Section of Pharmacology, Department of Medicine and Surgery, University of Perugia, 06129 Perugia, Italy.
Cells. 2024 Nov 16;13(22):1894. doi: 10.3390/cells13221894.
Indoleamine 2,3-dioxygenase 1 () and originated from gene duplication before vertebrate divergence. While IDO1 has a well-defined role in immune regulation, the biological role of IDO2 remains unclear. Discovered in 2007, is located near the gene. Because of their high sequence similarity, IDO2 was initially thought to be a tryptophan (Trp)-degrading enzyme like IDO1. Differently from what expected, IDO2 displays extremely low catalytic activity toward Trp. Nevertheless, many studies, often contradictory, have tried to demonstrate that IDO2 modulates immune responses by catabolizing Trp into kynurenine, an unconvincing hypothesis linked to an incomplete understanding of IDO2's activity. In this study, we review IDO2's functional role beyond Trp metabolism. IDO2's evolutionary persistence across species, despite being almost inactive as an enzyme, suggests it has some relevant biological importance. expression in human normal cells is poor, but significant in various cancers, with two prevalent SNPs. Overall, the comparison of IDO2 to IDO1 as a Trp-degrading enzyme may have led to misunderstandings about IDO2's true physiological and pathological roles. New insights suggest that IDO2 might function more as a signaling molecule, particularly in cancer contexts, and further studies could reveal its potential as a target for cancer therapy.
吲哚胺 2,3-双加氧酶 1(IDO1)和 起源于脊椎动物分化前的基因复制。虽然 IDO1 在免疫调节中具有明确的作用,但 IDO2 的生物学作用尚不清楚。IDO2 于 2007 年发现,位于 基因附近。由于它们的序列高度相似,IDO2 最初被认为是一种与 IDO1 类似的色氨酸(Trp)降解酶。与预期的不同,IDO2 对 Trp 的催化活性极低。然而,许多研究,尽管常常相互矛盾,仍试图证明 IDO2 通过将 Trp 代谢为犬尿氨酸来调节免疫反应,这一假设与对 IDO2 活性的不完全理解有关,因此并不令人信服。在本研究中,我们综述了 IDO2 在色氨酸代谢以外的功能作用。IDO2 在物种间的进化中得以保留,尽管作为一种酶几乎没有活性,但这表明它具有一些相关的生物学重要性。IDO2 在人类正常细胞中的表达水平较低,但在各种癌症中显著升高,与两个常见的单核苷酸多态性(SNP)相关。总的来说,将 IDO2 与 IDO1 作为色氨酸降解酶进行比较,可能导致对 IDO2 的真实生理和病理作用产生误解。新的见解表明,IDO2 可能更像是一种信号分子,特别是在癌症环境中,进一步的研究可能揭示其作为癌症治疗靶点的潜力。