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The Role of Actin and Myosin in Non-muscle Cells01:10

The Role of Actin and Myosin in Non-muscle Cells

3.6K
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...
3.6K
Cytoskeletal Coordination in Cell Migration01:32

Cytoskeletal Coordination in Cell Migration

4.9K
A migrating cell changes its shape during the cyclic events of attachment and detachment from the substratum and repositions the cell organelles correspondingly. These complex events are orchestrated by the dynamic cytoskeletal network comprising actin filaments, intermediate filaments, and microtubules. Cytoskeletal crosstalk — the direct and indirect communication between the different components — is crucial for this coordination. Direct communication involves various linker...
4.9K
Assembly of Cytoskeletal Filaments01:18

Assembly of Cytoskeletal Filaments

21.4K
Cytoskeletal filaments are polymeric forms of smaller protein subunits. However, individual cytoskeletal filaments may easily disassemble or associate with other similar filaments to form rigid structures. Microfilaments, made of actin monomers, rely on actin-binding proteins to form bundles and create networks of individual actin filaments. Microtubules rely on microtubule-associated proteins (MAPs) to form sturdy cylindrical structures. However, the proteins involved in forming complex...
21.4K
The Contractile Ring02:15

The Contractile Ring

6.5K
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...
6.5K
Cytoskeletal Accessory Proteins01:13

Cytoskeletal Accessory Proteins

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The cytoskeleton is an essential cell component that plays several structural and functional roles. However, the filaments that make up the cytoskeleton cannot function independently and depend on the accessory or ancillary proteins to effectively carry out their function. Accessory proteins associate with cytoskeletal filaments and their monomers, aiding filament formation and function. They also help in the cross-communication among cytoskeletal filaments. Cytoskeletal accessory proteins are...
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Formation of Higher-order Actin Filaments01:11

Formation of Higher-order Actin Filaments

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The polymerization of G-actin monomers into filamentous F-actin is a multi-step process. Once the F-actins are formed, they can bundle together in different arrangements to form higher-order networks and regulate cellular functions. Common examples include the formation of lamellipodia and filopodia at the cell's leading edge by actin reorganization in a migrating cell. The microvilli on the brush border epithelial cells are also formed through the F-actin network.
The high-order actin...
3.1K

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関連する実験動画

Updated: Sep 10, 2025

Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops
06:48

Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops

Published on: July 11, 2025

478

細胞上のアクトミオシン・アセンブリ:開発の主任コーディネーター

Katja Röper1,2

  • 1Department of Physiology, Development and Neuroscience, University of Cambridge, Downing Street, Cambridge CB3 3DY, UK.

Development (Cambridge, England)
|August 26, 2025
PubMed
まとめ

皮質細胞のアクトミオシンネットワークは,臓器発育に不可欠な細胞上の構造を形成する. これらの大規模なアセンブリは 細胞の形状,粘着,そして種間の組織の整合性を組織する.

科学分野:

  • 細胞生物学
  • 発達生物学
  • バイオ物理学

背景:

  • アクトミオシンネットワークは 筋肉の収縮と細胞のプロセスに 根本的な役割を果たします
  • アクトミオシンは,上皮細胞で細胞の形状と結合を支え,組織の整合性を維持する.
  • 最近の発見は,アピカルアクトミオシンが複数の細胞を網羅する細胞上ネットワークに組織化していることを明らかにしています.

研究 の 目的:

  • 細胞上のアクトミオシン構造の形成と機能の見直し
  • これらの保存されたアセンブリの組織と発達的役割を探求する.
  • コンポーネントと新興特性に関する現在の知識のギャップを強調する.

主な方法:

  • アクトミオシンネットワークと細胞上の構造に関する既存の文献のレビュー.
  • 各種モデル生物,特にドロソフィラのこれらの集合体を特徴づける研究の分析.
  • 形成,機能,保存に関する証拠の合成.

主要な成果:

  • 細胞上のアクトミオシン組は,相互接続されたアピカル・メディアルネットワークまたはアデレンス・ジャンクションで線形ケーブルを形成する.
  • これらの構造は進化を通して保存され,上皮の発達に役割を果たします.
キーワード:
アクトミオシンケーブルエピテル細胞形質変異細胞上の細胞

さらに関連する動画

Author Spotlight: Optogenetic Inhibition of Rho1-Mediated Actomyosin Contractility Coupled with Measurement of Epithelial Tension in Drosophila Embryos
12:35

Author Spotlight: Optogenetic Inhibition of Rho1-Mediated Actomyosin Contractility Coupled with Measurement of Epithelial Tension in Drosophila Embryos

Published on: April 14, 2023

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The Mechanics of Poro-Elastic Contractile Actomyosin Networks As a Model System of the Cell Cytoskeleton
08:50

The Mechanics of Poro-Elastic Contractile Actomyosin Networks As a Model System of the Cell Cytoskeleton

Published on: March 10, 2023

860

関連する実験動画

Last Updated: Sep 10, 2025

Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops
06:48

Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops

Published on: July 11, 2025

478
Author Spotlight: Optogenetic Inhibition of Rho1-Mediated Actomyosin Contractility Coupled with Measurement of Epithelial Tension in Drosophila Embryos
12:35

Author Spotlight: Optogenetic Inhibition of Rho1-Mediated Actomyosin Contractility Coupled with Measurement of Epithelial Tension in Drosophila Embryos

Published on: April 14, 2023

1.5K
The Mechanics of Poro-Elastic Contractile Actomyosin Networks As a Model System of the Cell Cytoskeleton
08:50

The Mechanics of Poro-Elastic Contractile Actomyosin Networks As a Model System of the Cell Cytoskeleton

Published on: March 10, 2023

860
  • 細胞の形状,細胞-細胞結合,および上皮の緊密さをサポートする機能が含まれています.
  • 結論:

    • 細胞上のアクトミオシンネットワークは上皮組織形成に不可欠である.
    • 分子構成要素と新興特性を完全に理解するにはさらなる研究が必要です.
    • これらの構造は,発達中の大規模な細胞組織のための保存されたメカニズムを表しています.