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相关概念视频

The Two-State Receptor Model01:29

The Two-State Receptor Model

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The two-state receptor model explains a drug's interaction with receptors, such as G protein-coupled receptors and ligand-gated ion channels, to induce or inhibit a biological response. When no natural ligands are present, a receptor exists in an equilibrium of inactive (Ri) and active (Ra) conformations. The inactive form does not produce a response, while the active form generates a basal effect known as constitutive activity.
The binding affinity of a drug determines its interaction with...
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Cooperative Allosteric Transitions01:58

Cooperative Allosteric Transitions

8.6K
Cooperative allosteric transitions can occur in multimeric proteins, where each subunit of the protein has its own ligand-binding site. When a ligand binds to any of these subunits, it triggers a conformational change that affects the binding sites in the other subunits; this can change the affinity of the other sites for their respective ligands. The ability of the protein to change the shape of its binding site is attributed to the presence of a mix of flexible and stable segments in the...
8.6K
Transducer Mechanism: Enzyme-Linked Receptors01:27

Transducer Mechanism: Enzyme-Linked Receptors

3.8K
Enzyme-linked receptors are cell-surface receptors acting as an enzyme or associating with an enzyme intracellularly. They make excellent drug targets. Drugs can bind to the extracellular ligand-binding domain or directly affect their enzymatic domain and alter their activity.
Major types that are helpful drug targets include:
3.8K
Drug-Receptor Interactions01:29

Drug-Receptor Interactions

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Drug-receptor interaction describes the binding of receptors by drugs, but not all drug-receptor interactions result in activation and tissue response. For instance, the binding of agonists activates the receptor to generate a cellular reaction, while antagonists bind to receptors without causing their activation.
Several parameters, such as the drug's affinity for its receptor and its efficacy, which is its ability to activate the receptor, determine the drug's effect on the tissue....
7.2K
Receptor Tyrosine Kinases01:26

Receptor Tyrosine Kinases

17.8K
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...
17.8K
Enzyme-linked Receptors01:00

Enzyme-linked Receptors

85.6K
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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相关实验视频

Updated: Jan 9, 2026

Detecting the Ligand-binding Domain Dimerization Activity of Estrogen Receptor Alpha Using the Mammalian Two-Hybrid Assay
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Detecting the Ligand-binding Domain Dimerization Activity of Estrogen Receptor Alpha Using the Mammalian Two-Hybrid Assay

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受体二分化可以通过可调的响应异质性来实现连接体区分.

Assaf Biran1, Yaron E Antebi1

  • 1Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel.

PLoS computational biology
|December 3, 2025
PubMed
概括

细胞可以使用人口级响应差异来区分信号. 受体结构影响了这种异质性,使细胞能够为免疫调节等功能编码连接体身份.

科学领域:

  • 细胞生物学 细胞生物学
  • 系统生物学 系统生物学
  • 生物物理学的生物物理.

背景情况:

  • 细胞使用信号通路进行集体行为协调.
  • 细胞可以根据活动,时间或组合来区分信号.
  • 细胞如何区分激活相同级联的冗余信号尚不清楚.

研究的目的:

  • 在人口层面调查连接体歧视.
  • 检查人口反应异质性如何编码连接体身份.
  • 探索受体架构在信号区分中的作用.

主要方法:

  • 联体受体相互作用的数学建模.
  • 引入一个局部缩放度量来量化响应变化.
  • 分析具有二维和异二维受体的信号通路.

主要成果:

  • 生物化学连接体参数决定了对二极体/异极体受体的种群反应异质性.
  • 种群层面的异质性编码受体复合体的酶活性.
  • 异构体受体为人口层面的信号传递提供了优势.

结论:

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Creating Highly Specific Chemically Induced Protein Dimerization Systems by Stepwise Phage Selection of a Combinatorial Single-Domain Antibody Library
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  • 受体架构通过种群异质性实现了联体编码.
  • 研究结果提供了关于免疫调节,组织发育和合成生物学的见解.
  • 异构体受体对跨细胞群作用的通路具有优势.