相关实验视频
Updated: Jul 17, 2026

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Monitoring ER/SR Calcium Release with the Targeted Ca2+ Sensor CatchER+
Published on: May 19, 2017
通过大鼠巨细胞中的第二信使来调节的流入
R Penner1, G Matthews, E Neher
1Max-Planck-Institut für Biophysikalische Chemie, Göttingen, FRG.
Nature
|August 11, 1988
概括
鼠腺细胞表现出双相的增加,一种新的cAMP激活化物电流与IP3依赖的流相互作用,以维持细胞内水平,用于诸如表细胞分裂之类的过程.
科学领域:
- 细胞生物学 细胞生物学
- 生理学 生理学 生理学
背景情况:
- 细胞内的双相增加在刺激后的不可激发细胞中很常见.
- 持续升高的对于各种细胞过程至关重要.
研究的目的:
- 调查大鼠腹性巨细胞中持续的细胞内升高背后的机制.
- 探索cAMP激活的化物流和IP3依赖的流之间的相互作用.
主要方法:
- 电子生理学记录用于测量化物电流.
- 成像用于监测细胞内的度.
- 刺激协议以诱导释放和流入.
主要成果:
- 在大鼠腹性巨细胞中发现了cAMP和Ca激活的化物流.
- 这种化物电流与IP3依赖的流量相互作用.
- 这种相互作用维持了IP3诱导的初始释放后细胞内的升高.
结论:
- 一种涉及cAMP激活的化物流和IP3依赖的流的新型机制维持了巨细胞中的细胞内.
- 这种相互作用提供了一个灵活的系统来调节依赖的过程,包括外细胞形成.
相关概念视频
What are Second Messengers?
Because many receptor binding ligands are hydrophilic, they do not cross the cell membrane and thus their message must be relayed to a second messenger on the inside. There are several second messenger pathways, each with their own way of relaying information. G-protein coupled receptors can activate both phosphoinositol and cyclic AMP (cAMP) second messenger pathways. The phosphoinositol path is active when the receptor induces phospholipase C to hydrolyze the phospholipid,...
What are Second Messengers?
Because many receptor binding ligands are hydrophilic, they do not cross the cell membrane and thus their message must be relayed to a second messenger on the inside. There are several second messenger pathways, each with their own way of relaying information. G-protein coupled receptors can activate both phosphoinositol and cyclic AMP (cAMP) second messenger pathways. The phosphoinositol path is active when the receptor induces phospholipase C to hydrolyze the phospholipid,...
Amplifying Signals via Second Messengers
Many receptor binding ligands are hydrophilic; they do not cross the cell membrane but bind to cell-surface receptors. Thus, their message must be relayed by second messengers present in the cell cytoplasm. There are several second messenger pathways, each with its own way of relaying information. For example, the G protein-coupled receptors can activate both phosphoinositol and cyclic AMP (cAMP) second messenger pathways. The phosphoinositol pathway is active when the receptor induces...
IP3/DAG Signaling Pathway
Membrane lipids such as phosphatidylinositol (PI) are precursors for several membrane-bound and soluble second messengers. Specific kinases phosphorylate PI and produce phosphorylated inositol phospholipids. One such inositol phospholipids are the phosphatidylinositol-4,5 bisphosphate [PI(4,5)P2], present in the inner half of the lipid bilayer. Upon ligand binding, GPCR stimulates Gq proteins to turn on phospholipase Cꞵ. Activated phospholipase Cꞵ cleaves PI(4,5)P2 and produces two-second...
Feedback Regulation of Calcium Concentration
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...
Various transmembrane receptors, such as G protein-coupled receptors (GPCRs), elicit a response to extracellular signals by increasing cytosolic calcium. Activated GPCRs...
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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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