Department of Sciences, University of Basilicata, Potenza, Italy.
Department of Life Sciences, University of Modena and Reggio Emilia, Modena, Italy.
Matrix Biol. 2014 Jun;36:15-27. doi: 10.1016/j.matbio.2014.03.004. Epub 2014 Mar 28.
The peculiar and unique properties of elastin are due to the abundance of hydrophobic residues and of repetitive sequences as XGGZG (X, Z=V, L or A). Unexpectedly, these sequences not only provide elasticity to the whole protein, but are also able to form amyloid-like fibrils. Even though amyloid fibrils have been associated for a long time to the development of serious disorders as Alzheimer's disease, recent evidence suggests that toxicity may be related to oligomeric species or to pre-fibrillar intermediates, rather than to mature fibrils. In addition, a number of studies highlighted the potential of "bio-inspired" materials based on amyloid-like nanostructures. The present study has been undertaken with the aim to characterize a chemically synthesized elastin-like peptide (VGGVG)3. Structural and biological features were compared with those of peptides as poly(VGGVG) and VGGVG that, having the same amino acid sequence, but different length and supramolecular structure have been previously investigated for their amyloidogenic properties. Results demonstrate that a minimum sequence of 15 amino acids is sufficient to aggregate into short amyloid-like fibrils, whose formation is however strictly dependent on the specific VGGVG repeated sequence. Moreover, in the attempt to elucidate the relationship among aggregation properties, fibers morphology and biocompatibility, 3T3 fibroblasts were grown in the presence of VGGVG-containing elastin-like peptides (ELPs) and analyzed for their ability to proliferate, attach and spread on ELPs-coated surfaces. Data clearly show that amyloid-like fibrils made of (VGGVG)3 are not cytotoxic at least up to the concentration of 100 μg/ml, even after several days of culture, and are a good support for cell attachment and spreading.
弹性蛋白独特的特性归因于大量疏水性残基和重复序列如 XGGZG(X、Z=V、L 或 A)。出人意料的是,这些序列不仅为整个蛋白质提供弹性,而且还能够形成类似淀粉样的纤维。尽管淀粉样纤维长期以来一直与阿尔茨海默病等严重疾病的发展有关,但最近的证据表明,毒性可能与寡聚体或预纤维中间态有关,而不是与成熟纤维有关。此外,许多研究强调了基于类似淀粉样结构的“仿生”材料的潜力。本研究旨在表征一种化学合成的弹性蛋白样肽(VGGVG)3。结构和生物学特性与聚(VGGVG)和 VGGVG 肽进行了比较,这些肽具有相同的氨基酸序列,但长度和超分子结构不同,之前已经研究了它们的淀粉样特性。结果表明,至少 15 个氨基酸的序列足以聚集形成短的类似淀粉样纤维,但纤维的形成严格依赖于特定的 VGGVG 重复序列。此外,为了阐明聚集特性、纤维形态和生物相容性之间的关系,将 3T3 成纤维细胞在含有 VGGVG 的弹性蛋白样肽(ELP)存在下培养,并分析其在 ELP 涂层表面上增殖、附着和扩散的能力。数据清楚地表明,由(VGGVG)3 制成的类似淀粉样纤维在至少 100μg/ml 的浓度下至少在几天的培养后没有细胞毒性,并且是细胞附着和扩散的良好支撑。