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溶液中以及与磷脂膜结合的自旋标记蜂毒素的聚集状态:膜结合蜂毒素为单体的证据。

The aggregation state of spin-labeled melittin in solution and bound to phospholipid membranes: evidence that membrane-bound melittin is monomeric.

作者信息

Altenbach C, Hubbell W L

机构信息

Jules Stein Eye Institute, University of California, Los Angeles 90024.

出版信息

Proteins. 1988;3(4):230-42. doi: 10.1002/prot.340030404.

Abstract

Spin-labeled derivatives of the bee venom protein, melittin, were obtained by reacting on the average one of the four amino groups of the protein with succinimidyl-2,2,5,5-tetramethyl-3-pyrroline-1-oxyl-3-carboxylate. All 16 statistically possible reaction products with 0, 1, 2, 3 or 4 spin labels per protein were then separated in a single pass with reversed phase high performance liquid chromatography. With the help of trypsin digestion and diode array detection it was possible to assign the primary structure of all 16 eluting fractions. All fractions with only one spin label per protein were purified for electron paramagnetic resonance measurements. The labeling sites cover different regions of the protein: one is at the N-terminus, one at lysine-7, and two are near the C-terminus at lysine-21 and lysine-23, respectively. This set of specifically labeled melittins was used to study the structure and dynamics of melittin in aqueous solutions and when bound to neutral or negatively charged membranes. In aqueous solution a reduction in rotational correlation time and appearance of spin-spin interaction was observed during salt-induced transition from a random coil monomer to a mostly alpha-helical tetramer. Membrane binding to phospholipid bilayers in low or high ionic strength was reflected only in a further decrease in mobility. The absence of any spin interaction in the membrane-bound state suggests that melittin is monomeric under these conditions. All derivatives were able to detect these structural changes, but melittin labeled at the N-terminal amino group was especially valuable. Because of postulated intramolecular hydrogen bonding, this label reflects directly the motion of the entire protein or tetramer. Broadening experiments with chromium oxalate show that all labeled sites are at least partially exposed to the aqueous phase when melittin is bound to membranes. This suggests that an alpha-helical melittin monomer binds to membranes with its axis parallel to the membrane surface.

摘要

通过使蜂毒蛋白蜂毒素的四个氨基中的平均一个与N - 琥珀酰亚胺基 - 2,2,5,5 - 四甲基 - 3 - 吡咯啉 - 1 - 氧基 - 3 - 羧酸盐反应,获得了自旋标记的蜂毒素衍生物。然后,通过反相高效液相色谱法一次分离出每个蛋白质带有0、1、2、3或4个自旋标记的所有16种统计学上可能的反应产物。借助胰蛋白酶消化和二极管阵列检测,可以确定所有16个洗脱级分的一级结构。对每个蛋白质仅带有一个自旋标记的所有级分进行纯化,以进行电子顺磁共振测量。标记位点覆盖蛋白质的不同区域:一个在N端,一个在赖氨酸 - 7处,另外两个分别在C端附近的赖氨酸 - 21和赖氨酸 - 23处。这组经过特异性标记的蜂毒素用于研究蜂毒素在水溶液中以及与中性或带负电荷的膜结合时的结构和动力学。在水溶液中,在盐诱导的从无规卷曲单体向主要为α - 螺旋四聚体的转变过程中,观察到旋转相关时间的缩短和自旋 - 自旋相互作用的出现。在低离子强度或高离子强度下与磷脂双层的膜结合仅表现为迁移率的进一步降低。在膜结合状态下没有任何自旋相互作用,这表明在这些条件下蜂毒素是单体形式。所有衍生物都能够检测到这些结构变化,但在N端氨基处标记的蜂毒素特别有价值。由于假定的分子内氢键作用,该标记直接反映了整个蛋白质或四聚体的运动。用草酸铬进行的加宽实验表明,当蜂毒素与膜结合时,所有标记位点至少部分暴露于水相。这表明α - 螺旋的蜂毒素单体以其轴平行于膜表面的方式与膜结合。

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