亚膜的活性环将等离子体膜分隔成部分
Jakob Rentsch1, Selle Bandstra2, Batuhan Sezen1
1Institute for Chemistry and Biochemistry, Freie Universität Berlin , Berlin, Germany.
The Journal of cell biology
|January 22, 2024
概括
动氨酸环,而不是离子通道,在神经元中分隔了血膜 (PM). 破坏这些actin结构会导致PM分区的丧失,这证实了它们的关键作用.
科学领域:
- 细胞生物学 细胞生物学
- 神经科学是一个神经科学.
- 生物物理学的生物物理.
背景情况:
- 血 (PM) 分隔对于细胞功能至关重要.
- 在生物与人工膜中膜蛋白的扩散性降低表明了潜在的结构约束.
- 人们假设主动蛋白丝可以限制蛋白质的运动,但缺乏直接证据.
研究的目的:
- 为了研究actin环和离子通道在神经元等离子膜细分中的作用.
- 在轴突初始段 (AIS) 中区分actin环和离子通道丰富的限制效应.
主要方法:
- 计算机建模模拟限制效应.
- 单颗粒追踪和超分辨率显微镜可可视化actin结构和蛋白质运动.
- 实验性地破坏了行为纤维,以评估其功能后果.
主要成果:
- 计算模型表明,AIS中的离子通道并不介于封闭.
- 发现动因环与PM密切相关,并有效地限制了膜蛋白.
- 动氨酸丝的破坏导致了多个神经元类型的血膜细分的丧失.
结论:
- 在研究的神经元环境中,动氨酸环,而不是离子通道,是等离子膜细分的主要媒介.
- 这项研究提供了一个强大的系统,用于研究膜分离.
- 动氨酸环在维持神经元PM组织方面发挥着至关重要的作用.
相关概念视频
The Contractile Ring
6.4K
Contractile rings are composed of microfilaments and are responsible for separating the daughter cells during cytokinesis. Contractile ring assembly proceeds along with other cell cycle events; however, very few mechanistic details are known about the timing and coordination of the contractile rings with the cell cycle.
A small GTPase, RhoA, controls the function and assembly of the contractile ring. RhoA belongs to the Ras superfamily of proteins. The activation of formins by RhoA promotes...
A small GTPase, RhoA, controls the function and assembly of the contractile ring. RhoA belongs to the Ras superfamily of proteins. The activation of formins by RhoA promotes...
6.4K
The Role of Actin and Myosin in Non-muscle Cells
3.5K
Actin and myosin or actomyosin filaments also play a significant role in cells other than those involved in muscle contraction (which occurs within the sarcomere of muscle cells). The mechanism of non-muscle cell contractile bundles was first observed in Dictyostelium and Acanthamoeba. In non-muscle cells, two bundles are commonly found: stress fibers and actomyosin adherence belts. These contractile bundles are smaller and less organized than the ones found in muscle cells. They are held...
3.5K
Membrane Domains
5.4K
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...
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...
5.4K
Eukaryotic Compartmentalization
11.0K
One of the distinguishing features of eukaryotic cells is that they contain membrane-bound organelles, such as the nucleus and mitochondria, that carry out specialized functions. Since biological membranes are only selectively permeable to solutes, they help create a compartment with controlled conditions inside an organelle. These microenvironments are tailored to the organelle's specific functions and help isolate them from the surrounding cytosol.
For example, lysosomes in the animal...
For example, lysosomes in the animal...
11.0K
Mechanisms of Membrane Domain Formation
3.0K
Different physical properties of lipids and proteins allow them to localize and form distinct islands or domains in the membrane. Some membrane domains are formed due to protein-protein interactions, whereas others are formed due to the presence of specific lipids such as sphingolipids and sterols—for example, large proteins, such as bacteriorhodopsin, aggregate and create distinct domains.
Another mechanism for membrane domain formation involves membrane proteins interacting with...
Another mechanism for membrane domain formation involves membrane proteins interacting with...
3.0K
Actin Polymerization and Cell Motility
5.3K
Actin is a family of globular proteins that are highly abundant in eukaryotic cells. It makes up approximately 1-5% of total cell protein concentration. Actin monomers polymerize to form a complex network of polarized filaments, the actin cytoskeleton, that plays a crucial role in many cellular processes, including cell motility, division, endocytosis, and metastasis of cancer cells.
Actin cytoskeleton dynamics can produce pushing, pulling, and resistance forces that help the cell to migrate....
Actin cytoskeleton dynamics can produce pushing, pulling, and resistance forces that help the cell to migrate....
5.3K


