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基于鼠 STING 激动剂 DMXAA 结构的新型 STING 抑制剂的发现。

Discovery of Novel STING Inhibitors Based on the Structure of the Mouse STING Agonist DMXAA.

机构信息

National Engineering Research Center for the Emergency Drug, Beijing Institute of Pharmacology and Toxicology, Beijing 100850, China.

出版信息

Molecules. 2023 Mar 23;28(7):2906. doi: 10.3390/molecules28072906.

Abstract

The stimulator-of-interferon-gene (STING) protein is involved in innate immunity. The drug DMXAA (5,6-dimethylxanthenone-4-acetic acid) proved to be a potent murine-STING (mSTING) agonist but had little effect on human-STING (hSTING). In this paper, we draw upon the comparison of different crystal structures and protein-ligand interaction relationships analysis to venture the hypothesis that the drug design of DMXAA variants has the potential to convert STING agonists to inhibitors. Based on our previous discovery of two DMXAA analogs, and (both could bind to STING), we structurally optimized them and synthesized new derivatives, respectively. In binding assays, we found compounds and to represent STING binders that were superior to the original structures and discussed the structure-activity relationships. All target compounds were inactive in cellular assays for the screening of STING agonistic activity. Gratifyingly, we identified and as STING inhibitors with micromolar activity in both hSTING and mSTING pathways. In addition, and inhibited the induction of interferon and inflammatory cytokines activated by 2'3'-cGAMP without apparent cytotoxicity. These findings break the rigid thinking that DMXAA provides the structural basis specifically for STING agonists and open up more possibilities for developing novel STING agonists or inhibitors.

摘要

干扰素基因刺激蛋白(STING)参与固有免疫。药物 DMXAA(5,6-二甲基黄嘌呤-4-乙酸)被证明是一种有效的小鼠 STING(mSTING)激动剂,但对人 STING(hSTING)几乎没有作用。在本文中,我们通过比较不同的晶体结构和蛋白质-配体相互作用关系分析,提出了一个假设,即 DMXAA 变体的药物设计有可能将 STING 激动剂转化为抑制剂。基于我们之前对两种 DMXAA 类似物和的发现(两者都可以与 STING 结合),我们对它们进行了结构优化,并分别合成了新的衍生物。在结合实验中,我们发现化合物和代表了优于原始结构的 STING 结合物,并讨论了结构-活性关系。所有的靶化合物在细胞测定中均无活性,无法筛选 STING 激动活性。令人高兴的是,我们确定和为具有微摩尔活性的 hSTING 和 mSTING 途径中的 STING 抑制剂。此外,和抑制了由 2'3'-cGAMP 激活的干扰素和炎症细胞因子的诱导,而没有明显的细胞毒性。这些发现打破了 DMXAA 专门为 STING 激动剂提供结构基础的僵化思维,为开发新型 STING 激动剂或抑制剂开辟了更多可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c9f/10095708/dcf0b15d8248/molecules-28-02906-g001.jpg

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