Dipartimento di Chimica "Paolo Corradini", Università di Napoli "Federico II" Complesso di Monte S. Angelo, Via Cinthia, I-80126 Napoli, Italy.
J Pept Sci. 2010 Feb;16(2):115-22. doi: 10.1002/psc.1207.
Aggregation of beta-amyloid peptides into senile plaques has been identified as one of the hallmarks of Alzheimer's disease. An attractive therapeutic strategy for Alzheimer's disease is the inhibition of the soluble beta-amyloid aggregation using synthetic beta-sheet breaker peptides that are capable of binding Abeta but are unable to become part of a beta-sheet structure. As the early stages of the Abeta aggregation process are supposed to occur close to the neuronal membrane, it is strategic to define the beta-sheet breaker peptide positioning with respect to lipid bilayers. In this work, we have focused on the interaction between the beta-sheet breaker peptide acetyl-LPFFD-amide, iAbeta5p, and lipid membranes, studied by ESR spectroscopy, using either peptides alternatively labeled at the C- and at the N-terminus or phospholipids spin-labeled in different positions of the acyl chain. Our results show that iAbeta5p interacts directly with membranes formed by the zwitterionic phospholipid dioleoyl phosphatidylcholine and this interaction is modulated by inclusion of cholesterol in the lipid bilayer formulation, in terms of both peptide partition coefficient and the solubilization site. In particular, cholesterol decreases the peptide partition coefficient between the membrane and the aqueous medium. Moreover, in the absence of cholesterol, iAbeta5p is located between the outer part of the hydrophobic core and the external hydrophilic layer of the membrane, while in the presence of cholesterol it penetrates more deeply into the lipid bilayer.
β-淀粉样肽聚集形成老年斑已被确定为阿尔茨海默病的标志之一。用合成的β-折叠破坏肽抑制可溶性β-淀粉样肽聚集是阿尔茨海默病的一种有吸引力的治疗策略,这种肽能够结合 Abeta,但不能成为β-折叠结构的一部分。由于 Abeta 聚集过程的早期阶段应该发生在靠近神经元膜的地方,因此确定β-折叠破坏肽相对于脂质双层的定位具有战略意义。在这项工作中,我们专注于β-折叠破坏肽乙酰-LPFFD-酰胺(iAbeta5p)与脂质膜之间的相互作用,使用 C-端和 N-端交替标记的肽或在酰链不同位置标记的磷脂自旋标记,通过 ESR 光谱进行研究。我们的结果表明,iAbeta5p 直接与双分子层离子磷脂二油酰基磷脂酰胆碱形成的膜相互作用,这种相互作用受胆固醇在脂质双层配方中存在的调节,包括肽分配系数和增溶部位。特别是,胆固醇降低了肽在膜和水相之间的分配系数。此外,在没有胆固醇的情况下,iAbeta5p 位于疏水性核心的外部和膜的外部亲水区之间,而在存在胆固醇的情况下,它更深地渗透到脂质双层中。