Orb-weaving spider silk fibers are assembled from very large, highly repetitive proteins. The repeated segments contain, in turn, short, simple, and repetitive amino acid motifs that account for the physical and mechanical properties of the assembled fiber. Of the six orb-weaver silk fibroins, the piriform silk that makes the attachment discs, which lashes the joints of the web and attaches dragline silk to surfaces, has not been previously characterized. Piriform silk protein cDNAs were isolated from phage libraries of three species: A. trifasciata, N. claVipes, and N. cruentata. The deduced amino acid sequences from these genes revealed two new repetitive motifs: an alternating proline motif, where every other amino acid is proline, and a...
Spider silks have remarkable physical properties due to a combination of strength and elasticity. In...
Spider silk is a versatile protein fiber with a wide variety of uses. It possesses special character...
The extraordinary mechanical properties of spider dragline silk are dependent on the highly repetiti...
Spider silk fibers have impressive mechanical properties and are primarily composed of highly repeti...
Spider silk fibers have impressive mechanical properties and are primarily composed of highly repeti...
Araneoid spiders use specialized abdominal glands to produce up to seven different protein-based sil...
Spider silk from N. clavipes have a range of useful properties in addition to remarkable mechanical ...
Spider silks have outstanding mechanical properties. Most research has focused on dragline silk prot...
An individual orb weaving spider can spin up to seven different types of silk, each with unique func...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
<div><p>The extraordinary mechanical properties of spider dragline silk are dependent on the highly ...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
Spider silks are highly repetitive proteins, characterized by regions of polyalanine and glycine-ric...
Spider silks have remarkable physical properties due to a combination of strength and elasticity. In...
Spider silks have remarkable physical properties due to a combination of strength and elasticity. In...
Spider silks have remarkable physical properties due to a combination of strength and elasticity. In...
Spider silk is a versatile protein fiber with a wide variety of uses. It possesses special character...
The extraordinary mechanical properties of spider dragline silk are dependent on the highly repetiti...
Spider silk fibers have impressive mechanical properties and are primarily composed of highly repeti...
Spider silk fibers have impressive mechanical properties and are primarily composed of highly repeti...
Araneoid spiders use specialized abdominal glands to produce up to seven different protein-based sil...
Spider silk from N. clavipes have a range of useful properties in addition to remarkable mechanical ...
Spider silks have outstanding mechanical properties. Most research has focused on dragline silk prot...
An individual orb weaving spider can spin up to seven different types of silk, each with unique func...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
<div><p>The extraordinary mechanical properties of spider dragline silk are dependent on the highly ...
Spiders produce multiple silks with different physical properties that allow them to occupy a divers...
Spider silks are highly repetitive proteins, characterized by regions of polyalanine and glycine-ric...
Spider silks have remarkable physical properties due to a combination of strength and elasticity. In...
Spider silks have remarkable physical properties due to a combination of strength and elasticity. In...
Spider silks have remarkable physical properties due to a combination of strength and elasticity. In...
Spider silk is a versatile protein fiber with a wide variety of uses. It possesses special character...
The extraordinary mechanical properties of spider dragline silk are dependent on the highly repetiti...