Department of Biological Sciences, University of the Pacific, Stockton, California 95211, United States.
Biomacromolecules. 2010 Dec 13;11(12):3495-503. doi: 10.1021/bm101002w. Epub 2010 Nov 5.
Spider attachment disc silk fibers are spun into a viscous liquid that rapidly solidifies, gluing dragline silk fibers to substrates for locomotion or web construction. Here we report the identification and artificial spinning of a novel attachment disc glue silk fibroin, Pyriform Spidroin 2 (PySp2), from the golden orb weaver Nephila clavipes . MS studies support PySp2 is a constituent of the pyriform gland that is spun into attachment discs. Analysis of the PySp2 protein architecture reveals sequence divergence relative to the other silk family members, including the cob weaver glue silk fibroin PySp1. PySp2 contains internal block repeats that consist of two subrepeat units: one dominated by Ser, Gln, and Ala and the other Pro-rich. Artificial spinning of recombinant PySp2 truncations shows that the Ser-Gln-Ala-rich subrepeat is sufficient for the assembly of polymeric subunits and subsequent fiber formation. These studies support that both orb- and cob-weaving spiders have evolved highly polar block-repeat sequences with the ability to self-assemble into fibers, suggesting a strategy to allow fiber fabrication in the liquid environment of the attachment discs.
蜘蛛附着盘丝纤维被纺成粘性液体,迅速凝固,将牵引丝纤维粘在基质上,用于运动或织网。在这里,我们报告了一种新型附着盘胶丝纤维的鉴定和人工纺丝,即来自金蛛 Nephila clavipes 的梨形 Spidroin 2(PySp2)。MS 研究支持 PySp2 是梨形腺的组成部分,被纺成附着盘。对 PySp2 蛋白结构的分析表明,与其他丝家族成员(包括 cob weaver 胶丝纤维蛋白 PySp1)相比,存在序列差异。PySp2 包含内部块重复序列,由两个亚重复单元组成:一个以 Ser、Gln 和 Ala 为主,另一个富含 Pro。人工纺丝的重组 PySp2 截断表明,富含 Ser-Gln-Ala 的亚重复足以组装聚合亚基并随后形成纤维。这些研究支持orb-和 cob-weaving 蜘蛛已经进化出具有自我组装成纤维能力的高度极性块重复序列,这表明了一种在附着盘的液体环境中制造纤维的策略。