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Novel Genetically Encoded Bright Positive Calcium Indicator NCaMP7 Based on the mNeonGreen Fluorescent Protein

机译:基于mneongreen荧光蛋白的新型遗传编码明亮碱性钙指示器Ncamp7

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摘要

Green fluorescent genetically encoded calcium indicators (GECIs) are the most popular tool for visualization of calcium dynamics in vivo. However, most of them are based on the EGFP protein and have similar molecular brightnesses. The NTnC indicator, which is composed of the mNeonGreen fluorescent protein with the insertion of troponin C, has higher brightness as compared to EGFP-based GECIs, but shows a limited inverted response with an ΔF/F of 1. By insertion of a calmodulin/M13-peptide pair into the mNeonGreen protein, we developed a green GECI called NCaMP7. In vitro, NCaMP7 showed positive response with an ΔF/F of 27 and high affinity (Kd of 125 nM) to calcium ions. NCaMP7 demonstrated a 1.7-fold higher brightness and similar calcium-association/dissociation dynamics compared to the standard GCaMP6s GECI in vitro. According to fluorescence recovery after photobleaching (FRAP) experiments, the NCaMP7 design partially prevented interactions of NCaMP7 with the intracellular environment. The NCaMP7 crystal structure was obtained at 1.75 Å resolution to uncover the molecular basis of its calcium ions sensitivity. The NCaMP7 indicator retained a high and fast response when expressed in cultured HeLa and neuronal cells. Finally, we successfully utilized the NCaMP7 indicator for in vivo visualization of grating-evoked and place-dependent neuronal activity in the visual cortex and the hippocampus of mice using a two-photon microscope and an NVista miniscope, respectively.
机译:绿色荧光基因编码的钙指标(GECIS)是用于在体内钙动力学的可视化的最常用的工具。然而,他们大多是基于EGFP蛋白和具有类似的分子亮度。的NTnC指示器,它是由与肌钙蛋白C的插入mNeonGreen荧光蛋白的,具有较高的亮度与基于EGFP-GECIS但示出了具有为1的ΔF/ F有限的反转响应通过钙调蛋白的插入/ M13肽对进入mNeonGreen蛋白质,我们开发了绿色GECI称为NCaMP7。在体外,NCaMP7显示出与27的ΔF/ F和高亲和力(125nM的的KD)对钙离子的积极响应。 NCaMP7表现出1.7倍更高的亮度和与标准相比GCaMP6s GECI体外类似钙结合/解离动力学。据后光漂白(FRAP)实验荧光恢复,所述NCaMP7设计部分地防止NCaMP7的相互作用与细胞内环境。在1.75的分辨率得到揭示其钙离子的敏感性的分子基础的NCaMP7晶体结构。在培养的HeLa细胞和神经细胞中表达时的NCaMP7指示器保持高,响应速度快。最后,我们成功地用于体内的可视化指示符NCaMP7光栅诱发和在视觉皮层,并使用双光子显微镜和NVista微型视镜,分别小鼠海马地点依赖性神经元活动。

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