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Journal of Proteomics|July 22, 2017
A mass spectrometry-based proteomic analysis of Homer2-interacting proteins in the mouse brainScott P Goulding, Karen K Szumlinski, Candice Contet, et al.Chemico-Biological Interactions|November 6, 2012
Proteomic analysis of adducted butyrylcholinesterase for biomonitoring organophosphorus exposuresJudit Marsillach, Edward J Hsieh, Rebecca J Richter, et al.Molecular Cell|November 13, 2010
An E3 ubiquitin ligase prevents ectopic localization of the centromeric histone H3 variant via the centromere targeting domainPrerana Ranjitkar, Maximilian O Press, Xianhua Yi, et al.Nature Methods|June 16, 2025
Assessment of false discovery rate control in tandem mass spectrometry analysis using entrapmentBo Wen, Jack Freestone, Michael Riffle, et al.Proteomics|May 12, 2012
The development of selected reaction monitoring methods for targeted proteomics via empirical refinementMichael S Bereman, Brendan MacLean, Daniela M Tomazela, et al.Journal of Proteome Research|October 21, 2016
Model System-Guided Protein Interaction Mapping for Virus Isolated from Phloem TissueStacy L DeBlasio, Richard S Johnson, Michael J MacCoss, et al.Nature|September 12, 2006
Molecular architecture and assembly of the DDB1-CUL4A ubiquitin ligase machineryStephane Angers, Ti Li, Xianhua Yi, et al.Biorxiv : the Preprint Server for Biology|June 19, 2024
Assessment of false discovery rate control in tandem mass spectrometry analysis using entrapmentBo Wen, Jack Freestone, Michael Riffle, et al.Journal of Proteome Research|May 29, 2008
Rapid and accurate peptide identification from tandem mass spectraChristopher Y Park, Aaron A Klammer, Lukas Käll, et al.Journal of the American Society for Mass Spectrometry|December 1, 2012
Effects of column and gradient lengths on peak capacity and peptide identification in nanoflow LC-MS/MS of complex proteomic samplesEdward J Hsieh, Michael S Bereman, Stanley Durand, et al.Pageof 32