Embrapa Genetic Resources and Biotechnology, PBI, Parque Estação Biológica Final W5 Norte , Brasília 70770-917, DF, Brazil.
Sci Data. 2014 Oct 14;1:140040. doi: 10.1038/sdata.2014.40. eCollection 2014.
Spider silk fibres share unprecedented structural and mechanical properties which span from the macroscale to nanoscale and beyond. This is possible due to the molecular features of modular proteins termed spidroins. Thus, the investigation of the organizational scaffolds observed for spidroins in spider silk fibres is of paramount importance for reverse bioengineering. This dataset consists in describing a rational screening procedure to identify the nanoscale features of spider silk fibres. Using atomic force microscopy operated in multiple acquisition modes, we evaluated silk fibres from nine spider species. Here we present the complete results of the analyses and decrypted a number of novel features that could even rank the silk fibres according to desired mechanostructural features. This dataset will allow other researchers to select the most appropriate models for synthetic biology and also lead to better understanding of spider silk fibres extraordinary performance that is comparable to the best manmade materials.
蜘蛛丝纤维具有前所未有的结构和力学性能,从宏观尺度到纳米尺度甚至更远。这是由于被称为蜘蛛丝蛋白的模块化蛋白质的分子特征所致。因此,研究蜘蛛丝纤维中蜘蛛丝蛋白的组织支架对于反向生物工程至关重要。该数据集用于描述一种合理的筛选程序,以识别蜘蛛丝纤维的纳米级特征。我们使用多种采集模式的原子力显微镜评估了来自 9 种蜘蛛的丝纤维。在这里,我们呈现了分析的完整结果,并解密了一些新的特征,甚至可以根据所需的机械结构特征对丝纤维进行排序。该数据集将允许其他研究人员为合成生物学选择最合适的模型,并有助于更好地理解蜘蛛丝纤维的卓越性能,其性能可与最好的人造材料相媲美。