Actin is an abundant protein that constitutes a main component of the eukaryotic cytoskeleton. Its polymerization and depolymerization are regulated by a variety of actin-binding proteins. Their functions range from nucleation of actin polymerization to sequestering G-actin in 1:1 complexes. The kinetics of forming these complexes, with rate constants varying at least three orders of magnitude, is critical to the distinct regulatory functions. Previously we have developed a transient-complex theory for computing protein association mechanisms and association rate constants. The transient complex refers to an intermediate in which the two associating proteins have near-native separation and relative orientation but have yet to form short-ran...
SummaryWe recently developed a theory for the rates of protein-protein association. The theory is ba...
Elucidating kinetic processes of protein protein interactions (PPI) helps to understand how basic bu...
Abstract Background Proteins form various complexes to carry out their versatile functions in cells....
<div><p>Actin is an abundant protein that constitutes a main component of the eukaryotic cytoskeleto...
SummaryThe association rate constants (ka) of proteins with other proteins or other macromolecular t...
a<p>The complex of Tβ4 with G-actin was modeled by merging PDB entries 1SQK and 1T44 (see Methods fo...
Presented on November 9, 2011 from 3:00 pm to 4:00 pm In Howey building room L5.Runtime: 54:58 minut...
The cytoskeleton is a macromolecular scaffold which gives the cell its shape and controls cellular ...
<div><p>The prediction of protein-protein kinetic rate constants provides a fundamental test of our ...
The rate of protein association places an upper limit on the response time due to protein interactio...
Electrostatic interactions are known experimentally to enhance the rate of protein-protein associati...
Actin, a major component of the cytoskeleton, is responsible for the shape and structural propertie...
Electrostatic interactions are known experimentally to enhance the rate of protein-protein associati...
AbstractMeasurement of the binding equilibrium for the interaction of α-actinin with F-actin is comp...
The prediction of protein-protein kinetic rate constants provides a fundamental test of our understa...
SummaryWe recently developed a theory for the rates of protein-protein association. The theory is ba...
Elucidating kinetic processes of protein protein interactions (PPI) helps to understand how basic bu...
Abstract Background Proteins form various complexes to carry out their versatile functions in cells....
<div><p>Actin is an abundant protein that constitutes a main component of the eukaryotic cytoskeleto...
SummaryThe association rate constants (ka) of proteins with other proteins or other macromolecular t...
a<p>The complex of Tβ4 with G-actin was modeled by merging PDB entries 1SQK and 1T44 (see Methods fo...
Presented on November 9, 2011 from 3:00 pm to 4:00 pm In Howey building room L5.Runtime: 54:58 minut...
The cytoskeleton is a macromolecular scaffold which gives the cell its shape and controls cellular ...
<div><p>The prediction of protein-protein kinetic rate constants provides a fundamental test of our ...
The rate of protein association places an upper limit on the response time due to protein interactio...
Electrostatic interactions are known experimentally to enhance the rate of protein-protein associati...
Actin, a major component of the cytoskeleton, is responsible for the shape and structural propertie...
Electrostatic interactions are known experimentally to enhance the rate of protein-protein associati...
AbstractMeasurement of the binding equilibrium for the interaction of α-actinin with F-actin is comp...
The prediction of protein-protein kinetic rate constants provides a fundamental test of our understa...
SummaryWe recently developed a theory for the rates of protein-protein association. The theory is ba...
Elucidating kinetic processes of protein protein interactions (PPI) helps to understand how basic bu...
Abstract Background Proteins form various complexes to carry out their versatile functions in cells....