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基于IsK(minK)蛋白单跨膜片段构建的27个氨基酸残基肽段的构象及离子通道活性

Conformation and ion-channeling activity of a 27-residue peptide modeled on the single-transmembrane segment of the IsK (minK) protein.

作者信息

Aggeli A, Bannister M L, Bell M, Boden N, Findlay J B, Hunter M, Knowles P F, Yang J C

机构信息

Centre for Self-Organising Molecular Systems, University of Leeds, U.K.

出版信息

Biochemistry. 1998 Jun 2;37(22):8121-31. doi: 10.1021/bi972112h.

Abstract

IsK (minK) protein, in concert with another channel protein KVLQT1, mediates a distinct, slowly activating, voltage-gated potassium current across certain mammalian cell membranes. Site-directed mutational studies have led to the proposal that the single transmembrane segment of IsK participates in the pore of the potassium channel [Takumi, T. (1993) News Physiol. Sci. 8, 175-178]. We present functional and structural studies of a short peptide (K27) with primary structure NH2-1KLEALYILMVLGFFGFFTLGIMLSYI27R-COOH, corresponding to the transmembrane segment of IsK (residues 42-68). When K27 was incorporated, at low concentrations, into phosphatidylethanolamine, black-lipid membranes, single-channel activity was observed, with no strong ion selectivity. IR measurements reveal the peptide has a predominantly helical conformation in the membrane. The atomic resolution structure of the helix has been established by high-resolution 1H NMR spectroscopy studies. These studies were carried out in a solvent comprising 86% v/v 1,1,1,3,3,3-hexafluoro-isopropanol-14% v/v water, in which the IR spectrum of the peptide was found to be very similar to that observed in the bilayer. The NMR studies have established that residues 1-3 are disordered, while residues 4-27 have an alpha-helical conformation, the helix being looser near the termini and more stable in the central region of the molecule. The length (2. 6 nm) of the hydrophobic segment of the helix, residues 7-23, matches the span of the hydrocarbon chains (2.3 +/- 0.25 nm) of fully hydrated bilayers of phosphatidylcholine lipid mixture from egg yolk. The side chains on the helix surface are predominantly hydrophobic, consistent with a transmembrane location of the helix. The ion-channeling activity is believed to stem from long-lived aggregates of these helices. The aggregation is mediated by the pi-pi stacking of phenylalanine aromatic rings of adjacent helices and favorable interactions of the opposing aliphatic-like side chains, such as leucine and methionine, with the lipid chains of the bilayer. This mechanism is in keeping with site-directed mutational studies which suggest that the transmembrane segment of IsK is an integral part of the pore of the potassium channel and has a similar disposition to that in the peptide model system.

摘要

IsK(minK)蛋白与另一种通道蛋白KVLQT1协同作用,介导特定哺乳动物细胞膜上一种独特的、缓慢激活的电压门控钾电流。定点突变研究表明,IsK的单个跨膜片段参与钾通道的孔道形成[Takumi, T. (1993) News Physiol. Sci. 8, 175 - 178]。我们展示了一种短肽(K27)的功能和结构研究,其一级结构为NH2 - 1KLEALYILMVLGFFGFFTLGIMLSYI27R - COOH,对应于IsK的跨膜片段(第42 - 68位氨基酸残基)。当低浓度的K27掺入磷脂酰乙醇胺黑脂质膜中时,可观察到单通道活性,且没有很强的离子选择性。红外测量显示该肽在膜中主要呈螺旋构象。通过高分辨率1H NMR光谱研究确定了该螺旋的原子分辨率结构。这些研究是在由86% v/v 1,1,1,3,3,3 - 六氟异丙醇 - 14% v/v水组成的溶剂中进行的,发现该肽的红外光谱与在双层膜中观察到的非常相似。NMR研究确定第1 - 3位氨基酸残基无序,而第4 - 27位氨基酸残基具有α - 螺旋构象,该螺旋在末端附近较松散,在分子中心区域更稳定。螺旋的疏水片段(第7 - 23位氨基酸残基)长度(2.6 nm)与来自蛋黄的磷脂酰胆碱脂质混合物完全水合双层膜的烃链跨度(2.3 +/- 0.25 nm)相匹配。螺旋表面的侧链主要是疏水的,这与螺旋的跨膜位置一致。离子通道活性被认为源于这些螺旋的长寿命聚集体。这种聚集是由相邻螺旋的苯丙氨酸芳香环的π - π堆积以及相对的类脂肪族侧链(如亮氨酸和蛋氨酸)与双层膜脂质链的有利相互作用介导的。这种机制与定点突变研究一致,该研究表明IsK的跨膜片段是钾通道孔道的一个组成部分,并且与肽模型系统中的排列相似。

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