Many proteins undergo a sharp decrease in chain dimensions during early stages of folding, prior to the rate-limiting step in folding. However, it remains unclear whether compact states are the result of specific folding events or a general hydrophobic collapse of the poly peptide chain driven by the change in solvent conditions. To address this fundamental question, we extended the temporal resolution of NMR-detected H/D exchange labeling experiments into the microsecond regime by adopting a microfluidics approach. By observing the competition between H/D exchange and folding as a function of labeling pH, coupled with direct measurement of exchange rates in the unfolded state, we were able to monitor hydrogen-bond formation for over 50 ind...
We probe intrachain contact dynamics in unfolded cytochrome cb562 by monitoring heme quenching of ex...
Kinetic studies of the early events in cytochrome c folding are reviewed with a focus on the evidenc...
We demonstrate that the sub-millisecond protein folding process referred to as "collapse" actually c...
Background: For many proteins, compact states appear long before the rate-limiting step in the forma...
For many proteins, compact states appear long before the rate-limiting step in formation of the nati...
The current work employs a novel approach for characterizing structural changes during the refolding...
How fast can a protein fold? The rate of initial collapse from the unfolded state to a compact struc...
AbstractWe demonstrate that the sub-millisecond protein folding process referred to as “collapse” ac...
A method is introduced that permits direct observation of the rates at which backbone amide hydrogen...
Determination of the mechanism associated with the early polypeptide chain collapse is critical for ...
How a polypeptide chain folds into its final native structure as it comes off the ribosome is the fi...
Direct tracking of protein structural dynamics during folding–unfolding processes is important for u...
Background: Hydrogen exchange labelling has been a key method in characterizing the structure of tra...
This work combines pulsed hydrogen/deuterium exchange (HDX) and top-down mass spectrometry for the s...
A cytochrome c kinetic folding intermediate was studied by hydrogen exchange (HX) pulse labeling. Ad...
We probe intrachain contact dynamics in unfolded cytochrome cb562 by monitoring heme quenching of ex...
Kinetic studies of the early events in cytochrome c folding are reviewed with a focus on the evidenc...
We demonstrate that the sub-millisecond protein folding process referred to as "collapse" actually c...
Background: For many proteins, compact states appear long before the rate-limiting step in the forma...
For many proteins, compact states appear long before the rate-limiting step in formation of the nati...
The current work employs a novel approach for characterizing structural changes during the refolding...
How fast can a protein fold? The rate of initial collapse from the unfolded state to a compact struc...
AbstractWe demonstrate that the sub-millisecond protein folding process referred to as “collapse” ac...
A method is introduced that permits direct observation of the rates at which backbone amide hydrogen...
Determination of the mechanism associated with the early polypeptide chain collapse is critical for ...
How a polypeptide chain folds into its final native structure as it comes off the ribosome is the fi...
Direct tracking of protein structural dynamics during folding–unfolding processes is important for u...
Background: Hydrogen exchange labelling has been a key method in characterizing the structure of tra...
This work combines pulsed hydrogen/deuterium exchange (HDX) and top-down mass spectrometry for the s...
A cytochrome c kinetic folding intermediate was studied by hydrogen exchange (HX) pulse labeling. Ad...
We probe intrachain contact dynamics in unfolded cytochrome cb562 by monitoring heme quenching of ex...
Kinetic studies of the early events in cytochrome c folding are reviewed with a focus on the evidenc...
We demonstrate that the sub-millisecond protein folding process referred to as "collapse" actually c...