Optimizing Cryo-EM Structural Analysis of Gi-coupling Receptors via Engineered Gt and Nb35 Application
Oshima, H. S.; Sano, F. K.; Akasaka, H.; Iwama, A.; Shihoya, W.; Nureki, O.
Show abstract
Cryo-EM single particle analysis has recently facilitated the high-resolution structural determination of numerous GPCR-G complexes. Diverse methodologies have been devised with this trend, and in the case of GPCR-Gi complexes, scFv16, an antibody that recognizes the intricate interface of the complex, has been mainly implemented to stabilize the complex. However, owing to their flexibility and heterogeneity, structural determinations of GPCR-Gi complexes remain both challenging and resource-intensive. By employing eGt, which exhibits binding affinity to modified nanobody Nb35, the cryo-EM structure of Rhodopsin-eGt complex was previously reported. Using this modified G protein, we determined the structure of the ETB-eGt complex bound to the modified Nb35. The determined structure of ETB receptor was the same as the previously reported ETB-Gi complex, and the resulting dataset demonstrated significantly improved anisotropy. This modified G protein will be utilized for the structural determination of other GPCR-Gi complexes. HighlightsO_LIThe study introduces the engineered G protein subunit eGT, which enhances the resolution of GPCR-G protein structures by suppressing G protein conformational fluctuations and is particularly beneficial for Gi-coupled receptors. C_LIO_LIThe cryo-EM structure of the ETB receptor complexed with eGt-Nb35 reveals improved map quality, reduced anisotropy, and isotropic density distribution, increasing the accuracy of structural analysis. C_LIO_LIStructural comparison between ETB-Gi and ETB-eGt reveals similar receptor-G protein interactions, demonstrating the utility of eGt-Nb35 for studying GPCR-Gi complexes and the potential for broader applications within the Gi family. C_LI
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Evolving cryo-EM structural approaches for GPCR drug discovery 97%
- Structure of mechanically activated ion channel OSCA2.3 reveals mobile elements in the transmembrane domain 96%
- DomainFit: Identification of Protein Domains in cryo-EM maps at Intermediate Resolution using AlphaFold2-predicted Models 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.