通过TrkB受体引起神经营养素的快速激发
K W Kafitz1, C R Rose, H Thoenen
1Institut für Physiologic, Technische Universität München, Germany.
Nature
|November 30, 1999
概括
神经营养素,就像来自大脑的神经营养因子 (BDNF),通过激活通道,迅速激发中央神经元. 这种快速刺激作用使得神经托芬在哺乳动物大脑中成为强大的内源性神经刺激剂.
科学领域:
- 神经科学是一个神经科学.
- 分子生物学分子生物学
- 细胞生物学 细胞生物学
背景情况:
- 神经营养素是调节神经元生存,分化和可塑性的关键蛋白质.
- 它们在调节活动依赖神经元可塑性方面的作用已经得到了很好的证实.
- 中枢神经元中的直接刺激作用在很大程度上仍未被探索.
研究的目的:
- 研究神经营养素对中枢神经元的直接作用.
- 为了确定神经托芬是否可以引起动作潜力.
- 为了确定神经胺诱导的神经元激发的机制和强度.
主要方法:
- 在海马,皮质和小脑神经元中的电生理记录.
- 在不同度下使用各种神经特洛芬 (BDNF,NT-4/5,NT-3,NGF).
- 使用K-252a进行药理阻塞,以调查离子通道参与.
主要成果:
- 大脑衍生神经营养因子 (BDNF) 和神经营养因子-4/5迅速使中枢神经元脱极化,引发动作潜能.
- 这种激发发生在明显低于谷氨酸的度.
- 该效应是由K-252a阻断的离子导电量介导的,这表明Trk受体参与其中.
结论:
- 神经营养素,特别是BDNF,对哺乳动物中枢神经元具有强大而快速的刺激作用.
- 这种快速的神经营养刺激是由通道激活的介导.
- 神经营养素被确定为中枢神经系统中显著的内源性神经刺激剂.
更多相关视频
13:46An Improved Protocol to Purify and Directly Mono-Biotinylate Recombinant BDNF in a Tube for Cellular Trafficking Studies in Neurons
Published on: July 11, 2020
11:44Cellular Membrane Affinity Chromatography Columns to Identify Specialized Plant Metabolites Interacting with Immobilized Tropomyosin Kinase Receptor B
Published on: January 19, 2022
相关概念视频
Enzyme-linked Receptors
Enzyme-linked receptors are proteins that act as both receptor and enzyme, activating multiple intracellular signals. This is a large group of receptors that include the receptor tyrosine kinase (RTK) family. Many growth factors and hormones bind to and activate the RTKs.
Neurotrophin (NT) receptors are a family of RTKs, including trkA, trkB, and trkC (tropomyosin-related kinase) receptors. TrkA is specific for nerve growth factor (NGF), neurotrophin-6, and neurotrophin-7. TrkB binds...
Neurotrophin (NT) receptors are a family of RTKs, including trkA, trkB, and trkC (tropomyosin-related kinase) receptors. TrkA is specific for nerve growth factor (NGF), neurotrophin-6, and neurotrophin-7. TrkB binds...
Receptor Downregulation in MVBs
Multivesicular bodies (MVBs) are mature endosomes that sort ubiquitinated proteins and then fuse with lysosomes to degrade the sorted proteins. Epidermal growth factor (EGF) and its receptor (EGFR) form a complex that can be internalized through endocytosis, sorted into an MVB, and later degraded.
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR activation may...
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR activation may...
Receptor Tyrosine Kinases
Receptor tyrosine kinases or RTKs are membrane-bound receptors that phosphorylate specific tyrosine on protein substrates. RTKs regulate cellular growth, differentiation, survival, and migration. They contain an extracellular ligand binding domain, a transmembrane domain, and a cytosolic tail with intrinsic kinase activity. Several extracellular signaling molecules activate RTKs in one or more ways and relay the signal downstream. Ligands such as platelet-derived growth factor (PDGF) or...
TGF - β Signaling Pathway
The TGF-β signaling pathway regulates cell growth, differentiation, adhesion, motility, and development. TGF-β ligands that induce TGF-β signaling are synthesized in their latent form. Several proteases or cell surface receptors such as integrins act upon the latent form, releasing the active ligand. There are three types of mammalian TGF-βs: (TGF-β1, TGF-β2, and TGF-β3) that bind as homodimers or heterodimers to TGF-β receptors. The TGF-β receptors are of three kinds RI, RII, and RIII. The RI...
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...
Regulation of Food Intake
Short-term regulation of food intake primarily involves neural signals from the gastrointestinal (GI) tract, blood nutrient levels, and GI tract hormones. Communication between the gut and brain via vagal nerve fibers plays a significant role in evaluating the contents of the gut. Clinical studies have shown that protein ingestion produces a more prolonged response in these nerve fibers compared to an equivalent amount of glucose. Additionally, the activation of stretch receptors caused by GI...
