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相关概念视频

Anchoring Junctions01:03

Anchoring Junctions

Anchoring junctions are multiprotein complexes that help cells connect to other cells and the extracellular matrix. Anchoring junctions are present on the lateral and basal surfaces of cells, providing strong and flexible connections. Focal adhesions are often formed due to cell interactions with the ECM substrata, which initiate signal transduction via kinase cascades and other mechanisms. Together, they provide stability and tissue integrity. There are three types of anchoring junctions:...
Overview of Cell-Cell Junctions01:14

Overview of Cell-Cell Junctions

The complex three-dimensional arrangement of cells in any multicellular organism is defined and maintained by interactions of cells with each other and the extracellular matrix. Cell-cell junctions are specialized structures where the multi-protein complexes on one cell interact with the multi-protein complexes on another  cell. These cell junctions are classified  into three main types based on their function — occluding, anchoring, and gap junctions.
Occluding or Tight Junctions
Tight...
Overview of Cell-Cell Junctions01:14

Overview of Cell-Cell Junctions

The complex three-dimensional arrangement of cells in any multicellular organism is defined and maintained by interactions of cells with each other and the extracellular matrix. Cell-cell junctions are specialized structures where the multi-protein complexes on one cell interact with the multi-protein complexes on another  cell. These cell junctions are classified  into three main types based on their function — occluding, anchoring, and gap junctions.
Occluding or Tight Junctions
Tight...
Tight Junctions01:29

Tight Junctions

Tight junctions are molecular seals between cells that prevent the leaking of fluids, ions, and other small solutes across cavities and compartments in multicellular organisms. They are mainly composed of claudin and occludin transmembrane proteins, and other proteins such as tricellulin and JAM (junctional adhesion molecule). All these proteins are 4-pass transmembrane proteins, except JAM, which is a single-pass transmembrane protein belonging to the immunoglobulin superfamily. The...
Assembly of Complex Microtubule Structures01:32

Assembly of Complex Microtubule Structures

Complex microtubule structures are present in resting cells and in dividing cells. In resting cells, they are responsible for maintaining the cellular architecture, tracks for intracellular transport, positioning of organelles, assembly of cilia and flagella. They mediate the bipolar spindle assembly for chromosomal segregation and positioning of the cell division plate in dividing cells. The formation of microtubule complex structures depends on the cell type, cell stage, and cell function.
Cell-matrix's Response to Mechanical Forces01:13

Cell-matrix's Response to Mechanical Forces

In animal cells, the extracellular matrix allows cells within tissues to withstand external stresses and transmits signals from the outside of the cell to the inside. The extracellular matrix is extensive, and its composition varies between different types of tissues. For example, the reticular fibers and ground substance make up the ECM in loose connective tissue, while collagen and bone minerals make up the ECM of bone tissue. 
Anchoring junctions mechanically attach a cell to the...

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相关实验视频

Updated: May 9, 2026

Improved Visualization and Quantitative Analysis of Drug Effects Using Micropatterned Cells
15:41

Improved Visualization and Quantitative Analysis of Drug Effects Using Micropatterned Cells

Published on: December 2, 2010

表皮结通过指导平面的方向来维持组织结构.

Yu-ichiro Nakajima1, Emily J Meyer, Amanda Kroesen

  • 1Stowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA.

Nature
|July 23, 2013
PubMed
概括

适当的线状线对齐对于保持上皮组织完整性至关重要. 干扰可以导致癌症,但像Scribbled和Discs large 1这样的连接蛋白有助于调节这个过程.

科学领域:

  • 细胞生物学 细胞生物学
  • 发育生物学是发展生物学.
  • 癌症研究 癌症研究

背景情况:

  • 表皮细胞的增殖需要平面线对准组织架构.
  • 扭曲的线对齐与上皮细胞转移到介质细胞转变和癌症有关.
  • 调节轴心方向的体内机制尚未完全理解.

研究的目的:

  • 为了研究平面线在上皮组织中的平面线对齐的体内机制.
  • 为了确定线粒体方向和上皮质完整性的关键调节者.

主要方法:

  • 使用Drosophila形象盘作为模型系统.
  • 研究了actomyosin皮质和结合蛋白的作用 (Scribbled, 磁盘大 1).
  • 观察到线错位对细胞分层,细胞亡和瘤形成的影响.

主要成果:

  • 动肌细胞皮层和结合点的Scribbled/Discs大1对于平面线对齐至关重要.
  • 错误的线对齐与细胞分层和细胞亡有关.
  • 抑制错位细胞中的亡促进了基底瘤类质量形成.

结论:

  • 交点介导的线对齐对于维持上皮质完整性至关重要.

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Characterizing Epithelial Wound Healing In Vivo Using the Cnidarian Model Organism Clytia hemisphaerica
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  • 表皮质极性和细胞死亡机制具有固有的瘤抑制功能.