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[Preprint]. 2026 Jul 16:2026.07.10.737858. [Version 1] doi: 10.64898/2026.07.10.737858

Ultrafast X-Rays Capture Retinal Traversing Conical Intersection in Rhodopsin

Thomas D Grant, Suchithranga MDC Perera, Leslie A Salas-Estrada, C Swathi K Menon, Andrey V Struts, Xiaolin Xu, Steven D E Fried, Nipuna Weerasinghe, Udeep Chawla, Roberto Alvarez, Hao Hu, Konstantinos Karpos, Stella Lisova, Reza Nazari, Sahba Zaare, Jesse Coe, Raimund Fromme, Domingo Meza, Abhishek Singharoy, Sarah R Chamberlain, Stephen Moore, Nadia A Zatsepin, Fivos Perakis, Sergio Carbajo, Mark S Hunter, Mengning Liang, Matthew D Seaberg, Sébastien Boutet, Derek Mendez, Alan Grossfield, Petra Fromme, Richard A Kirian, Michael F Brown
PMCID: PMC13405271  PMID: 42523401

Abstract

G-protein-coupled receptors of the Rhodopsin family are crucial medicinal targets, transmitting signals across biomembranes. While light absorption by visual rhodopsin is well studied, its activation via retinal cofactor dynamics remains unclear. Here we use a free-electron laser to show that time-resolved X-ray solution scattering captures the retinal cis–trans isomerization as it passes the conical intersection of excited and ground-state photoproduct energy surfaces. Femtosecond-scale nuclear changes occur due to resonant photon absorption, with all-atom simulations revealing ultrafast amino acid movements that initiate transmembrane helix shifts. Ligand-free opsin measurements confirm that light activation is unaffected by non-resonant processes, showing the photonic energy is directly transmitted within the protein. Our method unveils how cofactor dynamics activate rhodopsin, free of constraints from crystal lattice packing or cryotrapping photointermediates.

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