The Advanced Science Research Center, Graduate Center of the City University of New York, 85 St. Nicholas Terrace, New York, NY, 10031, USA.
The PhD Program in Biochemistry, Graduate Center of the City University of New York, 365 Fifth Avenue, New York, NY, 10016, USA.
Nat Commun. 2023 Sep 2;14(1):5361. doi: 10.1038/s41467-023-41094-z.
Every animal secretes mucus, placing them among the most diverse biological materials. Mucus hydrogels are complex mixtures of water, ions, carbohydrates, and proteins. Uncertainty surrounding their composition and how interactions between components contribute to mucus function complicates efforts to exploit their properties. There is substantial interest in commercializing mucus from the garden snail, Cornu aspersum, for skincare, drug delivery, tissue engineering, and composite materials. C. aspersum secretes three mucus-one shielding the animal from environmental threats, one adhesive mucus from the pedal surface of the foot, and another pedal mucus that is lubricating. It remains a mystery how compositional differences account for their substantially different properties. Here, we characterize mucus proteins, glycosylation, ion content, and mechanical properties that could be used to provide insight into structure-function relationships through an integrative "mucomics" approach. We identify macromolecular components of these hydrogels, including a previously unreported protein class termed Conserved Anterior Mollusk Proteins (CAMPs). Revealing differences between C. aspersum mucus shows how considering structure at all levels can inform the design of mucus-inspired materials.
每种动物都会分泌黏液,使它们成为生物材料中最多样化的一类。黏液水凝胶是由水、离子、碳水化合物和蛋白质组成的复杂混合物。由于其组成的不确定性以及各成分之间的相互作用如何影响黏液功能,这使得利用其特性的工作变得复杂。商业化利用花园蜗牛(Cornu aspersum)黏液在皮肤护理、药物输送、组织工程和复合材料方面有很大的兴趣。C. aspersum 分泌三种黏液:一种是保护动物免受环境威胁的黏液,一种是来自足部表面的粘性黏液,另一种是具有润滑作用的足部黏液。目前还不清楚成分差异如何导致它们具有截然不同的性质。在这里,我们对黏液蛋白、糖基化、离子含量和机械性能进行了表征,这可以通过一种整合的“黏液组学”方法来深入了解结构-功能关系。我们确定了这些水凝胶的大分子成分,包括一种以前未报道过的蛋白类,称为保守前软体动物蛋白(CAMPs)。揭示 C. aspersum 黏液之间的差异表明,考虑所有层次的结构如何为设计受黏液启发的材料提供信息。