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Plant Physiology|April 13, 2005
A systematic proteomic study of seed filling in soybean. Establishment of high-resolution two-dimensional reference maps, expression profiles, and an interactive proteome databaseMartin Hajduch, Ashwin Ganapathy, Joel W Stein, et al.Proteomics|March 18, 2011
Comparative proteomics of seed maturation in oilseeds reveals differences in intermediary metabolismMartin Hajduch, Radoslava Matusova, Norma L Houston, et al.Plant Physiology|July 5, 2008
In-depth investigation of the soybean seed-filling proteome and comparison with a parallel study of rapeseedGanesh Kumar Agrawal, Martin Hajduch, Katherine Graham, et al.Frontiers in Plant Science|August 20, 2014
In silico analysis of protein Lys-N(๐)-acetylation in plantsR Shyama Prasad Rao, Jay J Thelen, Jรกn A MiernykBMC Bioinformatics|November 26, 2013
Circles within circles: crosstalk between protein Ser/Thr/Tyr-phosphorylation and Met oxidationR Rao, Dong Xu, Jay J Thelen, et al.Nucleic Acids Research|October 22, 2008
P3DB: a plant protein phosphorylation databaseJianjiong Gao, Ganesh Kumar Agrawal, Jay J Thelen, et al.Molecular & Cellular Proteomics : MCP|August 13, 2010
Musite, a tool for global prediction of general and kinase-specific phosphorylation sitesJianjiong Gao, Jay J Thelen, A Keith Dunker, et al.Plant Physiology|March 24, 2012
Phosphoproteomic analysis of seed maturation in Arabidopsis, rapeseed, and soybeanLouis J Meyer, Jianjiong Gao, Dong Xu, et al.Journal of Proteome Research|July 20, 2011
The 14-3-3 isoforms chi and epsilon differentially bind client proteins from developing Arabidopsis seedKirby N Swatek, Katherine Graham, Ganesh K Agrawal, et al.Journal of Proteomics|December 4, 2008
Validation of gel-free, label-free quantitative proteomics approaches: applications for seed allergen profilingSeverin E Stevenson, Ye Chu, Peggy Ozias-Akins, et al.Pageof 19