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Label-free quantification of calcium-sensor targeting to photoreceptor guanylate cyclase and rhodopsin kinase by backscattering interferometry

机译:通过反向散射干涉测量法无标记为光感受器胍基环化酶和罗多蛋白激酶的钙传感器的无标记量化

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Quantification of protein binding to membrane proteins is challenging and a limited set of methods is available to study such systems. Here we employed backscattering interferometry (BSI), a free-solution label-free method with high sensitivity, to quantify the interaction of neuronal Ca2+-Sensor proteins with their targets operating in phototransduction. We tested direct binding of guanylate cyclase–activating proteins (GCAP1 and GCAP2) to their membrane target guanylate cyclase 1. The regulatory mechanism of GCAPs including their binding interface in the target is unresolved. Here we used a label-free, free-solution assay method based on BSI to determine binding constants of GCAP1 and GCAP2 to the full-length membrane-bound guanylate cyclase type 1. GCAP1 and GCAP2 bound to different regions on the target guanylate cyclase with submicromolar affinity (apparent KD-values of 663?±?121?nM and 231?±?63?nM for Ca2+-free GCAP1 and GCAP2, respectively). A guanylate cyclase construct containing the juxta-membrane and kinase homology domain harbored an exclusive binding site for GCAP1 with similar affinities as the full-length protein, whereas GCAP2 did not bind to this region. We provide a model in which GCAP1 and GCAP2 do not share a single binding site to the target, thus cannot exchange upon fluctuating Ca2+ levels.
机译:与膜蛋白质结合的蛋白质的定量是具有挑战性的,并且可以获得有限的方法来研究这些系统。在这里,我们采用过散射干涉测量(BSI),一种具有高灵敏度的自由溶液的可自由溶液的方法,以量化神经元Ca2 + -Sensor蛋白与其在光电扫描中操作的靶的相互作用。我们测试了将胍酸盐环酶激活蛋白(GCAP1和GCAP2)的直接结合到其膜靶胍基环化酶1中。GCAPS的调节机制包括靶标的结合界面是未解决的。在这里,我们使用基于BSI的无标记的自由溶液测定方法,以确定GCAP1和GCAP2的结合常数,到全长膜结合的胍基环化酶型1. GCAP1和GCAP2与靶瓜膦环酶的不同区域结合在一起亚微粒剂亲和力(表观Kd值663?±121Ω,分别为CA2 + -FREE GCAP1和GCAP2,分别为CA2 + -FREE GCAP1和GCAP2)。含有Juxta膜和激酶同源结构域的胍基环化酶构建体覆有针对GCAP1的独特结合位点,其具有与全长蛋白质相似,而GCAP2没有与该区域结合。我们提供了一种模型,其中GCAP1和GCAP2不与目标共享单个绑定站点,因此不能在波动CA2 +水平时交换。

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