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相关概念视频

Transducer Mechanism: Enzyme-Linked Receptors01:27

Transducer Mechanism: Enzyme-Linked Receptors

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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:
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Transducer Mechanism: G Protein–Coupled Receptors01:30

Transducer Mechanism: G Protein–Coupled Receptors

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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.
GPCRs are also called heptahelical,...
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Ligand Binding and Linkage00:49

Ligand Binding and Linkage

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Allosteric proteins have more than one ligand binding site; the binding of a ligand to any of these sites influences the binding of ligands to the other sites. When a protein is allosteric, its binding sites are called coupled or linked.  In the case of enzymes, the site that binds to the substrate is known as the active site and the other site is known as the regulatory site. When a ligand binds to the regulatory site, this leads to conformational changes in the protein that can influence...
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Signal Transduction: Overview01:26

Signal Transduction: Overview

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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...
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Transmission Shafts: Problem Solving01:09

Transmission Shafts: Problem Solving

296
Designing a solid shaft that transmits power from a motor to a machine tool involves a series of calculations to ensure the shaft can withstand the stresses applied by bending moments and torques. First, calculate the torque exerted on the gear, considering the power transmitted by the shaft and its rotational speed. Following this, compute the tangential forces acting on the gears, which directly relate to the torque and the gear radius.
Next, use bending moment diagrams for the shaft to...
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Mimicking the Function of Signaling Proteins: Toward Artificial Signal Transduction Therapy
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Mimicking the Function of Signaling Proteins: Toward Artificial Signal Transduction Therapy

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解码强力传输链接用于治疗准和工程.

Jingzhun Liu1, Yunxin Deng2, Jie Yan

  • 1Department of Physics, National University of Singapore, Singapore 117542, Singapore.

APL bioengineering
|June 16, 2025
PubMed
概括

细胞感知并通过力承载链接响应机械力. 本综述探讨了这些联系作为药物标,使用人工智能来改进机械医学疗法.

科学领域:

  • 细胞机械生物学 细胞机械生物学
  • 生物物理学的生物物理.
  • 分子医学是分子医学.

背景情况:

  • 机械感知和机械传导是关键的细胞过程.
  • 强力传递超分子链接调解细胞对机械刺激的反应.
  • 这些联系调节信号蛋白,并与疾病途径有关.

研究的目的:

  • 审查力承载链接在机械感知中的机制.
  • 探索针对这些联系的治疗潜力.
  • 突出人工智能在推进机械医学中的作用.

主要方法:

  • 审查现有的关于机械感知和机械传导的文献.
  • 分析力传递超分子链接机制的分析.
  • 讨论药物开发和人工智能在蛋白质工程中的应用.

主要成果:

  • 强力持续时间和链接中的机械结构变化是关键的调节因素.
  • 机械感知领域被这些变化激活或禁用.
  • 新兴的药物和具有调节链接特性的潜力.

结论:

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  • 带有力量的链接代表着有前途的制药目标.
  • 人工智能驱动的蛋白质工程可以提高机械医学中的治疗精度.
  • 对这些联系的进一步研究将推动新的药物设计和治疗策略.