β-Ionone suppresses colorectal tumorigenesis by activating OR51E2, a potential tumor suppressor

癌症研究 抑制器 癌变 结直肠癌 化学 医学 内科学 生物化学 癌症 基因
作者
Ji‐Sun Kim,Sungyun Cho,Mi-Young Jeong,Adriana Rivera‐Piza,Yeonji Kim,Chunyan Wu,Ye Eun Yoon,InRyeong Lee,Jungwon Choi,Ha Lim Lee,Sungwon Shin,Jaeeun Shin,Hyeonmin Gil,Min-Goo Lee,NaNa Keum,Jina Kim,Da-In Lee,Yong Hun Jung,Seok Chung,Min‐Jeong Shin
出处
期刊:Phytomedicine [Elsevier BV]
卷期号:140: 156599-156599 被引量:1
标识
DOI:10.1016/j.phymed.2025.156599
摘要

BACKGROUND: Olfactory receptors (ORs) are present in non-olfactory tissues and contribute to diverse biological roles beyond smell perception. Among them, OR51E2 has been associated with cancer biology, and its activator, β-ionone, a natural terpenoid, is known to have anticancer effects. PURPOSE: This study aimed to clarify the tumor-suppressive role of OR51E2 in colorectal cancer (CRC), unravel the regulatory mechanism underlying its downregulation, and evaluate the therapeutic potential of β-ionone, an OR51E2 ligand, in CRC progression. STUDY DESIGN AND METHODS: A) modification of OR51E2 mRNA stability was examined using METTL3/14 and YTHDF1/2/3 knockdown experiments. β-Ionone-mediated effects on intracellular calcium signaling, cell proliferation, migration, and apoptosis were evaluated in an OR51E2-dependent manner. The therapeutic efficacy of β-ionone was further evaluated in vivo using a xenograft model in nude mice. RESULTS: OR51E2 mRNA expression and immunoreactivity were significantly reduced in CRC cells and tissues due to decreased mRNA stability. Knockdown of METTL3/14 or YTHDF1/2/3 increased OR51E2 mRNA and protein expression and inhibited CRC cell proliferation. Treatment with STM2457, an METTL3 inhibitor, restored OR51E2 expression and suppressed CRC cell proliferation. β-Ionone, a ligand of OR51E2, increased intracellular calcium levels, decreased MEK/ERK phosphorylation, and inhibited CRC cell proliferation while inducing apoptosis. These effects were abolished in OR51E2 knockdown cells. In a xenograft model, β-ionone administration (5 and 10 mg/kg body weight) significantly reduced tumor growth. CONCLUSION: A inhibition may represent novel strategies for CRC treatment.
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