改善光视紫红质在光诱导神经元活动沉默中的表达。

Brain cell biology Pub Date : 2008-08-01 Epub Date: 2008-10-17 DOI:10.1007/s11068-008-9034-7
Shengli Zhao, Catarina Cunha, Feng Zhang, Qun Liu, Bernd Gloss, Karl Deisseroth, George J Augustine, Guoping Feng
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引用次数: 199

摘要

在完整的哺乳动物大脑中,控制和操纵神经元活动的能力对于绘制功能连接和解剖行为背后的神经回路至关重要。我们之前已经产生了表达通道视紫红质-2的转基因小鼠,用于光诱导神经元的激活和神经回路的绘制。在这里,我们描述了表达盐视紫红质(NpHR)的转基因小鼠,盐视紫红质是一种光驱动的氯泵,可以通过光来沉默神经元活动。利用Thy-1启动子将NpHR的表达靶向到神经元上,我们发现这些小鼠的神经元表达了高水平的NpHR- yfp,并且表达NpHR- yfp的皮质锥体神经元的光照导致这些细胞中动作电位放电的快速,可逆的光抑制。然而,nphrr - yfp的表达导致大量细胞内泡的形成,这可能会破坏神经元的功能。各种亚细胞标记物的标记表明,这些水泡是由内质网中NpHR-YFP的保留引起的。通过改善信号肽序列,在nphrr - yfp中加入内质网输出信号,消除了泡的形成,显著提高了nphrr - yfp的膜表达。因此,改进后的NpHR应该在体外和体内作为神经元沉默的优秀工具。
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Improved expression of halorhodopsin for light-induced silencing of neuronal activity.

The ability to control and manipulate neuronal activity within an intact mammalian brain is of key importance for mapping functional connectivity and for dissecting the neural circuitry underlying behaviors. We have previously generated transgenic mice that express channelrhodopsin-2 for light-induced activation of neurons and mapping of neural circuits. Here we describe transgenic mice that express halorhodopsin (NpHR), a light-driven chloride pump that can be used to silence neuronal activity via light. Using the Thy-1 promoter to target NpHR expression to neurons, we found that neurons in these mice expressed high levels of NpHR-YFP and that illumination of cortical pyramidal neurons expressing NpHR-YFP led to rapid, reversible photoinhibition of action potential firing in these cells. However, NpHR-YFP expression led to the formation of numerous intracellular blebs, which may disrupt neuronal function. Labeling of various subcellular markers indicated that the blebs arise from retention of NpHR-YFP in the endoplasmic reticulum. By improving the signal peptide sequence and adding an ER export signal to NpHR-YFP, we eliminated the formation of blebs and dramatically increased the membrane expression of NpHR-YFP. Thus, the improved version of NpHR should serve as an excellent tool for neuronal silencing in vitro and in vivo.

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