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Preparation of Silk-Like Fibers Designed by Self-Assembled Ionic Polypeptides

✍ Scribed by Masakazu Hachisu; Kousaku Ohkawa; Hiroyuki Yamamoto


Book ID
102467855
Publisher
John Wiley and Sons
Year
2003
Tongue
English
Weight
251 KB
Volume
3
Category
Article
ISSN
1616-5187

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✦ Synopsis


Abstract

Natural protein fibers, such as silk, having high‐performance characteristics have been important materials in biopolymer research. This article reports the development of a silk‐like extensible poly(α,L‐amino acid) fiber inspired by self‐assembly of polypeptides in living systems. Electrostatic interaction was employed as the driving force for building the fiber, and we succeeded in spinning the fiber from an aqueous solution interface between poly(α,L‐lysine) (PLL) and poly(α,L‐glutamic acid) (PLG). When the PLL/PLG fiber was formed, the conformations of PLL and PLG were changed from random to β‐structures. A remarkable feature of the PLL/PLG fiber is the high extensibility. Mechanical stretching of the PLL/PLG fiber resulted in a change from an extensible fiber to a rigid and strong fiber. These features depend on the molecular conformation and the deviation in the amino acid composition of the PLL/PLG fibers. This concept and the poly(α,L‐amino acid) fibers themselves allow the production of new protein fibers and aid the development of the science of protein folding as well as giving insight into the noncovalent interactions involved in self‐assembly.

SEM micrograph showing that the surface of the stretched fiber is smooth.

magnified imageSEM micrograph showing that the surface of the stretched fiber is smooth.


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