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Surfactant protein C peptides with salt-bridges (ion-locks) promote high surfactant activities by mimicking the α-helix and membrane topography of the native protein

机译:具有盐桥(离子锁)的表面活性剂蛋白C肽通过模仿天然蛋白的α-螺旋和膜形貌来促进高表面活性剂活性

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摘要

>Background. Surfactant protein C (SP-C; 35 residues) in lungs has a cationic N-terminal domain with two cysteines covalently linked to palmitoyls and a C-terminal region enriched in Val, Leu and Ile. Native SP-C shows high surface activity, due to SP-C inserting in the bilayer with its cationic N-terminus binding to the polar headgroup and its hydrophobic C-terminus embedded as a tilted, transmembrane α-helix. The palmitoylcysteines in SP-C act as ‘helical adjuvants’ to maintain activity by overriding the β-sheet propensities of the native sequences.>Objective. We studied SP-C peptides lacking palmitoyls, but containing glutamate and lysine at 4-residue intervals, to assess whether SP-C peptides with salt-bridges (“ion-locks”) promote surface activity by mimicking the α-helix and membrane topography of native SP-C.>Methods. SP-C mimics were synthesized that reproduce native sequences, but without palmitoyls (i.e., SP-Css or SP-Cff, with serines or phenylalanines replacing the two cysteines). Ion-lock SP-C molecules were prepared by incorporating single or double Glu–Lys+ into the parent SP-C’s. The secondary structures of SP-C mimics were studied with Fourier transform infrared (FTIR) spectroscopy and PASTA, an algorithm that predicts β-sheet propensities based on the energies of the various β-sheet pairings. The membrane topography of SP-C mimics was investigated with orientated and hydrogen/deuterium (H/D) exchange FTIR, and also Membrane Protein Explorer (MPEx) hydropathy analysis. In vitro surface activity was determined using adsorption surface pressure isotherms and captive bubble surfactometry, and in vivo surface activity from lung function measures in a rabbit model of surfactant deficiency.>Results. PASTA calculations predicted that the SP-Css and SP-Cff peptides should each form parallel β-sheet aggregates, with FTIR spectroscopy confirming high parallel β-sheet with ‘amyloid-like’ properties. The enhanced β-sheet properties for SP-Css and SP-Cff are likely responsible for their low surfactant activities in the in vitro and in vivo assays. Although standard 12C-FTIR study showed that the α-helicity of these SP-C sequences in lipids was uniformly increased with Glu–Lys+ insertions, elevated surfactant activity was only selectively observed. Additional results from oriented and H/D exchange FTIR experiments indicated that the high surfactant activities depend on the SP-C ion-locks recapitulating both the α-helicity and the membrane topography of native SP-C. SP-Css ion-lock 1, an SP-Css with a salt-bridge for a Glu–Lys+ ion-pair predicted from MPEx hydropathy calculations, demonstrated enhanced surfactant activity and a transmembrane helix simulating those of native SP-C.>Conclusion. Highly active SP-C mimics were developed that replace the palmitoyls of SP-C with intrapeptide salt-bridges and represent a new class of synthetic surfactants with therapeutic interest.
机译:>背景。肺中的表面活性剂蛋白C(SP-C; 35个残基)具有阳离子N末端结构域,两个半胱氨酸与棕榈酰共价连接,C末端富含Val,Leu和Ile。天然SP-C表现出高表面活性,这是由于SP-C插入双层中,其阳离子N端与极性头基结合,而疏水C端以倾斜的跨膜α-螺旋形式嵌入。 SP-C中的棕榈酰半胱氨酸通过覆盖天然序列的β-折叠倾向来充当“螺旋佐剂”,以维持活性。以4个残基的间隔,通过模拟天然SP-C的α螺旋和膜形貌,评估带有盐桥(“离子锁”)的SP-C肽是否促进表面活性。>方法。- –Lys + 掺入母体SP-C中来制备离子锁定SP-C分子。 SP-C模拟物的二级结构用傅立叶变换红外(FTIR)光谱和PASTA研究,该算法可根据各种β-折叠对的能量预测β-折叠倾向。通过定向和氢/氘(H / D)交换FTIR以及膜蛋白资源管理器(MPEx)亲水性分析研究了SP-C模拟物的膜形貌。在表面活性剂缺乏的兔子模型中,利用吸附表面压力等温线和俘获气泡表面测量法测定体外表面活性,并通过肺功能测定法测定体内表面活性。>结果。。PASTA计算预测SP-Css和SP-Cff肽应各自形成平行的β-折叠聚集体,FTIR光谱证实具有“类淀粉样”特性的高度平行的β-折叠。 SP-Css和SP-Cff的增强的β-sheet性质可能是由于它们在体外和体内测定中表面活性剂活性低的原因。尽管标准的 12 C-FTIR研究表明,脂质中这些SP-C序列的α-螺旋度随Glu - -Lys + 插入,仅选择性观察到表面活性剂活性升高。定向和H / D交换FTIR实验的其他结果表明,高表面活性剂活性取决于SP-C离子锁,可重现天然SP-C的α-螺旋和膜形貌。 SP-Css离子锁1(一种具有盐桥的SP-Css)可通过MPEx亲水性计算预测得到的Glu - -Lys + 离子对具有盐桥,表明表面活性剂增强活性和跨膜螺旋模拟天然SP-C的活性。>结论。开发了高活性SP-C模拟物,用肽内盐桥代替SP-C的棕榈酰,代表了一类新的合成具有治疗意义的表面活性剂。

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