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白细胞介素-23中诱导性正构口袋的鉴定:非生物治疗靶向的新途径。

Identification of an Induced Orthosteric Pocket in IL-23: A New Avenue for Non-biological Therapeutic Targeting.

作者信息

Lecomte Fabien C, Joseph Jeremiah S, Stalewski Jacek, Shen Qingliang, Arnoult Eric, Sridhar Vandana, Liu Mengjie, Hu Yingxia, Gasendo Jovylyn Gatchalian, Ben Arie Hagit, Keinan Nurit, Keidar Liraz, Aviv Israel, Ruvinov Emil, Grandjean Julia, Dores-Silva Paulo Roberto, Mak Annie, Santoso Buyung, Kim Suzie, Shende Vikram, Wever Walter J, Mirzadegan Tara, Zhu Zhaoning, Fuchs Bryan, Pinton Philippe, Szabady Rose

机构信息

Ferring Research Institute, 4245 Sorrento Valley Blvd, San Diego, California CA92121, United States.

Bio-Technology General Ltd, Be'er Tuvia Industrial Zone, P.O., Kiryat Malachi 8310402, Israel.

出版信息

ACS Chem Biol. 2025 Jul 18;20(7):1609-1618. doi: 10.1021/acschembio.5c00181. Epub 2025 Jun 25.

DOI:10.1021/acschembio.5c00181
PMID:40560919
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12281479/
Abstract

Interleukin 23 (IL23) is a key driver of autoimmune inflammatory pathology and has been successfully targeted by therapeutic antibodies for the treatment of psoriasis and ulcerative colitis. Identifying small-molecule inhibitors of IL23 signaling is of potential interest for drug development. We report the identification of an induced-fit orthosteric binding pocket on the IL23p19 subunit that may be suitable for small-molecule inhibition. X-ray crystallography was used to determine the structure of the IL23 heterodimer when bound to inhibitory peptide 23-446 and to confirm peptide binding to the IL23p19 subunit at the location of its interface with the IL23 receptor (IL23R). We then applied structure-based design to modify peptide 23-446. This process involved identifying key residues responsible for inhibitory activity and generating structure-activity relationship-optimized peptides with low nanomolar affinity for IL-23 and corresponding inhibitory potency against IL-23R binding. These optimized peptides show promise as potential therapeutic candidates in their own right and may also serve as valuable starting points for further discovery. The most potent of these peptides was used to develop a fluorescence polarization probe and to design a high-throughput screening assay, which was validated through a pilot screen using a small fragment-based compound library. This screening strategy has the potential to support the discovery of peptides or small molecules that bind to the orthosteric pocket, thereby blocking the IL-23R interaction and downstream signaling.

摘要

白细胞介素23(IL23)是自身免疫性炎症病理的关键驱动因素,治疗性抗体已成功靶向该因子用于治疗银屑病和溃疡性结肠炎。鉴定IL23信号传导的小分子抑制剂对于药物开发具有潜在意义。我们报告了在IL23p19亚基上鉴定出一个诱导契合的正构结合口袋,该口袋可能适用于小分子抑制。利用X射线晶体学确定了与抑制性肽23 - 446结合时IL23异二聚体的结构,并证实肽在与IL23受体(IL23R)的界面位置与IL23p19亚基结合。然后我们应用基于结构的设计来修饰肽23 - 446。这个过程包括确定负责抑制活性的关键残基,并生成对IL - 23具有低纳摩尔亲和力且对IL - 23R结合具有相应抑制效力的构效关系优化肽。这些优化肽本身有望成为潜在的治疗候选物,也可能作为进一步发现的有价值起点。这些肽中最有效的被用于开发荧光偏振探针并设计高通量筛选测定法,该测定法通过使用基于小片段的化合物库进行初步筛选得到验证。这种筛选策略有可能支持发现与正构口袋结合的肽或小分子,从而阻断IL - 23R相互作用和下游信号传导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/970c9b643334/cb5c00181_0004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/3a9c10ca397e/cb5c00181_0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/e3471a8095cf/cb5c00181_0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/0a6a8f253bc2/cb5c00181_0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/970c9b643334/cb5c00181_0004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/3a9c10ca397e/cb5c00181_0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/e3471a8095cf/cb5c00181_0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/0a6a8f253bc2/cb5c00181_0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc95/12281479/970c9b643334/cb5c00181_0004.jpg

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本文引用的文献

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Blockade of IL-23: What is in the Pipeline?阻断白细胞介素-23:有哪些在研药物?
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PLoS One. 2020 Jun 1;15(6):e0233961. doi: 10.1371/journal.pone.0233961. eCollection 2020.
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