AbstractWe have studied the unfolding by force of one of the immunoglobulin domains of the muscle protein titin using molecular dynamics simulations at 300K. Previous studies, done at constant pulling rates, showed that under the effect of the force two strands connected to each other by six backbone H-bonds are pulled apart. No details about the mechanism of H-bond breaking were provided. Our simulation protocol “pull and wait” was designed to correspond to very slow pulling, more similar to the rates used in experiments than are the protocols used in previous computational studies. Under these conditions interstrand backbone H-bonds are not “ripped apart” by the application of the force. Instead, small elongations produced by the force we...
The mechanical stability of force-bearing proteins is crucial for their functions. However, slow tra...
Using the “pull and wait” (PNW) simulation protocol at 300 K, we studied the unfolding by force of a...
Titin, a 1 m long protein found in striated muscle myobrils, pos-sesses unique elastic and extensibi...
AbstractWe have studied the unfolding by force of one of the immunoglobulin domains of the muscle pr...
AbstractSteered molecular dynamics simulation of force-induced titin immunoglobulin domain I27 unfol...
ABSTRACT Steered molecular dynamics simulation of force-induced titin immunoglobulin domain I27 unfo...
International audienceThe mechanical unfolding of the muscle protein titin by atomic force microscop...
Titin is a giant protein that provides elasticity to muscle. As the sarcomere is stretched, titin e...
AbstractTitin, a 1-μm-long protein found in striated muscle myofibrils, possesses unique elastic and...
© 2009 by the Biophysical SocietySteered molecular dynamics (SMD) is used to investigate forced unfo...
The mechanical unfolding of an immunoglobulin domain from the human muscle protein titin (TI I27) ha...
AbstractSteered molecular dynamics (SMD) is used to investigate forced unfolding and spontaneous ref...
The mechanical unfolding of an immunoglobulin domain from the human muscle protein titin (TI I27) ha...
AbstractMolecular elasticity is a physicomechanical property that is associated with a select number...
Mechanical forces regulate biological processes in unique and unexpected ways, but many biochemical ...
The mechanical stability of force-bearing proteins is crucial for their functions. However, slow tra...
Using the “pull and wait” (PNW) simulation protocol at 300 K, we studied the unfolding by force of a...
Titin, a 1 m long protein found in striated muscle myobrils, pos-sesses unique elastic and extensibi...
AbstractWe have studied the unfolding by force of one of the immunoglobulin domains of the muscle pr...
AbstractSteered molecular dynamics simulation of force-induced titin immunoglobulin domain I27 unfol...
ABSTRACT Steered molecular dynamics simulation of force-induced titin immunoglobulin domain I27 unfo...
International audienceThe mechanical unfolding of the muscle protein titin by atomic force microscop...
Titin is a giant protein that provides elasticity to muscle. As the sarcomere is stretched, titin e...
AbstractTitin, a 1-μm-long protein found in striated muscle myofibrils, possesses unique elastic and...
© 2009 by the Biophysical SocietySteered molecular dynamics (SMD) is used to investigate forced unfo...
The mechanical unfolding of an immunoglobulin domain from the human muscle protein titin (TI I27) ha...
AbstractSteered molecular dynamics (SMD) is used to investigate forced unfolding and spontaneous ref...
The mechanical unfolding of an immunoglobulin domain from the human muscle protein titin (TI I27) ha...
AbstractMolecular elasticity is a physicomechanical property that is associated with a select number...
Mechanical forces regulate biological processes in unique and unexpected ways, but many biochemical ...
The mechanical stability of force-bearing proteins is crucial for their functions. However, slow tra...
Using the “pull and wait” (PNW) simulation protocol at 300 K, we studied the unfolding by force of a...
Titin, a 1 m long protein found in striated muscle myobrils, pos-sesses unique elastic and extensibi...