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相关概念视频

Feedback Regulation of Calcium Concentration01:27

Feedback Regulation of Calcium Concentration

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Calcium is an essential signaling molecule required for various cellular functions. Calcium pumps and ion channels on cell and organellar membranes, such as those on the endoplasmic reticulum (ER), regulate calcium concentrations inside the cell. They remain closed, keeping the cytosolic calcium levels low at a resting state.
Various transmembrane receptors, such as G protein-coupled receptors (GPCRs), elicit a response to extracellular signals by increasing cytosolic calcium. Activated GPCRs...
3.4K
Ligand-Gated Ion Channel Receptor: Gating Mechanism01:30

Ligand-Gated Ion Channel Receptor: Gating Mechanism

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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...
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Calmodulin-dependent Signaling01:16

Calmodulin-dependent Signaling

5.1K
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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Endocrine Signaling01:45

Endocrine Signaling

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Endocrine cells produce hormones to communicate with remote target cells found in other organs. The hormone reaches these distant areas using the circulatory system. This exposes the whole organism to the hormone but only those cells expressing hormone receptors or target cells are affected. Thus, endocrine signaling induces slow responses from its target cells but these effects also last longer.
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相关实验视频

Updated: Jun 25, 2025

Imaging Intracellular Ca2+ Signals in Striatal Astrocytes from Adult Mice Using Genetically-encoded Calcium Indicators
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Imaging Intracellular Ca2+ Signals in Striatal Astrocytes from Adult Mice Using Genetically-encoded Calcium Indicators

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天星细胞信号传递

Misha B Ahrens1, Baljit S Khakh2, Kira E Poskanzer3

  • 1Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia 20147, USA ahrensm@janelia.hhmi.org bkhakh@mednet.ucla.edu kira.poskanzer@ucsf.edu.

Cold Spring Harbor perspectives in biology
|May 20, 2024
PubMed
概括

星细胞 (Ca2+) 信号传递对大脑功能至关重要,通过先进的成像和操纵技术越来越多地被理解. 这篇评论强调了研究这些质细胞信号及其对神经回路和行为的影响的近期进展和未来方向.

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Dual Electrophysiological Recordings of Synaptically-evoked Astroglial and Neuronal Responses in Acute Hippocampal Slices
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Visualizing Shifts on Neuron-Glia Circuit with the Calcium Imaging Technique
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Visualizing Shifts on Neuron-Glia Circuit with the Calcium Imaging Technique

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相关实验视频

Last Updated: Jun 25, 2025

Imaging Intracellular Ca2+ Signals in Striatal Astrocytes from Adult Mice Using Genetically-encoded Calcium Indicators
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Dual Electrophysiological Recordings of Synaptically-evoked Astroglial and Neuronal Responses in Acute Hippocampal Slices
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Visualizing Shifts on Neuron-Glia Circuit with the Calcium Imaging Technique
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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
  • 质细胞生物学 质细胞生物学

背景情况:

  • 星球细胞是中枢神经系统中最丰富的质细胞.
  • 它们与神经元,血管和其他质细胞进行复杂的相互作用.
  • 三十年来,星细胞细胞内 (Ca2+) 信号已经成为研究的焦点.

研究的目的:

  • 总结一下最近在研究天体细胞细胞内Ca2+信号的进展.
  • 讨论天体细胞Ca2+信号传递的潜在功能.
  • 为解释与天体细胞Ca2+信号相关的行为研究提供框架.

主要方法:

  • 审查最近成像,沉默,激活和分析天体细胞Ca2+信号的进展.
  • 探索天体细胞Ca2+信号与神经电路功能之间的特定物种关系.
  • 开发一个机制性解释行为研究的框架,以确定因果关系.

主要成果:

  • 在研究天体细胞Ca2+动态的技术方面取得了重大进展.
  • 星细胞Ca2+信号与神经电路功能和各种物种的行为有关.
  • 新的见解允许对这些信号如何影响行为的机制性理解.

结论:

  • 最近的技术和分析进步加深了我们对天体细胞Ca2+信号传递的理解.
  • 星细胞Ca2+信号在调节神经活动和行为方面发挥着至关重要的作用.
  • 未来的研究应该专注于新的途径,以进一步阐明天体细胞Ca2+信号传递的因果作用.