In the purple sea urchin Strongylocentrotus purpuratus, the formation and mineralization of fracture-resistant skeletal elements such as the embryonic spicule require the combinatorial participation of numerous spicule matrix proteins such as SpSM50. However, because of its limited abundance and solubility issues, it has been difficult to pursue extensive in vitro biochemical studies of SpSM50 protein and deduce its role in spicule formation and mineralization. To circumvent these problems, we expressed a tag-free bacterial model recombinant spicule matrix protein, rSpSM50. Bioinformatics and biophysical experiments confirm that rSpSM50 is an intrinsically disordered, aggregation-prone C-type lectin-like domain-containing protein that forms...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Background The organic matrix of biominerals plays an important role in biomineral formation and in...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
In the purple sea urchin <i>Strongylocentrotus purpuratus</i>, the formation and mineralization of f...
The formation of the sea urchin spicule involves the stabilization and transformation of amorphous c...
The formation of embryonic mineralized skeletal elements (spicules) in the sea urchin requires the p...
The formation of embryonic mineralized skeletal elements (spicules) in the sea urchin requires the p...
The formation of the sea urchin spicule skeleton requires the participation of hydrogel-forming prot...
The larval spicule matrix protein SM50 is the most abundant occluded matrix protein present in the m...
Sea urchin spicules have a calcitic mesocrystalline architecture that is closely associated with a m...
ABSTRACT: BACKGROUND: The sea urchin embryo has been an important model organism in developmental bi...
Abstract Background The sea urchin embryo has been an important model organism in developmental biol...
12 pagesInternational audienceThe sea urchin endoskeleton consists of a magnesium-rich biocalcite co...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Background The organic matrix of biominerals plays an important role in biomineral formation and in...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
In the purple sea urchin <i>Strongylocentrotus purpuratus</i>, the formation and mineralization of f...
The formation of the sea urchin spicule involves the stabilization and transformation of amorphous c...
The formation of embryonic mineralized skeletal elements (spicules) in the sea urchin requires the p...
The formation of embryonic mineralized skeletal elements (spicules) in the sea urchin requires the p...
The formation of the sea urchin spicule skeleton requires the participation of hydrogel-forming prot...
The larval spicule matrix protein SM50 is the most abundant occluded matrix protein present in the m...
Sea urchin spicules have a calcitic mesocrystalline architecture that is closely associated with a m...
ABSTRACT: BACKGROUND: The sea urchin embryo has been an important model organism in developmental bi...
Abstract Background The sea urchin embryo has been an important model organism in developmental biol...
12 pagesInternational audienceThe sea urchin endoskeleton consists of a magnesium-rich biocalcite co...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Background The organic matrix of biominerals plays an important role in biomineral formation and in...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...