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相关概念视频

Enzyme-linked Receptors01:00

Enzyme-linked Receptors

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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...
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Neurulation01:30

Neurulation

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Neurulation is the embryological process which forms the precursors of the central nervous system and occurs after gastrulation has established the three primary cell layers of the embryo: ectoderm, mesoderm, and endoderm. In humans, the majority of this system is formed via primary neurulation, in which the central portion of the ectoderm—originally appearing as a flat sheet of cells—folds upwards and inwards, sealing off to form a hollow neural tube. As development proceeds, the...
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Determination01:51

Determination

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During embryogenesis, cells become progressively committed to different fates through a two-step process: specification followed by determination. Specification is demonstrated by removing a segment of an early embryo, “neutrally” culturing the tissue in vitro—for example, in a petri dish with simple medium—and then observing the derivatives. If the cultured region gives rise to cell types that it would normally generate in the embryo, this means that it is specified. In...
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General Transcription Factors01:30

General Transcription Factors

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Tissue-specific transcription factors contribute to diverse cellular functions in mammals. For example, the gene for beta globin, a major component of hemoglobin, is present in all cells of the body. However, it is only expressed in red blood cells because the transcription factors that can bind to the promoter sequences of the beta globin gene are only expressed in these cells. Tissue-specific transcription factors also ensure that mutations in these factors may impair only the function of...
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TGF - β Signaling Pathway01:16

TGF - β Signaling Pathway

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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...
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Activation and Inactivation of G Proteins01:22

Activation and Inactivation of G Proteins

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Heterotrimeric G proteins are guanine nucleotide-binding proteins. As the name suggests, heterotrimeric G proteins are composed of three subunits: alpha, beta, and gamma. They remain GDP-bound or GTP-bound inside the cells and switch between inactive/active states. The Gα subunit possesses the nucleotide-binding pocket that binds guanine nucleotides and switches between GDP or GTP-bound states. In contrast, the Gꞵ and Gγ subunits are always bound together with high...
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相关实验视频

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Placing Growth Factor-Coated Beads on Early Stage Chicken Embryos
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在大脑发育过程中,TGF-β信号指定了轴突.

Jason J Yi1, Anthony P Barnes, Randal Hand

  • 1Department of Neurobiology, Duke University Medical Center, Durham, NC 27710, USA.

Cell
|July 7, 2010
PubMed
概括

转化生长因子β (TGF-β) 作为细胞外线线索来建立神经元极性,引导神经元成为哺乳动物大脑中的轴突. 这一发现揭示了神经电路模式的关键因素.

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
  • 发展生物学 发展生物学

背景情况:

  • 神经元分化涉及建立极性,具有单个轴突和多个树突.
  • 对于轴突规范的细胞内信号通路已经得到了充分的证据.
  • 在体内引发神经元极性的细胞外因素在很大程度上是未知的.

研究的目的:

  • 为了识别启动哺乳动物大脑中神经元极性的细胞外因素.
  • 阐明转化生长因子β (TGF-β) 在轴突特征中的作用.
  • 了解TGF-β对神经元极性作用中介的下游信号机制.

主要方法:

  • 在体内使用缺乏TbetaR2的新皮质神经元研究TGF-β信号传递.
  • 给出异源TGF-β以评估其对神经元分化的影响.
  • 利用基因操纵来增强TGF-β受体活性.
  • 分析了TGF-β依赖的信号通路,包括Par6酸化.

主要成果:

  • 缺乏II型TGF-β受体 (TbetaR2) 的新皮质神经元在轴突启动中表现出缺陷.
  • 外源的TGF-β应用促进了轴突的快速生长和分化.
  • 增强的TGF-β受体活性导致多个轴突的形成.

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  • 受TGF-β依赖的事件显著受到Par6的特定位点酸化的介导.
  • 结论:

    • 转化生长因子β (TGF-β) 被确定为在体内启动神经元极性的一个关键的外部暗示.
    • 在大脑发育过程中,TGF-β信号通路在指导神经元成为轴突中发挥着至关重要的作用.
    • 这一发现提供了对神经电路模式背后的分子机制的见解.