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Increased Serine and One-Carbon Pathway Metabolism by PKCλ/ι Deficiency Promotes Neuroendocrine Prostate Cancer

Reina-Campos, Miguel; Linares, Juan F.; Duran, Angeles; Cordes, Thekla; L'Hermitte, Antoine; Badur, Mehmet G.; Bhangoo, Munveer S.; Thorson, Phataraporn K.; Richards, Alicia; Rooslid, Tarmo; Garcia-Olmo, Dolores C.; Nam-Cha, Syongh Y.; Salinas-Sanchez, Antonio S.; Eng, Ken; Beltran, Himisha; Scott, David A.; Metallo, Christian M.; Moscat, Jorge; Diaz-Meco, Maria T.

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March 17, 2019

10.1016/j.ccell.2019.01.018

Abstract:

Summary Increasingly effective therapies targeting the androgen receptor have paradoxically promoted the incidence of neuroendocrine prostate cancer (NEPC), the most lethal subtype of castration-resistant prostate cancer (PCa), for which there is no effective therapy. Here we report that protein kinase C (PKC)λ/ι is downregulated in de novo and during therapy-induced NEPC, which results in the upregulation of serine biosynthesis through an mTORC1/ATF4-driven pathway. This metabolic reprogramming supports cell proliferation and increases intracellular S-adenosyl methionine (SAM) levels to feed epigenetic changes that favor the development of NEPC characteristics. Altogether, we have uncovered a metabolic vulnerability triggered by PKCλ/ι deficiency in NEPC, which offers potentially actionable targets to prevent therapy resistance in PCa.

Automatic Tags

prostate cancer; epigenetics; mTOR; ATF4; aPKC; cancer metabolism; lineage plasticity; neuroendocrine; PKClambda; serine metabolism

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