Molecular layer interneurons (MLIs) account for approximately 80% of the inhibitory interneurons in the cerebellar cortex and are vital to cerebellar processing. MLIs are thought to primarily inhibit Purkinje cells (PCs) and suppress the plasticity of synapses onto PCs. MLIs also inhibit, and are electrically coupled to, other MLIs, but the functional significance of these connections is not known. Here, we find that two recently recognized MLI subtypes, MLI1 and MLI2, have a highly specialized connectivity that allows them to serve distinct functional roles. MLI1s primarily inhibit PCs, are electrically coupled to each other, fire synchronously with other MLI1s on the millisecond timescale in vivo, and synchronously pause PC firing. MLI2s are not electrically coupled, primarily inhibit MLI1s and disinhibit PCs, and are well suited to gating cerebellar-dependent behavior and learning. The synchronous firing of electrically coupled MLI1s and disinhibition provided by MLI2s require a major re-evaluation of cerebellar processing.
Specialized connectivity of molecular layer interneuron subtypes leads to disinhibition and synchronous inhibition of cerebellar Purkinje cells.
分子层中间神经元亚型的特殊连接导致小脑浦肯野细胞的去抑制和同步抑制
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作者:Lackey Elizabeth P, Moreira Luis, Norton Aliya, Hemelt Marie E, Osorno Tomas, Nguyen Tri M, Macosko Evan Z, Lee Wei-Chung Allen, Hull Court A, Regehr Wade G
| 期刊: | Neuron | 影响因子: | 15.000 |
| 时间: | 2024 | 起止号: | 2024 Jul 17; 112(14):2333-2348 |
| doi: | 10.1016/j.neuron.2024.04.010 | 研究方向: | 神经科学 |
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