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Towards engineering and production of artificial spider silk using tools of synthetic biology

机译:利用合成生物学工具的人工蜘蛛丝的工程与生产

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摘要

Spider silk is one of the strongest biomaterials available in nature. Its mechanical properties make it a good candidate for applications in various fields ranging from protective armour to bandages for wound dressing to coatings for medical implants. Spider silk is formed by an intricate arrangement of spidroins, which are extremely large proteins containing long stretches of repeating segments rich in alanine and glycine. A large amount of research has been directed towards harnessing the spectacular potential of spider silks and using them for different applications. The interdisciplinary approach of synthetic biology is an ideal tool to study these spider silk proteins and work towards the engineering and production of synthetic spider silk. This review aims to highlight the recent progress that has been made in the study of spider silk proteins using different branches of synthetic biology. Here, the authors discuss the different computational approaches, directed evolution techniques and various expression platforms that have been tested for the successful production of spider silk. Future challenges facing the field and possible solutions offered by synthetic biology are also discussed.
机译:蜘蛛丝是自然中最强的生物材料之一。其机械性能使其成为各种田地中的应用的良好候选者,从保护盔甲到缠绕衣物涂料的绷带,用于医疗植入物的涂料。蜘蛛丝由蜘蛛素的复杂排列形成,这是极大的蛋白质,其含有富含丙氨酸和甘氨酸富含富含丙氨酸的重复段。已经针对利用蜘蛛丝网的壮观潜力并使用它们进行不同的应用。合成生物学的跨学科方法是研究这些蜘蛛丝蛋白的理想工具,并朝着合成蜘蛛丝的工程和生产工作。该审查旨在突出利用合成生物学的不同分支研究蜘蛛丝蛋白研究的最新进展。在这里,作者讨论了已经测试过蜘蛛丝的成功生产的不同计算方法,定向的演化技术和各种表达平台。还讨论了该领域面临的未来挑战和合成生物学提供的可能解决方案。

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