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Submillisecond Conformational Changes in Proteins Resolved by Photothermal Beam Deflection

机译:通过光热束偏转解析的蛋白质的亚毫秒级构象变化

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摘要

Photothermal beam deflection together with photo-acoustic calorimetry and thermal grating belongs to the family of photothermal methods that monitor the time-profile volume and enthalpy changes of light induced conformational changes in proteins on microsecond to millisecond time-scales that are not accessible using traditional stop-flow instruments. In addition, since overall changes in volume and/or enthalpy are probed, these techniques can be applied to proteins and other biomacromolecules that lack a fluorophore and or a chromophore label. To monitor dynamics and energetics of structural changes associated with Ca2+ binding to calcium transducers, such neuronal calcium sensors, a caged calcium compound, DM-nitrophen, is employed to photo-trigger a fast (τ < 20 μsec) increase in free calcium concentration and the associated volume and enthalpy changes are probed using photothermal beam deflection technique.
机译:光热束偏转与光声量热法和热光栅一起属于光热方法的一类,该方法可监视时间剖面的体积和焓的变化,这些变化是光诱导的蛋白构象变化的微秒至毫秒级的时间尺度,这是传统光阑无法获得的-流量仪表。另外,由于探测了体积和/或焓的总体变化,所以这些技术可以应用于缺乏荧光团和/或发色团标记的蛋白质和其他生物大分子。为了监测与Ca 2 + 结合钙换能器相关的结构变化的动力学和能量学,使用这种神经元钙传感器,笼状钙化合物DM-硝基酚来快速触发(τ<游离钙浓度增加20μsec),并使用光热束偏转技术探测相关的体积和焓变。

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