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Detecting stoichiometry of macromolecular complexes in live cells using FRET

机译:使用FRET检测活细胞中大分子复合物的化学计量

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The stoichiometry of macromolecular interactions is fundamental to cellular signalling yet challenging to detect from living cells. Fluorescence resonance energy transfer (FRET) is a powerful phenomenon for characterizing close-range interactions whereby a donor fluorophore transfers energy to a closely juxtaposed acceptor. Recognizing that FRET measured from the acceptor’s perspective reports a related but distinct quantity versus the donor, we utilize the ratiometric comparison of the two to obtain the stoichiometry of a complex. Applying this principle to the long-standing controversy of calmodulin binding to ion channels, we find a surprising Ca2+-induced switch in calmodulin stoichiometry with Ca2+ channels—one calmodulin binds at basal cytosolic Ca2+ levels while two calmodulins interact following Ca2+ elevation. This feature is curiously absent for the related Na channels, also potently regulated by calmodulin. Overall, our assay adds to a burgeoning toolkit to pursue quantitative biochemistry of dynamic signalling complexes in living cells.
机译:大分子相互作用的化学计量是细胞信号转导的基础,但很难从活细胞中检测出来。荧光共振能量转移(FRET)是表征近距离相互作用的强大现象,供体荧光团将能量转移至紧密并置的受体。认识到从受主的角度测量的FRET报告了与供体相关但数量不同的数量,我们利用两者的比率比较来获得复合物的化学计量。将这一原理应用于钙调蛋白与离子通道结合的长期争论中,我们发现钙调蛋白化学计量学中由Ca 2 + 诱导的令人惊讶的Ca 2 + 转换-一个钙调蛋白在基础胞浆Ca 2 + 水平结合,而两个钙调蛋白在Ca 2 + 升高后相互作用。奇怪的是,相关的Na通道缺少此功能,而钙通道蛋白也有效地调节了该功能。总体而言,我们的测定法增加了一个新兴的工具包,以进行活细胞中动态信号复合物的定量生物化学研究。

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