School of Pharmacy, Bengbu Medical College, Bengbu, China.
Institute of Translational Medicine, Shanghai University, Shanghai, China.
Front Immunol. 2023 Jul 31;14:1190707. doi: 10.3389/fimmu.2023.1190707. eCollection 2023.
Stimulation of IFN genes (STING) is central to the production of interferon and proinflammatory cytokines in response to microbial DNA or self-DNA in the cytosol. The detrimental role of the activation of STING during sepsis has been well documented.
Here, we found that gelsevirine (GS) potently inhibit interferon and inflammatory cytokine induction in macrophages exposed to STING agonists (2'3'-cGAMP, IFN stimulatory DNA (ISD), and poly(dA:dT)). I n silico docking analysis and surface plasmon resonance binding study showed that GS bonds with high affinity to the cyclic dinucleotide (CDN)-binding pocket of STING. Biotin pull-down assay also confirmed that GS competitively bonded to STING protein. Furthermore, GS inhibited 2'3'-cGAMP-induced STING dimerization and subsequent activation. In addition, GS induced K48-linked STING ubiquitination and degradation, which was likely through upregulating and recruiting TRIM21. In mice exposed to cecal ligation and puncture (CLP)-induced sepsis, post-operative administration of GS significantly extended the survival period and mitigated acute organ damage.
Overall, GS inhibited STING signaling by competitively binding to the CDN-binding pocket to lock STING in an inactive open conformation, while also promoting K48-linked STING ubiquitination and degradation.
Our findings identify a novel STING-specific inhibitor that could be applied in the treatment of sepsis.
在细胞质中,IFN 基因(STING)的刺激是微生物 DNA 或自身 DNA 引发干扰素和促炎细胞因子产生的核心。STING 在败血症中的激活所产生的有害作用已得到充分证实。
在这里,我们发现格尔德霉素(GS)能够强烈抑制 STING 激动剂(2'3'-cGAMP、IFN 刺激 DNA(ISD)和聚(dA:dT))暴露的巨噬细胞中干扰素和炎性细胞因子的诱导。计算机对接分析和表面等离子体共振结合研究表明,GS 与 STING 的环二核苷酸(CDN)结合口袋具有高亲和力。生物素下拉测定也证实 GS 与 STING 蛋白竞争性结合。此外,GS 抑制 2'3'-cGAMP 诱导的 STING 二聚化和随后的激活。此外,GS 诱导 K48 连接的 STING 泛素化和降解,这可能是通过上调和募集 TRIM21 实现的。在接受盲肠结扎和穿刺(CLP)诱导的败血症的小鼠中,术后给予 GS 可显著延长存活期并减轻急性器官损伤。
总的来说,GS 通过竞争性结合 CDN 结合口袋来抑制 STING 信号,将 STING 锁定在无活性的开放构象中,同时促进 K48 连接的 STING 泛素化和降解。
我们的研究结果确定了一种新型的 STING 特异性抑制剂,可应用于败血症的治疗。