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脑机接口时代,我们还能做什么?——脑科学驱动下的神经外科蜕变与新生
Novel Materials Chemistry for Energy and Environmental Applications
清华大学材料科学与工程研究院《材料科学论坛》:超快激光诱导玻璃微纳结构—现象、机...
创新药可及的全球视野和中国现状
报告题目:
Imaging signal transduction in single dendritic spines
 报告人:
Ryohei Yasuda
PhD

Assistant Professor

Investigator, Howard Hughes Medical Institute

Duke University, USA
报告时间:
2010-10-14 10:00
报告地点:
医学科学楼B321
主办单位:
清华-霍普金斯生物医学工程联合中心/医学院生物医学工程系
  简介:
In the central nervous system, most excitatory synapses terminate on dendritic spines, tiny (~0.1 femtoliter) protrusions emanating from the dendritic surface. Calcium-dependent signaling in dendritic spines underlies many forms of synaptic plasticity. To further our understanding of signal transduction in spines, we have developed a technique to measure signaling activity in individual spines in light scattering tissue using FRET signaling sensor in combination with 2-photon fluorescence lifetime imaging microscopy. Using this technique, we imaged activity of signaling proteins important for synaptic plasticity, Ras, RhoA, Cdc42 and CaMKII, during synaptic potentiation and associated spine enlargement induced at a single spine. These signaling proteins have distinct spatiotemporal patterns: Ras and RhoA activation spread out of the stimulated spine and diffuse along the parent dendrite over ~ 5 micrometers. This diffusive signaling may play roles in dendritic signaling required for synaptic potentiation such as receptor exocytosis in dendrites or endosome trafficking from the dendrites to spines, as well as cooperative synaptic plasticity. In contrast, CaMKII and Cdc42 activations are restricted to the stimulated spines.  CaMKII activity lasts only ~ 1 min, while Cdc42 activity lasts more than 30 min, acting downstream of CaMKII. Thus, CaMKII-Cdc42 signaling is presumably important for maintaining synapse-specificity of synaptic potentiation for long term.
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