Protein kinase C delta regulates mononuclear phagocytes and hinders response to immunotherapy in cancer.

Chaib, Mehdi; Holt, Jeremiah R; Fisher, Emilie L; Sipe, Laura M; Bohm, Margaret S; Joseph, Sydney C; Simmons, Boston W; Eugin Simon, Samson et al. · Sci Adv · 2023

basic_science · Level V

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Abstract

Mononuclear phagocytes (MPs) play a crucial role in tissue homeostasis; however, MPs also contribute to tumor progression and resistance to immune checkpoint blockade (ICB). Targeting MPs could be an effective strategy to enhance ICB efficacy. We report that protein kinase C delta (PKCδ), a serine/threonine kinase, is abundantly expressed by MPs in human and mouse tumors. PKCδ<sup>-/-</sup> mice displayed reduced tumor progression compared to wild types, with increased response to anti-PD-1. Tumors from PKCδ<sup>-/-</sup> mice demonstrated T<sub>H</sub>1-skewed immune response including increased antigen presentation and T cell activation. Depletion of MPs in vivo altered tumor growth in control but not PKCδ<sup>-/-</sup> mice. Coinjection of PKCδ<sup>-/-</sup> M2-like macrophages with cancer cells into wild-type mice markedly delayed tumor growth and significantly increased intratumoral T cell activation compared to PKCδ<sup>+/+</sup> controls. PKCδ deficiency reprogrammed MPs by activating type I and type II interferon signaling. Thus, PKCδ might be targeted to reprogram MPs to augment ICB efficacy.

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