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相关概念视频

Cytoplasm01:16

Cytoplasm

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The cytoplasm consists of organelles and a framework of protein scaffolds called the cytoskeleton suspended in an aqueous solution, the cytosol. The cytosol is a rich broth of water, ions, salts, and various organic molecules.
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The cytoplasm is the location for several cellular processes, including protein synthesis and folding. The aqueous nature of the cytosol promotes protein folding such that the hydrophobic amino acid side chains are buried in the protein...
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Cytoplasm01:24

Cytoplasm

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The cytoplasm consists of organelles and a framework of protein scaffolds called the cytoskeleton suspended in an aqueous solution, the cytosol. The cytosol is a rich broth of water, ions, salts, and various organic molecules.
Protein Folding and Misfolding
The cytoplasm is the location for several cellular processes, including protein synthesis and folding. The aqueous nature of the cytosol promotes protein folding such that the hydrophobic amino acid side chains are buried in the protein...
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Diffusion01:12

Diffusion

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Diffusion is the passive movement of substances down their concentration gradients—requiring no expenditure of cellular energy. Substances, such as molecules or ions, diffuse from an area of high concentration to an area of low concentration in the cytosol or across membranes. Eventually, the concentration will even out, with the substance moving randomly but causing no net change in concentration. Such a state is called dynamic equilibrium, which is essential for maintaining overall...
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Diffusion01:21

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Diffusion is a type of passive transport. In passive transport, a substance tends to move from an area of high concentration to an area of low concentration until the concentration is equal across the space. For example, take the diffusion of substances through the air. When someone opens a perfume bottle in a room filled with people, the perfume is at its highest concentration in the bottle and is at its lowest at the edges of the room. The perfume vapor will diffuse, or spread away, from the...
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During mitosis, chromosome movements occur through the interplay of multiple piconewton level forces. In prometaphase, these forces help in chromosome assembly or congression at the equatorial plane, eventually leading to their alignment at the metaphase plate. The forces acting on the chromosomes are space and time-dependent; therefore, they vary with the position of the chromosomes as the cell progresses through mitosis. 
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Biological macromolecules are organic compounds, predominantly composed of carbon atoms. The carbon atoms are covalently bonded with hydrogen, oxygen, nitrogen, and other minor elements. There are four major biological macromolecule classes: carbohydrates, lipids, proteins, and nucleic acids.
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细胞质拥挤作为一个多孔介质,减少宏分子扩散.

Olivier Destrian1,2, Nicolas Moisan2, René-Marc Mège2

  • 1Université Paris-Saclay, CNRS, CentraleSupélec, Laboratoire d'Energétique Moleculaire et Macroscopique, Combustion (EM2C), Gif-sur-Yvette 91190, France.

Proceedings of the National Academy of Sciences of the United States of America
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概括

细胞拥挤显著影响宏分子扩散. 我们的研究表明,局部障碍密度,而不是特定区域,决定了细胞内运输,为细胞动态提供了洞察力.

关键词:
在FRAP中,FRAP是FRAP.拥挤的人群拥挤细胞质扩散是细胞质扩散.奥斯莫斯冲击是一种冲击.透的媒介是多孔的

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科学领域:

  • 细胞生物学 细胞生物学
  • 生物物理学的生物物理.
  • 计算生物学 计算生物学

背景情况:

  • 大分子的细胞内运输对细胞功能至关重要.
  • 已知细胞质拥挤会影响宏分子的移动性,但物理机制尚未完全理解.

研究的目的:

  • 为了研究细胞质拥挤和结构如何调节巨分子扩散.
  • 开发和验证一个用于预测细胞内扩散的模型.

主要方法:

  • 使用共聚焦显微镜的活细胞实验,光漂白后的光恢复和光相关谱学.
  • 开发一种多尺度模型,将细胞质视为一个层次性的多孔介质.
  • 数字模拟用于在不同条件下预测扩散系数.

主要成果:

  • 发现自由绿色光蛋白扩散度和异质细胞质结构丰富度之间的反相关性.
  • 确定了形和多孔的水力动力学障碍物作为减少扩散的关键机制.
  • 证明扩散性取决于局部障碍体积分数,而不是特定的细胞区域.
  • 模型准确地预测了不同细胞系中较大的宏分子扩散性.

结论:

  • 多孔介质建模有效预测复杂的细胞环境中的细胞内运输.
  • 分子和纳米障碍之间的水力动力相互作用对于扩散至关重要.
  • 了解扩散机制对于诸如细胞运动性,泡和亡等过程至关重要.