Laboratory of Biomolecular Research, Division of Biology and Chemistry, Paul Scherrer Institute, 5232, Villigen PSI, Switzerland.
Sci Rep. 2023 Jun 22;13(1):10159. doi: 10.1038/s41598-023-36855-1.
Structure elucidation of inactive-state GPCRs still mostly relies on X-ray crystallography. The major goal of our work was to create a new GPCR tool that would provide receptor stability and additional soluble surface for crystallization. Towards this aim, we selected the two-stranded antiparallel coiled coil as a domain fold that satisfies both criteria. A selection of antiparallel coiled coils was used for structure-guided substitution of intracellular loop 3 of the β3 adrenergic receptor. Unexpectedly, only the two GPCR variants containing thermostable coiled coils were expressed. We showed that one GPCR chimera is stable upon purification in detergent, retains ligand-binding properties, and can be crystallized. However, the quality of the crystals was not suitable for structure determination. By using two other examples, 5HTR2C and α2BAR, we demonstrate that our approach is generally suitable for the stabilization of GPCRs. To provide additional surface for promoting crystal contacts, we replaced in a structure-based approach the loop connecting the antiparallel coiled coil by T4L. We found that the engineered GPCR is even more stable than the coiled-coil variant. Negative-staining TEM revealed a homogeneous distribution of particles, indicating that coiled-coil-T4L receptor variants might also be promising candidate proteins for structure elucidation by cryo-EM. Our approach should be of interest for applications that benefit from stable GPCRs.
无活性状态 G 蛋白偶联受体的结构阐明仍然主要依赖于 X 射线晶体学。我们的主要目标是创建一种新的 G 蛋白偶联受体工具,该工具将提供受体稳定性和额外的可溶性表面以进行结晶。为此,我们选择了双链反平行卷曲螺旋作为满足这两个标准的结构域折叠。选择了一系列反平行卷曲螺旋用于结构引导的β3 肾上腺素能受体细胞内环 3 的取代。出乎意料的是,只有含有热稳定卷曲螺旋的两种 G 蛋白偶联受体变体被表达。我们表明,一种 G 蛋白偶联受体嵌合体在去污剂中纯化时是稳定的,保留配体结合特性,并可结晶。然而,晶体的质量不适合结构测定。通过使用另外两个例子 5HTR2C 和 α2BAR,我们证明我们的方法通常适用于 G 蛋白偶联受体的稳定化。为了提供用于促进晶体接触的额外表面,我们以基于结构的方法取代了连接反平行卷曲螺旋的环,用 T4L 取代。我们发现工程化的 G 蛋白偶联受体比卷曲螺旋变体更稳定。负染色 TEM 显示出颗粒的均匀分布,表明卷曲螺旋-T4L 受体变体也可能是冷冻电镜结构阐明的有前途的候选蛋白。我们的方法对于受益于稳定的 G 蛋白偶联受体的应用应该是有趣的。