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果蝇中方向选择性T4/T5神经元的RNA测序转录组分析

RNA-Seq Transcriptome Analysis of Direction-Selective T4/T5 Neurons in Drosophila.

作者信息

Pankova Katarina, Borst Alexander

机构信息

Max Planck Institute of Neurobiology, Martinsried, Germany.

Graduate School of Systemic Neurosciences, LMU Munich, Munich, Germany.

出版信息

PLoS One. 2016 Sep 29;11(9):e0163986. doi: 10.1371/journal.pone.0163986. eCollection 2016.

Abstract

Neuronal computation underlying detection of visual motion has been studied for more than a half-century. In Drosophila, direction-selective T4/T5 neurons show supralinear signal amplification in response to stimuli moving in their preferred direction, in agreement with the prediction made by the Hassenstein-Reichardt detector. Nevertheless, the molecular mechanism explaining how the Hassenstein-Reichardt model is implemented in T4/T5 cells has not been identified yet. In the present study, we utilized cell type-specific transcriptome profiling with RNA-seq to obtain a complete gene expression profile of T4/T5 neurons. We analyzed the expression of genes that affect neuronal computational properties and can underlie the molecular implementation of the core features of the Hassenstein-Reichardt model to the dendrites of T4/T5 neurons. Furthermore, we used the acquired RNA-seq data to examine the neurotransmitter system used by T4/T5 neurons. Surprisingly, we observed co-expression of the cholinergic markers and the vesicular GABA transporter in T4/T5 neurons. We verified the previously undetected expression of vesicular GABA transporter in T4/T5 cells using VGAT-LexA knock-in line. The provided gene expression dataset can serve as a useful source for studying the properties of direction-selective T4/T5 neurons on the molecular level.

摘要

半个多世纪以来,人们一直在研究视觉运动检测背后的神经元计算。在果蝇中,方向选择性T4/T5神经元对向其偏好方向移动的刺激表现出超线性信号放大,这与哈森斯坦 - 赖夏特检测器的预测一致。然而,解释哈森斯坦 - 赖夏特模型如何在T4/T5细胞中实现的分子机制尚未确定。在本研究中,我们利用RNA测序进行细胞类型特异性转录组分析,以获得T4/T5神经元的完整基因表达谱。我们分析了影响神经元计算特性且可能是哈森斯坦 - 赖夏特模型核心特征在T4/T5神经元树突上分子实现基础的基因表达。此外,我们利用获得的RNA测序数据来研究T4/T5神经元所使用的神经递质系统。令人惊讶的是,我们在T4/T5神经元中观察到胆碱能标记物和囊泡GABA转运体的共表达。我们使用VGAT-LexA敲入系验证了T4/T5细胞中先前未检测到的囊泡GABA转运体的表达。所提供的基因表达数据集可作为在分子水平上研究方向选择性T4/T5神经元特性的有用资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e165/5042512/e7aee4b749e2/pone.0163986.g001.jpg

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