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通过合理设计的单点突变研究 STING 结合位点的蛋白-配体相互作用:实验与理论。

Protein-Ligand Interactions in the STING Binding Site Probed by Rationally Designed Single-Point Mutations: Experiment and Theory.

机构信息

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo náměstí 2, Prague 16610, Czech Republic.

Department of Biochemistry, Faculty of Science, Charles University, Prague 110 00, Czech Republic.

出版信息

Biochemistry. 2021 Mar 2;60(8):607-620. doi: 10.1021/acs.biochem.0c00949. Epub 2021 Feb 15.

Abstract

STING protein (stimulator of interferon genes) plays an important role in the innate immune system. A number of potent compounds regulating its activity have been reported, mostly derivatives of cyclic dinucleotides (CDNs), natural STING agonists. Here, we aim to provide complementary information to large-scale "ligand-profiling" studies by probing the importance of STING-CDN protein-ligand interactions on the protein side. We examined in detail six typical CDNs each in complex with 13 rationally devised mutations in STING: S162A, S162T, Y167F, G230A, R232K, R232H, A233L, A233I, R238K, T263A, T263S, R293Q, and G230A/R293Q. The mutations switch on and off various types of protein-ligand interactions: π-π stacking, hydrogen bonding, ionic pairing, and nonpolar contacts. We correlated experimental data obtained by differential scanning fluorimetry, X-ray crystallography, and isothermal titration calorimetry with theoretical calculations. This enabled us to provide a mechanistic interpretation of the differences in the binding of representative CDNs to STING. We observed that the G230A mutation increased the thermal stability of the protein-ligand complex, indicating an increased level of ligand binding, whereas R238K and Y167F led to a complete loss of stabilization (ligand binding). The effects of the other mutations depended on the type of ligand (CDN) and varied, to some extent. A very good correlation ( = 0.6) between the experimental binding affinities and interaction energies computed by quantum chemical methods enabled us to explain the effect of the studied mutations in detail and evaluate specific interactions quantitatively. Our work may inspire development of high-affinity ligands against the common STING haplotypes by targeting the key (sometimes non-intuitive) protein-ligand interactions.

摘要

STING 蛋白(干扰素基因刺激蛋白)在先天免疫系统中发挥着重要作用。已经报道了许多能够调节其活性的有效化合物,这些化合物大多是环状二核苷酸(CDN)的衍生物,是天然的 STING 激动剂。在这里,我们旨在通过探测 STING-CDN 蛋白-配体相互作用在蛋白质方面的重要性,为大规模的“配体分析”研究提供补充信息。我们详细研究了六种典型的 CDN 与 STING 中 13 个合理设计的突变体的复合物:S162A、S162T、Y167F、G230A、R232K、R232H、A233L、A233I、R238K、T263A、T263S、R293Q 和 G230A/R293Q。这些突变会打开或关闭各种类型的蛋白-配体相互作用:π-π 堆积、氢键、离子配对和非极性接触。我们将通过差示扫描荧光法、X 射线晶体学和等温滴定量热法获得的实验数据与理论计算相关联。这使我们能够对代表性 CDN 与 STING 结合的差异提供一种机制解释。我们观察到,G230A 突变增加了蛋白-配体复合物的热稳定性,表明配体结合水平增加,而 R238K 和 Y167F 则导致完全失去稳定性(配体结合)。其他突变的影响取决于配体(CDN)的类型,并在一定程度上有所不同。实验结合亲和力与量子化学方法计算的相互作用能之间非常好的相关性( = 0.6)使我们能够详细解释所研究突变的影响,并对特定相互作用进行定量评估。我们的工作可能会激发针对常见 STING 单倍型的高亲和力配体的开发,其目标是关键(有时是非直观的)蛋白-配体相互作用。

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