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3'-5'、3'-5' 环二核苷酸的酶促合成、它们与干扰素基因刺激物衔接蛋白的结合特性及结构/活性相关性。

Enzymatic Synthesis of 3'-5', 3'-5' Cyclic Dinucleotides, Their Binding Properties to the Stimulator of Interferon Genes Adaptor Protein, and Structure/Activity Correlations.

机构信息

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences and Gilead Sciences Research Centre at IOCB, Flemingovo náměstí 2, Prague 16610, Czech Republic.

Faculty of Science, Charles University, Albertov 6, Prague 12800, Czech Republic.

出版信息

Biochemistry. 2021 Dec 7;60(48):3714-3727. doi: 10.1021/acs.biochem.1c00692. Epub 2021 Nov 17.

Abstract

The 3'-5', 3'-5' cyclic dinucleotides (3'3'CDNs) are bacterial second messengers that can also bind to the stimulator of interferon genes (STING) adaptor protein in vertebrates and activate the host innate immunity. Here, we profiled the substrate specificity of four bacterial dinucleotide synthases from (DncV), (btDisA), (dgcZ), and (tDGC) using a library of 33 nucleoside-5'-triphosphate analogues and then employed these enzymes to synthesize 24 3'3'CDNs. The STING affinity of CDNs was evaluated in cell-based and biochemical assays, and their ability to induce cytokines was determined by employing human peripheral blood mononuclear cells. Interestingly, the prepared heterodimeric 3'3'CDNs bound to the STING much better than their homodimeric counterparts and showed similar or better potency than bacterial 3'3'CDNs. We also rationalized the experimental findings by in-depth STING-CDN structure-activity correlations by dissecting computed interaction free energies into a set of well-defined and intuitive terms. To this aim, we employed state-of-the-art methods of computational chemistry, such as quantum mechanics/molecular mechanics (QM/MM) calculations, and complemented the computed results with the {STING:3'3'c-di--AMP} X-ray crystallographic structure. QM/MM identified three outliers (mostly homodimers) for which we have no clear explanation of their impaired binding with respect to their heterodimeric counterparts, whereas the = 0.7 correlation between the computed Δ' and experimental Δ's for the remaining ligands has been very encouraging.

摘要

3'-5'、3'-5' 环二核苷酸 (3'3'CDNs) 是细菌的第二信使,也可以与脊椎动物干扰素基因刺激物 (STING) 衔接蛋白结合,激活宿主固有免疫。在这里,我们使用 33 种核苷 5'-三磷酸类似物文库对来自 (DncV)、 (btDisA)、 (dgcZ) 和 (tDGC) 的四种细菌二核苷酸合酶的底物特异性进行了分析,然后利用这些酶合成了 24 种 3'3'CDNs。通过细胞和生化测定评估了 CDNs 与 STING 的亲和力,并用人外周血单核细胞测定了它们诱导细胞因子的能力。有趣的是,所制备的异源二聚体 3'3'CDNs 与 STING 的结合能力明显优于其同源二聚体,并且其效力与细菌 3'3'CDNs 相似或更好。我们还通过深入研究 STING-CDN 结构-活性相关性,将计算出的相互作用自由能分解为一组明确且直观的术语,从而合理化了实验结果。为此,我们采用了最先进的计算化学方法,如量子力学/分子力学 (QM/MM) 计算,并结合 {STING:3'3'c-di--AMP} X 射线晶体结构补充了计算结果。QM/MM 确定了三个异常值(主要是同源二聚体),对于它们与异源二聚体相比结合能力受损,我们没有明确的解释,而对于其余配体,计算出的 Δ'与实验 Δ'之间的相关性为 = 0.7 非常令人鼓舞。

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