AbstractThe unfolded ensemble in aqueous solution represents the starting point of protein folding. Characterisation of this species is often difficult since the native state is usually predominantly populated at equilibrium. Previous work has shown that the four-helix protein, Im7 (immunity protein 7), folds via an on-pathway intermediate. While the transition states and folding intermediate have been characterised in atomistic detail, knowledge of the unfolded ensemble under the same ambient conditions remained sparse. Here, we introduce destabilising amino acid substitutions into the sequence of Im7, such that the unfolded state becomes predominantly populated at equilibrium in the absence of denaturant. Using far- and near-UV CD, fluore...
We present a detailed structural characterization of the intermediate state populated during the fol...
AbstractDevelopment of a tightly packed hydrophobic core drives the folding of water-soluble globula...
Proteins are marginally stable molecules that fluctuate between folded and unfolded states. Here, we...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
AbstractThe unfolded ensemble in aqueous solution represents the starting point of protein folding. ...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
AbstractUnder appropriate conditions, the four-helical Im7 (immunity protein 7) folds from an ensemb...
AbstractPrevious work shows that the transiently populated, on-pathway intermediate in Im7 folding c...
Im7 folds via an on-pathway intermediate that contains three of the four native α-helices. The missi...
Proteins are marginally stable molecules that fluctuate between folded and unfolded states. Here, we...
AbstractDevelopment of a tightly packed hydrophobic core drives the folding of water-soluble globula...
We present a detailed structural characterization of the intermediate state populated during the fol...
We present a detailed structural characterization of the intermediate state populated during the fol...
AbstractDevelopment of a tightly packed hydrophobic core drives the folding of water-soluble globula...
Proteins are marginally stable molecules that fluctuate between folded and unfolded states. Here, we...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
AbstractThe unfolded ensemble in aqueous solution represents the starting point of protein folding. ...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
The unfolded ensemble in aqueous solution represents the starting point of protein folding. Characte...
AbstractUnder appropriate conditions, the four-helical Im7 (immunity protein 7) folds from an ensemb...
AbstractPrevious work shows that the transiently populated, on-pathway intermediate in Im7 folding c...
Im7 folds via an on-pathway intermediate that contains three of the four native α-helices. The missi...
Proteins are marginally stable molecules that fluctuate between folded and unfolded states. Here, we...
AbstractDevelopment of a tightly packed hydrophobic core drives the folding of water-soluble globula...
We present a detailed structural characterization of the intermediate state populated during the fol...
We present a detailed structural characterization of the intermediate state populated during the fol...
AbstractDevelopment of a tightly packed hydrophobic core drives the folding of water-soluble globula...
Proteins are marginally stable molecules that fluctuate between folded and unfolded states. Here, we...