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蛋白质组成与蜘蛛(三带金蛛)拖网丝的力学性能相关。

Protein composition correlates with the mechanical properties of spider ( Argiope trifasciata ) dragline silk.

作者信息

Marhabaie Mohammad, Leeper Thomas C, Blackledge Todd A

机构信息

Department of Biology and Integrated Bioscience Program, The University of Akron , Akron, Ohio 44325-3908, United States.

出版信息

Biomacromolecules. 2014 Jan 13;15(1):20-9. doi: 10.1021/bm401110b. Epub 2013 Dec 17.

Abstract

We investigated the natural variation in silk composition and mechanical performance of the orb-weaving spider Argiope trifasciata at multiple spatial and temporal scales in order to assess how protein composition contributes to the remarkable material properties of spider dragline silk. Major ampullate silk in orb-weaving spiders consists predominantly of two proteins (MaSp1 and MaSp2) with divergent amino acid compositions and functionally different microstructures. Adjusting the expression of these two proteins therefore provides spiders with a simple mechanism to alter the material properties of their silk. We first assessed the reliability and precision of the Waters AccQ-Tag amino acid composition analysis kit for determining the amino acid composition of small quantities of spider silk. We then tested how protein composition varied within single draglines, across draglines spun by the same spider on different days, and finally between spiders. Then, we correlated chemical composition with the material properties of dragline silk. Overall, we found that the chemical composition of major ampullate silk was in general homogeneous among individuals of the same population. Variation in chemical composition was not detectable within silk spun by a single spider on a single day. However, we found that variation within a single spider's silk across different days could, in rare instances, be greater than variation among individual spiders. Most of the variation in silk composition in our investigation resulted from a small number of outliers (three out of sixteen individuals) with a recent history of stress, suggesting stress affects silk production process in orb web spiders. Based on reported sequences for MaSp genes, we developed a gene expression model showing the covariation of the most abundant amino acids in major ampullate silk. Our gene expression model supports that dragline silk composition was mostly determined by the relative abundance of MaSp1 and MaSp2. Finally, we showed that silk composition (especially proline content) strongly correlated with some measures of mechanical performance, particularly how much fibers shrunk during supercontraction as well as their breaking strains. Our findings suggest that spiders are able to change the relative expression rates of different MaSp genes to produce silk fibers with different chemical compositions, and hence, different material properties.

摘要

我们在多个空间和时间尺度上研究了三角园蛛(Argiope trifasciata)蛛网丝的成分和机械性能的自然变异,以评估蛋白质组成如何对蜘蛛拖丝卓越的材料特性产生影响。园蛛的主要壶腹状丝主要由两种蛋白质(MaSp1和MaSp2)组成,它们的氨基酸组成不同,微观结构也具有不同功能。因此,调节这两种蛋白质的表达为蜘蛛提供了一种改变其蛛丝材料特性的简单机制。我们首先评估了沃特世AccQ-Tag氨基酸组成分析试剂盒用于测定少量蜘蛛丝氨基酸组成的可靠性和精度。然后,我们测试了蛋白质组成在单根拖丝内、同一蜘蛛在不同日期纺出的拖丝之间以及不同蜘蛛之间是如何变化的。接着,我们将化学成分与拖丝的材料特性进行了关联。总体而言,我们发现同一群体个体之间主要壶腹状丝的化学成分通常是均匀的。在单个蜘蛛同一天纺出的丝内无法检测到化学成分的变化。然而,我们发现,在极少数情况下,同一蜘蛛不同日期的蛛丝内的变化可能大于个体蜘蛛之间的变化。我们研究中蛛丝成分的大多数变化是由少数有近期应激史的异常值(16个个体中有3个)导致的,这表明应激会影响园蛛的吐丝过程。基于已报道的MaSp基因序列,我们开发了一个基因表达模型,展示了主要壶腹状丝中最丰富氨基酸的共变情况。我们的基因表达模型支持拖丝组成主要由MaSp1和MaSp2的相对丰度决定。最后,我们表明蛛丝组成(尤其是脯氨酸含量)与一些机械性能指标密切相关,特别是纤维在超收缩过程中的收缩程度以及它们的断裂应变。我们的研究结果表明,蜘蛛能够改变不同MaSp基因的相对表达率,以生产具有不同化学成分、从而具有不同材料特性的丝纤维。

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