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Extraordinary Mechanical Properties of Composite Silk Through Hereditable Transgenic Silkworm Expressing Recombinant Major Ampullate Spidroin

机译:通过可表达转基因主要壶腹丝氨酸的可转基因家蚕复合丝的非凡力学性能

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摘要

Spider dragline silk is a remarkable material that shows excellent mechanical properties, diverse applications, biocompatibility and biodegradability. Transgenic silkworm technology was used to obtain four types of chimeric silkworm/spider (termed composite) silk fibres, including different lengths of recombinant Major ampullate Spidroin1 (re-MaSp1) or recombinant Major ampullate Spidroin2 (re-MaSp2) from the black widow spider, Latrodectus hesperus. The results showed that the overall mechanical properties of composite silk fibres improved as the re-MaSp1 chain length increased, and there were significant linear relationships between the mechanical properties and the re-MaSp1 chain length (p < 0.01). Additionally, a stronger tensile strength was observed for the composite silk fibres that included re-MaSp1, which only contained one type of repetitive motif, (GA)n/An, to provide tensile strength, compared with the silk fibres that includedre-MaSp2, which has the same protein chain length as re-MaSp1 but contains multiple types of repetitive motifs, GPGXX and (GA)n/An. Therefore, the results indicated that the nature of various repetitive motifs in the primary structure played an important role in imparting excellent mechanical properties to the protein-based silk fibres. A silk protein with a single type of repetitive motif and sufficiently long chains was determined to be an additional indispensable factor. Thus, this study forms a foundation for designing and optimizing the structure of re-silk protein using a heterologous expression system.
机译:蜘蛛拉铲丝是一种非凡的材料,具有出色的机械性能,多种应用,生物相容性和生物降解性。转基因蚕技术用于从黑寡妇蜘蛛中获得四种类型的嵌合蚕/蜘蛛(称为复合)丝纤维,包括不同长度的重组主要壶腹Spidroin1(re-MaSp1)或重组主要壶腹Spidroin2(re-MaSp2),百日草结果表明,随着re-MaSp1链长的增加,复合丝纤维的整体力学性能提高,并且力学性能与re-MaSp1链长之间存在显着的线性关系(p <0.01)。此外,与包括re-MaSp2的蚕丝纤维相比,包含re-MaSp1的复合丝纤维的抗张强度更高,其中re-MaSp1仅包含一种重复图案(GA)n / An,以提供拉伸强度。它具有与re-MaSp1相同的蛋白质链长度,但包含多种类型的重复基序GPGXX和(GA)n / An。因此,结果表明,一级结构中各种重复基序的性质在赋予基于蛋白质的丝纤维优异的机械性能方面起着重要作用。具有单一类型的重复基序和足够长的链的丝蛋白被确定为另外的必不可少的因素。因此,本研究为使用异源表达系统设计和优化重丝蛋白结构奠定了基础。

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