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计数通过单个离子通道的聚合物。

Counting polymers moving through a single ion channel.

作者信息

Bezrukov S M, Vodyanoy I, Parsegian V A

机构信息

Division of Intramural Research, NIDDK, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Nature. 1994 Jul 28;370(6487):279-81. doi: 10.1038/370279a0.

Abstract

The change in conductance of a small electrolyte-filled capillary owing to the passage of sub-micrometre-sized particles has long been used for particle counting and sizing. A commercial device for such measurements, the Coulter counter, is able to detect particles of sizes down to several tenths of a micrometre. Nuclepore technology (in which pores are etched particle tracks) has extended the lower limit of size detection to 60-nm particles by using a capillary of diameter 0.45 micron (ref. 4). Here we show that natural channel-forming peptides incorporated into a bilayer lipid membrane can be used to detect the passage of single molecules with gyration radii as small as 5-15 A. From our experiments with alamethicin pores we infer both the average number and the diffusion coefficients of poly(ethylene glycol) molecules in the pore. Our approach provides a means of observing the statistics and mechanics of flexible polymers moving within the confines of precisely defined single-molecule structures.

摘要

由于亚微米级颗粒通过而导致的充满小电解质的毛细管电导变化,长期以来一直用于颗粒计数和尺寸测量。用于此类测量的一种商业设备——库尔特计数器,能够检测低至十分之几微米大小的颗粒。核孔技术(其中孔是蚀刻的颗粒轨迹)通过使用直径为0.45微米的毛细管(参考文献4),将尺寸检测下限扩展到了60纳米颗粒。在此我们表明,掺入双层脂质膜的天然通道形成肽可用于检测回转半径小至5 - 15埃的单个分子的通过。通过我们对短杆菌肽孔的实验,我们推断了聚乙二醇分子在孔中的平均数量和扩散系数。我们的方法提供了一种观察柔性聚合物在精确界定的单分子结构范围内移动的统计和力学情况的手段。

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