The LAT1 inhibitor JPH203 suppresses the growth of castration‐resistant prostate cancer through a CD24‐mediated mechanism

Author:

Saito Shinpei12,Ando Keisuke2,Sakamoto Shinichi2ORCID,Xu Minhui3,Yamada Yasutaka2ORCID,Rii Junryo2ORCID,Kanaoka Sanji2,Wei Jiaxing2,Zhao Xue2,Pae Sangjon12,Kanesaka Manato2,Goto Yusuke2,Sazuka Tomokazu2,Imamura Yusuke2,Reien Yoshie1,Hamaguchi‐Suzuki Norie1,Saito Shota1,Hirayama Yuri1,Hashimoto Hirofumi1,Kanai Yoshikatsu3ORCID,Ichikawa Tomohiko2,Anzai Naohiko1ORCID

Affiliation:

1. Department of Pharmacology Chiba University Graduate School of Medicine Chiba Japan

2. Department of Urology Chiba University Graduate School of Medicine Chiba Japan

3. Bio‐System Pharmacology Osaka University Graduate School of Medicine Osaka Japan

Abstract

AbstractL‐type amino acid transporter 1 (LAT1) is specifically expressed in many malignancies, contributes to the transport of essential amino acids, such as leucine, and regulates the mammalian target of rapamycin (mTOR) signaling pathway. We investigated the expression profile and functional role of LAT1 in prostate cancer using JPH203, a specific inhibitor of LAT1. LAT1 was highly expressed in castration‐resistant prostate cancer (CRPC) cells, including C4‐2 and PC‐3 cells, but its expression level was low in castration‐sensitive LNCaP cells. JPH203 significantly inhibited [14C] leucine uptake in CRPC cells but had no effect in LNCaP cells. JPH203 inhibited the proliferation, migration, and invasion of CRPC cells but not of LNCaP cells. In C4‐2 cells, Cluster of differentiation (CD) 24 was identified by RNA sequencing as a novel downstream target of JPH203. CD24 was downregulated in a JPH203 concentration‐dependent manner and suppressed activation of the Wnt/β‐catenin signaling pathway. Furthermore, an in vivo study showed that JPH203 inhibited the proliferation of C4‐2 cells in a castration environment. The results of this study indicate that JPH203 may exert its antitumor effect in CRPC cells via mTOR and CD24.

Funder

Foundation for Promotion of Material Science and Technology of Japan

Publisher

Wiley

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