Tetramethylammonium-Filled Protein Nanopore for Single-Molecule Analysis

纳米孔 化学 四甲基铵 纳米技术 双层 分子 脂质双层 电导 生物物理学 离子 材料科学 生物化学 有机化学 生物 组合数学 数学
作者
Ying Wang,Fujun Yao,Xiaofeng Kang
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:87 (19): 9991-9997 被引量:26
标识
DOI:10.1021/acs.analchem.5b02611
摘要

Nanopore technology, as the simplest and most inexpensive single-molecule tool, is being intensively developed. In nanopore stochastic sensing, KCl and NaCl have traditionally been employed as pore-filled electrolytes for recording the change of ion conductance in nanopores triggered by analyte translocation through the pore. However, some challenges limit its further advance. Here we used tetramethylammonium (TMA) chloride, instead of KCl, as a novel analysis system for nanopores. Some unique nanopore characteristics were observed: (1) The stability of the planar lipid bilayer for embedding the protein pores was elevated at least 6 times. (2) The TMA-Cl system could effectively reduce the noise of single-channel recording. (3) It was easy to control the insertion of protein pores into the lipid bilayer, and the formed single nanopore could last for a sufficiently long time. (4) TMA-Cl could be used as a DNA speed bump in the nanopore to slow DNA translocation speed. (5) The capacity of the nanopore capture of DNA (capture rate) increased significantly and simultaneously increased the translocation time of DNA in the pore. (6) The TMA-filled nanopore could discriminate between various polynucleotides.
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