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Plant Physiology|April 21, 2009
Large-scale Arabidopsis phosphoproteome profiling reveals novel chloroplast kinase substrates and phosphorylation networksSonja Reiland, Gaëlle Messerli, Katja Baerenfaller, et al.Plant Physiology|December 26, 2006
Proteome dynamics during plastid differentiation in riceTorsten Kleffmann, Anne von Zychlinski, Doris Russenberger, et al.Journal of Proteome Research|December 4, 2012
Construction of plastid reference proteomes for maize and Arabidopsis and evaluation of their orthologous relationships; the concept of orthoproteomicsMingshu Huang, Giulia Friso, Kenji Nishimura, et al.Plos One|October 9, 2014
The peptide microarray "ChloroPhos1.0" identifies new phosphorylation targets of plastid casein kinase II (pCKII) in Arabidopsis thalianaAnna Schönberg, Elena Bergner, Stefan Helm, et al.Plant Physiology|November 16, 2010
MASCP Gator: an aggregation portal for the visualization of Arabidopsis proteomics dataHiren J Joshi, Matthias Hirsch-Hoffmann, Katja Baerenfaller, et al.Methods (San Diego, Calif.)|August 5, 2008
Immobilization of the first dimension in 2D blue native/SDS-PAGE allows the relative quantification of membrane proteomesMirjam Klepsch, Susan Schlegel, David Wickström, et al.Plant Physiology|November 9, 2011
Nucleoid-enriched proteomes in developing plastids and chloroplasts from maize leaves: a new conceptual framework for nucleoid functionsWojciech Majeran, Giulia Friso, Yukari Asakura, et al.The Journal of Biological Chemistry|October 7, 2010
Consequences of depletion of the signal recognition particle in Escherichia coliDavid Wickström, Samuel Wagner, Louise Baars, et al.Analytical Chemistry|November 16, 2005
NovoHMM: a hidden Markov model for de novo peptide sequencingBernd Fischer, Volker Roth, Franz Roos, et al.Plant Molecular Biology|July 10, 2012
The purification of the Chlamydomonas reinhardtii chloroplast ClpP complex: additional subunits and structural featuresBenoît Derrien, Wojciech Majeran, Grégory Effantin, et al.Pageof 18