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A Single Vector Platform for High-Level Gene Transduction of Central Neurons: Adeno-Associated Virus Vector Equipped with the Tet-Off System

机译:中枢神经元高水平基因转导的单一载体平台:装备有Tet-Off系统的腺相关病毒载体

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摘要

Visualization of neurons is indispensable for the investigation of neuronal circuits in the central nervous system. Virus vectors have been widely used for labeling particular subsets of neurons, and the adeno-associated virus (AAV) vector has gained popularity as a tool for gene transfer. Here, we developed a single AAV vector Tet-Off platform, AAV-SynTetOff, to improve the gene-transduction efficiency, specifically in neurons. The platform is composed of regulator and response elements in a single AAV genome. After infection of Neuro-2a cells with the AAV-SynTetOff vector, the transduction efficiency of green fluorescent protein (GFP) was increased by approximately 2- and 15-fold relative to the conventional AAV vector with the human cytomegalovirus (CMV) or human synapsin I (SYN) promoter, respectively. We then injected the AAV vectors into the mouse neostriatum. GFP expression in the neostriatal neurons infected with the AAV-SynTetOff vector was approximately 40-times higher than that with the CMV or SYN promoter. By adding a membrane-targeting signal to GFP, the axon fibers of neostriatal neurons were clearly visualized. In contrast, by attaching somatodendritic membrane-targeting signals to GFP, axon fiber labeling was mostly suppressed. Furthermore, we prepared the AAV-SynTetOff vector, which simultaneously expressed somatodendritic membrane-targeted GFP and membrane-targeted red fluorescent protein (RFP). After injection of the vector into the neostriatum, the cell bodies and dendrites of neostriatal neurons were labeled with both GFP and RFP, whereas the axons in the projection sites were labeled only with RFP. Finally, we applied this vector to vasoactive intestinal polypeptide-positive (VIP+) neocortical neurons, one of the subclasses of inhibitory neurons in the neocortex, in layer 2/3 of the mouse primary somatosensory cortex. The results revealed the differential distribution of the somatodendritic and axonal structures at the population level. The AAV-SynTetOff vector developed in the present study exhibits strong fluorescence labeling and has promising applications in neuronal imaging.
机译:神经元的可视化对于中枢神经系统中神经元回路的研究是必不可少的。病毒载体已被广泛用于标记神经元的特定子集,并且腺相关病毒(AAV)载体已成为一种流行的基因转移工具。在这里,我们开发了一个单一的AAV矢量Tet-Off平台AAV-SynTetOff,以提高基因转导效率,特别是在神经元中。该平台由单个AAV基因组中的调节子和应答元件组成。用AAV-SynTetOff载体感染Neuro-2a细胞后,绿色荧光蛋白(GFP)的转导效率相对于使用人巨细胞病毒(CMV)或人突触蛋白的常规AAV载体而言分别提高了约2倍和15倍I(SYN)启动子。然后,我们将AAV载体注射到小鼠新纹状体中。 AAV-SynTetOff载体感染的新纹状体神经元中的GFP表达比使用CMV或SYN启动子的表达高约40倍。通过向GFP添加膜靶向信号,可以清楚地看到新纹状体神经元的轴突纤维。相反,通过将树突状细胞膜靶向信号附加到GFP,轴突纤维标记被大部分抑制。此外,我们制备了AAV-SynTetOff载体,该载体同时表达体树突状膜靶向GFP和膜靶向红色荧光蛋白(RFP)。在将载体注射到新纹状体中之后,新纹状体神经元的细胞体和树突用GFP和RFP标记,而投影部位的轴突仅用RFP标记。最后,我们将此载体应用于小鼠原代体感皮层的2/3层中的血管活性肠多肽阳性(VIP +)新皮层神经元,这是新皮层中抑制性神经元的子类之一。结果表明,在人口水平上,树突状和轴突结构的差异分布。在本研究中开发的AAV-SynTetOff载体显示出强大的荧光标记,并在神经元成像中具有广阔的应用前景。

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