首页> 美国卫生研究院文献>Journal of Lipid Research >Changes in helical content or net charge of apolipoprotein C-I alter its affinity for lipid/water interfaces
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Changes in helical content or net charge of apolipoprotein C-I alter its affinity for lipid/water interfaces

机译:载脂蛋白C-1的螺旋含量或净电荷的变化会改变其对脂质/水界面的亲和力

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摘要

Amphipathic α-helices mediate binding of exchangeable apolipoproteins to lipoproteins. To probe the role of α-helical structure in protein-lipid interactions, we used oil-drop tensiometry to characterize the interfacial behavior of apolipoprotein C-I (apoC-I) variants at triolein/water (TO/W) and 1-palmitoyl-2-oleoylphosphatidylcholine/triolein/water (POPC/TO/W) interfaces. ApoC-I, the smallest apolipoprotein, has two amphipathic α-helices. Mutants had single Pro or Ala substitutions that resulted in large differences in helical content in solution and on phospholipids. The ability of apoC-I to bind TO/W and POPC/TO/W interfaces correlated strongly with α-helical propensity. On binding these interfaces, peptides with higher helical propensity increased surface pressure to a greater extent. Likewise, peptide exclusion pressure at POPC/TO/W interfaces increased with greater helical propensity. ApoC-I retention on TO/W and POPC/TO/W interfaces correlated strongly with phospholipid-bound helical content. On compression of these interfaces, peptides with higher helical content were ejected at higher pressures. Substitution of Arg for Pro in the N-terminal α-helix altered net charge and reduced apoC-I affinity for POPC/TO/W interfaces. Our results suggest that peptide-lipid interactions drive α-helix binding to and retention on lipoproteins. Point mutations in small apolipoproteins could significantly change α-helical propensity or charge, thereby disrupting protein-lipid interactions and preventing the proteins from regulating lipoprotein catabolism at high surface pressures.
机译:两亲性α-螺旋介导可交换载脂蛋白与脂蛋白的结合。为了探讨α-螺旋结构在蛋白质-脂质相互作用中的作用,我们使用了油滴张力测定法来表征载脂蛋白CI(apoC-1)变体在三油酸/水(TO / W)和1-palmitoyl-2上的界面行为-油酰基磷脂酰胆碱/三油精/水(POPC / TO / W)界面。 ApoC-1是最小的载脂蛋白,具有两个两亲性α螺旋。突变体具有单个Pro或Ala取代基,导致溶液中和磷脂上的螺旋含量差异很大。 apoC-1结合TO / W和POPC / TO / W接口的能力与α螺旋倾向密切相关。在结合这些界面时,具有较高螺旋倾向的肽在更大程度上增加了表面压力。同样,在POPC / TO / W界面处的肽排阻压力随着螺旋倾向的增加而增加。 ApoC-1在TO / W和POPC / TO / W界面上的保留与磷脂结合的螺旋含量密切相关。在压缩这些界面时,具有较高螺旋含量的肽会在较高压力下弹出。在N末端α-螺旋中用Arg取代Pro改变了净电荷,并降低了对POPC / TO / W接口的apoC-1亲和力。我们的结果表明,肽-脂质相互作用驱动α-螺旋与脂蛋白结合并保留在脂蛋白上。小载脂蛋白中的点突变可显着改变α-螺旋倾向或电荷,从而破坏蛋白质-脂质相互作用并阻止蛋白质在高表面压力下调节脂蛋白分解代谢。

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