Villarreal Seth, Lee Sung Hoon, Wu Ling-Gang
National Institute of Neurological Disorders and Stroke;
National Institute of Neurological Disorders and Stroke; College of Pharmacy, Chung-ang University;
J Vis Exp. 2017 Sep 4(127):55862. doi: 10.3791/55862.
During endocytosis, fused synaptic vesicles are retrieved at nerve terminals, allowing for vesicle recycling and thus the maintenance of synaptic transmission during repetitive nerve firing. Impaired endocytosis in pathological conditions leads to decreases in synaptic strength and brain functions. Here, we describe methods used to measure synaptic vesicle endocytosis at the mammalian hippocampal synapse in neuronal culture. We monitored synaptic vesicle protein endocytosis by fusing a synaptic vesicular membrane protein, including synaptophysin and VAMP2/synaptobrevin, at the vesicular lumenal side, with pHluorin, a pH-sensitive green fluorescent protein that increases its fluorescence intensity as the pH increases. During exocytosis, vesicular lumen pH increases, whereas during endocytosis vesicular lumen pH is re-acidified. Thus, an increase of pHluorin fluorescence intensity indicates fusion, whereas a decrease indicates endocytosis of the labelled synaptic vesicle protein. In addition to using the pHluorin imaging method to record endocytosis, we monitored vesicular membrane endocytosis by electron microscopy (EM) measurements of Horseradish peroxidase (HRP) uptake by vesicles. Finally, we monitored the formation of nerve terminal membrane pits at various times after high potassium-induced depolarization. The time course of HRP uptake and membrane pit formation indicates the time course of endocytosis.
在胞吞作用过程中,融合的突触小泡在神经末梢被回收,这使得小泡能够循环利用,从而在重复神经放电期间维持突触传递。病理条件下胞吞作用受损会导致突触强度和脑功能下降。在这里,我们描述了用于测量神经元培养中哺乳动物海马突触处突触小泡胞吞作用的方法。我们通过将突触小泡膜蛋白(包括突触素和VAMP2/突触结合蛋白)在小泡腔内侧与pHluorin融合来监测突触小泡蛋白的胞吞作用,pHluorin是一种pH敏感的绿色荧光蛋白,随着pH值升高其荧光强度增加。在胞吐作用期间,小泡腔内pH值升高,而在胞吞作用期间小泡腔内pH值会重新酸化。因此,pHluorin荧光强度增加表明融合,而荧光强度降低表明标记的突触小泡蛋白发生胞吞作用。除了使用pHluorin成像方法记录胞吞作用外,我们还通过电子显微镜(EM)测量小泡对辣根过氧化物酶(HRP)的摄取来监测小泡膜的胞吞作用。最后,我们在高钾诱导去极化后的不同时间监测神经末梢膜凹陷的形成。HRP摄取和膜凹陷形成的时间进程表明了胞吞作用的时间进程。