Jain Dharamdeep, Zhang Ci, Cool Lydia Rose, Blackledge Todd A, Wesdemiotis Chrys, Miyoshi Toshikazu, Dhinojwala Ali
Department of Polymer Science, The University of Akron , Akron, Ohio 44325-3909, United States.
Department of Chemistry, The University of Akron , Akron, Ohio 44325-3601, United States.
Biomacromolecules. 2015 Oct 12;16(10):3373-80. doi: 10.1021/acs.biomac.5b01040. Epub 2015 Sep 10.
Capture silks are an interesting class of biological glues that help spiders subdue their prey. Viscid capture silk produced by the orb web spiders is a combination of hygroscopic salts that aid in water uptake and interact with adhesive glycoproteins to make them soft and sticky. The orb was a stepping stone to the evolution of new web types, but little is known about the adhesives in these webs. For instance, cobweb spiders evolved from orb-weaving ancestors and utilize glue in specialized sticky gumfoot threads rather than an elastic spiral. Early investigation suggests that gumfoot adhesives are quite different viscid glues because they lack a visible glycoprotein core, act as viscoelastic fluids rather than solids, and are largely invariant to humidity. Here, we use spectroscopic and staining methods to show that the gumfoot silk produced by Latrodectus hesperus (western black widow) is composed of hygroscopic organic salts and water insoluble glycoproteins, similar to viscid silk, in addition to a low concentration of spider coating peptides reported before. Our adhesion studies reveal that the organic salts play an important role in adhesion, similar to that seen in orb web spiders, but modulating function at much lower humidity. Our work shows more similarities in the viscid silk produced by orb web and cobweb spiders than previously anticipated and provide guidelines for developing synthetic adhesives that can work in dry to humid environments.
捕获丝是一类有趣的生物胶水,有助于蜘蛛制服猎物。圆蛛产生的粘性捕获丝是吸湿盐的组合,这些吸湿盐有助于吸收水分,并与粘性糖蛋白相互作用,使其变得柔软且有粘性。圆网是新型蛛网进化的一个跳板,但对于这些蛛网中的粘合剂了解甚少。例如,结网蜘蛛从织圆网的祖先进化而来,它们在专门的粘性胶足丝中使用胶水,而不是弹性螺旋丝。早期研究表明,胶足粘合剂与粘性胶水有很大不同,因为它们没有可见的糖蛋白核心,表现为粘弹性流体而非固体,并且在很大程度上不受湿度影响。在这里,我们使用光谱和染色方法表明,西方黑寡妇蜘蛛产生的胶足丝除了之前报道的低浓度蜘蛛包被肽外,还由吸湿有机盐和水不溶性糖蛋白组成,类似于粘性丝。我们的粘附研究表明,有机盐在粘附中起着重要作用,这与圆蛛中观察到的情况类似,但在低得多的湿度下调节功能。我们的工作表明,圆蛛和结网蜘蛛产生的粘性丝之间的相似性比之前预期的更多,并为开发可在干燥至潮湿环境中发挥作用的合成粘合剂提供了指导。