関連する実験動画
Updated: Feb 22, 2026

08:52
Chemical Dimerization-Induced Protein Condensates on Telomeres
Published on: April 12, 2021
3.7K
細胞生理と疾患における液相凝縮
Yongdae Shin1, Clifford P Brangwynne2
1Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ, USA.
まとめ
細胞は相変化を利用して 膜のない液体の生物分子を形成します これらの細胞内凝縮物は生物学的機能に不可欠ですが,タンパク質の集積疾患を誘導する可能性があります.
科学分野:
- 細胞生物学
- バイオ物理学
- 生物化学
背景:
- 非生命体では相変化が一般的であり,細胞過程ではますます認識されています.
- 細胞内液体相分離は 膜のない生物分子凝縮物の形成を促します
研究 の 目的:
- 細胞内相分離の理解における最近の進歩をレビューする.
- 凝縮物の性質を生物学的機能と病気と結びつけるという課題を強調する.
主な方法:
- 生物分子凝縮物に関する最新の科学文献のレビュー
- 凝縮物形成,物質特性,相性に関する分子相互作用の分析.
主要な成果:
- 液体のような細胞滴の形成と性質を駆動する分子機構の解明.
- 生物学的機能の促進と反応におけるこれらの凝縮物の役割の特定.
結論:
- 細胞内相分離は,生物学的機能に重大な影響を及ぼす基本的な細胞機構である.
- これらの凝縮物の転移性は,タンパク質の蓄積疾患の病原化に関連している可能性があります.
関連する概念動画
Condensins
4.8K
Condensins are large protein complexes that use ATP to fuel the assembly of chromosomes during mitosis. They transform the tangled, shapeless mass of post-interphase DNA into individualized chromosomes by compacting, organizing, and segregating chromosomal DNA.
The plant and animal cells contain two types of condensin complexes—condensin I and condensin II. Both complexes have five subunits: two SMC (Structural Maintenance of Chromosomes) subunits, a kleisin subunit, and two HEAT-repeat...
The plant and animal cells contain two types of condensin complexes—condensin I and condensin II. Both complexes have five subunits: two SMC (Structural Maintenance of Chromosomes) subunits, a kleisin subunit, and two HEAT-repeat...
4.8K
pH Regulation in Cells
7.9K
pH plays a critical role in maintaining normal cellular activities. It helps maintain the structure and function of various proteins, dictates the charge on cellular membranes, and is crucial for metabolic reactions inside the cell. Moreover, cells use the energy from the proton motive force to generate ATP.
Cytosolic pH
Under physiological conditions, the cytosolic pH is slightly more acidic than the extracellular pH. However, cells must prevent further acidification of their cytosol to...
Cytosolic pH
Under physiological conditions, the cytosolic pH is slightly more acidic than the extracellular pH. However, cells must prevent further acidification of their cytosol to...
7.9K
Chemistry of the Cell
49.0K
The cell is chemically composed of water, organic molecules and inorganic ions.
Water
The polarity of the water molecule and its resulting hydrogen bonding makes water a unique substance with special properties that are intimately tied to the processes of life. Life originally evolved in an aqueous environment, and most of an organism’s cellular chemistry and metabolism occur inside the aqueous contents of the cell’s cytoplasm. Special properties of water are its high heat capacity...
Water
The polarity of the water molecule and its resulting hydrogen bonding makes water a unique substance with special properties that are intimately tied to the processes of life. Life originally evolved in an aqueous environment, and most of an organism’s cellular chemistry and metabolism occur inside the aqueous contents of the cell’s cytoplasm. Special properties of water are its high heat capacity...
49.0K
Osmosis
197.7K
Approximately 60% to 95% of the weight of living organisms is attributed to water. Therefore, maintaining appropriate water balance within cells is of paramount importance. Osmosis is the movement of water across a semipermeable membrane, such as a cell’s plasma membrane. In living organisms, water plays a crucial role as a solvent—a molecule that dissolves other molecules.
197.7K
Phase Transitions: Vaporization and Condensation
21.7K
The physical form of a substance changes on changing its temperature. For example, raising the temperature of a liquid causes the liquid to vaporize (convert into vapor). The process is called vaporization—a surface phenomenon. Vaporization occurs when the thermal motion of the molecules overcome the intermolecular forces, and the molecules (at the surface) escape into the gaseous state. When a liquid vaporizes in a closed container, gas molecules cannot escape. As these gas phase molecules...
21.7K
Transcellular Transport of Solutes
4.9K
Transcellular transport of solutes is the movement of substances like monosaccharides and amino acids through polarized cells. This transport mechanism is primarily seen in epithelial and endothelial cells aided by membrane transport proteins such as channels and transporters. The tight junctions between these cells confine the membrane proteins to the two sides of the cell. The epithelial cells have distinct apical and basolateral domains. In contrast, the endothelial cells show the luminal...
4.9K

