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SCAMP5 在轴突运输和 NHE6 的突触定位中发挥关键作用,以调节谷氨酸能突触的量子大小。

SCAMP5 plays a critical role in axonal trafficking and synaptic localization of NHE6 to adjust quantal size at glutamatergic synapses.

机构信息

Department of Physiology and Biomedical Sciences, Seoul National University College of Medicine, Seoul 03080, South Korea.

Neuroscience Research Institute, Seoul National University College of Medicine, Seoul 03080, South Korea.

出版信息

Proc Natl Acad Sci U S A. 2021 Jan 12;118(2). doi: 10.1073/pnas.2011371118.

Abstract

Glutamate uptake into synaptic vesicles (SVs) depends on cation/H exchange activity, which converts the chemical gradient (ΔpH) into membrane potential (Δψ) across the SV membrane at the presynaptic terminals. Thus, the proper recruitment of cation/H exchanger to SVs is important in determining glutamate quantal size, yet little is known about its localization mechanism. Here, we found that secretory carrier membrane protein 5 (SCAMP5) interacted with the cation/H exchanger NHE6, and this interaction regulated NHE6 recruitment to glutamatergic presynaptic terminals. Protein-protein interaction analysis with truncated constructs revealed that the 2/3 loop domain of SCAMP5 is directly associated with the C-terminal region of NHE6. The use of optical imaging and electrophysiological recording showed that small hairpin RNA-mediated knockdown (KD) of SCAMP5 or perturbation of SCAMP5/NHE6 interaction markedly inhibited axonal trafficking and the presynaptic localization of NHE6, leading to hyperacidification of SVs and a reduction in the quantal size of glutamate release. Knockout of NHE6 occluded the effect of SCAMP5 KD without causing additional defects. Together, our results reveal that as a key regulator of axonal trafficking and synaptic localization of NHE6, SCAMP5 could adjust presynaptic strength by regulating quantal size at glutamatergic synapses. Since both proteins are autism candidate genes, the reduced quantal size by interrupting their interaction may underscore synaptic dysfunction observed in autism.

摘要

谷氨酸摄取到突触小泡(SVs)依赖于阳离子/H 交换活性,该活性将化学梯度(ΔpH)转化为突触前末端 SV 膜的膜电位(Δψ)。因此,阳离子/H 交换器正确募集到 SVs 对于确定谷氨酸量子大小很重要,但对于其定位机制知之甚少。在这里,我们发现分泌载体膜蛋白 5(SCAMP5)与阳离子/H 交换器 NHE6 相互作用,这种相互作用调节 NHE6 募集到谷氨酸能突触前末端。使用截断构建体进行的蛋白质-蛋白质相互作用分析表明,SCAMP5 的 2/3 环域直接与 NHE6 的 C 末端区域相关。使用光学成像和电生理记录显示,短发夹 RNA 介导的 SCAMP5 KD 或 SCAMP5/NHE6 相互作用的干扰显著抑制了轴突运输和 NHE6 的突触前定位,导致 SVs 过度酸化和谷氨酸释放的量子大小减少。NHE6 的敲除消除了 SCAMP5 KD 的作用,而没有造成其他缺陷。总之,我们的结果表明,作为 NHE6 轴突运输和突触定位的关键调节剂,SCAMP5 可以通过调节谷氨酸能突触的量子大小来调节突触前强度。由于这两种蛋白都是自闭症候选基因,中断它们相互作用可能会强调自闭症中观察到的突触功能障碍。

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