Suppr超能文献

探索蜘蛛丝的弹性本质以追寻下一种定制纤维。

Probing the elastic nature of spider silk in pursuit of the next designer fiber.

作者信息

Brooks Amanda E, Lewis Randolph V

机构信息

Department of Molecular Biology, University of Wyoming, Laramie, WY 82071, USA.

出版信息

Biomed Sci Instrum. 2004;40:232-7.

Abstract

Spider silk, one of nature's greatest accomplishments, has a combination of strength and elasticity that is unrivaled. Spiders produce up to 7 different silks; each one with a unique combination of tensile strength and elasticity that allows the spiders' web to hold prey while being resilient enough not to break upon impact. In an attempt to determine the sequences responsible for these enviable mechanical properties, several different amino acid motifs have been defined. Much of the recent work is now concentrated on correlating amino acid motifs with a specific mechanical property. The current hypothesis is that the strength property of spider silk is conferred by a poly-alanine or alanine rich (An or GAn) motif whereas the elastic nature of spider silk is conferred by the amino acid motif, GPGXX, where X is Q, S, A, G, or Y. Despite the fact that these different motifs are now known, the combination of strength and elasticity are yet to be duplicated ex vivo. In an attempt to verify that the GPGXX motif imparts elasticity to the spider silk, the number of repeats and/or the amino acid composition of the Argiope aurantia "elastic motif" were varied and expressed in various strains of E. coli to change the elastic properties of the resulting film and/or fiber. Concurrent with work on the elasticity motif is ongoing work on the strength module. Understanding these two different motifs will aide efforts to produce a designer biomaterial for medical, commercial, and military applications.

摘要

蜘蛛丝是大自然最伟大的杰作之一,它兼具强度和弹性,无与伦比。蜘蛛能产生多达7种不同的丝;每一种都具有独特的拉伸强度和弹性组合,使蜘蛛网能够捕获猎物,同时又具有足够的弹性,不会在受到冲击时断裂。为了确定赋予这些令人羡慕的机械性能的序列,人们定义了几种不同的氨基酸基序。最近的许多工作都集中在将氨基酸基序与特定的机械性能联系起来。目前的假设是,蜘蛛丝的强度特性由聚丙氨酸或富含丙氨酸的(An或GAn)基序赋予,而蜘蛛丝的弹性本质则由氨基酸基序GPGXX赋予,其中X为Q、S、A、G或Y。尽管现在已经知道了这些不同的基序,但强度和弹性的组合尚未在体外复制出来。为了验证GPGXX基序赋予蜘蛛丝弹性,人们改变了金蛛“弹性基序”的重复次数和/或氨基酸组成,并在各种大肠杆菌菌株中表达,以改变所得薄膜和/或纤维的弹性性能。与弹性基序的研究同时进行的是强度模块的研究。了解这两种不同的基序将有助于为医疗、商业和军事应用生产定制生物材料。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验