Spider attachrnentdisc silk fibers are spun into a viscous liquid that rapidly solidifies, gluing dragline silk fibers to substrates for locomotion or web construction. Here we report the identification and artificial spinning of a novel attachment disc glue silk fibroin, Pyriform Spidroin 2 (PySp2), from the golden orb weaver Nephila c/avipes. MS studies support PySp2 is a constituent of the pyriform gland that is spun into attachment discs. Analysis of the PySp2 protein architecture reveals sequence divergence relative to the other silk family members, including the cob weaver glue silk fibroin PySpl. PySp2 contains internal block repeats that consist of two sub-repeat units: one dominated by Ser, Gin and Ala, the other Pro-rich. Artifici...
Most spiders spin multiple types of silk, including silks for reproduction, prey capture, and dragli...
Most spiders spin multiple types of silk, including silks for reproduction, prey capture, and dragli...
Spider silk is known for its extraordinary material properties, being both very strong and extensibl...
Due to certain characteristics of spider silk, such as high elasticity and tensile strength, researc...
Extensive research on the properties of spider silk has sparked the interests of the general communi...
Spider silk is a natural high-performance biopolymer with superior mechanical propetiies. Although t...
Spider silk is composed of proteins that allow for its high extensibility and tensile strength, maki...
An individual orb weaving spider can spin up to seven different types of silk, each with unique func...
The biological mechanisms that spiders use to spin silk fibers remains a mystery to scientists, maki...
Spider silk is known for its high performance mechanical properties. Spider silk is tougher than hig...
Spider silks have outstanding mechanical properties. Most research has focused on dragline silk prot...
Spider silk is a biodegradable, non-toxic biopolymer that is stronger than Kelvar, Nylon, and steel....
Spider silk, known for its tensile strength, extensibility and toughness, has a wide array of potent...
Orb-web building spiders produce a functional variety of fibrous silks that exhibit a range in mech...
Dragline silk from orb-weaving spiders is a copolymer of two large proteins, major ampullate spidroi...
Most spiders spin multiple types of silk, including silks for reproduction, prey capture, and dragli...
Most spiders spin multiple types of silk, including silks for reproduction, prey capture, and dragli...
Spider silk is known for its extraordinary material properties, being both very strong and extensibl...
Due to certain characteristics of spider silk, such as high elasticity and tensile strength, researc...
Extensive research on the properties of spider silk has sparked the interests of the general communi...
Spider silk is a natural high-performance biopolymer with superior mechanical propetiies. Although t...
Spider silk is composed of proteins that allow for its high extensibility and tensile strength, maki...
An individual orb weaving spider can spin up to seven different types of silk, each with unique func...
The biological mechanisms that spiders use to spin silk fibers remains a mystery to scientists, maki...
Spider silk is known for its high performance mechanical properties. Spider silk is tougher than hig...
Spider silks have outstanding mechanical properties. Most research has focused on dragline silk prot...
Spider silk is a biodegradable, non-toxic biopolymer that is stronger than Kelvar, Nylon, and steel....
Spider silk, known for its tensile strength, extensibility and toughness, has a wide array of potent...
Orb-web building spiders produce a functional variety of fibrous silks that exhibit a range in mech...
Dragline silk from orb-weaving spiders is a copolymer of two large proteins, major ampullate spidroi...
Most spiders spin multiple types of silk, including silks for reproduction, prey capture, and dragli...
Most spiders spin multiple types of silk, including silks for reproduction, prey capture, and dragli...
Spider silk is known for its extraordinary material properties, being both very strong and extensibl...