Publikation: Crystal structure of rhodopsin bound to arrestin by femtosecond X-ray laser
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G-protein-coupled receptors (GPCRs) signal primarily through G proteins or arrestins. Arrestin binding to GPCRs blocks G protein interaction and redirects signalling to numerous G-protein-independent pathways. Here we report the crystal structure of a constitutively active form of human rhodopsin bound to a pre-activated form of the mouse visual arrestin, determined by serial femtosecond X-ray laser crystallography. Together with extensive biochemical and mutagenesis data, the structure reveals an overall architecture of the rhodopsin–arrestin assembly in which rhodopsin uses distinct structural elements, including transmembrane helix 7 and helix 8, to recruit arrestin. Correspondingly, arrestin adopts the pre-activated conformation, with a ~20° rotation between the amino and carboxy domains, which opens up a cleft in arrestin to accommodate a short helix formed by the second intracellular loop of rhodopsin. This structure provides a basis for understanding GPCR-mediated arrestin-biased signalling and demonstrates the power of X-ray lasers for advancing the frontiers of structural biology.
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KANG, Yanyong, X. Edward ZHOU, Xiang GAO, Yuanzheng HE, Kay DIEDERICHS, Eric H. XU, 2015. Crystal structure of rhodopsin bound to arrestin by femtosecond X-ray laser. In: Nature. 2015, 523(7562), pp. 561-567. ISSN 0028-0836. eISSN 1476-4687. Available under: doi: 10.1038/nature14656BibTex
@article{Kang2015Cryst-31788, year={2015}, doi={10.1038/nature14656}, title={Crystal structure of rhodopsin bound to arrestin by femtosecond X-ray laser}, number={7562}, volume={523}, issn={0028-0836}, journal={Nature}, pages={561--567}, author={Kang, Yanyong and Zhou, X. Edward and Gao, Xiang and He, Yuanzheng and Diederichs, Kay and Xu, Eric H.} }
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