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X 射线衍射跟踪法测量膜蛋白分子内动力学。

Diffracted X-ray Tracking Method for Measuring Intramolecular Dynamics of Membrane Proteins.

机构信息

AIST-UTokyo Advanced Operando-Measurement Technology Open Innovation Laboratory (OPERANDO-OIL), National Institute of Advanced Industrial Science and Technology (AIST), 6-2-3 Kashiwanoha, Kashiwa 277-0882, Japan.

Graduate School of Medical Life Science, Yokohama City University, 1-7-29 Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan.

出版信息

Int J Mol Sci. 2022 Feb 20;23(4):2343. doi: 10.3390/ijms23042343.

Abstract

Membrane proteins change their conformations in response to chemical and physical stimuli and transmit extracellular signals inside cells. Several approaches have been developed for solving the structures of proteins. However, few techniques can monitor real-time protein dynamics. The diffracted X-ray tracking method (DXT) is an X-ray-based single-molecule technique that monitors the internal motion of biomolecules in an aqueous solution. DXT analyzes trajectories of Laue spots generated from the attached gold nanocrystals with a two-dimensional axis by tilting () and twisting (). Furthermore, high-intensity X-rays from synchrotron radiation facilities enable measurements with microsecond-timescale and picometer-spatial-scale intramolecular information. The technique has been applied to various membrane proteins due to its superior spatiotemporal resolution. In this review, we introduce basic principles of DXT, reviewing its recent and extended applications to membrane proteins and living cells, respectively.

摘要

膜蛋白会对化学和物理刺激做出构象变化,并将细胞外的信号传入细胞内。目前已经开发出了几种方法来解析蛋白质的结构。然而,能够实时监测蛋白质动态的技术却寥寥无几。衍射 X 射线追踪方法(DXT)是一种基于 X 射线的单分子技术,可以监测水溶液中生物分子的内部运动。DXT 通过倾斜()和扭转()来分析由附着的金纳米晶体产生的劳埃斑点的轨迹。此外,同步辐射设施中的高强度 X 射线可以实现微秒时间尺度和皮米空间尺度的分子内信息的测量。由于其具有优越的时空分辨率,该技术已被应用于各种膜蛋白。在本文中,我们将介绍 DXT 的基本原理,并分别对其在膜蛋白和活细胞中的最新和扩展应用进行综述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3690/8880040/b713464ac6bf/ijms-23-02343-g001.jpg

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