1] Department of Neurochemistry, Graduate School of Medicine, University of Tokyo, Tokyo, Japan. [2] Core Research for Evolutional Science and Technology (CREST), Japan Science and Technology Agency, Tokyo, Japan.
Department of Neurophysiology, Graduate School of Medicine, University of Tokyo, Tokyo, Japan.
Nat Methods. 2015 Jan;12(1):64-70. doi: 10.1038/nmeth.3185. Epub 2014 Nov 24.
Fluorescent Ca(2+) reporters are widely used as readouts of neuronal activities. Here we designed R-CaMP2, a high-affinity red genetically encoded calcium indicator (GECI) with a Hill coefficient near 1. Use of the calmodulin-binding sequence of CaMKK-α and CaMKK-β in lieu of an M13 sequence resulted in threefold faster rise and decay times of Ca(2+) transients than R-CaMP1.07. These features allowed resolving single action potentials (APs) and recording fast AP trains up to 20-40 Hz in cortical slices. Somatic and synaptic activities of a cortical neuronal ensemble in vivo were imaged with similar efficacy as with previously reported sensitive green GECIs. Combining green and red GECIs, we successfully achieved dual-color monitoring of neuronal activities of distinct cell types, both in the mouse cortex and in freely moving Caenorhabditis elegans. Dual imaging using R-CaMP2 and green GECIs provides a powerful means to interrogate orthogonal and hierarchical neuronal ensembles in vivo.
荧光 Ca(2+) 报告分子被广泛用作神经元活动的读数。在这里,我们设计了 R-CaMP2,这是一种具有近 1 个希尔系数的高亲和力红色基因编码钙指示剂 (GECI)。使用 CaMKK-α 和 CaMKK-β 的钙调蛋白结合序列代替 M13 序列,使 Ca(2+) 瞬变的上升和下降时间比 R-CaMP1.07 快三倍。这些特性允许分辨单个动作电位 (AP),并在皮质切片中以高达 20-40 Hz 的频率记录快速的 AP 串。使用 R-CaMP2 和绿色 GECI 成功地对体内皮质神经元群体的体和突触活动进行了成像,其功效与之前报道的敏感绿色 GECI 相似。通过将绿色和红色 GECI 结合,我们成功地实现了不同细胞类型的神经元活动的双色监测,无论是在小鼠皮层还是在自由移动的秀丽隐杆线虫中。使用 R-CaMP2 和绿色 GECI 的双成像为体内正交和层次化神经元群体的研究提供了一种强大的手段。