Barykina Natalia V, Subach Oksana M, Doronin Danila A, Sotskov Vladimir P, Roshchina Marina A, Kunitsyna Tatiana A, Malyshev Aleksey Y, Smirnov Ivan V, Azieva Asya M, Sokolov Ilya S, Piatkevich Kiryl D, Burtsev Mikhail S, Varizhuk Anna M, Pozmogova Galina E, Anokhin Konstantin V, Subach Fedor V, Enikolopov Grigori N
NBICS Department, Moscow Institute of Physics and Technology, Moscow 123182, Russia.
Department of Systems Neurobiology and Functional Neurochemistry, P.K. Anokhin Institute of Normal Physiology of RAMS, Moscow 125009, Russia.
Sci Rep. 2016 Sep 28;6:34447. doi: 10.1038/srep34447.
Genetically encoded calcium indicators (GECIs) are mainly represented by two- or one-fluorophore-based sensors. One type of two-fluorophore-based sensor, carrying Opsanus troponin C (TnC) as the Ca-binding moiety, has two binding sites for calcium ions, providing a linear response to calcium ions. One-fluorophore-based sensors have four Ca-binding sites but are better suited for in vivo experiments. Herein, we describe a novel design for a one-fluorophore-based GECI with two Ca-binding sites. The engineered sensor, called NTnC, uses TnC as the Ca-binding moiety, inserted in the mNeonGreen fluorescent protein. Monomeric NTnC has higher brightness and pH-stability in vitro compared with the standard GECI GCaMP6s. In addition, NTnC shows an inverted fluorescence response to Ca. Using NTnC, we have visualized Ca dynamics during spontaneous activity of neuronal cultures as confirmed by control NTnC and its mutant, in which the affinity to Ca is eliminated. Using whole-cell patch clamp, we have demonstrated that NTnC dynamics in neurons are similar to those of GCaMP6s and allow robust detection of single action potentials. Finally, we have used NTnC to visualize Ca neuronal activity in vivo in the V1 cortical area in awake and freely moving mice using two-photon microscopy or an nVista miniaturized microscope.
基因编码钙指示剂(GECIs)主要由基于双荧光团或单荧光团的传感器代表。一种基于双荧光团的传感器,携带奥氏肌钙蛋白C(TnC)作为钙结合部分,有两个钙离子结合位点,对钙离子呈线性响应。基于单荧光团的传感器有四个钙结合位点,但更适合体内实验。在此,我们描述了一种具有两个钙结合位点的基于单荧光团的GECI的新颖设计。这种经过工程改造的传感器称为NTnC,它使用TnC作为钙结合部分,插入到mNeonGreen荧光蛋白中。与标准的GECI GCaMP6s相比,单体NTnC在体外具有更高的亮度和pH稳定性。此外,NTnC对钙呈现反向荧光响应。使用NTnC,我们可视化了神经元培养物自发活动期间的钙动态,对照NTnC及其对钙亲和力消除的突变体证实了这一点。使用全细胞膜片钳,我们证明了神经元中NTnC的动态与GCaMP6s相似,并允许对单个动作电位进行可靠检测。最后,我们使用NTnC通过双光子显微镜或nVista微型显微镜在清醒和自由活动的小鼠的V1皮质区域体内可视化钙神经元活动。