靶向keap1介导的IKKβ降解策略对结肠炎相关结直肠癌的发生:黄腐酚的潜力。

IF 7.5 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Biomedicine & Pharmacotherapy Pub Date : 2025-03-01 Epub Date: 2025-02-01 DOI:10.1016/j.biopha.2025.117879
Young-Min Han , Sun-Mi Yun , Da-Young Lee , Moon-Young Song , Seong-Won Lee , Woo-Sung Son , Jun Hwan Yoo , Changjin Lim , Seok-Ho Kim , Eun-Hee Kim
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引用次数: 0

摘要

在结肠炎相关的结直肠癌(CAC)中,NF-κB通路,特别是IKKβ,驱动炎症和癌症进展。然而,由于代偿机制,没有IKKβ抑制剂被批准。目前的挑战是开发一种抗肿瘤药物,有效地靶向IKKβ,同时克服这些代偿途径。我们通过体外和体内实验,评价了合成黄腐酚(XN)靶向IKKβ的抗癌作用。小鼠诱导CAC,再加XN处理。进行组织学和分子分析,包括细胞活力测定、免疫印迹和qRT-PCR。我们还利用人结肠癌细胞系研究了IKKβ的作用。RNA测序显示,IKKβ在结直肠癌人体组织中表达升高,与预后不良相关。XN在两种模型中均能显著降低体内腺癌的形成和炎症,同时降低IKKβ和NF-κB信号传导。XN与IKKβ的C179残基结合,抑制其活性。此外,我们的研究结果强调了KEAP1作为IKKβ降解的上游调节剂的作用。XN特异地与KEAP1的C288残基相互作用,与IKKβ和KEAP1表现出三重结合亲和力。这些结果表明,XN促进了KEAP1促进IKKβ降解的条件。
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Targeting KEAP1-mediated IKKβ degradation strategy for colitis-associated colorectal carcinogenesis: The potential of xanthohumol
In colitis-associated colorectal cancer (CAC), the NF-κB pathway, especially IKKβ, drives inflammation and cancer progression. However, no IKKβ inhibitors have been approved due to compensatory mechanisms. The challenge is to develop an anti-tumor agent that effectively targets IKKβ while overcoming these compensatory pathways. We conducted in vitro and in vivo experiments to evaluate the anti-cancer effects of synthesized xanthohumol (XN) targeting IKKβ. CAC was induced in mice, followed by XN treatment. Histological and molecular analyses, including cell viability assays, immunoblotting, and qRT-PCR, were performed. Human colon cancer cell lines were also used to investigate IKKβ’s role. RNA sequencing revealed elevated IKKβ expression in colorectal cancer human tissues, correlating with poor prognosis. XN significantly reduced adenocarcinoma formation and inflammation in vivo while decreasing IKKβ and NF-κB signaling in both models. XN binds to the C179 residue of IKKβ, inhibiting its activity. Additionally, our findings highlight KEAP1's role as an upstream regulator of IKKβ degradation. XN specifically interacts with the C288 residue of KEAP1, showing triple-binding affinity with IKKβ and KEAP1. These results indicate that XN promotes conditions where KEAP1 facilitates IKKβ degradation.
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来源期刊
CiteScore
11.90
自引率
2.70%
发文量
1621
审稿时长
48 days
期刊介绍: Biomedicine & Pharmacotherapy stands as a multidisciplinary journal, presenting a spectrum of original research reports, reviews, and communications in the realms of clinical and basic medicine, as well as pharmacology. The journal spans various fields, including Cancer, Nutriceutics, Neurodegenerative, Cardiac, and Infectious Diseases.
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