Dipartimento di Chimica Antonio Mario Tamburro, Università della Basilicata, Potenza, Italy.
Biopolymers. 2011 Oct;95(10):702-21. doi: 10.1002/bip.21636. Epub 2011 Apr 20.
Elastin-like polypeptides adopt complex supramolecular structures, showing either a hydrophobic or a hydrophilic surface, depending on their surrounding environment and the supporting substrate. The preferred organization is important in many situations ranging from biocompatibility to bio-function. Here we compare the n-repeat pentamer LeuGlyGlyValGly (n = 7) with the analogue ValGlyGlyValGly (n = 5), as water suspensions and as deposits on silicon substrates. These sequences contain the repeat XxxGlyGlyZzzGly (Xxx, Zzz = Val, Leu) motif belonging to the hydrophobic glycine-rich domain of elastin and represent a simplified model from which to obtain information on molecular interactions functional to elastin itself. The compounds studied differ only by the presence of the -CH(2)- spacer in the Leu moiety and thus the work was aimed at revealing the influence of this spacer element on self assembly. Both polypeptides were studied under identical conditions, using combined techniques, to identify differences in their conformational states both at molecular (CD, FTIR) and supramolecular (XPS, AFM) levels. By these means, together with a Congo Red spectroscopic assay of β-sheet formation in water, a clear correlation between amino acid sequences (sequence specificity) and their kinetics and ordering of aggregation has emerged. The novel outcomes of this work are from the supplementary measurements, made to augment the AFM and XPS studies, showing that the significant step in the self assembly of both polypeptides takes place in the liquid phase and from the finding that the substitution of Val by Leu in the first position of the pentapeptide effectively inhibits the formation of amyloidal fibers.
弹性蛋白样多肽形成复杂的超分子结构,根据其周围环境和支撑基底,表现出疏水性或亲水性表面。在从生物相容性到生物功能的许多情况下,优先的组织形式都很重要。在这里,我们将 LeuGlyGlyValGly(n = 7)的 n 重复五肽与类似物 ValGlyGlyValGly(n = 5)进行比较,比较对象为水悬浮液和硅基底上的沉积物。这些序列包含属于弹性蛋白疏水区的重复 XxxGlyGlyZzzGly(Xxx,Zzz = Val,Leu)基序,是从弹性蛋白本身的分子相互作用中获取信息的简化模型。所研究的化合物仅在 Leu 部分中存在-CH(2)-间隔基,因此该工作旨在揭示该间隔基元对自组装的影响。使用组合技术在相同条件下研究两种多肽,以确定它们在分子(CD、FTIR)和超分子(XPS、AFM)水平上的构象状态差异。通过这些方法,以及刚果红在水中检测β-折叠形成的光谱测定法,揭示了氨基酸序列(序列特异性)与其聚集的动力学和有序性之间的明确相关性。这项工作的新结果来自于补充测量,这些测量旨在增强 AFM 和 XPS 研究,表明两种多肽自组装的重要步骤发生在液相中,并且发现五肽的第一个位置上用 Leu 替代 Val 可以有效地抑制淀粉样纤维的形成。