As the simplest and most prevalent motif of protein folding, α-helix initiation is the starting point of macromolecular complexity. In this work, helix initiation was directly measured via ultrafast temperature-jump spectroscopy on the smallest possible helix nucleus for which only the first turn is formed. The rate’s dependence on sequence, length, and temperature reveals the fastest possible events in protein folding dynamics, and it was possible to separate the rate-limiting torsional (conformational) diffusion from the fast annealing of the helix. An analytic coarse-grained model for this process, which predicts the initiation rate as a function of temperature, confirms this picture. Moreover, the stipulations of the model were verified...
Experimental techniques have now reached the sub-microsecond timescale necessary to study fast event...
Nanosecond laser temperature jumps with tryptophan fluorescence detection and molecular dynamics sim...
The unfolding process of a helical heteropeptide is studied by computer simulation in explicit solve...
Experimental techniques have now reached the sub-microsecond timescale necessary to study fast event...
Helices are the “hydrogen atoms” of biomolecular complexity; the DNA/RNA double hairpin and protein ...
Determining the rate of forming the truly folded conformation of ultrafast folding proteins is an im...
An ultrafast laser temperature jump (T-jump) induces folding and unfolding of Wh5 (see picture), the...
Among the macromolecular patterns of biological significance, right-handed α-helices are perhaps the...
AbstractUnderstanding how proteins fold is one of the central problems in biochemistry. A new genera...
AbstractWe show that the five-helix bundle λ6–85 can be engineered and solvent-tuned to make the tra...
6 p.-5 fig.Protein (un)folding rates depend on the free-energy barrier separating the native and unf...
Proteins do not fold by randomly searching a large number of nearly degenerate configurations; inst...
The importance of protein folding simply stems from the fact that proteins assume well-defined three...
Protein (un)folding rates depend on the free-energy barrier separating the native and unfolded state...
Protein folding is one of the most fundamental problems in biophysics and structural biology. Despit...
Experimental techniques have now reached the sub-microsecond timescale necessary to study fast event...
Nanosecond laser temperature jumps with tryptophan fluorescence detection and molecular dynamics sim...
The unfolding process of a helical heteropeptide is studied by computer simulation in explicit solve...
Experimental techniques have now reached the sub-microsecond timescale necessary to study fast event...
Helices are the “hydrogen atoms” of biomolecular complexity; the DNA/RNA double hairpin and protein ...
Determining the rate of forming the truly folded conformation of ultrafast folding proteins is an im...
An ultrafast laser temperature jump (T-jump) induces folding and unfolding of Wh5 (see picture), the...
Among the macromolecular patterns of biological significance, right-handed α-helices are perhaps the...
AbstractUnderstanding how proteins fold is one of the central problems in biochemistry. A new genera...
AbstractWe show that the five-helix bundle λ6–85 can be engineered and solvent-tuned to make the tra...
6 p.-5 fig.Protein (un)folding rates depend on the free-energy barrier separating the native and unf...
Proteins do not fold by randomly searching a large number of nearly degenerate configurations; inst...
The importance of protein folding simply stems from the fact that proteins assume well-defined three...
Protein (un)folding rates depend on the free-energy barrier separating the native and unfolded state...
Protein folding is one of the most fundamental problems in biophysics and structural biology. Despit...
Experimental techniques have now reached the sub-microsecond timescale necessary to study fast event...
Nanosecond laser temperature jumps with tryptophan fluorescence detection and molecular dynamics sim...
The unfolding process of a helical heteropeptide is studied by computer simulation in explicit solve...