1] Lehrstuhl Biomaterialien, Fakultät für Ingenieurwissenschaften, Universität Bayreuth, Universitätsstraße 30, Bayreuth 95440, Germany [2].
1] Lehrstuhl Biochemie, Fakultät für Biologie, Chemie und Geowissenschaften, Universität Bayreuth, Universitätsstraße 30, Bayreuth 95440, Germany [2].
Nat Commun. 2014 Feb 26;5:3392. doi: 10.1038/ncomms4392.
Blue mussels adhere to surfaces by the byssus, a holdfast structure composed of individual threads representing a collagen fibre reinforced composite. Here, we present the crystal structure and function of one of its matrix proteins, the proximal thread matrix protein 1, which is present in the proximal section of the byssus. The structure reveals two von Willebrand factor type A domains linked by a two-β-stranded linker yielding a novel structural arrangement. In vitro, the protein binds heterologous collagens with high affinity and affects collagen assembly, morphology and arrangement of its fibrils. By providing charged surface clusters as well as insufficiently coordinated metal ions, the proximal thread matrix protein 1 might interconnect other byssal proteins and thereby contribute to the integrity of the byssal threads in vivo. Moreover, the protein could be used for adjusting the mechanical properties of collagen materials, a function likely important in the natural byssus.
贻贝通过贻贝附着在表面,附着结构由单个线组成,代表胶原纤维增强复合材料。在这里,我们介绍了其基质蛋白之一,即近丝基质蛋白 1 的晶体结构和功能,该蛋白存在于贻贝的近丝段。该结构揭示了两个 von Willebrand 因子 A 结构域通过一个两β-链接头连接,形成一种新颖的结构排列。在体外,该蛋白以高亲和力结合异种胶原蛋白,并影响胶原蛋白的组装、形态和纤维排列。通过提供带电荷的表面簇以及配位不足的金属离子,近丝基质蛋白 1 可能将其他贻贝蛋白相互连接,从而有助于体内贻贝丝的完整性。此外,该蛋白可用于调节胶原材料的机械性能,这一功能在天然贻贝中可能很重要。