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相关概念视频

Cell-surface Signaling01:21

Cell-surface Signaling

51.8K
Hormones—or any molecule that binds to a receptor, known as a ligand—that are lipid-insoluble (water-soluble) are not able to diffuse across the cell membrane. In order to be able to affect a cell without entering it, these hormones bind to receptors on the cell membrane. When a first messenger, a hormone, binds to a receptor, a signal cascade is set off, causing second messengers, proteins inside the cell, to become activated, resulting in downstream effects.
51.8K
Assembly of Signaling Complexes01:30

Assembly of Signaling Complexes

5.8K
Multiprotein signaling complexes are formed in a dynamic process involving protein-protein interactions at the cytoplasmic domain of transmembrane receptors or enzymatic and non-enzymatic proteins associated with the receptor. These complexes ensure the activation and propagation of intracellular signals that regulate cell functions.
Interaction domains in cell signaling
Interaction domains recognize exposed features of their binding partners containing post-translationally modified sequences,...
5.8K
Interactions Between Signaling Pathways01:19

Interactions Between Signaling Pathways

6.3K
Signaling cascades usually lack linearity. Multiple pathways interact and regulate one another, allowing cells to integrate and respond to diverse environmental stimuli.
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
6.3K
Signal Transduction: Overview01:26

Signal Transduction: Overview

8.5K
Cells respond to many types of information, often through receptor proteins positioned on the membrane. They respond to chemical signals, such as hormones, neurotransmitters, and other signaling molecules, initiating a series of molecular reactions to produce an appropriate response. This is called signal transduction. Cells also coordinate different responses elicited by the same signaling molecule via mediators, allowing molecular cross-talk.
Typically, signal transduction involves three...
8.5K
Amplifying Signals via Second Messengers01:15

Amplifying Signals via Second Messengers

7.0K
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...
7.0K
Secondary Messengers in Hormone Action01:26

Secondary Messengers in Hormone Action

2.2K
Water-soluble hormones cannot cross the plasma membrane, so they rely on protein receptors that span the membrane to trigger intracellular signaling pathways. These pathways then activate second messengers inside the cell, including cAMP or calcium ions.
Many hormones bind to transmembrane G protein-coupled receptors that connect to regulatory G proteins. These G proteins can then activate enzymes such as adenylyl cyclase or phospholipase C. Adenylyl cyclase converts ATP to cAMP, activating...
2.2K

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相关实验视频

Updated: Jul 8, 2025

Biochemical Reconstitution of Steroid Receptor•Hsp90 Protein Complexes and Reactivation of Ligand Binding
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Biochemical Reconstitution of Steroid Receptor•Hsp90 Protein Complexes and Reactivation of Ligand Binding

Published on: September 21, 2011

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多重复合膜信号由葡萄糖皮质体进行.

Laura M Harrison1, Jeffrey G Tasker1

  • 1Department of Cell and Molecular Biology, Tulane Brain Institute, Tulane University, New Orleans, LA 70118.

Current opinion in endocrine and metabolic research
|December 11, 2023
PubMed
概括

葡萄糖皮质类药物迅速激活膜受体,启动大脑中的各种信号通路. 本综述探讨了这些快速的,非基因组的葡萄皮质激素作用及其广泛的细胞调节能力.

科学领域:

  • 神经内分泌学神经内分泌学
  • 细胞信号传输 细胞信号传输
  • 分子药理学分子药理学

背景情况:

  • 葡萄糖皮质体传统上通过核受体起作用来调节基因表达.
  • 新出现的证据表明,快速的,非基因组的行动是从细胞膜开始的.

研究的目的:

  • 审查细胞信号传递机制,这是大脑中快速葡萄糖皮质体作用的基础.
  • 为了突出多重信号通路的分歧.

主要方法:

  • 对研究快速葡萄糖皮质激素信号的文献综述.
  • 分析涉及膜受体和细胞内通路的信号级联.

主要成果:

  • 快速的皮质糖类药物作用包括膜受体激活和信号转导.
  • 这些通路涉及脂质/气体信使,受体贩运和核受体激活.
  • 这导致不同细胞功能的同时调节.

结论:

  • 膜启动的葡萄糖皮质体信号提供了快速,广泛的监管控制.
  • 了解这些途径对于理解葡萄糖皮质醇在大脑中的多样性作用至关重要.

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A Chemical Screening Procedure for Glucocorticoid Signaling with a Zebrafish Larva Luciferase Reporter System

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Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions
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Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions

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相关实验视频

Last Updated: Jul 8, 2025

Biochemical Reconstitution of Steroid Receptor•Hsp90 Protein Complexes and Reactivation of Ligand Binding
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Biochemical Reconstitution of Steroid Receptor•Hsp90 Protein Complexes and Reactivation of Ligand Binding

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A Chemical Screening Procedure for Glucocorticoid Signaling with a Zebrafish Larva Luciferase Reporter System
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A Chemical Screening Procedure for Glucocorticoid Signaling with a Zebrafish Larva Luciferase Reporter System

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Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions

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