BGI Education Center, University of Chinese Academy of Sciences, Shenzhen, China.
Department of Biological Sciences, National University of Singapore, Singapore.
Protein Pept Lett. 2021;28(3):255-269. doi: 10.2174/0929866527666200907104401.
Spider silks have received extensive attention from scientists and industries around the world because of their remarkable mechanical properties, which include high tensile strength and extensibility. It is a leading-edge biomaterial resource, with a wide range of potential applications. Spider silks are composed of silk proteins, which are usually very large molecules, yet many silk proteins still remain largely underexplored. While there are numerous reviews on spider silks from diverse perspectives, here we provide a most up-to-date overview of the spider silk component protein family in terms of its molecular structure, evolution, hydrophobicity, and biomedical applications. Given the confusion regarding spidroin naming, we emphasize the need for coherent and consistent nomenclature for spidroins and provide recommendations for pre-existing spidroin names that are inconsistent with nomenclature. We then review recent advances in the components, identification, and structures of spidroin genes. We next discuss the hydrophobicity of spidroins, with particular attention on the unique aquatic spider silks. Aquatic spider silks are less known but may inspire innovation in biomaterials. Furthermore, we provide new insights into antimicrobial peptides from spider silk glands. Finally, we present possibilities for future uses of spider silks.
蜘蛛丝因其出色的机械性能而受到全球科学家和工业界的广泛关注,这些性能包括高强度和高延展性。它是一种前沿的生物材料资源,具有广泛的潜在应用。蜘蛛丝由丝蛋白组成,这些蛋白通常是非常大的分子,但许多丝蛋白仍未被充分探索。尽管有许多关于蜘蛛丝的综述从不同角度进行了探讨,但在这里,我们根据分子结构、进化、疏水性和生物医学应用,提供了蜘蛛丝组成蛋白家族的最新概述。鉴于对 spidroin 命名的混淆,我们强调需要对 spidroin 进行一致和连贯的命名,并为与命名法不一致的现有 spidroin 名称提供建议。然后,我们回顾了 spidroin 基因成分、鉴定和结构的最新进展。接下来,我们讨论了 spidroin 的疏水性,特别关注独特的水生蜘蛛丝。水生蜘蛛丝的了解较少,但可能激发对生物材料的创新。此外,我们还提供了蜘蛛丝腺抗菌肽的新见解。最后,我们展示了蜘蛛丝未来应用的可能性。