La déamidation des protéines est un thème de grand intérêt qui a été le sujet de nombreuses études théoriques et expérimentales. La déamidation est un processus non-enzymatique et spontané qui convertit les résidus asparagines dans les protéines en acides aspartiques. Le changement de charge aboutit à des changements temporels de conformation dans les protéines et a été associé à la dégradation des protéines et au phénomène de vieillissement. Dans ce manuscrit, certains aspects mécanistiques de ce processus ont été étudiés et de nombreuses mises à jour ont été obtenues sur les mécanismes potentiels amenant à la déamidation. Ces mécanismes et leurs énergies sont présentés en détail. Une autre destinée possible des résidus asparagines, la cou...
Deamidation is the posttranslational modification of asparagine (Asn) and glutamine (Glu) residues, ...
Nonenzymatic peptide bond cleavage at asparagine (Asn) and glutamine (Gln) residues has been observe...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
La déamidation des protéines est un thème de grand intérêt qui a été le sujet de nombreuses études t...
Deamidation of proteins is a topic of wide interest that has been subject to experimental and theore...
Deamidation of proteins is a topic of wide interest that has been subject to experimental and theore...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Deamidation of asparaginyl and glutaminyl residues causes time-dependent changes in charge and confo...
<p>(Step 1): the nitrogen of the Asn+1 residue (a Gly in the example) attacks the β-carbonyl carbon ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Nonenzymatic peptide bond cleavage at asparagine (Asn) and glutamine (Gln) residues has been observe...
Deamidation is the posttranslational modification of asparagine (Asn) and glutamine (Glu) residues, ...
Deamidation is the posttranslational modification of asparagine (Asn) and glutamine (Glu) residues, ...
Nonenzymatic peptide bond cleavage at asparagine (Asn) and glutamine (Gln) residues has been observe...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
La déamidation des protéines est un thème de grand intérêt qui a été le sujet de nombreuses études t...
Deamidation of proteins is a topic of wide interest that has been subject to experimental and theore...
Deamidation of proteins is a topic of wide interest that has been subject to experimental and theore...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Deamidation of asparaginyl and glutaminyl residues causes time-dependent changes in charge and confo...
<p>(Step 1): the nitrogen of the Asn+1 residue (a Gly in the example) attacks the β-carbonyl carbon ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Nonenzymatic peptide bond cleavage at asparagine (Asn) and glutamine (Gln) residues has been observe...
Deamidation is the posttranslational modification of asparagine (Asn) and glutamine (Glu) residues, ...
Deamidation is the posttranslational modification of asparagine (Asn) and glutamine (Glu) residues, ...
Nonenzymatic peptide bond cleavage at asparagine (Asn) and glutamine (Gln) residues has been observe...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...