Department of Mechanical Engineering and Munich School of Bioengineering, Technical University of Munich, Boltzmannstraße 15, 85748 Garching, Germany.
Center for Protein Assemblies, Technical University of Munich, Ernst-Otto-Fischer Str. 8, 85748 Garching, Germany.
Biomacromolecules. 2021 Apr 12;22(4):1600-1613. doi: 10.1021/acs.biomac.1c00073. Epub 2021 Mar 22.
Commercial mucin glycoproteins are routinely used as a model to investigate the broad range of important functions mucins fulfill in our bodies, including lubrication, protection against hostile germs, and the accommodation of a healthy microbiome. Moreover, purified mucins are increasingly selected as building blocks for multifunctional materials, i.e., as components of hydrogels or coatings. By performing a detailed side-by-side comparison of commercially available and lab-purified variants of porcine gastric mucins, we decipher key molecular motifs that are crucial for mucin functionality. As two main structural features, we identify the hydrophobic termini and the hydrophilic glycosylation pattern of the mucin glycoprotein; moreover, we describe how alterations in those structural motifs affect the different properties of mucins-on both microscopic and macroscopic levels. This study provides a detailed understanding of how distinct functionalities of gastric mucins are established, and it highlights the need for high-quality mucins-for both basic research and the development of mucin-based medical products.
商业黏蛋白糖蛋白通常被用作模型,以研究黏蛋白在我们体内发挥的广泛的重要功能,包括润滑、抵御有害细菌和容纳健康的微生物组。此外,纯化的黏蛋白越来越多地被选为多功能材料的构建块,即作为水凝胶或涂层的组成部分。通过对商业上可获得的和实验室纯化的猪胃黏蛋白变体进行详细的并排比较,我们揭示了对黏蛋白功能至关重要的关键分子模体。作为两个主要的结构特征,我们确定了黏蛋白糖蛋白的疏水性末端和亲水性糖基化模式;此外,我们描述了这些结构模体的改变如何影响黏蛋白在微观和宏观水平上的不同性质。这项研究深入了解了胃黏蛋白的不同功能是如何建立的,并强调了高质量黏蛋白的必要性,无论是用于基础研究还是开发基于黏蛋白的医疗产品。