Kahana E, Pinder J C, Smith K S, Gratzer W B
Medical Research Council Muscle and Cell Motility Unit, King's College, London, U.K.
Biochem J. 1992 Feb 15;282 ( Pt 1)(Pt 1):75-80. doi: 10.1042/bj2820075.
The intrinsic fluorescence of spectrin is strongly quenched by low concentrations of 2-bromostearate. This results from binding at a series of hydrophobic sites. Analysis of dynamic fluorescence quenching by acrylamide, iodide and caesium ions, separately and in conjunction with 2-bromostearate, leads to the conclusion that most of the tryptophan side-chains are exposed to solvent. The sites at which the fatty-acid-quenched tryptophans are located apparently interact with the lipid bilayer in the cell, as judged by quenching by bromostearate dissolved in the lipid phase. A minor proportion of the side-chains in native spectrin give rise to sharp proton magnetic resonance signals, indicative of segmental mobility; these chain elements contain some tryptophan residues, as revealed by weak downfield signals from the heterocyclic ring protons. These signals are not appreciably perturbed by stearic acid or by phosphatidylserine liposomes, suggesting that the hydrophobic binding sites are not in mobile chain elements. By contrast with a series of globular proteins which, with the exception of serum albumins, show little or no quenching by 2-bromostearate, the peripheral red cell membrane skeletal proteins ankyrin (and its spectrin-binding domain), protein 4.1 and (to a lesser extent) actin show evidence of a high affinity for the hydrophobic ligand and may, like spectrin, interact directly with the bilayer in situ.
血影蛋白的固有荧光会被低浓度的2-溴硬脂酸盐强烈淬灭。这是由于其在一系列疏水位点上的结合所致。分别以及与2-溴硬脂酸盐联合分析丙烯酰胺、碘离子和铯离子对荧光的动态淬灭作用,得出的结论是大多数色氨酸侧链暴露于溶剂中。根据溶解在脂质相中的溴硬脂酸盐的淬灭作用判断,脂肪酸淬灭的色氨酸所在的位点显然与细胞中的脂质双层相互作用。天然血影蛋白中一小部分侧链会产生尖锐的质子磁共振信号,表明存在片段流动性;这些链元件含有一些色氨酸残基,这可从杂环质子的微弱向下场信号中看出。这些信号不会受到硬脂酸或磷脂酰丝氨酸脂质体的明显干扰,这表明疏水结合位点不在可移动的链元件中。与一系列球状蛋白相比,除血清白蛋白外,这些球状蛋白几乎不会被2-溴硬脂酸盐淬灭或根本不会被其淬灭,而红细胞外周膜骨架蛋白锚蛋白(及其血影蛋白结合结构域)、蛋白4.1和(程度较轻的)肌动蛋白显示出对疏水配体具有高亲和力的证据,并且可能像血影蛋白一样,在原位与双层直接相互作用。