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Hydrolysis of 2′3′-cGAMP by ENPP1 and design of non-hydrolyzable analogs

机译:ENPP1水解23-cGAMP的方法及不可水解类似物的设计

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摘要

Agonists of mouse STING (TMEM173) shrink and even cure solid tumor by activating innate immunity; human STING agonists are needed to test this therapeutic hypothesis in man. The endogenous STING agonist is 2′3′-cGAMP, a 2nd messenger that signals the presence of cytosolic dsDNA. We report activity-guided partial purification and identification of ENPP1 as the dominant 2′3′-cGAMP hydrolyzing activity in cultured cells. The hydrolysis activity of ENPP1 was confirmed using recombinant protein and was depleted in tissue extracts and plasma from Enpp1-/- mice. We synthesized a hydrolysis-resistant bis-phosphothioate analog of 2′3′-cGAMP (2′3′-cGsAsMP) with similar affinity for human STING in vitro and 10 times more potent at inducing IFN-β secretion from human THP1 monocytes. Studies in mouse Enpp1-/- lung fibroblasts indicate that resistance to hydrolysis contributes significantly to its higher potency. 2′3′-cGsAsMP is therefore improved over natural 2′3′-cGAMP as a model agonist, and has potential as a vaccine adjuvant and cancer therapeutic.
机译:小鼠STING(TMEM173)激动剂可通过激活先天免疫来缩小甚至治愈实体瘤。需要人类STING激动剂来测试人的这种治疗假设。内源性STING激动剂是2'3'-cGAMP,这是一个2 信使,它指示细胞质dsDNA的存在。我们报告了活动指导的部分纯化和鉴定ENPP1作为培养细胞中的主要2'3'-cGAMP水解活性。使用重组蛋白证实了ENPP1的水解活性,并在Enpp1 -/-小鼠的组织提取物和血浆中被消耗掉。我们合成了一种抗水解的双硫代磷酸酯类似物2'3'-cGAMP(2'3'-cG s A s MP),与人STING具有相似的亲和力在体外诱导人THP1单核细胞分泌IFN-β的效力提高了10倍。对小鼠Enpp1 -/-肺成纤维细胞的研究表明,抗水解作用显着有助于其更高的效力。因此,与天然2'3'-cGAMP作为模型激动剂相比,2'3'-cG s A s MP有所改善,并具有作为疫苗佐剂和癌症治疗剂的潜力。

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