AbstractMany receptors and ion channels are activated by ligands. One key question concerns the binding mechanism. Does the ligand induce conformational changes in the protein via the induced-fit mechanism? Or does the protein preexist as an ensemble of conformers and the ligand selects the most complementary one, via the conformational selection mechanism? Here, we study ligand binding of a tetrameric cyclic nucleotide-gated channel from Mesorhizobium loti and of its monomeric binding domain (CNBD) using rapid mixing, mutagenesis, and structure-based computational biology. Association rate constants of ∼107 M−1 s−1 are compatible with diffusion-limited binding. Ligand binding to the full-length CNG channel and the isolated CNBD differ, rev...
Cyclic nucleotide-binding domains (CNBDs) that are present in various channel proteins play crucial ...
Ion channels activated by cyclic nucleotides play crucial roles in signal transduction pathways. Upo...
Most working proteins, including metabolic enzymes, transcription regulators, and membrane receptors...
AbstractMany receptors and ion channels are activated by ligands. One key question concerns the bind...
Cyclic nucleotide-sensitive ion channels, known as HCN and CNG channels, are activated by binding of...
Ion channels gated by cyclic nucleotides have crucial roles in cardiac and neuronal excitability and...
Cyclic nucleotide-binding (CNB) domains regulate the activity of channels, kinases, exchange factors...
AbstractCyclic nucleotide–gated (CNG) channels are activated in response to the direct binding of cy...
International audienceCyclic nucleotide binding domain (CNBD) is a ubiquitous domain of effector pro...
Cyclic nucleotide binding domain (CNBD) is a ubiquitous domain of effector proteins involved in sign...
International audienceCyclic nucleotide-modulated ion channels are important for signal transduction...
Cyclic nucleotide-modulated ion channels are important for signal transduction and pacemaking in euk...
Cyclic nucleotide-sensitive ion channels, known as HCN and CNG channels play crucial roles in neuron...
SummaryCyclic nucleotides (cNMPs) regulate the activity of various proteins by interacting with a co...
AbstractHere we describe the initial functional characterization of a cyclic nucleotide regulated io...
Cyclic nucleotide-binding domains (CNBDs) that are present in various channel proteins play crucial ...
Ion channels activated by cyclic nucleotides play crucial roles in signal transduction pathways. Upo...
Most working proteins, including metabolic enzymes, transcription regulators, and membrane receptors...
AbstractMany receptors and ion channels are activated by ligands. One key question concerns the bind...
Cyclic nucleotide-sensitive ion channels, known as HCN and CNG channels, are activated by binding of...
Ion channels gated by cyclic nucleotides have crucial roles in cardiac and neuronal excitability and...
Cyclic nucleotide-binding (CNB) domains regulate the activity of channels, kinases, exchange factors...
AbstractCyclic nucleotide–gated (CNG) channels are activated in response to the direct binding of cy...
International audienceCyclic nucleotide binding domain (CNBD) is a ubiquitous domain of effector pro...
Cyclic nucleotide binding domain (CNBD) is a ubiquitous domain of effector proteins involved in sign...
International audienceCyclic nucleotide-modulated ion channels are important for signal transduction...
Cyclic nucleotide-modulated ion channels are important for signal transduction and pacemaking in euk...
Cyclic nucleotide-sensitive ion channels, known as HCN and CNG channels play crucial roles in neuron...
SummaryCyclic nucleotides (cNMPs) regulate the activity of various proteins by interacting with a co...
AbstractHere we describe the initial functional characterization of a cyclic nucleotide regulated io...
Cyclic nucleotide-binding domains (CNBDs) that are present in various channel proteins play crucial ...
Ion channels activated by cyclic nucleotides play crucial roles in signal transduction pathways. Upo...
Most working proteins, including metabolic enzymes, transcription regulators, and membrane receptors...