GPCR生物传感器用于研究药物发现中的构造动态和信号
Victoria R Saca1,2, Colin Burdette1,2, Thomas P Sakmar2
1Tri-Institutional PhD Program in Chemical Biology, New York, NY, USA.
Annual review of pharmacology and toxicology
|September 19, 2024
概括
新的生物传感器为研究细胞中的G蛋白结合受体 (GPCRs) 提供了先进的方法. 这些工具通过为GPCR研究实现复杂化和小型化来改善药物发现.
科学领域:
- 生物化学 生物化学
- 分子生物学分子生物学
- 药理学 药理学是指药理学的学科.
背景情况:
- G蛋白结合受体 (GPCR) 是关键的跨膜蛋白,参与细胞信号传递.
- 由于其在许多生理过程中的作用,GPCRs代表了一类重要的药物标.
- 研究GPCRs的传统方法包括生物化学测试,冷EM和分子动力学模拟.
研究的目的:
- 审查用于研究GPCRs的生物传感器技术的最新进展.
- 讨论基于发光和光的GPCR生物传感器的原理和应用.
- 突出GPCR生物传感器在药物发现和理解受体动态方面的潜力.
主要方法:
- 基于发光和光的生物传感器的开发.
- 生物传感器平台的应用,利用多重和小型化的启用技术.
- 研究细胞环境中的与GPCR相关的蛋白相互作用和动态.
主要成果:
- 生物传感器提供GPCR活动和相互作用的直接细胞读数.
- 启用技术有助于生物传感器平台的可扩展性,直角性和动态分辨率.
- GPCR生物传感器为高通量选和命中识别提供了强大的方法.
结论:
- GPCR生物传感器代表了研究这些重要受体的重大技术飞跃.
- 先进的生物传感器平台的开发提高了我们调查GPCR信号和动态的能力.
- 预计GPCR生物传感器的进一步应用将加速药物发现工作.
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相关概念视频
G-protein Coupled Receptors
G-protein coupled receptors are ligand binding receptors that indirectly affect changes in the cell. The actual receptor is a single polypeptide that transverses the cell membrane seven times creating intracellular and extracellular loops. The extracellular loops create a ligand specific pocket which binds to neurotransmitters or hormones. The intracellular loops holds onto the G-protein.
G Protein-coupled Receptors
G Protein-Coupled Receptors or GPCRs are membrane-bound receptors that transiently associate with heterotrimeric G proteins and induce an appropriate response to sensory stimuli such as light, odors, hormones, cytokines, or neurotransmitters.
GPCRs are also called heptahelical, 7TM, or serpentine receptors, and consist of seven (H1-H7) transmembrane alpha-helices that span the bilayer to form a cylindrical core. The transmembrane helices are connected by three extracellular loops and three...
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G Protein–Coupled Receptors (GPCRs) are membrane-bound receptors that transiently associate with heterotrimeric G proteins and induce an appropriate response to various stimuli. GPCRs regulate critical physiological pathways and are excellent drug targets for treating diseases such as diabetes, cancer, obesity, depression, or Alzheimer's. Nearly 35% of approved drugs implement their therapeutic effects by selectively interacting with specific GPCRs.
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