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在纤维纺丝过程中,拖牵丝两种主要蛋白质成分的差异聚合。

Differential polymerization of the two main protein components of dragline silk during fibre spinning.

作者信息

Sponner Alexander, Unger Eberhard, Grosse Frank, Weisshart Klaus

机构信息

Institute for Molecular Biotechnology, Jena, Federal Republic of Germany.

出版信息

Nat Mater. 2005 Oct;4(10):772-5. doi: 10.1038/nmat1493. Epub 2005 Sep 25.

Abstract

Spider silks are some of the strongest materials found in nature. Achieving the high tensile strength and elasticity of the dragline of orb-weaving spiders, such as Nephila clavipes, is a principal goal in biomimetics research. The dragline has a composite nature and is predominantly made up by two proteins, the major ampullate spidroins 1 and 2 (refs 3, 6, 7), which can be considered natural block copolymers. On the basis of their molecular structures both spidroins are thought to contribute, in different ways, to the mechanical properties of dragline silk. The spinning process itself is also considered important for determining the observed features by shaping the hierarchical structure of the fibre. Here we study the heterogeneous distribution of proteins along the radial axis of the fibre. This heterogeneity is generated during the conversion of the liquid spinning dope into solid fibre. Whereas spidroin 1 is distributed almost uniformly within the fibre core, spidroin 2 is missing in the periphery and is tightly packed in certain core areas. Our findings suggest that the role of spidroin 2 in the spinning process could be to facilitate the formation of fibrils and contribute directly to the elasticity of the silk.

摘要

蜘蛛丝是自然界中发现的一些最强韧的材料。实现诸如金色圆蛛(Nephila clavipes)等圆网蛛的牵引丝的高拉伸强度和弹性,是仿生学研究的一个主要目标。牵引丝具有复合性质,主要由两种蛋白质组成,即主要壶腹蛛蛋白1和2(参考文献3、6、7),它们可被视为天然嵌段共聚物。基于它们的分子结构,两种蛛蛋白都被认为以不同方式对牵引丝的机械性能有贡献。纺丝过程本身对于通过塑造纤维的层次结构来确定所观察到的特性也很重要。在这里,我们研究了蛋白质沿纤维径向轴的非均匀分布。这种非均匀性是在液体纺丝原液转化为固体纤维的过程中产生的。虽然蛛蛋白1几乎均匀地分布在纤维芯内,但蛛蛋白2在外围缺失,并紧密堆积在某些芯区。我们的研究结果表明,蛛蛋白2在纺丝过程中的作用可能是促进原纤维的形成,并直接有助于丝的弹性。

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