| Literature DB >> 36271004 |
Xiuwen Zhai1, Chunyou Mao2,3, Qingya Shen4, Shaokun Zang5, Dan-Dan Shen5, Huibing Zhang5, Zhaohong Chen1, Gang Wang1, Changming Zhang1, Yan Zhang6,7,8,9,10, Zhihong Liu11,12.
Abstract
The parathyroid hormone type 1 receptor (PTH1R), a class B1 G protein-coupled receptor, plays critical roles in bone turnover and Ca2+ homeostasis. Teriparatide (PTH) and Abaloparatide (ABL) are terms as long-acting and short-acting peptide, respectively, regarding their marked duration distinctions of the downstream signaling. However, the mechanistic details remain obscure. Here, we report the cryo-electron microscopy structures of PTH- and ABL-bound PTH1R-Gs complexes, adapting similar overall conformations yet with notable differences in the receptor ECD regions and the peptide C-terminal portions. 3D variability analysis and site-directed mutagenesis studies uncovered that PTH-bound PTH1R-Gs complexes display less motions and are more tolerant of mutations in affecting the receptor signaling than ABL-bound complexes. Furthermore, we combined the structural analysis and signaling assays to delineate the molecular basis of the differential signaling durations induced by these peptides. Our study deepens the mechanistic understanding of ligand-mediated prolonged or transient signaling.Entities:
Year: 2022 PMID: 36271004 DOI: 10.1038/s41467-022-34009-x
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 17.694