AbstractMaltose binding protein (MBP) exhibits a slow phase of folding at pH 7.4, 298 K. The kinetics of this phase has been characterized as a function of denaturant concentration and temperature. Denaturant double-jump experiments and the activation energy for folding indicate that the slow phase involves processes other than proline isomerization. Although the first five N-terminal residues are disordered in the MBP crystal structure, mutations in this region slow down folding and destabilize the native structure. This is the first report showing that disordered N-terminal residues can affect folding kinetics and stability
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...
Maltose binding protein (MBP) is a large, monomeric two domain protein containing 370 amino acids. I...
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...
Maltose binding protein (MBP) exhibits a slow phase of folding at pH 7.4, 298 K. The kinetics of thi...
AbstractMaltose binding protein (MBP) exhibits a slow phase of folding at pH 7.4, 298 K. The kinetic...
While the role of the signal sequence in targeting proteins to specific subcellular compartments is ...
While the role of the signal sequence in targeting proteins to specific subcellular compartments is ...
While the role of the signal sequence in targeting proteins to specific subcellular compartments is ...
The folding and stability of maltose binding protein (MBP) have been investigated as a function of p...
The folding and stability of maltose binding protein (MBP) have been investigated as a function of p...
The folding and stability of maltose binding protein (MBP) have been investigated as a function of p...
Maltose binding protein (MBP) is a large, monomeric two domain protein containing 370 amino acids. I...
Maltose binding protein (MBP) is a large, monomeric two domain protein containing 370 amino acids. I...
Non-optimal codons are generally characterised by a low concentration of isoaccepting tRNA and a slo...
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...
Maltose binding protein (MBP) is a large, monomeric two domain protein containing 370 amino acids. I...
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...
Maltose binding protein (MBP) exhibits a slow phase of folding at pH 7.4, 298 K. The kinetics of thi...
AbstractMaltose binding protein (MBP) exhibits a slow phase of folding at pH 7.4, 298 K. The kinetic...
While the role of the signal sequence in targeting proteins to specific subcellular compartments is ...
While the role of the signal sequence in targeting proteins to specific subcellular compartments is ...
While the role of the signal sequence in targeting proteins to specific subcellular compartments is ...
The folding and stability of maltose binding protein (MBP) have been investigated as a function of p...
The folding and stability of maltose binding protein (MBP) have been investigated as a function of p...
The folding and stability of maltose binding protein (MBP) have been investigated as a function of p...
Maltose binding protein (MBP) is a large, monomeric two domain protein containing 370 amino acids. I...
Maltose binding protein (MBP) is a large, monomeric two domain protein containing 370 amino acids. I...
Non-optimal codons are generally characterised by a low concentration of isoaccepting tRNA and a slo...
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...
Maltose binding protein (MBP) is a large, monomeric two domain protein containing 370 amino acids. I...
International audienceBeing able to differentiate local fluctuations from global folding−unfolding d...