体外
药物发现
化学图书馆
先天免疫系统
干扰素
激酶
小分子
虚拟筛选
生物
胞浆
高含量筛选
生物化学
细胞培养
化学
体内
体外毒理学
高通量筛选
干扰素基因刺激剂
信号转导
药品
细胞生物学
表型筛选
计算生物学
细胞
内生
磷酸化
药理学
生物活性
兴奋剂
结构-活动关系
基因
IC50型
药效团
药物开发
HEK 293细胞
免疫系统
化学空间
作者
Jazmín Alarcón‐Espósito,Ravi Kumar Nagiri,Siyu Wang,Chloe Larson,Loreto Carvallo-Torres,Vipin Kumar Singh,J. Fraser Glickman,Li Gan,Subhash C. Sinha
标识
DOI:10.1021/acschembio.5c00649
摘要
Cyclic GMP-AMP synthase (cGAS) has emerged as a promising therapeutic target of several human diseases, including Alzheimer's disease (AD) and related disorders. As a cytosolic DNA sensor, cGAS generates an innate immune response to promote neuroinflammation by producing an endogenous agonist of the stimulator of interferon genes (STING), 2'3'-cyclic GMP-AMP (cGAMP), which activates the cGAS-STING pathway. We have performed a high-throughput screening of a chemical library containing over 300 K small molecules at the Fisher Drug Discovery Resource Center (DDRC), Rockefeller University (RU), to identify multiple hit inhibitors of human (h)-cGAS. We used a modified Kinase Glo Luminescent Kinase assay, which was earlier developed at RU and later used by multiple groups, including ours, to perform primary screening of the library using h-cGAS. The hit candidates bearing novel scaffolds are structurally diverse and exhibited in vitro activity in the low micromolar range. RU-0610270, a sulfonamide derivative, is one of the most potent hits (IC50 = 1.88 μM), selected for hit expansion and structure-activity relationship (SAR) analysis. We synthesized RU-0610270 (listed as cpd 1) and new analogs and evaluated them in vitro against h-cGAS to identify cpd 6 (IC50 = 0.66 μM) as the most potent hit analog. We further profiled cpd 6 and found that it modestly inhibited cGAMP levels by 29% at 30 μM in THP1 cells without detectable toxicity and by 76% at 100 μM, albeit with a moderate decrease (∼20%) in cell viability. These results highlight a novel chemical series with promising in vitro activity, providing a starting point for the development of selective and potent human cGAS inhibitors for clinical use.
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