Quantum chemical calculations are reported to provide new insights on plausible mechanisms leading to the deamidation of asparagine residues in proteins and peptides. Direct hydrolysis to aspartic acid and several succinimide-mediated mechanisms have been described. The catalytic effect of water molecules has been explicitly analyzed. Calculations have been carried out at the density functional level (B3LYP/6-31+G**). Comparisons of free energy profiles show that the most favorable reaction mechanism goes through formation of a succinimide intermediate and involves tautomerization of the asparagine amide to the corresponding imidic acid as the initial reaction step. Another striking result is that direct water-assisted hydrolysis is competi...
The reaction mechanism for the hydrolysis of amide bonds is a much debated topic in literature. This...
<p>(Step 1): the nitrogen of the Asn+1 residue (a Gly in the example) attacks the β-carbonyl carbon ...
Aspartic acid (Asp) residues in peptides and proteins are prone to isomerization to the β-form and r...
Quantum chemical calculations are reported to provide new insights on plausible mechanisms leading t...
Quantum chemical calculations are reported to provide new insights on plausible mechanisms leading t...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Asparagine (Asn) residues spontaneously deamidate to form aspartate under physiological conditions, ...
Asparagine (Asn) residues spontaneously deamidate to form aspartate under physiological conditions, ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
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...
Nonenzymatic peptide bond cleavage at asparagine (Asn) and glutamine (Gln) residues has been observe...
The reaction mechanism for the hydrolysis of amide bonds is a much debated topic in literature. This...
<p>(Step 1): the nitrogen of the Asn+1 residue (a Gly in the example) attacks the β-carbonyl carbon ...
Aspartic acid (Asp) residues in peptides and proteins are prone to isomerization to the β-form and r...
Quantum chemical calculations are reported to provide new insights on plausible mechanisms leading t...
Quantum chemical calculations are reported to provide new insights on plausible mechanisms leading t...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Deamidation of proteins occurs spontaneously under physiological conditions. Asparaginyl (Asn) resid...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
Asparagine (Asn) residues spontaneously deamidate to form aspartate under physiological conditions, ...
Asparagine (Asn) residues spontaneously deamidate to form aspartate under physiological conditions, ...
Asparagine (Asn) residues spontaneously – yet non-enzymatically – deamidate to form aspartate under ...
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...
Nonenzymatic peptide bond cleavage at asparagine (Asn) and glutamine (Gln) residues has been observe...
The reaction mechanism for the hydrolysis of amide bonds is a much debated topic in literature. This...
<p>(Step 1): the nitrogen of the Asn+1 residue (a Gly in the example) attacks the β-carbonyl carbon ...
Aspartic acid (Asp) residues in peptides and proteins are prone to isomerization to the β-form and r...