Biophysical tools have been invaluable in formulating therapeutic proteins. These tools characterize protein stability rapidly in a variety of solution conditions, but in general, the techniques lack the ability to discern site-specific information to probe how solution environment acts to stabilize or destabilize the protein. NMR spectroscopy can provide site-specific information about subtle structural changes of a protein under different conditions, enabling one to assess the mechanism of protein stabilization. In this study, NMR was employed to detect structural perturbations at individual residues as a result of altering pH and ionic strength. The N-terminal domain of calmodulin (N-CaM) was used as a model system, and the <sup>1</sup>H...
ABSTRACT: All-atom, explicit water molecular dynamics simulations of calcium-loaded calmodulin compl...
We elucidate the mechanisms that lead to population shifts in the conformational states of calcium-l...
AbstractCalmodulin (CaM) is a ubiquitous Ca2+-binding protein that can regulate a wide variety of ce...
Biophysical tools have been invaluable in formulating therapeutic proteins. These tools characterize...
The goal of this dissertation was to develop a method to assess how solution conditions affect a pro...
Many protein molecules are formed by two or more domains whose structures and dynamics are closely r...
AbstractThe structural stability of calmodulin was studied by 1H-nuclear magnetic resonance spectros...
The Ca2+ sensor protein, calmodulin (CaM) is ubiquitously expressed in all cells where it binds to h...
Biophysical studies of protein structure and dynamics are typically performed in a highly controlled...
In this dissertation we show how to push the boundaries of structure elucidation using tensorial NMR...
Biophysical studies of protein structure and dynamics are typically performed in a highly controlled...
Seven native residues on the regulatory protein calmodulin, including three key methionine residues,...
[[abstract]]Interdomain motions of Ca2+-ligated calmodulin were characterized by analyzing the nucle...
Seven native residues on the regulatory protein calmodulin, including three key methionine residues,...
Protein folding pathways can be extraordinarily complex. In this study, circular dichroism (CD) and ...
ABSTRACT: All-atom, explicit water molecular dynamics simulations of calcium-loaded calmodulin compl...
We elucidate the mechanisms that lead to population shifts in the conformational states of calcium-l...
AbstractCalmodulin (CaM) is a ubiquitous Ca2+-binding protein that can regulate a wide variety of ce...
Biophysical tools have been invaluable in formulating therapeutic proteins. These tools characterize...
The goal of this dissertation was to develop a method to assess how solution conditions affect a pro...
Many protein molecules are formed by two or more domains whose structures and dynamics are closely r...
AbstractThe structural stability of calmodulin was studied by 1H-nuclear magnetic resonance spectros...
The Ca2+ sensor protein, calmodulin (CaM) is ubiquitously expressed in all cells where it binds to h...
Biophysical studies of protein structure and dynamics are typically performed in a highly controlled...
In this dissertation we show how to push the boundaries of structure elucidation using tensorial NMR...
Biophysical studies of protein structure and dynamics are typically performed in a highly controlled...
Seven native residues on the regulatory protein calmodulin, including three key methionine residues,...
[[abstract]]Interdomain motions of Ca2+-ligated calmodulin were characterized by analyzing the nucle...
Seven native residues on the regulatory protein calmodulin, including three key methionine residues,...
Protein folding pathways can be extraordinarily complex. In this study, circular dichroism (CD) and ...
ABSTRACT: All-atom, explicit water molecular dynamics simulations of calcium-loaded calmodulin compl...
We elucidate the mechanisms that lead to population shifts in the conformational states of calcium-l...
AbstractCalmodulin (CaM) is a ubiquitous Ca2+-binding protein that can regulate a wide variety of ce...