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首页> 外文期刊>Protein & Cell >Integrative analysis of in vivo recording with single-cell RNA-seq data reveals molecular properties of light-sensitive neurons in mouse V1
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Integrative analysis of in vivo recording with single-cell RNA-seq data reveals molecular properties of light-sensitive neurons in mouse V1

机译:单细胞RNA-SEQ数据的体内记录的整合分析显示小鼠V1中光敏神经元的分子特性

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Vision formation is classically based on projections from retinal ganglion cells (RGC) to the lateral geniculate nucleus (LGN) and the primary visual cortex (V1). Neurons in the mouse V1 are tuned to light stimuli. Although the cellular information of the retina and the LGN has been widely studied, the transcriptome profiles of single light-stimulated neuron in V1 remain unknown. In our study, in vivo calcium imaging and whole-cell electrophysiological patch-clamp recording were utilized to identify 53 individual cells from layer 2/3 of V1 as light-sensitive (LS) or non-light-sensitive (NS) by single-cell light-evoked calcium evaluation and action potential spiking. The contents of each cell after functional tests were aspirated in vivo through a patch-clamp pipette for mRNA sequencing. Moreover, the three-dimensional (3-D) morphological characterizations of the neurons were reconstructed in a live mouse after the whole-cell recordings. Our sequencing results indicated that V1 neurons with a high expression of genes related to transmission regulation, such as Rtn4r and Rgs7, and genes involved in membrane transport, such as Nasup+/sup/Ksup+/sup ATPase and NMDA-type glutamatergic receptors, preferentially responded to light stimulation. Furthermore, an antagonist that blocks Rtn4r signals could inactivate the neuronal responses to light stimulation in live mice. In conclusion, our findings of the vivo -seq analysis indicate the key role of the strength of synaptic transmission possesses neurons in V1 of light sensory.
机译:视觉形成基于视网膜神经节细胞(RGC)到横向核状核(LGN)和主要视觉皮质(V1)的突出物。小鼠V1中的神经元调谐到光刺激。虽然Retina和LGN的细胞信息已被广泛研究,但V1中单个光刺激神经元的转录组谱仍然未知。在我们的研究中,在体内钙成像和全细胞电生理贴片钳位记录中,用于通过单一的光敏(LS)或非光敏感(NS)鉴定53个单个细胞。细胞射击钙评价和动作潜在尖刺。通过用于mRNA测序的蛋白钳移液管在体内递增功能试验后的每个细胞的内容物。此外,在整个细胞记录后,在活小鼠中重建了神经元的三维(3-D)形态学特征。我们的测序结果表明V1神经元具有高表达与透射调节相关的基因,例如RTN4R和RGS7,以及参与膜输送的基因,例如Na + / k + ATPase和NMDA型谷氨酸受体,优先反应光刺激。此外,阻断RTN4R信号的拮抗剂可以将神经元响应灭活,以在活小鼠中的光刺激。总之,我们的体内-SEQ分析的发现表明突触传递强度的关键作用具有v1中的v1中的神经元。

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