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首页> 外文期刊>International journal of mass spectrometry >Application of micro-reactor chip technique for millisecond quenching of deuterium incorporation into 70S ribosomal protein complex
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Application of micro-reactor chip technique for millisecond quenching of deuterium incorporation into 70S ribosomal protein complex

机译:微反应器芯片技术在掺入70S核糖体蛋白复合物中的氘淬灭中的应用

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摘要

The hydrogen/deuterium exchange (HDX) method is useful to analyze kinetics of large macromolecular complexes, although its time resolution requires further improvement. A newly developed micro-reactor chip was made of polydimethylsiloxane with a 100-μm deep and wide microchannel. The channel in the chip has two mixing points of Y-shaped flow and allowed us to shorten time durations from the start to quenching for the HDX in 70S ribosome with high temporal resolution. This device enabled us to quench the deuterium incorporation at as early as 20 ms, detecting structural changes of individual ribosomal proteins in solution at the time scale comparable to a single reaction cycle for the peptide elongation. The profile of deuterium incorporation in individual proteins of the complex was superimposed on the X-ray crystal structure to depict the surface HDX map, revealing localization of protein movement in the ribosome. The current method serves as a useful method to visualize the regional movement of large macromolecules with high temporal resolution sufficient to examine protein dynamics.
机译:氢/氘交换(HDX)方法可用于分析大分子复合物的动力学,尽管其时间分辨率需要进一步改进。一种新开发的微反应器芯片是由聚二甲基硅氧烷制成的,该芯片具有100μm深和宽的微通道。芯片中的通道具有两个Y形流动的混合点,使我们能够以较高的时间分辨率缩短70S核糖体中HDX从开始到淬灭的时间。该设备使我们能够最早在20 ms处淬灭氘的掺入,从而在与肽延伸的单个反应周期相当的时间范围内检测溶液中单个核糖体蛋白的结构变化。将氘掺入复合物的单个蛋白质中的曲线叠加在X射线晶体结构上以描绘表面HDX图,从而揭示蛋白质在核糖体中的定位。当前的方法是一种有用的方法,可以以高时间分辨率可视化大分子的区域运动,足以检查蛋白质动力学。

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