Mechano-inhibition of endocytosis sensitizes cancer cells to Fas-induced Apoptosis

Author:

Kural Mehmet H.ORCID,Djakbarova Umidahan,Cakir BilalORCID,Tanaka YoshiakiORCID,Chan Emily T.ORCID,Arteaga Muniz Valeria I.,Madraki Yasaman,Qian Hong,Park Jinkyu,Sewanan Lorenzo R.,Park In-HyunORCID,Niklason Laura E.,Kural ComertORCID

Abstract

AbstractThe transmembrane death receptor Fas transduces apoptotic signals upon binding its ligand, FasL. Although Fas is highly expressed in cancer cells, insufficient cell surface Fas expression desensitizes cancer cells to Fas-induced apoptosis. Here, we show that the increase in Fas microaggregate formation on the plasma membrane in response to the inhibition of endocytosis sensitizes cancer cells to Fas-induced apoptosis. We used a clinically accessible Rho-kinase inhibitor, fasudil, that reduces endocytosis dynamics by increasing plasma membrane tension. In combination with exogenous soluble FasL (sFasL), fasudil promoted cancer cell apoptosis, but this collaborative effect was substantially weaker in nonmalignant cells. The combination of sFasL and fasudil prevented glioblastoma cell growth in embryonic stem cell-derived brain organoids and induced tumor regression in a xenograft mouse model. Our results demonstrate that sFasL has strong potential for apoptosis-directed cancer therapy when Fas microaggregate formation is augmented by mechano-inhibition of endocytosis.

Funder

U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences

NSF | BIO | Division of Molecular and Cellular Biosciences

American Heart Association

U.S. Department of Health & Human Services | NIH | National Heart, Lung, and Blood Institute

Publisher

Springer Science and Business Media LLC

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