The Kynurenine Pathway and Indole Pathway in Tryptophan Metabolism Influence Tumor Progression

IF 3.1 2区 医学 Q2 ONCOLOGY Cancer Medicine Pub Date : 2025-03-18 DOI:10.1002/cam4.70703
Zhanhui Lu, Chengcheng Zhang, Jia Zhang, Wan Su, Guoying Wang, Zhongqi Wang
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Abstract

Tryptophan (Trp), an essential amino acid, is solely acquired through dietary intake. It is vital for protein biosynthesis and acts as a precursor for numerous key bioactive compounds. The Kynurenine Pathway and the Indole Pathway are the main metabolic routes and are extensively involved in the occurrence and progression of diseases in the digestive, nervous, and urinary systems. In the Kynurenine Pathway, enzymes crucial to tryptophan metabolism, indoleamine-2,3-dioxygenase 1 (IDO1), IDO2, and Trp-2,3-dioxygenase (TDO), trigger tumor immune resistance within the tumor microenvironment and nearby lymph nodes by depleting Trp or by activating the Aromatic Hydrocarbon Receptor (AhR) through its metabolites. Furthermore, IDO1 can influence immune responses via non-enzymatic pathways. The Kynurenine Pathway exerts its effects on tumor growth through various mechanisms, including NAD+ regulation, angiogenesis promotion, tumor metastasis enhancement, and the inhibition of tumor ferroptosis. In the Indole Pathway, indole and its related metabolites are involved in gastrointestinal homeostasis, tumor immunity, and drug resistance. The gut microbiota related to indole metabolism plays a critical role in determining the effectiveness of tumor treatment strategies and can influence the efficacy of immunochemotherapy. It is worth noting that there are conflicting effects of the Kynurenine Pathway and the Indole Pathway on the same tumor phenotype. For example, different tryptophan metabolites affect the cell cycle differently, and indole metabolism has inconsistent protective effects on tumors in different regions. These differences may hold potential for enhancing therapeutic efficacy.

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色氨酸代谢中的犬尿氨酸途径和吲哚途径影响肿瘤进展
色氨酸(Trp)是一种必需氨基酸,只能通过饮食摄入获得。它对蛋白质的生物合成至关重要,是许多关键生物活性化合物的前体。犬尿氨酸途径(Kynurenine Pathway)和吲哚途径(Indole Pathway)是主要的代谢途径,广泛参与消化、神经和泌尿系统疾病的发生和进展。在犬尿氨酸途径中,对色氨酸代谢至关重要的酶,吲哚胺-2,3-双加氧酶1 (IDO1)、IDO2和色氨酸-2,3-双加氧酶(TDO),通过消耗色氨酸或通过其代谢物激活芳香烃受体(AhR),在肿瘤微环境和附近淋巴结内触发肿瘤免疫抵抗。此外,IDO1可以通过非酶途径影响免疫应答。Kynurenine Pathway通过调节NAD+、促进血管生成、促进肿瘤转移、抑制肿瘤铁下垂等多种机制对肿瘤生长产生影响。在吲哚途径中,吲哚及其相关代谢物参与胃肠道稳态、肿瘤免疫和耐药。与吲哚代谢相关的肠道微生物群在决定肿瘤治疗策略的有效性方面起着关键作用,并能影响免疫化疗的疗效。值得注意的是,犬尿氨酸途径和吲哚途径在同一肿瘤表型上的作用是相互矛盾的。例如,不同的色氨酸代谢物对细胞周期的影响不同,吲哚代谢对不同区域肿瘤的保护作用也不一致。这些差异可能具有提高治疗效果的潜力。
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来源期刊
Cancer Medicine
Cancer Medicine ONCOLOGY-
CiteScore
5.50
自引率
2.50%
发文量
907
审稿时长
19 weeks
期刊介绍: Cancer Medicine is a peer-reviewed, open access, interdisciplinary journal providing rapid publication of research from global biomedical researchers across the cancer sciences. The journal will consider submissions from all oncologic specialties, including, but not limited to, the following areas: Clinical Cancer Research Translational research ∙ clinical trials ∙ chemotherapy ∙ radiation therapy ∙ surgical therapy ∙ clinical observations ∙ clinical guidelines ∙ genetic consultation ∙ ethical considerations Cancer Biology: Molecular biology ∙ cellular biology ∙ molecular genetics ∙ genomics ∙ immunology ∙ epigenetics ∙ metabolic studies ∙ proteomics ∙ cytopathology ∙ carcinogenesis ∙ drug discovery and delivery. Cancer Prevention: Behavioral science ∙ psychosocial studies ∙ screening ∙ nutrition ∙ epidemiology and prevention ∙ community outreach. Bioinformatics: Gene expressions profiles ∙ gene regulation networks ∙ genome bioinformatics ∙ pathwayanalysis ∙ prognostic biomarkers. Cancer Medicine publishes original research articles, systematic reviews, meta-analyses, and research methods papers, along with invited editorials and commentaries. Original research papers must report well-conducted research with conclusions supported by the data presented in the paper.
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