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具有原子力显微镜(AFM)针尖小幅抖动的力钳光谱技术及其在探索单个抗生物素蛋白-生物素复合物能量景观中的应用。

Force-clamp spectroscopy with a small dithering of AFM tip, and its application to explore the energy landscape of single avidin-biotin complex.

作者信息

Favre M, Chtcheglova L A, Lapshin D A, Sekatskii S K, Valle F, Dietler G

机构信息

Laboratoire de Physique de la Matière Vivante, IPMC, BSP, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.

出版信息

Ultramicroscopy. 2007 Oct;107(10-11):882-6. doi: 10.1016/j.ultramic.2007.04.010. Epub 2007 May 1.

Abstract

We have recently developed a new method for directly measuring the spring constant of single molecules and molecular complexes on a real-time basis [L.A. Chtcheglova, G.T. Shubeita, S.K. Sekatskii, G. Dietler, Biophys. J. 86 (2004) 1177]. The technique combines standard force spectroscopy with a small dithering of tip. Changes in the amplitude of the oscillations are measured as a function of the pulling-off force to yield the spring constant of the complex. In this report, we present the first results of combination of this approach with the force-clamp spectroscopy. The standard atomic-force microscope has been supplemented with an electronic unit, which is capable of realizing an arbitrary force function, and permits the force-loading regime to be interrupted at any time. Using this method, the time needed to rupture a single bond can be measured as a function of the force that is required to maintain the complex in a stretched condition. The energy landscape of the avidin-biotin complex is explored and discussed.

摘要

我们最近开发了一种新方法,可实时直接测量单个分子和分子复合物的弹簧常数[L.A. 奇切洛娃、G.T. 舒贝塔、S.K. 谢卡茨基、G. 迪特勒,《生物物理杂志》86 (2004) 1177]。该技术将标准力谱与微小的针尖抖动相结合。测量振荡幅度随拉开力的变化,以得出复合物的弹簧常数。在本报告中,我们展示了这种方法与力钳光谱法相结合的首批结果。标准原子力显微镜已配备一个电子单元,该单元能够实现任意力函数,并允许在任何时候中断力加载模式。使用这种方法,可以测量断裂单个键所需的时间,该时间是维持复合物处于拉伸状态所需力的函数。对抗生物素蛋白-生物素复合物的能量景观进行了探索和讨论。

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