Ohkura Masamichi, Matsuzaki Masanori, Kasai Haruo, Imoto Keiji, Nakai Junichi
Department of Information Physiology, and Department of Cell Physiology, National Institute for Physiological Sciences, and School of Life Science, Graduate University for Advanced Studies, Okazaki, Aichi 444-8585, Japan.
Anal Chem. 2005 Sep 15;77(18):5861-9. doi: 10.1021/ac0506837.
G-CaMP is a Ca2+ probe based on a single green fluorescent protein (GFP). G-CaMP shows a large fluorescence increase upon Ca2+ binding, but its fluorescence is dim and pH sensitive, similar to other single GFP-based probes. Here we report an improved G-CaMP, named G-CaMP1.6, which enables easier detection of intracellular Ca2+ signals. G-CaMP1.6 was approximately 40 times more fluorescent than G-CaMP, mainly due to an increase in quantum yield. Furthermore, compared with G-CaMP, G-CaMP1.6 had not only a lower pH sensitivity but also a higher selectivity for divalent cations having an ionic radius similar to Ca2+. Ca2+ sensitivity of G-CaMP1.6 (Kd = 146 nM, Hill coefficient = 3.8, Fmax/Fmin = 4.9) was slightly shifted toward higher affinity compared with that of G-CaMP. When expressed in mammalian cells, G-CaMP1.6 showed large fluorescence changes with drug applications. Notably, local Ca2+ changes in such tiny structures as dendritic spines of neurons were successfully observed with G-CaMP1.6, this being the first observation using a GFP-based probe. Additional mutations in Ca2+-binding sites of G-CaMP1.6 shifted the affinity for Ca2+ and reduced the Ca2+-buffering effect. G-CaMP1.6-CaM(E140K), which has a mutation in the Ca2+ binding site, is an improved probe with its increased brightness and reduced Ca2+-buffering capacity.
G-CaMP是一种基于单个绿色荧光蛋白(GFP)的钙离子探针。G-CaMP在结合钙离子后荧光大幅增强,但其荧光较暗淡且对pH敏感,这与其他基于单个GFP的探针类似。在此我们报告一种改进的G-CaMP,命名为G-CaMP1.6,它能更轻松地检测细胞内钙离子信号。G-CaMP1.6的荧光强度约为G-CaMP的40倍,主要原因是量子产率增加。此外,与G-CaMP相比,G-CaMP1.6不仅对pH的敏感性更低,而且对离子半径与钙离子相似的二价阳离子具有更高的选择性。与G-CaMP相比,G-CaMP1.6的钙离子敏感性(解离常数Kd = 146 nM,希尔系数 = 3.8,最大荧光强度与最小荧光强度之比Fmax/Fmin = 4.9)向更高亲和力方向略有偏移。当在哺乳动物细胞中表达时,G-CaMP1.6在应用药物时显示出较大的荧光变化。值得注意的是,利用G-CaMP1.6成功观察到了神经元树突棘等微小结构中的局部钙离子变化,这是首次使用基于GFP的探针进行此类观察。G-CaMP1.6钙离子结合位点的额外突变改变了对钙离子的亲和力并降低了钙离子缓冲效应。G-CaMP1.6-CaM(E140K)在钙离子结合位点有突变,是一种亮度增加且钙离子缓冲能力降低的改进型探针。