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Cre-Dependent Optogenetic Transgenic Mice Without Early Age-Related Hearing Loss

机译:Cre依赖的光遗传学转基因小鼠没有早期与年龄有关的听力损失

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摘要

With the advent of recent genetic technologies for mice, it is now feasible to investigate the circuit mechanisms of brain functions in an unprecedented manner. Although transgenic mice are commonly used on C57BL/6J (C57) background, hearing research has typically relied on different genetic backgrounds, such as CBA/Ca or CBA due to the genetic defect of C57 mice for early age-related hearing loss. This limits the utilization of available genetic resources for hearing research. Here we report congenic (>F10) Cre-dependent channelrhodopsin2 (ChR2) mice on CBA/Ca background. By crossing this line with Cre-driver mice on C57 background, F1 hybrids restored the hearing deficit of C57 mice. We also found a linear relationship between aging and hearing loss, with progression rates varied depending on genetic backgrounds (3.39 dB/month for C57; 0.82 dB/month for F1 hybrid). We further demonstrate that this approach allows to express ChR2 in a specific type of inhibitory neurons in the auditory cortex and that they can be identified within a simultaneously recorded population of neurons in awake mice. Thus, our Cre-dependent optogenetic transgenic mice on CBA/Ca background are a valuable tool to investigate the circuit mechanisms of hearing across lifespan.
机译:随着用于小鼠的最新遗传技术的出现,以一种前所未有的方式研究大脑功能的回路机制现在是可行的。尽管转基因小鼠通常在C57BL / 6J(C57)背景上使用,但是由于C57小鼠因与年龄相关的早期听力损失而出现遗传缺陷,听力研究通常依赖于不同的遗传背景,例如CBA / Ca或CBA。这限制了可利用的遗传资源用于听力研究的利用。在这里,我们报告CBA / Ca背景上的同基因(> F10)Cre依赖型Channelrhodopsin2(ChR2)小鼠。通过在C57背景上与Cre-driver小鼠杂交,F1杂种恢复了C57小鼠的听力障碍。我们还发现衰老与听力丧失之间存在线性关系,其进展速度取决于遗传背景(C57为3.39 dB /月; F1杂种为0.82 dB /月)。我们进一步证明,该方法允许在听觉皮层中特定类型的抑制神经元中表达ChR2,并且可以在清醒小鼠中同时记录的神经元群体中鉴定出它们。因此,我们在CBA / Ca背景下的Cre依赖性光遗传学转基因小鼠是研究跨寿命听力回路的重要工具。

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