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Plant Physiology|January 22, 2010
Reconstruction of metabolic pathways, protein expression, and homeostasis machineries across maize bundle sheath and mesophyll chloroplasts: large-scale quantitative proteomics using the first maize genome assemblyGiulia Friso, Wojciech Majeran, Mingshu Huang, et al.IEEE Transactions on Visualization and Computer Graphics|September 22, 2015
Visualization, Selection, and Analysis of Traffic FlowsRoeland Scheepens, Christophe Hurter, Huub van de Wetering, et al.IEEE Transactions on Visualization and Computer Graphics|September 11, 2015
Dynamic Network Visualization withExtended Massive Sequence ViewsStef van den Elzen, Danny Holten, Jorik Blaas, et al.The New Phytologist|September 30, 2014
The Clp protease system is required for copper ion-dependent turnover of the PAA2/HMA8 copper transporter in chloroplastsWiebke Tapken, Jitae Kim, Kenji Nishimura, et al.Paediatric Anaesthesia|December 9, 2021
Validation of a new combined transcutaneous tcPCO<sub>2</sub> and tcPO<sub>2</sub> sensor in children in the operating theaterJan J van Wijk, Willem van Weteringen, Sanne E Hoeks, et al.Plant Physiology|May 12, 2012
Chloroplast RH3 DEAD box RNA helicases in maize and Arabidopsis function in splicing of specific group II introns and affect chloroplast ribosome biogenesisYukari Asakura, Erin Galarneau, Kenneth P Watkins, et al.The Plant Cell|June 30, 2011
Subunit stoichiometry, evolution, and functional implications of an asymmetric plant plastid ClpP/R protease complex in ArabidopsisPaul Dominic B Olinares, Jitae Kim, Jerrold I Davis, et al.Plant Physiology|July 18, 2008
Quantitative proteomics of a chloroplast SRP54 sorting mutant and its genetic interactions with CLPC1 in ArabidopsisHeidi Rutschow, A Jimmy Ytterberg, Giulia Friso, et al.Biorxiv : the Preprint Server for Biology|February 6, 2026
Structural basis for dimerization, catalytic regulation, and substrate selectivity in S9D proteasesJacqueline J Ehrlich, Pratyush Routray, Louis Enns, et al.Cell|May 22, 2003
The pathogen-inducible nitric oxide synthase (iNOS) in plants is a variant of the P protein of the glycine decarboxylase complexMeena R Chandok, A Jimmy Ytterberg, Klaas J van Wijk, et al.Pageof 32