SMARCAL1 is a dual regulator of innate immune signaling and PD-L1 expression that promotes tumor immune evasion

SMARCAL1是先天免疫信号传导和PD-L1表达的双重调节因子,可促进肿瘤免疫逃逸。

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作者:Giuseppe Leuzzi,Alessandro Vasciaveo,Angelo Taglialatela,Xiao Chen,Tessa M Firestone,Allison R Hickman,Wendy Mao,Tanay Thakar,Alina Vaitsiankova,Jen-Wei Huang,Raquel Cuella-Martin,Samuel B Hayward,Jordan S Kesner,Ali Ghasemzadeh,Tarun S Nambiar,Patricia Ho,Alexander Rialdi,Maxime Hebrard,Yinglu Li,Jinmei Gao,Saarang Gopinath,Oluwatobi A Adeleke,Bryan J Venters,Charles G Drake,Richard Baer,Benjamin Izar,Ernesto Guccione,Michael-Christopher Keogh,Raphael Guerois,Lu Sun,Chao Lu,Andrea Califano,Alberto Ciccia

Abstract

Genomic instability can trigger cancer-intrinsic innate immune responses that promote tumor rejection. However, cancer cells often evade these responses by overexpressing immune checkpoint regulators, such as PD-L1. Here, we identify the SNF2-family DNA translocase SMARCAL1 as a factor that favors tumor immune evasion by a dual mechanism involving both the suppression of innate immune signaling and the induction of PD-L1-mediated immune checkpoint responses. Mechanistically, SMARCAL1 limits endogenous DNA damage, thereby suppressing cGAS-STING-dependent signaling during cancer cell growth. Simultaneously, it cooperates with the AP-1 family member JUN to maintain chromatin accessibility at a PD-L1 transcriptional regulatory element, thereby promoting PD-L1 expression in cancer cells. SMARCAL1 loss hinders the ability of tumor cells to induce PD-L1 in response to genomic instability, enhances anti-tumor immune responses and sensitizes tumors to immune checkpoint blockade in a mouse melanoma model. Collectively, these studies uncover SMARCAL1 as a promising target for cancer immunotherapy.

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