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相关概念视频

Labeling DNA Probes03:31

Labeling DNA Probes

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DNA probes are fragments of DNA labeled with a reporter tag to enable their detection or purification. The resulting labeled DNA probes can then hybridize to target nucleic acid sequences through complementary base-pairing, and may be used to recover or identify these regions.
Radioisotopes, fluorophores, or small molecule binding partners like biotin or digoxigenin, are the most widely used reporter tags for labeling DNA probes. These labels can be attached to the probe DNA molecule via...
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Protein Dynamics in Living Cells01:19

Protein Dynamics in Living Cells

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Different fluorescence-based techniques are used to study the protein dynamics in living cells. These techniques include FRAP, FRET, and PET.
Fluorescent recovery after photobleaching (FRAP) is a fluorescent-protein-based detection technique used to quantify protein movement rates within the cell. This method exposes a small portion of the cell to an intense laser beam. The laser beam causes permanent photobleaching of the fluorophore-tagged proteins in the exposed region. As the bleached...
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Immunogold Electron Microscopy01:20

Immunogold Electron Microscopy

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Immunoelectron microscopy utilizes immunogold labeling of endogenous proteins with specific antibodies to detect and localize these proteins in cells and tissues. The procedure provides insights into the distribution and quantification of protein under different stimulation conditions offering clues about their functions. Conjugating highly electron-dense gold particles with primary or secondary antibodies allow antigen detection on and within cells, with high resolution and specificity.
5.3K

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相关实验视频

Updated: Jan 16, 2026

Characterization of Neuronal Lysosome Interactome with Proximity Labeling Proteomics
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Characterization of Neuronal Lysosome Interactome with Proximity Labeling Proteomics

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让有光用于光近距离标签

Tae Young Han1, Hyun-Woo Rhee1,2

  • 1Department of Chemistry, Seoul National University, Seoul 08826, Korea.

ACS central science
|September 29, 2025
PubMed
概括

生物发光辅助的光近距离标签允许研究人员在深层组织中绘制蛋白质图. 这种新的技术改善了用于生物研究的空间蛋白质组映射.

科学领域:

  • 生物化学 生物化学
  • 分子生物学分子生物学
  • 生物成像是一种生物成像.

背景情况:

  • 空间蛋白质组映射对于理解细胞功能至关重要.
  • 现有的方法在探测深层组织方面存在局限性.
  • 生物发光为非侵入性成像提供了潜在的可能性.

研究的目的:

  • 开发一种用于深层组织中的空间蛋白质组映射的新方法.
  • 为了利用生物发光来增强近距离标签.
  • 克服当前深层组织蛋白质组分析的局限性.

主要方法:

  • 开发了生物发光辅助的光近距离标签 (BioPL).
  • 利用工程酶在现场发光.
  • 应用BioPL来绘制完整组织中的蛋白质相互作用.

主要成果:

  • 在深层组织样本中成功地绘制了蛋白质接近的地图.
  • 与传统方法相比,证明了更高的空间分辨率.
  • 验证了生物发光在体内标签的有效性.

结论:

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Identification of Small Molecule-binding Proteins in a Native Cellular Environment by Live-cell Photoaffinity Labeling
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  • 生物发光辅助的光近距离标记是深层组织空间蛋白质组映射的强大工具.
  • 这种技术提高了我们研究复杂生物系统的能力.
  • 为了解组织特异性蛋白质相互作用提供了新的途径.