Vattino Lucas G, MacGregor Cathryn P, Liu Christine Junhui, Sweeney Carolyn G, Takesian Anne E
Eaton-Peabody Laboratories, Massachusetts Eye and Ear, Boston, MA, USA.
Department of Otolaryngology - Head and Neck Surgery, Harvard Medical School, Boston, MA, USA.
bioRxiv. 2024 Jul 18:2024.07.16.603741. doi: 10.1101/2024.07.16.603741.
Inhibitory interneurons within cortical layer 1 (L1-INs) integrate inputs from diverse brain regions to modulate sensory processing and plasticity, but the sensory inputs that recruit these interneurons have not been identified. Here we used monosynaptic retrograde tracing and whole-cell electrophysiology to characterize the thalamic inputs onto two major subpopulations of L1-INs in the mouse auditory cortex. We find that the vast majority of auditory thalamic inputs to these L1-INs unexpectedly arise from the ventral subdivision of the medial geniculate body (MGBv), the tonotopically-organized primary auditory thalamus. Moreover, these interneurons receive robust functional monosynaptic MGBv inputs that are comparable to those recorded in the L4 excitatory pyramidal neurons. Our findings identify a direct pathway from the primary auditory thalamus to the L1-INs, suggesting that these interneurons are uniquely positioned to integrate thalamic inputs conveying precise sensory information with top-down inputs carrying information about brain states and learned associations.
皮层第1层抑制性中间神经元(L1-INs)整合来自不同脑区的输入,以调节感觉处理和可塑性,但尚未确定招募这些中间神经元的感觉输入。在这里,我们使用单突触逆行示踪和全细胞电生理学来表征小鼠听觉皮层中L1-INs两个主要亚群上的丘脑输入。我们发现,这些L1-INs绝大多数听觉丘脑输入意外地来自内侧膝状体腹侧亚区(MGBv),即具有音调拓扑组织的初级听觉丘脑。此外,这些中间神经元接收到强大的功能性单突触MGBv输入,与在第4层兴奋性锥体神经元中记录到的输入相当。我们的研究结果确定了一条从初级听觉丘脑到L1-INs的直接通路,表明这些中间神经元处于独特的位置,能够将传递精确感觉信息的丘脑输入与携带脑状态和学习关联信息的自上而下输入进行整合。