Calmodulin (CaM) is a highly conserved eukaryotic protein that binds specifically to more than 100 target proteins in response to calcium (Ca(2+)) signal. CaM adopts a considerable degree of structural plasticity to accomplish this physiological role; however, the nature and extent of this plasticity remain to be fully understood. Here, we report the crystal structure of a novel trans conformation of ligand-free CaM where the relative disposition of two lobes of CaM is different, a conformation to-date not reported. While no major structural changes were observed in the independent N- and C-lobes as compared with previously reported structures of Ca(2+)/CaM, the central helix was tilted by ~90° at Arg75. This is the first crystal structure ...
AbstractBackground: Calmodulin (CaM) is the major calcium-dependent regulator of a large variety of ...
A combination of ion mobility and mass spectrometry methods was used to characterize the molecular s...
<p><b>A:</b> Side-by-side comparison of the novel <i>trans</i> (current structure, blue) and <i>cis<...
<div><p>Calmodulin (CaM) is a highly conserved eukaryotic protein that binds specifically to more th...
<p><b>A:</b> Ribbon representation of novel conformation of ligand-free CaM. The helices, loops, Ca<...
This study reveals the essence of ligand recognition mechanisms by which calmodulin (CaM) con-trols ...
The crystal structure of calcium-calmodulin (CaM) reveals a protein with a typical dumbbell structur...
The crystal structure of calcium-calmodulin (CaM) reveals a protein with a typical dumbbell structur...
Calmodulin (CaM) is a multifunctional calcium-binding protein, which regulates various biochemical p...
We have recently investigated by far-UV circular dichroism (CD) the effects of Ca(2+) binding and th...
AbstractMolecular dynamics simulations were performed to simulate Ca2+-dependent conformational chan...
Calmodulin (CaM) is a ubiquitously expressed calcium sensor that engages in regulatory interactions ...
Calmodulin (CaM) binds to the membrane-proximal cytosolic C-terminal domain of CaV 1.2 (residues 152...
AbstractRecent high-resolution crystal and solution structures have answered many long-standing ques...
AbstractThe conformation of Ca4-calmodulin in solution, as assessed by far-UV peptide circular dichr...
AbstractBackground: Calmodulin (CaM) is the major calcium-dependent regulator of a large variety of ...
A combination of ion mobility and mass spectrometry methods was used to characterize the molecular s...
<p><b>A:</b> Side-by-side comparison of the novel <i>trans</i> (current structure, blue) and <i>cis<...
<div><p>Calmodulin (CaM) is a highly conserved eukaryotic protein that binds specifically to more th...
<p><b>A:</b> Ribbon representation of novel conformation of ligand-free CaM. The helices, loops, Ca<...
This study reveals the essence of ligand recognition mechanisms by which calmodulin (CaM) con-trols ...
The crystal structure of calcium-calmodulin (CaM) reveals a protein with a typical dumbbell structur...
The crystal structure of calcium-calmodulin (CaM) reveals a protein with a typical dumbbell structur...
Calmodulin (CaM) is a multifunctional calcium-binding protein, which regulates various biochemical p...
We have recently investigated by far-UV circular dichroism (CD) the effects of Ca(2+) binding and th...
AbstractMolecular dynamics simulations were performed to simulate Ca2+-dependent conformational chan...
Calmodulin (CaM) is a ubiquitously expressed calcium sensor that engages in regulatory interactions ...
Calmodulin (CaM) binds to the membrane-proximal cytosolic C-terminal domain of CaV 1.2 (residues 152...
AbstractRecent high-resolution crystal and solution structures have answered many long-standing ques...
AbstractThe conformation of Ca4-calmodulin in solution, as assessed by far-UV peptide circular dichr...
AbstractBackground: Calmodulin (CaM) is the major calcium-dependent regulator of a large variety of ...
A combination of ion mobility and mass spectrometry methods was used to characterize the molecular s...
<p><b>A:</b> Side-by-side comparison of the novel <i>trans</i> (current structure, blue) and <i>cis<...