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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Spin-labelled vacuolar-ATPase inhibitors in lipid membranes
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Spin-labelled vacuolar-ATPase inhibitors in lipid membranes

机译:脂质膜中自旋标记的液泡-ATPase抑制剂

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摘要

Two spin-labelled derivatives of the 5-(2-indolyt)-2,4-pentadienoyl class of inhibitors of the vacuolar ATPase have been synthesised and their EPR properties characterised in phospholipid membranes. One spin-labelled inhibitor is the amide derivative of pentadienic acid and 4-amino-TEMPO (INDOL6), and the other is the 3-hydroxymethyl-PROXYL ester (INDOL5). The response of the EPR spectra to the chain-melting transition of dimyristoyl phosphatidylcholine (DMPC) bilayers demonstrates that both derivatives incorporate in phospholipid membranes. The axially anisotropic EPR spectra of INDOL6 in fluid DMPC membranes indicate that the indolyl-pentadienoyl inhibitors intercalate between the lipid chains, in the membrane. INDOL5, designed to possess additional internal segmental mobility, exhibits more nearly isotropic motion of the spin-label moiety in fluid membranes than does INDOL6. The EPR characteristics of INDOL5 are therefore well suited to detecting specific ligand-protem interactions. Progressive saturation EPR experiments with polar and hydrophobic relaxation agents (aqueous Ni2+ and oxygen) show that the nitroxide group is buried in the membrane, with the indole moiety providing the anchor at the membrane polar-apolar interface. Rates of spin-label reduction by externally added ascorbate confirm this assignment. These two spin-labelled derivatives provide complementary EPR probes of the lipid environment (INDOL6), and of ligand-protein interactions (INDOL5), for this class of V-ATPase inhibitor. (C) 2004 Elsevier B.V. All rights reserved.
机译:合成了液泡ATPase抑制剂的5-(2-吲哚基)-2,4-戊二烯酰基类的两种自旋标记衍生物,其EPR特性在磷脂膜上表征。一种自旋标记的抑制剂是戊二烯酸和4-氨基-TEMPO的酰胺衍生物(INDOL6),另一种是3-羟甲基-PROXYL酯(INDOL5)。 EPR光谱对二肉豆蔻酰基磷脂酰胆碱(DMPC)双层的链熔化转变的响应表明,这两种衍生物都掺入了磷脂膜中。流体DMPC膜中INDOL6的轴向各向异性EPR谱表明,吲哚基-戊二烯酰基抑制剂插在膜中的脂质链之间。设计为具有附加内部节段迁移率的INDOL5与INDOL6相比,在流体膜中的自旋标记部分表现出更接近各向同性的运动。因此,INDOL5的EPR特性非常适合检测特定的配体与蛋白质相互作用。使用极性和疏水松弛剂(Ni2 +和氧气水溶液)进行的渐进式饱和EPR实验表明,硝基氧化物基团被埋在膜中,其中吲哚部分在膜的极性-非极性界面上提供了锚定。外部添加抗坏血酸减少自旋标记的速率证实了这一点。这两种自旋标记的衍生物为此类V-ATPase抑制剂提供了脂质环境(INDOL6)和配体-蛋白质相互作用(INDOL5)的互补EPR探针。 (C)2004 Elsevier B.V.保留所有权利。

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