1. Academic Validation
  2. Reprogramming hormone-sensitive prostate cancer to a lethal neuroendocrine cancer lineage by mitochondrial pyruvate carrier (MPC)

Reprogramming hormone-sensitive prostate cancer to a lethal neuroendocrine cancer lineage by mitochondrial pyruvate carrier (MPC)

  • Mol Metab. 2022 May;59:101466. doi: 10.1016/j.molmet.2022.101466.
Huan Xu 1 Zhixiao Liu 2 Dajun Gao 1 Peizhang Li 1 Yanting Shen 1 Yi Sun 3 Lingfan Xu 4 Nan Song 5 Yue Wang 6 Ming Zhan 7 Xu Gao 8 Zhong Wang 9
Affiliations

Affiliations

  • 1 Department of Urology, Shanghai Ninth People's Hospital, Shanghai, China.
  • 2 Shanghai Key Lab of Cell Engineering, Shanghai, China; Research Center of Developmental Biology, Department of Histology and Embryology, College of Basic Medicine, Naval Medical University, Shanghai, China.
  • 3 Guangdong Key Laboratory of Urology, Guangzhou, China.
  • 4 The First Affiliated Hospital of Anhui Medical University, Anhui, China.
  • 5 Department of Urology, Beijing Shijitan Hospital, Beijing, China.
  • 6 Shanghai Key Lab of Cell Engineering, Shanghai, China. Electronic address: [email protected].
  • 7 Department of Urology, Shanghai Ninth People's Hospital, Shanghai, China. Electronic address: [email protected].
  • 8 Department of Urology, Shanghai Changhai Hospital, Shanghai, China. Electronic address: [email protected].
  • 9 Department of Urology, Shanghai Ninth People's Hospital, Shanghai, China. Electronic address: [email protected].
Abstract

Cell lineage reprogramming is the main approach for Cancer cells to acquire drug resistance and escape targeted therapy. The use of potent targeted therapies in cancers has led to the development of highly aggressive carcinoma, including neuroendocrine prostate Cancer (NEPC). Although metabolic reprogramming has been reported to be essential for tumor growth and energy production, the relationship between metabolic reprogramming and lineage differentiation which can cause hormone therapy resistance has never been reported in prostate Cancer (PCa). Moreover, as there is still no efficient therapy for NEPC, it is urgent to reverse this lineage differentiation during the hormone therapy. Here for the first time, we used in vitro and in vivo human PCa models to study the effect of metabolic reprogramming on the lineage differentiation from the Androgen Receptor (AR)-dependent adenocarcinoma to AR-independent NEPC. This lineage differentiation leads to antiandrogen drug resistance and tumor development. This phenotype is enabled by the loss of mitochondrial pyruvate carrier (MPC), the gate for mitochondrial pyruvate influx, and can be reversed by MPC overexpression. Morphologic and cellular studies also demonstrate that the Pyruvate Kinase M2 (PKM2) involved epithelium-mesenchymal transition process mediated this lineage alteration. Its inhibition is a potential treatment for MPC-lo tumors. All of these results suggest that metabolic rewiring can act as a starter for increased cellular plasticity which leads to antiandrogen therapy resistance through lineage differentiation. This study provides us with a potent treatment target for therapy-induced, enzalutamide-resistant NE-like prostate Cancer.

Keywords

Castration-resistant prostate cancer; Metabolic reprogramming; Mitochondrial pyruvate carrier; Neuroendocrine prostate cancer.

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