Interdisciplinary Institute for Neuroscience, Université de Bordeaux, Bordeaux, France.
Interdisciplinary Institute for Neuroscience CNRS UMR 5297, Bordeaux, France.
Elife. 2019 Oct 30;8:e50401. doi: 10.7554/eLife.50401.
Glutamate secretion at excitatory synapses is tightly regulated to allow for the precise tuning of synaptic strength. Vesicular Glutamate Transporters (VGLUT) accumulate glutamate into synaptic vesicles (SV) and thereby regulate quantal size. Further, the number of release sites and the release probability of SVs maybe regulated by the organization of active-zone proteins and SV clusters. In the present work, we uncover a mechanism mediating an increased SV clustering through the interaction of VGLUT1 second proline-rich domain, endophilinA1 and intersectin1. This strengthening of SV clusters results in a combined reduction of axonal SV super-pool size and miniature excitatory events frequency. Our findings support a model in which clustered vesicles are held together through multiple weak interactions between Src homology three and proline-rich domains of synaptic proteins. In mammals, VGLUT1 gained a proline-rich sequence that recruits endophilinA1 and turns the transporter into a regulator of SV organization and spontaneous release.
谷氨酸在兴奋性突触中的释放受到严格调控,以实现突触强度的精确调节。囊泡谷氨酸转运体 (VGLUT) 将谷氨酸积累到突触小泡 (SV) 中,从而调节量子大小。此外,通过活性区蛋白和 SV 簇的组织,释放位点的数量和 SV 的释放概率可能受到调节。在本工作中,我们揭示了一种通过 VGLUT1 第二富含脯氨酸结构域、内收蛋白 A1 和衔接蛋白 1 之间的相互作用介导 SV 簇增加的机制。SV 簇的增强导致轴突 SV 超池大小和微小兴奋性事件频率的综合减少。我们的发现支持这样一种模型,即通过Src 同源结构域三与突触蛋白富含脯氨酸结构域之间的多个弱相互作用,将簇集的囊泡固定在一起。在哺乳动物中,VGLUT1 获得了一个富含脯氨酸的序列,该序列招募内收蛋白 A1,并将转运体转化为 SV 组织和自发性释放的调节剂。