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作为研究吲哚胺2,3-双加氧酶1(IDO1)活性的工具化合物的色氨酸类似物的设计、合成与评估。

Design, synthesis and evaluation of tryptophan analogues as tool compounds to study IDO1 activity.

作者信息

Cundy Nicholas J, Hare Roseanna K, Tang Tina, Leach Andrew G, Jowitt Thomas A, Qureshi Omar, Gordon John, Barnes Nicholas M, Brady Catherine A, Raven Emma L, Grainger Richard S, Butterworth Sam

机构信息

School of Chemistry, University of Birmingham Edgbaston Birmingham B15 2TT UK

Division of Infection, Immunity and Respiratory Medicine, Faculty of Biology, Medicine and Health, University of Manchester Manchester M13 9PL UK.

出版信息

RSC Chem Biol. 2021 Sep 13;2(6):1651-1660. doi: 10.1039/d0cb00209g. eCollection 2021 Dec 2.

Abstract

The metabolism of l-tryptophan to -formyl-l-kynurenine by indoleamine-2,3-dioxygenase 1 (IDO1) is thought to play a critical role in tumour-mediated immune suppression. Whilst there has been significant progress in elucidating the overall enzymatic mechanism of IDO1 and related enzymes, key aspects of the catalytic cycle remain poorly understood. Here we report the design, synthesis and biological evaluation of a series of tryptophan analogues which have the potential to intercept putative intermediates in the metabolism of 1 by IDO1. Functionally-relevant binding to IDO1 was demonstrated through enzymatic inhibition, however no IDO1-mediated metabolism of these compounds was observed. Subsequent -shift analysis shows the most active compound, 17, exhibits a distinct profile from known competitive IDO1 inhibitors, with docking studies supporting the hypothesis that 17 may bind at the recently-discovered S site. These findings provide a start-point for development of further mechanistic probes and more potent tryptophan-based IDO1 inhibitors.

摘要

吲哚胺2,3-双加氧酶1(IDO1)将L-色氨酸代谢为N-甲酰基-L-犬尿氨酸的过程被认为在肿瘤介导的免疫抑制中起关键作用。虽然在阐明IDO1及相关酶的整体酶促机制方面已取得显著进展,但催化循环的关键环节仍了解甚少。在此,我们报告了一系列色氨酸类似物的设计、合成及生物学评估,这些类似物有可能拦截IDO1对L-色氨酸代谢过程中的假定中间体。通过酶抑制作用证明了与IDO1的功能相关结合,但未观察到这些化合物由IDO1介导的代谢。随后的核磁共振化学位移分析表明,活性最高的化合物17呈现出与已知竞争性IDO1抑制剂不同的特征,对接研究支持了17可能结合在最近发现的S位点的假说。这些发现为进一步开发机制性探针和更有效的基于色氨酸的IDO1抑制剂提供了一个起点。

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