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Clinical Proteomics|September 26, 2018
Proteomic analysis identifies highly expressed plasma membrane proteins for detection and therapeutic targeting of specific breast cancer subtypesYvonne S Ziegler, James J Moresco, Patricia G Tu, et al.Biochemistry|June 8, 2017
Identification of Microprotein-Protein Interactions via APEX TaggingQian Chu, Annie Rathore, Jolene K Diedrich, et al.Nature Cell Biology|November 15, 2005
A role for the P-body component GW182 in microRNA functionJidong Liu, Fabiola V Rivas, James Wohlschlegel, et al.Journal of Proteome Research|October 1, 2008
Quantitative analysis of brain nuclear phosphoproteins identifies developmentally regulated phosphorylation eventsLujian Liao, Daniel B McClatchy, Sung Kyu Park, et al.RNA (New York, N.Y.)|August 9, 2002
One-step affinity purification of the yeast ribosome and its associated proteins and mRNAsToshifumi Inada, Eric Winstall, Salvador Z Tarun, et al.Nature Protocols|August 8, 2014
Ecto-Fc MS identifies ligand-receptor interactions through extracellular domain Fc fusion protein baits and shotgun proteomic analysisJeffrey N Savas, Joris De Wit, Davide Comoletti, et al.Plos One|July 17, 2014
Plasma membrane proteomics of human breast cancer cell lines identifies potential targets for breast cancer diagnosis and treatmentYvonne S Ziegler, James J Moresco, Patricia G Tu, et al.Plos One|May 14, 2013
Analysis of URI nuclear interaction with RPB5 and components of the R2TP/prefoldin-like complexPaolo Mita, Jeffrey N Savas, Susan Ha, et al.Nature|February 8, 2013
A two-step mechanism for TRF2-mediated chromosome-end protectionKeiji Okamoto, Cristina Bartocci, Iliana Ouzounov, et al.The Journal of Biological Chemistry|May 2, 2008
A conserved proliferating cell nuclear antigen-interacting protein sequence in Chk1 is required for checkpoint functionJennifer Scorah, Meng-Qiu Dong, John R Yates, et al.Pageof 160