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相关概念视频

Additional Subnuclear Structures02:10

Additional Subnuclear Structures

The eukaryotic nucleus is a double membrane-bound organelle that contains nearly all of the cell’s genetic material in the form of chromosomes. It is rightly called the “brain” of the cell as it shoulders the responsibility of responding to various physiological processes, stress, altered metabolic conditions, and other cellular signals. 
The nucleus contains many membrane-less subnuclear organelles or nuclear bodies, such as nucleoli, Cajal bodies, speckles, paraspeckles, etc. These nuclear...
Cooperative Allosteric Transitions01:58

Cooperative Allosteric Transitions

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...
Cooperative Allosteric Transitions01:58

Cooperative Allosteric Transitions

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...
Additional Subnuclear Structures02:10

Additional Subnuclear Structures

The eukaryotic nucleus is a double membrane-bound organelle that contains nearly all of the cell’s genetic material in the form of chromosomes. It is rightly called the “brain” of the cell as it shoulders the responsibility of responding to various physiological processes, stress, altered metabolic conditions, and other cellular signals. 
The nucleus contains many membrane-less subnuclear organelles or nuclear bodies, such as nucleoli, Cajal bodies, speckles, paraspeckles, etc. These nuclear...
Assembly of Signaling Complexes01:30

Assembly of Signaling Complexes

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,...
Sympathetic Signaling01:31

Sympathetic Signaling

Sympathetic signaling, a vital part of the autonomic nervous system, plays a crucial role in mobilizing the body's resources in response to stress or emergencies. It involves the transmission of nerve impulses from sympathetic preganglionic fibers to postganglionic fibers. This results in the release of specific neurotransmitters and activation of adrenergic receptors.
Sympathetic preganglionic fibers release the neurotransmitter acetylcholine (ACh) onto the ganglionic neurons in the...

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相关实验视频

Updated: Jul 14, 2026

Detection of Alternative Splicing During Epithelial-Mesenchymal Transition
11:48

Detection of Alternative Splicing During Epithelial-Mesenchymal Transition

Published on: October 9, 2014

结构切换信号的阿普他默体

Razvan Nutiu1, Yingfu Li

  • 1Department of Biochemistry, McMaster Univ., Health Sciences Center, 1200 Main Street West, Hamilton, Ontario, L8N 3Z5, Canada.

Journal of the American Chemical Society
|April 17, 2003
PubMed
概括

新的光记者使用结构切换DNA吸收器来检测目标. 这种方法在目标分子结合时增强光,从而实现实时传感应用.

科学领域:

  • 生物化学 生物化学
  • 分子生物学分子生物学
  • 生物技术是生物技术.

背景情况:

  • 胺是具有特定结合能力的核酸分子.
  • 目前基于aptamer的报道器通常需要特定的结构知识来设计.

研究的目的:

  • 为设计基于aptamer的光报道器制定一个通用的策略.
  • 创建通过结构交换机制运行的记者.

主要方法:

  • 设计用光体标记的DNA体.
  • 使用灭剂修饰的DNA链 (QDNA) 与体形成一个双重体.
  • 在目标结合时观察光变化.

主要成果:

  • 证明了一种结构交换机制,在目标结合时,阿巴美尔-QDNA复合物解离.
  • 由于QDNA释放,光信号显著增加.
  • 成功地从现有的DNA体中准备了结构切换记者.

结论:

  • 开发的策略使得在没有先前了解aptamer结构的情况下,可以创建基于aptamer的光记者.
  • 这种方法有助于开发用于实时传感应用的新型报告器.

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