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首页> 外文期刊>Analytical chemistry >Dynamics of Conformational Ca~(2+)-Switches in Signaling Networks Detected by a Planar Plasmonic Device
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Dynamics of Conformational Ca~(2+)-Switches in Signaling Networks Detected by a Planar Plasmonic Device

机译:平面等离振子检测信号网络中构象Ca〜(2 +)-开关的动力学

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摘要

Ca~(2+)-sensor proteins regulate a variety of intracellular processes by adopting specific conformations in response to finely tuned changes in Ca~(2+)-concentration. Here we present a surface plasmon resonance (SPR)-based approach, which allows for simultaneous detection of conformational dynamics of four Ca~(2+)-sensor proteins (calmodulin, recoverin, GCAP1, and GCAP2) operating in the vertebrate phototransduction cascade, over variations in Ca~(2+) concentration in the 0.1-0.6 (mu)M range. By working at conditions that quantitatively mimic those found in the cell, we show that the method is able to detect subtle differences in the dynamics of each Ca~(2+)-sensor, which appear to be influenced by the presence of free Mg~(2+) at physiological concentration and by posttranslational modifications such as myristoylation. Comparison between the macroscopic Ca~(2+)-binding constants, directly measured by competition with a chromophoric chelator, and the concerted binding-conformational switch detected by SPR at equilibrium reveals the relative contribution of the conformational change process to the SPR signal. This process appears to be influenced by the presence of other cations that perturb Ca~(2+)-binding and the conformational transition by competing with Ca~(2+), or by pure electrostatic screening. In conclusion, the approach described here allows a comparative analysis of protein conformational changes occurring under physiologically relevant molecular crowding conditions in ultrathin biosensor layers.
机译:Ca〜(2 +)-传感器蛋白通过采用特定的构象来响应Ca〜(2 +)-浓度的微调变化,从而调节多种细胞内过程。在这里,我们介绍了一种基于表面等离振子共振(SPR)的方法,该方法可同时检测在脊椎动物光转导级联反应中运行的4个Ca〜(2 +)-传感器蛋白(钙调蛋白,recoverin,GCAP1和GCAP2)的构象动力学, Ca〜(2+)浓度在0.1-0.6μM范围内变化。通过在定量模拟细胞中发现的条件下工作,我们表明该方法能够检测每个Ca〜(2 +)-传感器动力学中的细微差别,这些细微差别似乎受游离Mg〜的存在的影响。 (2+)在生理浓度和翻译后修饰(例如肉豆蔻酰化)。通过与发色螯合剂竞争直接测量的宏观Ca〜(2+)结合常数与SPR在平衡状态下检测到的协同构象转换之间的比较,揭示了构象变化过程对SPR信号的相对贡献。此过程似乎受其他干扰Ca〜(2+)结合的阳离子的存在以及与Ca〜(2+)竞争或纯静电筛选干扰构象转变的影响。总之,此处描述的方法可以对在超薄生物传感器层中生理相关分子拥挤条件下发生的蛋白质构象变化进行比较分析。

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