Puhlmann Annelie, Baydaroglu Cihan, Schade Boris, Gradzielski Michael, Koksch Beate
Institute of Chemistry and Biochemistry, Freie Universität Berlin, Berlin, Germany.
Stranski-Laboratorium für Physikalische und Theoretische Chemie, Institut für Chemie, Technische Universität Berlin, Berlin, Germany.
J Pept Sci. 2025 Nov;31(11):e70059. doi: 10.1002/psc.70059.
Mucus is the biological hydrogel that lines the mucosal surfaces of mammals and acts as a protective barrier. Its main proteinaceous component is mucin, the high molecular weight, degree of glycosylation, and hardly uniquely defined nature of which hamper precise structures/property investigations based on biological samples. In contrast, chemically precisely defined peptide model systems inspired by such natural glycoproteins represent synthetically readily obtainable tools with excellent properties for both fundamental research and biomedical applications. Herein, we report the design and characterization of a library of histidine- and monosaccharide-containing coiled coil peptides that form hydrogels to different degrees in the presence of divalent metal ions Cu, Zn, Ca, and Fe. Using rheology, circular dichroism, and transmission electron microscopy, we determined the viscoelastic properties and global structures of these glycopeptide materials. This study reflects the interplay between glycan identity, histidine position, and divalent metal ion on the mechanical strength of these hydrogels.
黏液是一种生物水凝胶,覆盖在哺乳动物的黏膜表面,起到保护屏障的作用。其主要蛋白质成分是黏蛋白,因其高分子量、糖基化程度以及难以明确界定的性质,阻碍了基于生物样品的精确结构/性质研究。相比之下,受此类天然糖蛋白启发而设计的化学定义精确的肽模型系统,是合成上易于获得的工具,在基础研究和生物医学应用方面都具有优异的性能。在此,我们报告了一个包含组氨酸和单糖的卷曲螺旋肽文库的设计与表征,这些肽在二价金属离子铜、锌、钙和铁存在的情况下会不同程度地形成水凝胶。通过流变学、圆二色性和透射电子显微镜,我们确定了这些糖肽材料的粘弹性性质和整体结构。这项研究反映了聚糖特性、组氨酸位置和二价金属离子对这些水凝胶机械强度的相互作用。