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Chemical Synapses01:26

Chemical Synapses

4.0K
Chemical synapses are specialized sites between two neurons or between a neuron and a non-neuronal cell like a muscle, glandular or sensory cell.
Because chemical synapses depend on the release of neurotransmitter molecules from synaptic vesicles to pass on their signal, there is an approximately one millisecond delay between when the axon potential reaches the presynaptic terminal and when the neurotransmitter leads to opening of postsynaptic ion channels. Additionally, this signaling is...
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Chemical Synapses01:26

Chemical Synapses

11.0K
Chemical synapses are specialized sites between two neurons or between a neuron and a non-neuronal cell like a muscle, glandular or sensory cell.
Because chemical synapses depend on the release of neurotransmitter molecules from synaptic vesicles to pass on their signal, there is an approximately one millisecond delay between when the axon potential reaches the presynaptic terminal and when the neurotransmitter leads to opening of postsynaptic ion channels. Additionally, this signaling is...
11.0K
Calmodulin-dependent Signaling01:16

Calmodulin-dependent Signaling

5.8K
Calmodulin (CaM) is a calcium-binding protein in eukaryotes that controls various calcium-regulated cellular processes. It has four calcium-binding sites that bind calcium to form the calcium-calmodulin ( Ca2+-CaM) complex. GPCR stimulation increases the calcium levels in the cells that bind to CaM and induces a conformational change.
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...
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Adrenergic Neurons: Neurotransmission01:27

Adrenergic Neurons: Neurotransmission

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Postganglionic sympathetic fibers (except those supplying the sweat glands) releasing noradrenaline or norepinephrine are called noradrenergic or adrenergic neurons. Noradrenaline, dopamine, adrenaline, or epinephrine are collectively called "catecholamines" as they contain a catechol moiety and an amine side chain. The five stages of neurotransmitter release involve their synthesis, storage, release, reuptake and metabolism.
Synthesis: Catecholamine synthesis requires tyrosine, which...
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Neurochemical Transmission: Sites of Drug Action01:26

Neurochemical Transmission: Sites of Drug Action

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Neurochemical transmission, the conduction of electrical impulses between neurons mediated by neurotransmitters, plays a vital role in various physiological processes. Autonomic drugs exert their effects by modulating neurotransmission within the autonomic nervous system. For instance, drugs such as hemicholinium block the precursor uptake necessary for synthesizing acetylcholine, an essential autonomic neurotransmitter. Following synthesis, neurotransmitters are stored in vesicles. Metyrosine...
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Real-Time Fluorescent Measurement of Synaptic Functions in Models of Amyotrophic Lateral Sclerosis
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Doc2は,非同期神経伝達物質の放出に必要なCa2+センサーです.

Jun Yao1, Jon D Gaffaney, Sung E Kwon

  • 1Howard Hughes Medical Institute and Department of Neuroscience, University of Wisconsin, Madison, WI 53706, USA.

Cell
|November 1, 2011
PubMed
まとめ

Doc2は,非同期神経伝達物質の放出,すなわちシナプス伝送の遅い相を調節するために不可欠なカルシウム (Ca2+) センサーとして特定されています. その発現レベルは,この放出メカニズムの速度と発生に直接影響を与えます.

科学分野:

  • 神経科学は神経科学である.
  • 細胞生物学 細胞生物学
  • バイオケミストリー バイオケミストリー

背景:

  • シナプス伝送は,高速シンクロンと遅い非シンクロンフェーズで構成されています.
  • 明確なカルシウム (Ca2+) センサーがこれらの放出段階を調節します.
  • シナプトタグミンIは急速放出のための既知のセンサーですが,非同期センサーは特定されていません.

研究 の 目的:

  • 非同期神経伝達物質の放出に責任のあるCa2+センサーを特定するために.
  • シナプス伝送に関与する潜在的なCa2+センサーの運動特性を特徴付ける.

主な方法:

  • 遅い運動性を持つニューロンのCa2+センサーをスクリーニングする.
  • 神経伝達物質の放出におけるDoc2の機能を評価する.
  • 海馬の神経細胞のDoc2発現レベルを操作する.

主要な成果:

  • Doc2は,非同期的な放出と一致する運動学を示しています.
  • Upregulating Doc2は,シナプス伝送の遅い相を強化する.
  • DOC2のダウンレギュレーションは,シナプス伝送の遅い相を減少させます.

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Two-photon Calcium Imaging in Neuronal Dendrites in Brain Slices
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Two-photon Calcium Imaging in Neuronal Dendrites in Brain Slices

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Vibrodissociation of Neurons from Rodent Brain Slices to Study Synaptic Transmission and Image Presynaptic Terminals
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Vibrodissociation of Neurons from Rodent Brain Slices to Study Synaptic Transmission and Image Presynaptic Terminals

Published on: May 25, 2011

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関連する実験動画

Last Updated: Dec 17, 2025

Real-Time Fluorescent Measurement of Synaptic Functions in Models of Amyotrophic Lateral Sclerosis
08:59

Real-Time Fluorescent Measurement of Synaptic Functions in Models of Amyotrophic Lateral Sclerosis

Published on: July 16, 2021

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Two-photon Calcium Imaging in Neuronal Dendrites in Brain Slices
10:35

Two-photon Calcium Imaging in Neuronal Dendrites in Brain Slices

Published on: March 15, 2018

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Vibrodissociation of Neurons from Rodent Brain Slices to Study Synaptic Transmission and Image Presynaptic Terminals
08:38

Vibrodissociation of Neurons from Rodent Brain Slices to Study Synaptic Transmission and Image Presynaptic Terminals

Published on: May 25, 2011

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  • Doc2の操作は,非同期的な放出に影響するが,単一のアクションポテンシャルからの同期的な放出に影響しない.
  • 結論:

    • Doc2は,非同期神経伝達物質の放出のためのCa2+センサーとして提案されています.
    • Doc2の運動は,シナプス伝送の遅い相を調節するように調整されています.
    • Doc2は,繰り返し刺激する際に膀の可用性に影響を与える可能性があります.