Iconomidou Vassiliki A, Hamodrakas Stavros J
Department of Cell Biology and Biophysics, Faculty of Biology, University of Athens, Panepistimiopolis, Athens 15701, Greece.
Curr Protein Pept Sci. 2008 Jun;9(3):291-309. doi: 10.2174/138920308784534041.
Amyloidoses are a group of diseases including neurodegenerative diseases like Alzheimer's disease and also type II diabetes, spongiform encephalopathies and many others, believed to be caused by protein aggregation and subsequent amyloid fibril formation. However, occasionally, living organisms exploit amyloid fibril formation, a property inherent into amino acid sequences, and perform specific physiological functions from amyloids, in differing biological contexts. Some of these functional amyloids are natural protective amyloids. Here, we review recent evidence on silkmoth chorion protein synthetic peptide-analogues that documents the function of silkmoth chorion, the major component of the eggshell, a structure with extraordinary physiological and mechanical properties, as a natural protective amyloid. Also, we briefly discuss the reported function of other natural, protective amyloids like fish chorion, the protein Pmel17 which forms amyloid fibrils that act as templates and accelerate the covalent polymerization of reactive small molecules into melanin, the hydrophobins and the antifreeze protein from winter flounder. Molecular self-assembly is becoming an increasingly popular route to new supramolecular structures and molecular materials and the inspiration for such structures is commonly derived from self-assembling systems in biology. Therefore, a careful examination of these studies may set the basis for the exploration of new routes for the formation of novel biocompatible polymeric structures with exceptional physico-chemical properties, for potentially new biomedical and industrial applications.
淀粉样变性是一组疾病,包括像阿尔茨海默病这样的神经退行性疾病,还有II型糖尿病、海绵状脑病以及许多其他疾病,据信这些疾病是由蛋白质聚集以及随后的淀粉样纤维形成所引起的。然而,生物体偶尔会利用淀粉样纤维形成这一氨基酸序列固有的特性,并在不同的生物学背景下从淀粉样蛋白中发挥特定的生理功能。其中一些功能性淀粉样蛋白是天然保护性淀粉样蛋白。在此,我们综述了关于家蚕绒毛膜蛋白合成肽类似物的最新证据,这些证据证明了家蚕绒毛膜(蛋壳的主要成分,一种具有非凡生理和机械性能的结构)作为一种天然保护性淀粉样蛋白的功能。此外,我们还简要讨论了其他天然保护性淀粉样蛋白的报道功能,如鱼绒毛膜、形成作为模板并加速反应性小分子共价聚合成黑色素的淀粉样纤维的蛋白质Pmel17、疏水蛋白以及冬比目鱼的抗冻蛋白。分子自组装正成为通往新的超分子结构和分子材料的越来越受欢迎的途径,并且此类结构的灵感通常源自生物学中的自组装系统。因此,仔细研究这些研究可能为探索形成具有特殊物理化学性质的新型生物相容性聚合物结构的新途径奠定基础,以用于潜在的新生物医学和工业应用。