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Modifying the Mechanical Properties of Silk Fiber by Genetically Disrupting the Ionic Environment for Silk Formation

机译:通过基因破坏离子形成丝的环境来改变丝纤维的机械性能

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摘要

Silks are widely used biomaterials, but there are still weaknesses in their mechanical properties. Here we report a method for improving the silk fiber mechanical properties by genetic disruption of the ionic environment for silk fiber formation. An anterior silk gland (ASG) specific promoter was identified and used for overexpressing ion-transporting protein in the ASG of silkworm. After isolation of the transgenic silkworms, we found that the metal ion content, conformation and mechanical properties of transgenic silk fibers changed accordingly. Notably, overexpressing endoplasmic reticulum Ca2+-ATPase in ASG decreased the calcium content of silks. As a consequence, silk fibers had more alpha-helix and beta-sheet conformations, and their tenacity and extension increased significantly. These findings represent the in vivo demonstration of a correlation between metal ion content in the spinning duct and the mechanical properties of silk fibers, thus providing a novel method for modifying silk fiber properties.
机译:丝绸是广泛使用的生物材料,但其机械性能仍存在缺陷。在这里,我们报告了一种通过离子破坏丝纤维形成的离子环境来改善丝纤维机械性能的方法。鉴定了前丝腺(ASG)特异性启动子,并将其用于家蚕ASG中过表达离子转运蛋白。分离转基因蚕后,我们发现转基因蚕丝纤维的金属离子含量,构象和机械性能发生了相应变化。值得注意的是,ASG中过表达内质网Ca2 + -ATPase降低了蚕丝的钙含量。结果,丝纤维具有更多的α-螺旋和β-折叠构象,并且其韧性和延伸性显着提高。这些发现代表了纺丝管中金属离子含量与丝纤维机械性能之间相关性的体内证明,从而提供了一种改变丝纤维性能的新颖方法。

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