Center for Neural Science, New York University, New York, NY 10003.
Department of Otolaryngology, Rutgers, New Brunswick, NJ 08901.
Proc Natl Acad Sci U S A. 2024 Jun 11;121(24):e2311570121. doi: 10.1073/pnas.2311570121. Epub 2024 Jun 3.
Even a transient period of hearing loss during the developmental critical period can induce long-lasting deficits in temporal and spectral perception. These perceptual deficits correlate with speech perception in humans. In gerbils, these hearing loss-induced perceptual deficits are correlated with a reduction of both ionotropic GABA and metabotropic GABA receptor-mediated synaptic inhibition in auditory cortex, but most research on critical period plasticity has focused on GABA receptors. Therefore, we developed viral vectors to express proteins that would upregulate gerbil postsynaptic inhibitory receptor subunits (GABA, ; GABA, ) in pyramidal neurons, and an enzyme that mediates GABA synthesis () presynaptically in parvalbumin-expressing interneurons. A transient period of developmental hearing loss during the auditory critical period significantly impaired perceptual performance on two auditory tasks: amplitude modulation depth detection and spectral modulation depth detection. We then tested the capacity of each vector to restore perceptual performance on these auditory tasks. While both GABA receptor vectors increased the amplitude of cortical inhibitory postsynaptic potentials, only viral expression of postsynaptic GABA receptors improved perceptual thresholds to control levels. Similarly, presynaptic GAD65 expression improved perceptual performance on spectral modulation detection. These findings suggest that recovering performance on auditory perceptual tasks depends on GABA receptor-dependent transmission at the auditory cortex parvalbumin to pyramidal synapse and point to potential therapeutic targets for developmental sensory disorders.
即使在发育关键期短暂的听力损失也会导致时间和频谱感知的长期缺陷。这些感知缺陷与人类的言语感知相关。在沙鼠中,这些听力损失引起的感知缺陷与听觉皮层中离子型 GABA 和代谢型 GABA 受体介导的突触抑制减少有关,但大多数关于关键期可塑性的研究都集中在 GABA 受体上。因此,我们开发了病毒载体来表达可以上调沙鼠突触后抑制性受体亚基(GABA 、 )的蛋白,以及一种在表达钙结合蛋白的中间神经元中介导 GABA 合成的酶( )。在听觉关键期短暂的发育性听力损失会显著损害两个听觉任务的感知表现:幅度调制深度检测和频谱调制深度检测。然后,我们测试了每个载体恢复这些听觉任务感知表现的能力。虽然两种 GABA 受体载体都增加了皮质抑制性突触后电位的幅度,但只有突触后 GABA 受体的病毒表达才能将感知阈值提高到对照水平。类似地,GAD65 的表达增强了对频谱调制检测的感知性能。这些发现表明,听觉感知任务的表现恢复取决于听觉皮层钙结合蛋白到锥体神经元的 GABA 受体依赖性传递,并为发育性感觉障碍提供了潜在的治疗靶点。