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Single Honeybee Silk Protein Mimics Properties of Multi-Protein Silk

机译:单个蜜蜂丝蛋白模拟多蛋白丝的特性

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Honeybee silk is composed of four fibrous proteins that, unlike other silks, are readily synthesized at full-length and high yield. The four silk genes have been conserved for over 150 million years in all investigated bee, ant and hornet species, implying a distinct functional role for each protein. However, the amino acid composition and molecular architecture of the proteins are similar, suggesting functional redundancy. In this study we compare materials generated from a single honeybee silk protein to materials containing all four recombinant proteins or to natural honeybee silk. We analyse solution conformation by dynamic light scattering and circular dichroism, solid state structure by Fourier Transform Infrared spectroscopy and Raman spectroscopy, and fiber tensile properties by stress-strain analysis. The results demonstrate that fibers artificially generated from a single recombinant silk protein can reproduce the structural and mechanical properties of the natural silk. The importance of the four protein complex found in natural silk may lie in biological silk storage or hierarchical self-assembly. The finding that the functional properties of the mature material can be achieved with a single protein greatly simplifies the route to production for artificial honeybee silk.
机译:蜜蜂的蚕丝由四种纤维蛋白组成,与其他蚕丝不同,它们很容易以全长和高产量合成。在所有被调查的蜜蜂,蚂蚁和大黄蜂物种中,这四个丝绸基因已经保存了超过1.5亿年,这意味着每种蛋白质都具有独特的功能。但是,蛋白质的氨基酸组成和分子结构相似,表明功能上的冗余。在这项研究中,我们将单个蜜蜂丝蛋白产生的材料与包含所有四种重组蛋白的材料或天然蜜蜂丝进行了比较。我们通过动态光散射和圆二色性分析溶液构象,通过傅立叶变换红外光谱和拉曼光谱分析固态结构,并通过应力应变分析分析纤维的拉伸性能。结果表明,由单个重组蚕丝蛋白人工产生的纤维可以再现天然蚕丝的结构和机械性能。在天然丝中发现的四种蛋白质复合物的重要性可能在于生物丝的存储或分层自组装。可以用单一蛋白质实现成熟材料的功能特性的发现大大简化了人工蜜蜂丝的生产途径。

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