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Nature Communications|June 4, 2013
Picornavirus uncoating intermediate captured in atomic detailJingshan Ren, Xiangxi Wang, Zhongyu Hu, et al.Nature Structural & Molecular Biology|March 6, 2012
A sensor-adaptor mechanism for enterovirus uncoating from structures of EV71Xiangxi Wang, Wei Peng, Jingshan Ren, et al.Nature Communications|April 28, 2017
Near-atomic structure of Japanese encephalitis virus reveals critical determinants of virulence and stabilityXiangxi Wang, Shi-Hua Li, Ling Zhu, et al.Acta Crystallographica. Section D, Biological Crystallography|April 25, 2012
In situ macromolecular crystallography using microbeamsDanny Axford, Robin L Owen, Jun Aishima, et al.Nature Communications|February 21, 2019
The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteinsKamel El Omari, Sai Li, Abhay Kotecha, et al.Nature Communications|August 9, 2018
Pathogen-derived HLA-E bound epitopes reveal broad primary anchor pocket tolerability and conformationally malleable peptide bindingLucy C Walters, Karl Harlos, Simon Brackenridge, et al.Science Advances|June 21, 2023
Accelerating drug target inhibitor discovery with a deep generative foundation modelVijil Chenthamarakshan, Samuel C Hoffman, C David Owen, et al.Nature Communications|November 14, 2018
Author Correction: Pathogen-derived HLA-E bound epitopes reveal broad primary anchor pocket tolerability and conformationally malleable peptide bindingLucy C Walters, Karl Harlos, Simon Brackenridge, et al.Acta Crystallographica. Section D, Biological Crystallography|June 3, 2005
A procedure for setting up high-throughput nanolitre crystallization experiments. Crystallization workflow for initial screening, automated storage, imaging and optimizationThomas S Walter, Jonathan M Diprose, Chris J Mayo, et al.Nature Methods|June 20, 2017
High-speed fixed-target serial virus crystallographyPhilip Roedig, Helen M Ginn, Tim Pakendorf, et al.Pageof 5