bioRxiv · 10.1101/2020.05.26.117770
Repurposing screen identifies Amlodipine as an inducer of PD-L1 degradation and antitumor immunity
Abstract
Cancer cell expression of PD-L1 leads to T cells exhaustion by transducing co-inhibitory signal, and further understanding the regulation of PD-L1 in cancer cells may provide additional therapeutic strategies. Here by drug repurposing screen we identified amlodipine as a potent inhibitor of PD-L1 expression in cancer cells. Further survey of calcium-associated pathways revealed calpains-dependent stabilization of the PD-L1 protein. Intracellular calcium delivered an operational signal to calpain-dependent Beclin-1 cleavage, blocking autophagic degradation of PD-L1 accumulated on recycling endosome (RE). Blocking calcium flux by amlodipine depleted PD-L1 expression and increased CD8+ T cell infiltration in tumor tissues but not in myocardium, causing dose-dependent tumor suppression in vivo. Rescuing PD-L1 expression eliminated the effects of amlodipine, suggesting the PD-L1 dependent effect of amlodipine. These results reveal a calcium-dependent mechanism controlling PD-L1 degradation, and highlight calcium flux blockade as a potential strategy for combinatorial immunotherapy.
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Li, C., Yao, H., Wang, H., Fang, J.-Y., Xu, J.. 2020-05-28. Repurposing screen identifies Amlodipine as an inducer of PD-L1 degradation and antitumor immunity. https://doi.org/10.1101/2020.05.26.117770
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