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具有亚皮牛顿力灵敏度的单个蛋白质分子的力显微镜成像。

Force microscopy imaging of individual protein molecules with sub-pico Newton force sensitivity.

作者信息

Patil Shivprasad, Martinez Nicolas F, Lozano Jose R, Garcia Ricardo

机构信息

Instituto de Microelectrónica de Madrid, CSIC, Isaac Newton 8, 28760 Tres Cantos, Madrid, Spain.

出版信息

J Mol Recognit. 2007 Nov-Dec;20(6):516-23. doi: 10.1002/jmr.848.

Abstract

The capability of atomic force microscopes (AFM) to generate atomic or nanoscale resolution images of surfaces has deeply transformed the study of materials. However, high resolution imaging of biological systems has proved more difficult than obtaining atomic resolution images of crystalline surfaces. In many cases, the forces exerted by the tip on the molecules (1-10 nN) either displace them laterally or break the noncovalent bonds that hold the biomolecules together. Here, we apply a force microscope concept based on the simultaneous excitation of the first two flexural modes of the cantilever. The coupling of the modes generated by the tip-molecule forces enables imaging under the application of forces ( approximately 35 pN) which are smaller than those needed to break noncovalent bonds. With this instrument we have resolved the intramolecular structure of antibodies in monomer and pentameric forms. Furthermore, the instrument has a force sensitivity of 0.2 pN which enables the identification of compositional changes along the protein fragments.

摘要

原子力显微镜(AFM)生成表面原子级或纳米级分辨率图像的能力深刻改变了材料研究。然而,事实证明,对生物系统进行高分辨率成像比对晶体表面获得原子分辨率图像更为困难。在许多情况下,探针施加在分子上的力(1-10纳牛)要么使分子横向位移,要么破坏将生物分子维系在一起的非共价键。在此,我们应用了一种基于同时激发悬臂梁前两种弯曲模式的力显微镜概念。由探针-分子力产生的模式耦合使得能够在施加小于破坏非共价键所需力(约35皮牛)的情况下进行成像。利用该仪器,我们解析了单体和五聚体形式抗体的分子内结构。此外,该仪器的力灵敏度为0.2皮牛,能够识别沿蛋白质片段的组成变化。

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