Gopal Nisha, Leitz Jeremy, Wang Chuchu, Esquivies Luis, Pfuetzner Richard A, Brunger Axel T
Department of Molecular and Cellular Physiology, Stanford University, Stanford, USA.
Department of Neurology and Neurological Sciences, Stanford University, Stanford, USA.
Curr Res Physiol. 2024 Feb 23;7:100121. doi: 10.1016/j.crphys.2024.100121. eCollection 2024.
Synaptic vesicles specific to inhibitory GABA-releasing neurons are critical for regulating neuronal excitability. To study the specific molecular composition, architecture, and function of inhibitory synaptic vesicles, we have developed a new method to isolate and purify GABA synaptic vesicles from mouse brains. GABA synaptic vesicles were immunoisolated from mouse brain tissue using an engineered fragment antigen-binding region (Fab) against the vesicular GABA transporter (vGAT) and purified. Western blot analysis confirmed that the GABA synaptic vesicles were specifically enriched for vGAT and largely depleted of contaminants from other synaptic vesicle types, such as vesicular glutamate transporter (vGLUT1), and other cellular organelles. This degree of purity was achieved despite the relatively low abundance of vGAT vesicles compared to the total synaptic vesicle pool in mammalian brains. Cryo-electron microscopy images of these isolated GABA synaptic vesicles revealed intact morphology with circular shape and protruding proteinaceous densities. The GABA synaptic vesicles are functional, as assessed by a hybrid () vesicle fusion assay, and they undergo synchronized fusion with synthetic plasma membrane mimic vesicles in response to Ca-triggering, but, as a negative control, not to Mg-triggering. Our immunoisolation method could also be applied to other types of vesicles.
释放抑制性γ-氨基丁酸(GABA)的神经元特有的突触小泡对于调节神经元兴奋性至关重要。为了研究抑制性突触小泡的特定分子组成、结构和功能,我们开发了一种从鼠脑中分离和纯化GABA突触小泡的新方法。利用针对囊泡GABA转运体(vGAT)的工程化片段抗原结合区域(Fab)从鼠脑组织中免疫分离并纯化GABA突触小泡。蛋白质免疫印迹分析证实,GABA突触小泡特异性富集vGAT,并且很大程度上不含来自其他突触小泡类型(如囊泡谷氨酸转运体(vGLUT1))和其他细胞器的污染物。尽管与哺乳动物脑内总的突触小泡池相比,vGAT小泡的丰度相对较低,但仍达到了这种纯度。这些分离出的GABA突触小泡的冷冻电子显微镜图像显示其形态完整,呈圆形且有突出的蛋白质密度。通过一种混合的()囊泡融合试验评估,GABA突触小泡具有功能,并且它们在Ca触发下与合成质膜模拟囊泡发生同步融合,但作为阴性对照,在Mg触发下则不会。我们的免疫分离方法也可应用于其他类型的囊泡。