Metal centers in metalloproteins involve multiple metal–ligand bonds. The release of metal ions from metalloproteins can have significant biological consequences, so understanding of the mechanisms by which metal ion dissociates has broad implications. By definition, the release of metal ions from metalloproteins involves the disruption of multiple metal–ligand bonds, and this process is often accompanied by unfolding of the protein. Detailed pathways for metal ion release from metalloproteins have been difficult to elucidate by classical ensemble techniques. Here, we combine single molecule force spectroscopy and protein engineering techniques to investigate the mechanical dissociation mechanism of iron from the active site of the simplest...
Rubredoxins (Rds) are small proteins containing a tetrahedral Fe(SCys)4 site. Folded forms of metal ...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
Rubredoxins (Rds) are small (~54-residue) electron transfer proteins, with a tetrahedral Fe(SCys)4 s...
AbstractZinc (Zn) is one of the most abundant metals and is essential for life. Through ligand inter...
Metalloproteins account for more than one-third of all proteins in nature and play important roles i...
International audienceMetalloproteins play indispensable roles in biology owing to the versatile che...
Mechanical anisotropy is an important feature of materials. Depending on the direction it is pulled,...
The surprisingly low rupture force and remarkable mechanical anisotropy of rubredoxin have been know...
High-potential iron–sulfur proteins (HiPIPs) are an important class of metalloproteins with a [4Fe–4...
As part of our studies on the structural and dynamic properties of hyperthermostable proteins, we ha...
Serum transferrin (sTf) carries iron in blood serum and delivers it into cells by receptor-mediated ...
Redox potentials often differ dramatically for homologous proteins that have identical redox centers...
Many processes in the body are effected and regulated by highly, specialized protein molecules: Thes...
AbstractThe protein matrix of an electron transfer protein creates an electrostatic environment for ...
The structural basis of the low reorganization energy of cupredoxins has long been debated. These pr...
Rubredoxins (Rds) are small proteins containing a tetrahedral Fe(SCys)4 site. Folded forms of metal ...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
Rubredoxins (Rds) are small (~54-residue) electron transfer proteins, with a tetrahedral Fe(SCys)4 s...
AbstractZinc (Zn) is one of the most abundant metals and is essential for life. Through ligand inter...
Metalloproteins account for more than one-third of all proteins in nature and play important roles i...
International audienceMetalloproteins play indispensable roles in biology owing to the versatile che...
Mechanical anisotropy is an important feature of materials. Depending on the direction it is pulled,...
The surprisingly low rupture force and remarkable mechanical anisotropy of rubredoxin have been know...
High-potential iron–sulfur proteins (HiPIPs) are an important class of metalloproteins with a [4Fe–4...
As part of our studies on the structural and dynamic properties of hyperthermostable proteins, we ha...
Serum transferrin (sTf) carries iron in blood serum and delivers it into cells by receptor-mediated ...
Redox potentials often differ dramatically for homologous proteins that have identical redox centers...
Many processes in the body are effected and regulated by highly, specialized protein molecules: Thes...
AbstractThe protein matrix of an electron transfer protein creates an electrostatic environment for ...
The structural basis of the low reorganization energy of cupredoxins has long been debated. These pr...
Rubredoxins (Rds) are small proteins containing a tetrahedral Fe(SCys)4 site. Folded forms of metal ...
Single molecule AFM is a powerful technique affording the opportunity to understand the mechanical p...
Rubredoxins (Rds) are small (~54-residue) electron transfer proteins, with a tetrahedral Fe(SCys)4 s...