ADRB2 inhibition suppresses cancer immune evasion by regulating tumor SOX10-PD-L1 axis and T cell function
作者:Yu Zhang, Feng Yu, Jing Ouyang, Panpan Liu, Yingying Dai, Yang Wang, Hanying Yi, Shiyu Wang, Dongbo Liu, Kun Song, Wenwu Pei, Ziyang Hong, Wei Zhang, Weihua Huang, Gan Zhou, Shan Cao, Howard L. McLeod, Cong Peng, Ling Chen, Yijing He · 发表于:Journal for ImmunoTherapy of Cancer · 年份:2025 · DOI:10.1136/jitc-2025-011611 · 被引用次数:10 · 研究领域:Cancer, Stress, Anesthesia, and Immune Response、Cancer Immunotherapy and Biomarkers、Tryptophan and brain disorders
BACKGROUND: -adrenergic receptor (ADRB2). Inhibiting ADRB2 with β-blockers has demonstrated potential in boosting the effectiveness of immune checkpoint inhibitors across a spectrum of cancers, yet the precise mechanisms remain to be fully elucidated. METHODS: In vivo and in vitro experiments were performed to evaluate the role of ADRB2 in melanoma models, including its effects on T cells. RNA sequencing analysis highlighted the importance of the transcription factor SRY-related HMG-box 10 (SOX10), which transcriptionally regulates programmed death-ligand 1 (PD-L1). This regulatory role was further validated using luciferase reporter assays and chromatin immunoprecipitation-PCR assays. Mechanistic studies focused on ADRB2 signaling through protein kinase A (PKA) and its downstream target SOX10. To investigate SOX10's role in mediating the effects of ADRB2, knockdown and overexpression experiments were conducted. Additionally, similar studies in colorectal cancer (CRC) models confirmed the conserved function of the ADRB2-SOX10-PD-L1 axis. RESULTS: This study explores the role of ADRB2 in regulating tumor PD-L1 expression and T cell functionality, offering insights for cancer immunotherapy. Clinical data revealed that patients with melanoma with high ADRB2 expression responded better to programmed cell death protein 1 inhibitors. In melanoma models, ADRB2 inhibition reduced PD-L1 expression, enhanced T cell infiltration, and promoted antitumor immunity, while ADRB2 activation h...