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单分子在纳米孔中对蛋白质分子的成像。

Single molecule imaging of protein molecules in nanopores.

机构信息

Ames Laboratory-U.S. DOE and Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Anal Chem. 2010 Jan 15;82(2):478-82. doi: 10.1021/ac902487c.

Abstract

The interactions between single protein molecules and nanoporous polycarbonate membranes were investigated at the single molecule level. Entrapment of proteins was shown to be size selective and was dependent on the membrane pore diameter. A pore size that is only slightly larger than the maximum dimension of the proteins was inadequate for intrusion into the pores. For a given protein, the number of molecules found at a given depth decreased as the pore size decreased. In addition, as the depth increased, for a given size pore, the number of molecules decreased rapidly. The depth-dependent histograms nicely fit a one-dimensional diffusion model. However, a highly restricted motion was observed even when the pore diameter was 10 times the size of the protein, resulting in anomalously small diffusion coefficients. We also demonstrated the subtle differences in depth distribution among BSA and hemoglobin that have nearly the same molecular weight but slightly different molecular shapes. These results give unique insights into the detailed mechanism of size-exclusion chromatography and membrane filtration.

摘要

在单分子水平上研究了单个蛋白质分子与纳米多孔聚碳酸酯膜之间的相互作用。研究表明,蛋白质的包封具有尺寸选择性,并且取决于膜孔直径。孔径仅略大于蛋白质的最大尺寸,不足以侵入孔中。对于给定的蛋白质,在给定的深度处发现的分子数量随着孔径的减小而减少。此外,随着深度的增加,对于给定尺寸的孔,分子数量迅速减少。深度相关的直方图很好地符合一维扩散模型。然而,即使孔径是蛋白质尺寸的 10 倍,也观察到高度受限的运动,导致扩散系数异常小。我们还证明了分子量几乎相同但分子形状略有不同的 BSA 和血红蛋白之间在深度分布上的细微差异。这些结果为尺寸排阻色谱和膜过滤的详细机制提供了独特的见解。

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