4.7 Article

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

期刊

BIOMACROMOLECULES
卷 16, 期 10, 页码 3119-3125

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.biomac.5b00724

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资金

  1. National Basic Research Program of China [2012CB114604]
  2. National Hi-Tech Research and Development Program of China [2011AA100306]
  3. National Natural Science Foundation [31472154]

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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.

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