AbstractThe folding mechanism of the N-terminal domain of ribosomal protein L9 (NTL91–39) is studied using temperature-jump (T-jump) amide I′ two-dimensional infrared (2D IR) spectroscopy in combination with spectral simulations based on a Markov state model (MSM) built from millisecond-long molecular dynamics trajectories. The results provide evidence for a compact well-structured folded state and a heterogeneous fast-exchanging denatured state ensemble exhibiting residual secondary structure. The folding rate of 26.4 μs−1 (at 80°C), extracted from the T-jump response of NTL91–39, compares favorably with the 18 μs−1 obtained from the MSM. Structural decomposition of the MSM and analysis along the folding coordinate indicates that helix-for...
The time-scales of protein folding events range over many orders of magnitude. In order to understan...
Fast folding techniques use optical spectroscopic tools to monitor protein folding or unfolding dyna...
A protein’s folding and conformational energy landscape depends on a large number of molecular degre...
AbstractThe conformational heterogeneity of the N-terminal domain of the ribosomal protein L9 (NTL91...
For small molecule reaction kinetics, computed reaction coordinates often mimic experimentally measu...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2010.Vita. Cataloged fro...
Optical spectroscopic tools are used to monitor protein folding/unfolding dynamics after a fast trig...
Protein folding is one of the most fundamental problems in modern molecular biology. Uncovering the ...
We propose to use infrared coherent two-dimensional correlation spectroscopy (2DCS) to characterize ...
Protein folding is one of the most fundamental problems in modern biochemistry. Time-resolved infrar...
Protein folding is one of the most fundamental problems in modern biochemistry. Time-resolved infrar...
The field of protein folding is considered to be one of the frontiers in biophysics and structural b...
Protein folding is an important problem that is attracting scientists from a wide range of disciplin...
Probing the underlying free-energy landscape, pathway, and mechanism is the key to understanding pro...
Protein folding is an important problem that is attracting scientists from a wide range of disciplin...
The time-scales of protein folding events range over many orders of magnitude. In order to understan...
Fast folding techniques use optical spectroscopic tools to monitor protein folding or unfolding dyna...
A protein’s folding and conformational energy landscape depends on a large number of molecular degre...
AbstractThe conformational heterogeneity of the N-terminal domain of the ribosomal protein L9 (NTL91...
For small molecule reaction kinetics, computed reaction coordinates often mimic experimentally measu...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2010.Vita. Cataloged fro...
Optical spectroscopic tools are used to monitor protein folding/unfolding dynamics after a fast trig...
Protein folding is one of the most fundamental problems in modern molecular biology. Uncovering the ...
We propose to use infrared coherent two-dimensional correlation spectroscopy (2DCS) to characterize ...
Protein folding is one of the most fundamental problems in modern biochemistry. Time-resolved infrar...
Protein folding is one of the most fundamental problems in modern biochemistry. Time-resolved infrar...
The field of protein folding is considered to be one of the frontiers in biophysics and structural b...
Protein folding is an important problem that is attracting scientists from a wide range of disciplin...
Probing the underlying free-energy landscape, pathway, and mechanism is the key to understanding pro...
Protein folding is an important problem that is attracting scientists from a wide range of disciplin...
The time-scales of protein folding events range over many orders of magnitude. In order to understan...
Fast folding techniques use optical spectroscopic tools to monitor protein folding or unfolding dyna...
A protein’s folding and conformational energy landscape depends on a large number of molecular degre...