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Methods in Molecular Biology (Clifton, N.J.)|March 29, 2019
Proteomic Analysis of the β-Arrestin InteractomesYang Zhao, Kunhong XiaoMethods in Molecular Biology (Clifton, N.J.)|March 29, 2019
A Mass Spectrometry-Based Structural Assay for Activation-Dependent Conformational Changes in β-ArrestinsYang Zhao, Kunhong XiaoCellular Signalling|September 24, 2017
Elucidating structural and molecular mechanisms of β-arrestin-biased agonism at GPCRs via MS-based proteomicsKunhong Xiao, Jinpeng SunThe Journal of Biological Chemistry|February 19, 2011
Beta2-adrenergic receptor lysosomal trafficking is regulated by ubiquitination of lysyl residues in two distinct receptor domainsKunhong Xiao, Sudha K ShenoyJournal of Receptor and Signal Transduction Research|October 14, 2015
The power of mass spectrometry in structural characterization of GPCR signalingKunhong Xiao, Jeannie Chung, Alissa WallCommunicative & Integrative Biology|November 3, 2011
A tale of two sites: How ubiquitination of a G protein-coupled receptor is coupled to its lysosomal trafficking from distinct receptor domainsSubhodeep Sarker, Kunhong Xiao, Sudha K ShenoyTrends in Biochemical Sciences|July 19, 2011
Emerging paradigms of β-arrestin-dependent seven transmembrane receptor signalingArun K Shukla, Kunhong Xiao, Robert J LefkowitzProteomics. Clinical Applications|January 31, 2020
Quantitative Proteomics for Monitoring Renal Transplant InjuryLei Song, Fei Fang, Peng Liu, et al.Analytical Chemistry|May 15, 2019
Parallel Post-Translational Modification Scanning Enhancing Hydrogen-Deuterium Exchange-Mass Spectrometry Coverage of Key Structural RegionsHongda Liu, Dawei Wang, Qiangmin Zhang, et al.Proceedings of the National Academy of Sciences of the United States of America|July 11, 2007
Functional specialization of beta-arrestin interactions revealed by proteomic analysisKunhong Xiao, Daniel B McClatchy, Arun K Shukla, et al.Pageof 544