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集成光散射光谱法,一种用于肽-囊泡结合的灵敏探针:应用于膜结合的大肠杆菌素E1通道肽。

Integrated light-scattering spectroscopy, a sensitive probe for peptide-vesicle binding: application to the membrane-bound colicin E1 channel peptide.

作者信息

Strawbridge K B, Palmer L R, Merrill A R, Hallett F R

机构信息

Guelph-Waterloo Program for Graduate Work in Physics, Department of Physics, University of Guelph, Ontario, Canada.

出版信息

Biophys J. 1995 Jan;68(1):131-6. doi: 10.1016/S0006-3495(95)80167-0.

Abstract

Integrated light-scattering (ILS) spectroscopy was used to monitor the binding of the colicin E1 channel peptide to POPC:POPG large unilamellar vesicles (LUV; 60:40, mol:mol) at acidic pH (3.5). Binding conditions were chosen such that nearly all of the channel peptide was bound to the vesicles with little free peptide remaining in solution. The increase in vesicle size upon the insertion of the channel peptide was measured by performing a discrete inversion technique on data obtained from an ILS spectrometer. Vesicle size number distributions were determined for five different systems having peptide/vesicle ratios of approximately 0, 77, 154, 206, and 257. The experiment was repeated four times (twice at two different vesicle concentrations) to determine reproducibility. The relative changes in vesicle radius upon peptide binding to the membrane vesicles was remarkably reproducible even though these changes represented only a few nanometers. A comparison of vesicle size number distributions in the absence of bound peptide was made between ILS and dynamic light scattering (DLS) data and showed similar results. However, DLS was incapable of detecting the small changes due to peptide-induced vesicle swelling. The membrane-bound volume of the colicin E1 channel peptide was approximately 177 +/- 22 nm3. These data indicate that in the absence of a membrane potential (closed channel state) the colicin E1 channel peptide inserts into the membrane resulting in a significant displacement of the lipid bilayer as evidenced from the dose-dependent increase in the vesicle radius. These results indicate that ILS spectroscopy is a sensitive sizing technique that is capable of detecting relatively small changes in membrane vesicles and may have a wide application in the determination of peptide binding to membrane vesicles.

摘要

采用集成光散射(ILS)光谱法监测在酸性pH值(3.5)下,大肠杆菌素E1通道肽与POPC:POPG大单层囊泡(LUV;60:40,摩尔比)的结合情况。选择结合条件,使得几乎所有的通道肽都与囊泡结合,溶液中几乎没有游离肽剩余。通过对从ILS光谱仪获得的数据进行离散反转技术,测量通道肽插入后囊泡大小的增加。测定了肽/囊泡比约为0、77,、154、206和257的五个不同系统的囊泡大小数量分布。该实验重复进行了四次(在两种不同的囊泡浓度下各重复两次)以确定重现性。尽管这些变化仅为几纳米,但肽与膜囊泡结合后囊泡半径的相对变化具有显著的重现性。对未结合肽时的囊泡大小数量分布进行了ILS数据与动态光散射(DLS)数据的比较,结果相似。然而,DLS无法检测到肽诱导的囊泡肿胀引起的微小变化。大肠杆菌素E1通道肽的膜结合体积约为177 +/- 22 nm3。这些数据表明,在没有膜电位(通道关闭状态)的情况下,大肠杆菌素E1通道肽插入膜中,导致脂质双层发生显著位移,这从囊泡半径的剂量依赖性增加中得到证明。这些结果表明,ILS光谱法是一种灵敏的尺寸测定技术,能够检测膜囊泡中相对较小的变化,在测定肽与膜囊泡的结合方面可能具有广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75af/1281669/b603a91173d6/biophysj00067-0136-a.jpg

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