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Tonotopic alterations in inhibitory input to the medial nucleus of the trapezoid body in a mouse model of Fragile X syndrome

机译:脆性X综合征小鼠模型中梯形体内侧核抑制性输入的同位异位改变

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摘要

Hyperexcitability and the imbalance of excitation/inhibition are one of the leading causes of abnormal sensory processing in Fragile X syndrome (FXS). The precise timing and distribution of excitation and inhibition is crucial for auditory processing at the level of the auditory brainstem, which is responsible for sound localization ability. Sound localization is one of the sensory abilities disrupted by loss of the Fragile X Mental Retardation 1 (Fmr1) gene. Using triple immunofluorescence staining we tested whether there were alterations in the number and size of presynaptic structures for the three primary neurotransmitters (glutamate, glycine and GABA) in the auditory brainstem of Fmr1 knockout mice. We found decreases in either glycinergic or GABAergic inhibition to the medial nucleus of the trapezoid body (MNTB) specific to the tonotopic location within the nucleus. MNTB is one of the primary inhibitory nuclei in the auditory brainstem and participates in the sound localization process with fast and well-timed inhibition. Thus, a decrease in inhibitory afferents to MNTB neurons should lead to greater inhibitory output to the projections from this nucleus. In contrast, we did not see any other significant alterations in balance of excitation/inhibition in any of the other auditory brainstem nuclei measured, suggesting that the alterations observed in the MNTB are both nucleus and frequency specific. We furthermore show that glycinergic inhibition may be an important contributor to imbalances in excitation and inhibition in FXS and that the auditory brainstem is a useful circuit for testing these imbalances.
机译:过度兴奋和兴奋/抑制失衡是脆性X综合征(FXS)异常感觉处理的主要原因之一。激发和抑制的精确时间和分布对于听觉脑干水平的听觉处理至关重要,而听觉脑干负责声音的定位能力。声音定位是易碎的X智力低下1(Fmr1)基因丧失所破坏的感觉能力之一。使用三重免疫荧光染色,我们测试了Fmr1基因敲除小鼠的听觉脑干中三种主要神经递质(谷氨酸,甘氨酸和GABA)的突触前结构的数量和大小是否改变。我们发现对梯形体(MNTB)的内核位置特异的梯形体(MNTB)的内侧核对甘氨酸或GABA的抑制作用降低。 MNTB是听觉脑干中的主要抑制核之一,并以快速且适时的抑制作用参与声音的定位过程。因此,对MNTB神经元的抑制传入的减少将导致该核向突起的更大抑制输出。相比之下,我们在所测量的任何其他听觉脑干核中均未发现兴奋/抑制平衡的任何其他显着变化,这表明在MNTB中观察到的变化既是细胞核又是频率特异性的。我们进一步表明,甘氨酸抑制可能是导致FXS兴奋和抑制失衡的重要因素,并且听觉脑干是测试这些失衡的有用电路。

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