Qian Zhenyu, Jia Yan, Wei Guanghong
State Key Laboratory of Surface Physics, Key Laboratory for Computational Physical Sciences (Ministry of Education), and Department of Physics, Fudan University, Shanghai 200433, China.
J Diabetes Res. 2016;2016:1749196. doi: 10.1155/2016/1749196. Epub 2015 Nov 16.
Increasing evidence suggests that the interaction of human islet amyloid polypeptide (hIAPP) with lipids may facilitate hIAPP aggregation and cause the death of pancreatic islet β-cells. However, the detailed hIAPP-membrane interactions and the influences of lipid compositions are unclear. In this study, as a first step to understand the mechanism of membrane-mediated hIAPP aggregation, we investigate the binding behaviors of hIAPP monomer at zwitterionic palmitoyloleoyl-phosphatidylcholine (POPC) bilayer by performing atomistic molecular dynamics simulations. The results are compared with those of hIAPP at anionic palmitoyloleoyl-phosphatidylglycerol (POPG) bilayers. We find that the adsorption of hIAPP to POPC bilayer is mainly initiated from the C-terminal region and the peptide adopts a helical structure with multiple binding orientations, while the adsorption to POPG bilayer is mostly initiated from the N-terminal region and hIAPP displays one preferential binding orientation, with its hydrophobic residues exposed to water. hIAPP monomer inserts into POPC lipid bilayers more readily than into POPG bilayers. Peptide-lipid interaction analyses show that the different binding features of hIAPP at POPC and POPG bilayers are attributed to different magnitudes of electrostatic and hydrogen-bonding interactions with lipids. This study provides mechanistic insights into the different interaction behaviors of hIAPP with zwitterionic and anionic lipid bilayers.
越来越多的证据表明,人胰岛淀粉样多肽(hIAPP)与脂质的相互作用可能会促进hIAPP聚集并导致胰岛β细胞死亡。然而,hIAPP与膜的详细相互作用以及脂质组成的影响尚不清楚。在本研究中,作为理解膜介导的hIAPP聚集机制的第一步,我们通过进行原子分子动力学模拟,研究了hIAPP单体在两性离子棕榈酰油酰磷脂酰胆碱(POPC)双层膜上的结合行为。并将结果与hIAPP在阴离子棕榈酰油酰磷脂酰甘油(POPG)双层膜上的结果进行比较。我们发现,hIAPP对POPC双层膜的吸附主要从C端区域开始,肽采取具有多种结合取向的螺旋结构,而对POPG双层膜的吸附大多从N端区域开始,并且hIAPP显示出一种优先结合取向,其疏水残基暴露于水中。hIAPP单体比插入POPG双层膜更容易插入POPC脂质双层膜。肽-脂质相互作用分析表明,hIAPP在POPC和POPG双层膜上不同的结合特征归因于与脂质静电和氢键相互作用的不同强度。本研究为hIAPP与两性离子和阴离子脂质双层膜的不同相互作用行为提供了机制性见解。