AbstractIn all eukaryotes N-glycosylation is the most prevalent protein modification of secretory and membrane proteins. Although the N-glycosylation capacity and the individual steps of the N-glycan processing pathway have been well studied in the model plant Arabidopsis thaliana, little attention has been paid to the characterization of the glycosylation status of individual proteins. We report here the structural analysis of all N-glycans present on the endogenous thioglucoside glucohydrolases (myrosinases) TGG1 and TGG2 from A. thaliana. All nine glycosylation sites of TGG1 and all four glycosylation sites of TGG2 are occupied by oligomannosidic structures with Man5GlcNAc2 as the major glycoform. Analysis of the oligomannosidic isomers ...
International audienceThe processing of N-linked oligosaccharides in the secretory pathway requires ...
International audienceThe processing of N-linked oligosaccharides in the secretory pathway requires ...
N-glycosylation is a highly abundant protein modification present in all domains of life. Terminal s...
AbstractIn all eukaryotes N-glycosylation is the most prevalent protein modification of secretory an...
N-glycosylation is an essential protein modification that plays roles in many diverse biological pro...
In this thesis we set out to increase our knowledge of N-glycosylation in plants with a dual aim: (1...
In this thesis we set out to increase our knowledge of N-glycosylation in plants with a dual aim: (1...
N-glycosylation is a highly abundant protein modification present in all domains of life. Terminal s...
N-glycosylation is one of the most common protein post-translational modifications in eukaryotes and...
Glycosylation substantially contributes to the physicochemical properties of proteins, and hence als...
Glycosylation substantially contributes to the physicochemical properties of proteins, and hence als...
Glycosylation substantially contributes to the physicochemical properties of proteins, and hence als...
Glycosylation is a fundamental co-translational and/or post-translational modification process where...
At present, only little is known about the enzymatic machinery required for N-glycosylation in Chlam...
The N-linked glycosylation of secretory and membrane proteins is the most complex posttranslational ...
International audienceThe processing of N-linked oligosaccharides in the secretory pathway requires ...
International audienceThe processing of N-linked oligosaccharides in the secretory pathway requires ...
N-glycosylation is a highly abundant protein modification present in all domains of life. Terminal s...
AbstractIn all eukaryotes N-glycosylation is the most prevalent protein modification of secretory an...
N-glycosylation is an essential protein modification that plays roles in many diverse biological pro...
In this thesis we set out to increase our knowledge of N-glycosylation in plants with a dual aim: (1...
In this thesis we set out to increase our knowledge of N-glycosylation in plants with a dual aim: (1...
N-glycosylation is a highly abundant protein modification present in all domains of life. Terminal s...
N-glycosylation is one of the most common protein post-translational modifications in eukaryotes and...
Glycosylation substantially contributes to the physicochemical properties of proteins, and hence als...
Glycosylation substantially contributes to the physicochemical properties of proteins, and hence als...
Glycosylation substantially contributes to the physicochemical properties of proteins, and hence als...
Glycosylation is a fundamental co-translational and/or post-translational modification process where...
At present, only little is known about the enzymatic machinery required for N-glycosylation in Chlam...
The N-linked glycosylation of secretory and membrane proteins is the most complex posttranslational ...
International audienceThe processing of N-linked oligosaccharides in the secretory pathway requires ...
International audienceThe processing of N-linked oligosaccharides in the secretory pathway requires ...
N-glycosylation is a highly abundant protein modification present in all domains of life. Terminal s...