Troponin C (TnC) is an important regulatory molecule in cardiomyocytes. Calcium binding to site II in TnC initiates a series of molecular events that result in muscle contraction. The most direct change upon Ca(2+) binding is an opening motion of the molecule that exposes a hydrophobic patch on the surface allowing for Troponin I to bind. Molecular dynamics simulations were used to elucidate the dynamics of this crucial protein in three different states: apo, Ca(2+)-bound, and Ca(2+)-TnI-bound. Dynamics between the states are compared, and the Ca(2+)-bound system is investigated for opening motions. On the basis of the simulations, NMR chemical shifts and order parameters are calculated and compared with experimental observables. Agreement ...
Calcium binding proteins are biologically important for their ability to convert changes in calcium ...
Troponin C (TnC) is the calcium-binding subunit of the troponin complex responsible for initiating s...
With the recent advances in structure determination of the troponin complex, it becomes even more im...
Troponin C (TnC) is an important regulatory molecule in cardiomyocytes. Calcium binding to site II i...
Understanding the regulation of cardiac muscle contraction at a molecular level is crucial for the d...
<div><p>Troponin C (TnC) is implicated in the initiation of myocyte contraction via binding of cytos...
The interaction between calcium and the regulatory site(s) of striated muscle regulatory protein tro...
<div><p>The interaction between calcium and the regulatory site(s) of striated muscle regulatory pro...
AbstractTroponin (Tn) is an important regulatory protein in the thin-filament complex of cardiomyocy...
Cardiac troponin (cTn) is the Ca2+-sensitive molecular switch that controls cardiac muscle activatio...
Cardiac troponin (cTn) is the Ca(2+)-sensitive molecular switch that controls cardiac muscle activat...
Calcium-dependent heart muscle contraction is regulated by the cardiac troponin protein complex (cTn...
Skletal muscle contraction is induced by calcium binding to the troponin C subunit of the troponin-t...
Troponin C (TnC) is the calcium-binding subunit of the troponin complex responsible for initiating s...
Human cardiac troponin C (HcTnC), the regulatory calcium-binding component of the troponin complex, ...
Calcium binding proteins are biologically important for their ability to convert changes in calcium ...
Troponin C (TnC) is the calcium-binding subunit of the troponin complex responsible for initiating s...
With the recent advances in structure determination of the troponin complex, it becomes even more im...
Troponin C (TnC) is an important regulatory molecule in cardiomyocytes. Calcium binding to site II i...
Understanding the regulation of cardiac muscle contraction at a molecular level is crucial for the d...
<div><p>Troponin C (TnC) is implicated in the initiation of myocyte contraction via binding of cytos...
The interaction between calcium and the regulatory site(s) of striated muscle regulatory protein tro...
<div><p>The interaction between calcium and the regulatory site(s) of striated muscle regulatory pro...
AbstractTroponin (Tn) is an important regulatory protein in the thin-filament complex of cardiomyocy...
Cardiac troponin (cTn) is the Ca2+-sensitive molecular switch that controls cardiac muscle activatio...
Cardiac troponin (cTn) is the Ca(2+)-sensitive molecular switch that controls cardiac muscle activat...
Calcium-dependent heart muscle contraction is regulated by the cardiac troponin protein complex (cTn...
Skletal muscle contraction is induced by calcium binding to the troponin C subunit of the troponin-t...
Troponin C (TnC) is the calcium-binding subunit of the troponin complex responsible for initiating s...
Human cardiac troponin C (HcTnC), the regulatory calcium-binding component of the troponin complex, ...
Calcium binding proteins are biologically important for their ability to convert changes in calcium ...
Troponin C (TnC) is the calcium-binding subunit of the troponin complex responsible for initiating s...
With the recent advances in structure determination of the troponin complex, it becomes even more im...