在青的神经肌肉结节处的活性区域材料的结构
M L Harlow1, D Ress, A Stoschek
1Department of Neurobiology, Stanford University School of Medicine, California 94305, USA.
Nature
|February 24, 2001
概括
在突触处的活性区域物质对着囊泡并结通道. 它的结构将这些成分联系在一起,在突触传输过程中可能调解神经递质释放.
科学领域:
- 神经科学是一个神经科学.
- 细胞生物学 细胞生物学
- 生物物理学的生物物理.
背景情况:
- 突触对于神经系统的沟通至关重要.
- 活跃区域组织突触囊泡对接和通道定.
- 了解活跃区域结构是突触传输的关键.
研究的目的:
- 阐明活跃区域组件的结构组织和协会.
- 为了研究活性区域材料在囊泡对接和通道定中的作用.
- 探索触发的细胞外的结构基础.
主要方法:
- 使用电子显微镜断层扫描.
- 青的神经肌肉结合处作为模型突触.
- 对活跃区域进行了详细的结构分析.
主要成果:
- 发现活性区域材料有助于囊泡对接.
- 这种材料还在预突触膜内定通道.
- 确定了囊泡和通道之间的特定空间关系和结构联系.
结论:
- 活跃区的结构提供了对接囊泡和定道之间的直接联系.
- 建议这种结构联系对于高效的触发的神经递质释放至关重要.
- 这些发现为突触传播的分子机制提供了洞察力.
相关概念视频
Action Potentials
Overview
Action Potential
Neurons communicate by firing action potentials—the electrochemical signal that is propagated along the axon. The signal results in the release of neurotransmitters at axon terminals, thereby transmitting information to the nervous system. An action potential is a specific "all-or-none" change in membrane potential that results in a rapid spike in voltage.
Membrane potential in neurons
Neurons typically have a resting membrane potential of about -70 millivolts (mV). When they receive...
Membrane potential in neurons
Neurons typically have a resting membrane potential of about -70 millivolts (mV). When they receive...
Electrical Synapses
Electrical synapses found in all nervous systems play important and unique roles. In these synapses, the presynaptic and postsynaptic membranes are very close together (3.5 nm) and are actually physically connected by channel proteins forming gap junctions.
Gap junctions allow the current to pass directly from one cell to the next. In contrast, in the chemical synapse, the neurotransmitters carry the information through the synaptic cleft from one neuron to the next. They consist of two...
Gap junctions allow the current to pass directly from one cell to the next. In contrast, in the chemical synapse, the neurotransmitters carry the information through the synaptic cleft from one neuron to the next. They consist of two...
Ligand-Gated Ion Channel Receptor: Gating Mechanism
Ligand-gated ion channels are transmembrane proteins that play a vital role in intercellular communication and functions of the nervous system. They allow the influx of ions across the membrane once the neurotransmitter binds, allowing the subsequent transmission of electrical excitation across the neurons. Other ligand-gated ion channels, like the γ-aminobutyric acid (GABA) receptor, permit anions like chloride into the cells on the binding of the GABA molecule. Their entry into the cell...
The Neuromuscular Junction
The nervous system consists of complex motor neuron circuits, including upper motor neurons originating from the cerebral cortex and lower motor neurons starting in the spinal cord, coordinating both voluntary and involuntary movements. Among these, somatic motor neurons activate skeletal muscles and are classified into alpha, beta, and gamma types. Alpha neurons are vital for voluntary movement coordination, while gamma neurons adjust muscle spindle sensitivity, and the function of beta...
Action Potential
Neurons communicate by firing action potentials—the electrochemical signal that is propagated along the axon. The signal results in the release of neurotransmitters at axon terminals, thereby transmitting information to the nervous system. An action potential is a specific "all-or-none" change in membrane potential that results in a rapid spike in voltage.
Membrane potential in neurons
Neurons typically have a resting membrane potential of about -70 millivolts (mV). When they receive...
Membrane potential in neurons
Neurons typically have a resting membrane potential of about -70 millivolts (mV). When they receive...


