Pizzi Andrea, Dichiarante Valentina, Terraneo Giancarlo, Metrangolo Pierangelo
Laboratory of Supramolecular and Bio-Nanomaterials (SupraBioNanoLab), Department of Chemistry, Materials, and Chemical Engineering "Giulio Natta", Politecnico di Milano, Via Luigi Mancinelli 7, Milano, I-20131, Italy.
Biopolymers. 2017 Nov 27. doi: 10.1002/bip.23088.
Amyloidogenic peptide fragment KLVFF (H N-Lys-Leu-Val-Phe-Phe-COOH, Aβ ), the core-sequence of the polypeptide Aβ40, is a well-studied model for amyloid formation. However, due to its low crystallinity, detailed atomic information of KLVFF structure is lacking. Here we report the high-resolution single-crystal X-ray structure of two monohalogenated KLVFF derivatives, KLVFF(I) and KLVFF(Br). The obtained results highlight how halogenation is a good strategy to promote crystallization and facilitate the phase determination of KLVFF(I) and KLVFF(Br) fragments. Detailed structural studies on the packing features of both monohalogenated derivatives reveal the role of the halogen atoms showing that when they are positioned on the Phe aromatic moiety at the C-terminus they do not form halogen bonds and thus do not produce any extra stabilization of the β-sheet in the self-assembly process. The structural evidences gained from these studies corroborate the various polymorphic nanostructures of the halogenated variants of KLVFF and confirm the possibility to use halogenation as innovative strategy to tune the morphology of this pentapeptide.
淀粉样生成肽片段KLVFF(H N-赖氨酸-亮氨酸-缬氨酸-苯丙氨酸-苯丙氨酸-COOH,Aβ)是多肽Aβ40的核心序列,是研究淀粉样蛋白形成的一个典型模型。然而,由于其结晶度低,缺乏KLVFF结构的详细原子信息。在此,我们报道了两种单卤代KLVFF衍生物KLVFF(I)和KLVFF(Br)的高分辨率单晶X射线结构。所得结果突出表明卤化是促进KLVFF(I)和KLVFF(Br)片段结晶并有助于其相确定的一种有效策略。对两种单卤代衍生物堆积特征的详细结构研究揭示了卤原子的作用,表明当它们位于C端的苯丙氨酸芳香部分时,不会形成卤键,因此在自组装过程中不会对β-折叠产生任何额外的稳定作用。从这些研究中获得的结构证据证实了KLVFF卤化变体的各种多晶型纳米结构,并证实了使用卤化作为调整该五肽形态的创新策略的可能性。