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相关概念视频

What are Lipids?01:38

What are Lipids?

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Overview
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Asymmetric Lipid Bilayer01:35

Asymmetric Lipid Bilayer

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Biological membranes show uneven distribution of different types of lipids in the inner and outer layers, resulting in transverse asymmetric membranes. The treatment of the erythrocyte membrane with the enzyme phospholipase confirmed the asymmetric nature of the lipid bilayer. The enzyme hydrolyzes lipids into fatty acids and hydrophilic groups. The phospholipase acts only on the outer layer of the membrane, while the inner layer remains intact. The phospholipase treatment resulted in 80%...
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Assembly of the Lipid Bilayer in the ER01:28

Assembly of the Lipid Bilayer in the ER

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Biological membranes are more than just a barrier separating cell cytoplasm from the outside environment. They are highly dynamic and help maintain the integrity and physiological stability of the cells as well as membrane-bound organelles. Membranes also play vital roles in cell-to-cell and intracellular communication.
A large chunk of any biological membrane is composed of phospholipids. These lipids have a heterogeneous distribution across different subcellular organelles and even between...
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Membrane Lipids01:32

Membrane Lipids

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Lipids are an essential component of all biological membranes. The average lipid content in mammalian membranes is 50%, though it can be as low as 20% in the inner mitochondrial membrane or as high as 80% in the myelin sheath present around the nerve cells.
Phosphatidylcholine, phosphatidylethanolamine, phosphatidylserine, and sphingomyelin are the most common phospholipids present in mammalian membranes. At physiological pH, phosphatidylserine is negatively charged, while the other three...
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Membrane Domains01:18

Membrane Domains

5.3K
The membrane domains concentrate specific lipids and proteins at one place within the membrane, which helps in cell signaling, adhesion, and other critical cellular processes. These domains can differ in size, composition, function, and lifespan.
Protein Domains
The membrane comprises a group of distinct proteins responsible for carrying out a cell's specific function. For example, the plasma membrane of the human sperm, or a single germ cell, contains a unique set of proteins in the...
5.3K
Membrane Fluidity01:26

Membrane Fluidity

10.9K
Membrane fluidity is explained by the fluid mosaic model of the cell membrane, which describes the plasma membrane structure as a mosaic of components—including phospholipids, cholesterol, proteins, and carbohydrates—that gives the membrane a fluid character.
Mosaic nature of the membrane
The mosaic characteristic of the membrane helps the plasma membrane remain fluid. The integral proteins and lipids exist as separate but loosely-attached molecules in the membrane. The membrane is...
10.9K

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相关实验视频

Updated: Jun 2, 2025

Assembly of Cell Mimicking Supported and Suspended Lipid Bilayer Models for the Study of Molecular Interactions
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Assembly of Cell Mimicking Supported and Suspended Lipid Bilayer Models for the Study of Molecular Interactions

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单细胞脂质生物学 单细胞脂质生物学

Agostina Crotta Asis1, Antonino Asaro1, Giovanni D'Angelo1

  • 1Institute of Bioengineering (IBI) and Global Health Institute, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

Trends in cell biology
|January 15, 2025
PubMed
概括

单细胞脂质分析揭示了脂质组成中细胞间的惊人差异. 这种多样性对于多细胞生物来说至关重要,影响细胞的身份和功能.

科学领域:

  • 生物化学 生化学
  • 细胞生物学 细胞生物学
  • 系统生物学 系统生物学

背景情况:

  • 脂质是细胞的基本成分,具有显著的结构多样性.
  • 脂质代谢途径是能源密集型的,涉及大量的基因组.
  • 脂质结构多样性的生物学作用尚未得到充分理解.

研究的目的:

  • 审查单细胞脂质分析中的新兴概念和技术.
  • 探索单细胞脂管学对理解多细胞性和细胞身份的含义.

主要方法:

  • 先进的脂质学技术使单细胞分析成为可能.
  • 在单个细胞水平上进行高通量脂质分析.

主要成果:

  • 在脂质组成中显示出意想不到的细胞间变异性.
  • 有证据表明,脂质多样性在多细胞性中起作用.
  • 脂质与建立和维持细胞身份有关.

结论:

  • 单细胞脂质分析是一个快速发展的领域,技术进步显著.
  • 脂质结构的多样性在多细胞生物中具有功能性重要性.
关键词:
细胞身份是细胞的身份.脂质多样性 脂质多样性脂质组的类型是什么脂质类型 脂质类型一个单细胞分析.

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  • 突出显示了单细胞脂管组学的未来研究方向.