Author:
Jiang He-Hai,Xu Ruoxuan,Nie Xiupeng,Su Zhenghui,Xu Xiaoshan,Pang Ruiqi,Zhou Yi,Luo Fujun
Abstract
AbstractNeurexins play diverse functions as presynaptic organizers in various glutamatergic and GABAergic synapses. However, it remains unknown whether and how neurexins are involved in shaping functional properties of the glycinergic synapses, which mediate prominent inhibition in the brainstem and spinal cord. To address these issues, we examined the role of neurexins in a model glycinergic synapse between the principal neuron in the medial nucleus of the trapezoid body (MNTB) and the principal neuron in the lateral superior olive (LSO) in the auditory brainstem. Combining RNAscope with stereotactic injection of AAV-Cre in the MNTB of neurexin1/2/3 conditional triple knockout mice, we showed that MNTB neurons highly express all isoforms of neurexins although their expression levels vary remarkably. Selective ablation of all neurexins in MNTB neurons reduced not only the amplitude but also the kinetics of the glycinergic synaptic transmission at LSO neurons. The synaptic dysfunctions were primarily caused by impaired Ca2+sensitivity of release and tightness of coupling between voltage-gated Ca2+channels and synaptic vesicles. Together, our current findings demonstrate that neurexins are essential in controlling the strength and temporal precision of the glycinergic synapse, which therefore corroborates the role of neurexins as key presynaptic organizers in all major types of fast chemical synapses.
Publisher
Cold Spring Harbor Laboratory