The mechanical design of spider silks: from fibroin sequence to mechanical function
Open Access
- 1 December 1999
- journal article
- review article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 202 (23) , 3295-3303
- https://doi.org/10.1242/jeb.202.23.3295
Abstract
Spiders produce a variety of silks, and the cloning of genes for silk fibroins reveals a clear link between protein sequence and structure–property relationships. The fibroins produced in the spider’s major ampullate (MA) gland, which forms the dragline and web frame, contain multiple repeats of motifs that include an 8–10 residue long poly-alanine block and a 24–35 residue long glycine-rich block. When fibroins are spun into fibres, the poly-alanine blocks form β-sheet crystals that crosslink the fibroins into a polymer network with great stiffness, strength and toughness. As illustrated by a comparison of MA silks from Araneus diadematus and Nephila clavipes, variation in fibroin sequence and properties between spider species provides the opportunity to investigate the design of these remarkable biomaterials.Keywords
This publication has 21 references indexed in Scilit:
- Evidence from flagelliform silk cDNA for the structural basis of elasticity and modular nature of spider silks 1 1Edited by M. F. MoodyJournal of Molecular Biology, 1998
- Small-Angle X-ray Scattering of Spider Dragline SilkMacromolecules, 1997
- Fiber Morphology of Spider Silk: The Effects of Tensile DeformationMacromolecules, 1997
- Silk Properties Determined by Gland-Specific Expression of a Spider Fibroin Gene FamilyScience, 1996
- Artificial Spider SilkScience News, 1996
- Molecular Orientation and Two-Component Nature of the Crystalline Fraction of Spider Dragline SilkScience, 1996
- Local Structure in Spider Dragline Silk Investigated by Two-Dimensional Spin-Diffusion Nuclear Magnetic ResonanceMacromolecules, 1996
- Mechanical and thermal properties of dragline silk from the spider Nephila clavipesPolymers for Advanced Technologies, 1994
- Spider Webs and SilksScientific American, 1992
- Spider silk as rubberNature, 1984