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Depth of α-Synuclein in a Bilayer Determined by Fluorescence Neutron Reflectometry and Computation

机译:通过荧光中子反射计和计算确定双层中α-突触核蛋白的深度

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摘要

α-Synuclein (α-syn) membrane interactions are implicated in the pathogenesis of Parkinson's disease. Fluorescence and neutron reflectometry (NR) measurements reveal that α-syn penetrates ∼9–14 Å into the outer leaflet of the bilayer, with a substantial portion of the membrane-bound polypeptide extending into the aqueous solvent. For the first time, to our knowledge, we used NR to obtain direct quantitative evidence of α-syn-induced membrane thinning. To examine the effect of specific residues on membrane penetration depths, we used a series of W4-containing N-terminal peptides. We identified that the first 15 residues (P15) nearly recapitulate the features of the full-length protein (i.e., partition constants, molecular mobility, and insertion of the W4 side chain into the bilayer), and found that as few as the first four N-terminal residues are sufficient for vesicle binding. Although at least one imperfect amphipathic repeat sequence (KAKEGV) is required for α-helical formation, secondary structural formation has little effect on membrane affinity. To develop an N-terminal α-syn model for bilayer interactions, we performed molecular-dynamics simulations of the P15 peptide submerged in a bilayer. The simulation results are highly consistent with experimental data indicating a broad low-energy region (8.5–14.5 Å) for W4 insertion.
机译:α-突触核蛋白(α-syn)的膜相互作用与帕金森氏病的发病机理有关。荧光和中子反射法(NR)的测量表明,α-syn穿透约9-14Å进入双层的外部小叶,大部分结合膜的多肽延伸到水性溶剂中。据我们所知,这是我们首次使用NR来获得α-syn诱导的膜变薄的直接定量证据。为了检查特定残基对膜穿透深度的影响,我们使用了一系列含W4的N末端肽。我们确定前15个残基(P15)几乎概括了全长蛋白质的特征(即分配常数,分子迁移率和W4侧链插入双层的能力),并发现与前四个残基一样少N末端残基足以与囊泡结合。尽管至少一个不完美的两亲性重复序列(KAKEGV)是α-螺旋形成所必需的,但二级结构的形成对膜亲和力的影响很小。为了开发用于双层相互作用的N末端α-syn模型,我们对淹没在双层中的P15肽进行了分子动力学模拟。仿真结果与实验数据高度吻合,表明W4插入的能量范围很广(8.5-14.5Å)。

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