PLANT PHYSIOLOGY · 1992 · 63 citations · 12 references
Plant PhysiologyEngineeringBotanyMolecular BiologyPlant Molecular BiologyBiosynthesisPosition 14Posttranslational ModificationsLimited Tryptic ProteolysisPlant BiologyBiochemistryAmino- Terminal RegionProtein BiosynthesisPlant MetabolismLarge SubunitCellular EnzymologyNatural SciencesMicrobiologyN-terminal Tryptic PeptidePlant Biochemistry
A combination of limited tryptic proteolysis, reverse phasehigh performance liquid chromatography, Edman degradative sequencing, amino acid analysis, and fast-atom bombardment mass-spectrometry was used to remove and identify the first 14 to 18 N-terminal amino acid residues of the large subunit of higher plant-type ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) from Chlamydomonas reinhardtii, Marchantia polymorpha, pea (Pisum sativum), tomato (Lycopersicon esculentum), potato (Solanum tuberosum), pepper (Capsicum annuum), soybean (Glycine max), petunia (Petunia x hybrida), cowpea (Vigna sinensis), and cucumber (Cucumis sativus) plants. The N-terminal tryptic peptide from acetylated Pro-3 to Lys-8 of the large subunit of Rubisco was identical in all species, but the amino acid sequence of the penultimate N-terminal tryptic peptide varied. Eight of the 10 species examined contained a trimethyllysyl residue at position 14 in the large subunit of Rubisco, whereas Chlamydomonas and Marchantia contained an unmodified lysyl residue at this position.
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Richard S. Johnson, Stephen A. Martin, K. Biemann et al. · Analytical Chemistry · 1987 · 441 citations
Engineering, Biological Mass Spectrometry, Collision-induced Decomposition +22
Michel Dron, Michèle Rahire, J.-D. Rochaix · Journal of Molecular Biology · 1982 · 255 citations