de C Bittencourt Daniela M, Oliveira Paula F, Souto Betulia M, de Freitas Sonia M, Silva Luciano P, Murad Andre M, Michalczechen-Lacerda Valquiria A, Lewis Randolph V, Rech Elibio L
Brazilian Agriculture Research Corporation - Embrapa Genetic Resources and Biotechnology CENARGEN, Parque Estação Biológica, PqEB, Av. W5 Norte (final), Brasília DF, 70770-917, Brazil.
Department of Biology, Utah State University, 5305 Old Main Hill, Logan UT, 84322-5305, US.
Macromol Mater Eng. 2021 Jan;306(1). doi: 10.1002/mame.202000530. Epub 2020 Nov 6.
In order to better understand the relationship between Flagelliform (Flag) spider silk molecular structural organization and the mechanisms of fiber assembly, it was designed and produced the Flag spidroin analogue rNcFlag2222. The recombinant proteins are composed by the elastic repetitive glycine-rich motifs (GPGGX/GGX) and the spacer region, rich in hydrophilic charged amino acids, present at the native silk spidroin. Using different approaches for nanomolecular protein analysis, the structural data of rNcFlag2222 recombinant proteins were compared in its fibrillar and in its fully solvated states. Based on the results was possible to identify the molecular structural dynamics of NcFlag2222 prior to and after fiber formation. Overal rNcFlag2222 shows a mixture of semiflexible and rigid conformations, characterized mostly by the presence of PPII, β-turn and β-sheet. These results agree with previous studies and bring insights about the molecular mechanisms that might driven Flag silk fibers assembly and elastomeric behavior.
为了更好地理解鞭状(Flag)蜘蛛丝的分子结构组织与纤维组装机制之间的关系,设计并制备了鞭状蛛丝蛋白类似物rNcFlag2222。重组蛋白由弹性重复富含甘氨酸的基序(GPGGX/GGX)和存在于天然蛛丝蛋白中的富含亲水性带电荷氨基酸的间隔区域组成。使用不同的纳米分子蛋白质分析方法,比较了rNcFlag2222重组蛋白在其纤维状和完全溶剂化状态下的结构数据。基于这些结果,有可能确定NcFlag2222在纤维形成前后的分子结构动力学。总体而言,rNcFlag2222呈现出半柔性和刚性构象的混合,其主要特征是存在PPII、β-转角和β-折叠。这些结果与先前的研究一致,并为可能驱动鞭状蜘蛛丝纤维组装和弹性行为的分子机制提供了见解。