The L‐subunits of mammalian ferritins are generally accepted to facilitate iron biomineral formation by providing nucleation sites. The formation of a μ3‐oxo trinuclear iron cluster on the inner cage of homopolymeric recombinant human L ferritin and natural horse spleen ferritin has been observed upon diffusion of ferrous ions through metal‐free ferritin crystals. Three glutamate side chains (Glu60, Glu61, and Glu64) act as bridging ligands between iron pairs, thus driving the cluster assembly. In the fully formed cluster, observed after 60′ diffusion in the human L ferritin, the iron ions are also bridged by peroxide anions, which could originate from ferrous iron oxidation by dioxygen. Substitution of Glu60, Glu61, and Glu64 by alanine re...
AbstractThe crystal structure of an oxo-centered tri-nuclear iron complex formed on a protein surfac...
AbstractX-Ray analysis of the ferritin of Escherichia coli (Ec-FTN) and of Ec-FTN crystals soaked in...
Ferritin is a multimeric nanocage protein that directs the reversible biomineralization of iron. At ...
The L‐subunits of mammalian ferritins are generally accepted to facilitate iron biomineral formation...
X-ray structures of homopolymeric L-ferritin obtained by freezing protein crystals at increasing exp...
X-ray structures of homopolymeric human L-ferritin and horse spleen ferritin were solved by freezing...
Human cytoplasmic ferritins are heteropolymers of H and L subunits containing a catalytic ferroxidas...
The first step of iron biomineralization mediated by ferritin is the oxidation at the ferroxidase ac...
The first step of iron biomineralization mediated by ferritin is the oxidation at the ferroxidase ac...
Biomineralization of the ferritin iron core involves a complex series of events in which
FERRITIN is important in iron homeostasis. Its twenty-four chains of two types, H and L, assemble a...
Ferritin is a ubiquitous intracellular iron storage protein consisting of 24 subunits. Storage of ir...
Ferritins are ubiquitous and can be found in practically all organisms that utilize Fe. They are com...
Ferritins are iron-storage proteins capable of holding up to 4500 Fe3+ ions within a single water-so...
Ferritins are characterized by highly conserved three-dimensional structures similar to spherical sh...
AbstractThe crystal structure of an oxo-centered tri-nuclear iron complex formed on a protein surfac...
AbstractX-Ray analysis of the ferritin of Escherichia coli (Ec-FTN) and of Ec-FTN crystals soaked in...
Ferritin is a multimeric nanocage protein that directs the reversible biomineralization of iron. At ...
The L‐subunits of mammalian ferritins are generally accepted to facilitate iron biomineral formation...
X-ray structures of homopolymeric L-ferritin obtained by freezing protein crystals at increasing exp...
X-ray structures of homopolymeric human L-ferritin and horse spleen ferritin were solved by freezing...
Human cytoplasmic ferritins are heteropolymers of H and L subunits containing a catalytic ferroxidas...
The first step of iron biomineralization mediated by ferritin is the oxidation at the ferroxidase ac...
The first step of iron biomineralization mediated by ferritin is the oxidation at the ferroxidase ac...
Biomineralization of the ferritin iron core involves a complex series of events in which
FERRITIN is important in iron homeostasis. Its twenty-four chains of two types, H and L, assemble a...
Ferritin is a ubiquitous intracellular iron storage protein consisting of 24 subunits. Storage of ir...
Ferritins are ubiquitous and can be found in practically all organisms that utilize Fe. They are com...
Ferritins are iron-storage proteins capable of holding up to 4500 Fe3+ ions within a single water-so...
Ferritins are characterized by highly conserved three-dimensional structures similar to spherical sh...
AbstractThe crystal structure of an oxo-centered tri-nuclear iron complex formed on a protein surfac...
AbstractX-Ray analysis of the ferritin of Escherichia coli (Ec-FTN) and of Ec-FTN crystals soaked in...
Ferritin is a multimeric nanocage protein that directs the reversible biomineralization of iron. At ...