AbstractΔ98Δ is a functional all-β sheet variant of intestinal fatty acid binding protein (IFABP) that was generated by controlled proteolysis. This framework is useful to study the molecular determinants related to aggregation of β-barrel proteins. Albeit displaying increased conformational plasticity, Δ98Δ exhibits a nativelike β-barrel topology and is able to support a cooperative folding behavior. Here we present a comparative study of IFABP and Δ98Δ regarding their conformational perturbation and aggregation propensity triggered by trifluoroethanol. Both proteins share a common nucleation-elongation mechanism, whereby the rate-limiting step is the formation of stable dimeric nuclei followed by the association of monomers to the growing...
The conversion of proteins into structured fibrillar aggregates is a central problem in protein chem...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
AbstractDespite genetic variation has the potential to arise new protein functions, spontaneous muta...
Δ98Δ is a functional all-β sheet variant of intestinal fatty acid binding protein (IFABP) that was g...
A clear understanding of the structural foundations underlying protein aggregation is an elusive goa...
<div><p>A clear understanding of the structural foundations underlying protein aggregation is an elu...
A lingering issue in the area of protein engineering is the optimal design of beta motifs. In this r...
Natural β-folds manage to fold up successfully. By contrast, attempts to dissect fragments or peptid...
AbstractA mutant of a β-barrel protein, rat intestinal fatty acid binding protein, was predicted to ...
SummaryProtein folding and aggregation inevitably compete with one another. This competition is even...
Δ78Δ is a second generation functional all-β sheet variant of IFABP (intestinal fatty acid binding p...
Despite much progress in understanding the folding and the aggregation processes of proteins, the ru...
Intestinal fatty acid binding protein (IFABP) is an intracellular lipid binding protein whose specif...
An increasing number of diseases are associated with protein misfolding, one type of which results i...
The native state of human muscle acylphosphatase (AcP) presents two alpha-helices. In this study we ...
The conversion of proteins into structured fibrillar aggregates is a central problem in protein chem...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
AbstractDespite genetic variation has the potential to arise new protein functions, spontaneous muta...
Δ98Δ is a functional all-β sheet variant of intestinal fatty acid binding protein (IFABP) that was g...
A clear understanding of the structural foundations underlying protein aggregation is an elusive goa...
<div><p>A clear understanding of the structural foundations underlying protein aggregation is an elu...
A lingering issue in the area of protein engineering is the optimal design of beta motifs. In this r...
Natural β-folds manage to fold up successfully. By contrast, attempts to dissect fragments or peptid...
AbstractA mutant of a β-barrel protein, rat intestinal fatty acid binding protein, was predicted to ...
SummaryProtein folding and aggregation inevitably compete with one another. This competition is even...
Δ78Δ is a second generation functional all-β sheet variant of IFABP (intestinal fatty acid binding p...
Despite much progress in understanding the folding and the aggregation processes of proteins, the ru...
Intestinal fatty acid binding protein (IFABP) is an intracellular lipid binding protein whose specif...
An increasing number of diseases are associated with protein misfolding, one type of which results i...
The native state of human muscle acylphosphatase (AcP) presents two alpha-helices. In this study we ...
The conversion of proteins into structured fibrillar aggregates is a central problem in protein chem...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
AbstractDespite genetic variation has the potential to arise new protein functions, spontaneous muta...