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Cell-intrinsic functions of PD-L1 activate autophagy and prevent cytokine-induced apoptosis

Mihaela Stefan–Lifshitz, Nicola Viola, Olga Meshcheryakova, Crystal Nieves Garcia, Pamela Mattar, Zhengzi Yi, Marie Louise Aoun, John Christopher McAuliffe, Jonathan Smith, Vikas Mehta, Richard V. Smith, A. Gersten, Weijia Zhang, Rajat Singh, Yaron Tomer

Peer-reviewed journalReal-world use

In the authors' words

Immune checkpoint inhibitor (ICI) therapy triggers complications that are currently attributed solely to immune activation. We hypothesized that target tissue-specific mechanisms also play a role and studied these mechanisms in thyrocytes. We found that thyroidal PD-L1 acts as a cytoprotective regulator, promoting cell survival during cytokine-induced stress. PD-L1 suppression in thyrocytes amplified interferon-γ-driven stress by aberrantly activating AKT-ERK-mTORC1, inhibiting autophagy, augmenting cellular stress, and triggering apoptosis. In a mouse model of ICI-thyroiditis, anti-PD-L1 treatment triggered immune activation while promoting thyrocyte apoptosis. Mechanistically, in mice, both pharmacologic and genetic down-regulation of thyroidal PD-L1 caused autophagic defects. Our findings reveal a role for PD-L1 in protecting thyroid tissue from cytokine-mediated stress and suggest that anti-PD-L1 tissue toxicity may reflect both an immune-mediated attack and intrinsic cellular vulnerability. Our data provide a broader framework for understanding ICI adverse events and for guiding the development of treatment strategies.

Main resultThe abstract does not state a limitation.

Appeared: Sunday, September 27. Science Advances. Peer-reviewed journal.

DOI: 10.1126/sciadv.aec7037