Department of Psychiatry, and Graduate Program in Cell Biology, University of California, San Francisco, School of Medicine, San Francisco, California 94143-0984.
J Neurosci. 2013 Jun 26;33(26):10634-46. doi: 10.1523/JNEUROSCI.0329-13.2013.
Increasing evidence indicates that individual synaptic vesicle proteins may use different signals, endocytic adaptors, and trafficking pathways for sorting to distinct pools of synaptic vesicles. Here, we report the identification of a unique amino acid motif in the vesicular GABA transporter (VGAT) that controls its synaptic localization and activity-dependent recycling. Mutational analysis of this atypical dileucine-like motif in rat VGAT indicates that the transporter recycles by interacting with the clathrin adaptor protein AP-2. However, mutation of a single acidic residue upstream of the dileucine-like motif leads to a shift to an AP-3-dependent trafficking pathway that preferentially targets the transporter to the readily releasable and recycling pool of vesicles. Real-time imaging with a VGAT-pHluorin fusion provides a useful approach to explore how unique sorting sequences target individual proteins to synaptic vesicles with distinct functional properties.
越来越多的证据表明,单个突触囊泡蛋白可能使用不同的信号、内吞衔接蛋白和运输途径来将其分拣到不同的突触囊泡库中。在这里,我们报道了在囊泡 GABA 转运体 (VGAT) 中鉴定出一个独特的氨基酸基序,该基序控制其突触定位和活动依赖性回收。对大鼠 VGAT 中这个非典型亮氨酸样基序的突变分析表明,该转运体通过与网格蛋白衔接蛋白 AP-2 相互作用进行循环。然而,突变亮氨酸样基序上游的单个酸性残基会导致向依赖 AP-3 的运输途径转移,该途径优先将转运体靶向到易于释放和再循环的囊泡库。使用 VGAT-pHluorin 融合的实时成像提供了一种有用的方法来探索独特的分拣序列如何将单个蛋白靶向到具有不同功能特性的突触囊泡。