of HDAC3, DDX3X, and RORA correlated with immunotherapy response in melanoma patients. Together, this study elucidates a mechanism of clock component–regulated antitumor immunity, which will help inform the use of immunotherapy and lead to improved outcomes for melanoma patients receiving combined therapeutic treatments. Significance: RORA forms a corepressor complex to inhibit PD-L1 expression and activate antitumor T-cell responses, indicating that RORA is a potential target and predictive biomarker to improve immunotherapy response in melanoma patients.

Publisher

American Association for Cancer Research (AACR)

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