小泡
突触小泡
生物物理学
接吻奔跑融合
化学
突触
脂质双层
神经科学
生物
生物化学
膜
作者
Kele Chen,Ru‐Jia Yu,Cheng‐Bing Zhong,Ziyi Wang,Bao‐Kang Xie,Hui Ma,Mingjun Ao,Peng Zheng,Andrew G. Ewing,Yi‐Tao Long
出处
期刊:Angewandte Chemie
[Wiley]
日期:2024-06-03
卷期号:63 (39): e202406677-e202406677
被引量:22
标识
DOI:10.1002/anie.202406677
摘要
The microtubule-associated protein tau participates in neurotransmission regulation via its interaction with synaptic vesicles (SVs). The precise nature and mechanics of tau's engagement with SVs, especially regarding alterations in vesicle dynamics, remain a matter of discussion. We report an electrochemical method using a synapse-mimicking nanopipette to monitor vesicle dynamics induced by tau. A model vesicle of ~30 nm is confined within a lipid-modified nanopipette orifice with a comparable diameter to mimic the synaptic lipid environment. Both tau and phosphorylated tau (p-tau) present two-state dynamic behavior in this biomimetic system, showing typical ionic current oscillation, induced by lipid-tau interaction. The results indicate that p-tau has a stronger affinity to the lipid vesicles in the confined environment, blocking the vesicle movement to a higher degree. Taken together, this method bridges a gap for sensing synaptic vesicle dynamics in a confined lipid environment, mimicking vesicle movement near the synaptic membrane. These findings contribute to understanding how different types of tau protein regulate synaptic vesicle motility and to underlying its functional and pathological behaviours in disease.
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