Flamia R, Zhdan P A, Martino M, Castle J E, Tamburro A M
Dipartimento di Chimica, Università della Basilicata, via N. Sauro 85, 85100 Potenza, Italy.
Biomacromolecules. 2004 Jul-Aug;5(4):1511-8. doi: 10.1021/bm049930r.
In this paper, we report an AFM study on the supramolecular structures adopted by the synthetic polypentapeptide poly(ValGlyGlyValGly), whose monomeric sequence is an abundant, simple building block of elastin. The polypeptide was analyzed by deposition from both methanolic and aqueous suspensions, showing different behaviors. In methanol, the polypeptide is able to evolve, in a time-dependent way, from layers to ribbons to beaded filaments. When the equilibrium is reached, the formation of well-defined dendritic structures is also observed. This restructuring of the polypentapeptide seems to be reminiscent of a sort of Rayleigh instability. When deposited from aqueous suspensions, the polypeptide self-assembles either in fibrillar networks or in amyloid-like patterns, both of them being found in elastin or elastin-related polypeptides. As a general finding, poly(ValGlyGlyValGly) seems to constitute an excellent mimetic of the supramolecular properties of native elastin.
在本文中,我们报道了一项关于合成聚五肽聚(ValGlyGlyValGly)所采用的超分子结构的原子力显微镜研究,其单体序列是弹性蛋白丰富且简单的构建单元。通过从甲醇悬浮液和水悬浮液中沉积对该多肽进行分析,结果显示出不同的行为。在甲醇中,该多肽能够随时间从层状演变为带状再到珠状细丝。达到平衡时,还观察到形成了明确的树枝状结构。这种聚五肽的结构重组似乎让人联想到某种瑞利不稳定性。当从水悬浮液中沉积时,该多肽会自组装成纤维状网络或淀粉样模式,这两种模式都存在于弹性蛋白或弹性蛋白相关多肽中。总的来说,聚(ValGlyGlyValGly)似乎是天然弹性蛋白超分子特性的极佳模拟物。