一种新型的生长运动形式,涉及到位点定向的actin光纤组件
P Forscher1, C H Lin, C Thompson
1Department of Biology, Yale University, New Haven, Connecticut 06511.
Nature
|June 11, 1992
概括
聚化微珠触发了神经元生长中的动因组合,产生了珠子运动的力量. 这表明,活性丝组装是细胞在膜-细胞骨接口产生力量的关键机制.
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:
- 细胞外信号调节细胞骨动力学,这对细胞运动至关重要,包括轴突引导.
- 神经元生长和运动细胞表现出粒子转移,可能是通过膜蛋白和F-actin网络.
研究的目的:
- 为了研究一种新型的运动形式,由多化微珠与神经元生长膜的相互作用诱导.
- 阐明细胞内活性组合在介导力生成和粒子运动中的作用.
主要方法:
- 利用聚化微珠与神经元生长膜相互作用.
- 观察和分析了细胞内雅丁丝的组装和力产生.
- 将观察到的珠子运动与细胞内细菌推进机制进行了比较.
主要成果:
- 珠子结合快速诱导的细胞内活性丝组件.
- 这种组合产生了足够的力量来驱动沿生长表面的珠子运动.
- 细胞外珠的移动性通过宿主细胞的活性重定向模仿了细胞内细菌的推进.
结论:
- 聚化微珠相互作用刺激了生长的独特运动机制.
- 位点定向的活性丝组合是一种强大的细胞机制,用于在膜-细胞骨架接口产生力.
- 这种机制可能在不同的细胞过程和生物体中得到保护.
相关概念视频
Actin Polymerization
Actin polymerization occurs through the head-to-tail association of binding sites on monomeric actin or G-actin to form filamentous or F-actin. The polymerization can be divided into three phases ̶ nucleation, elongation, and steady-state phase.
The nucleation phase involves forming a stable nucleus consisting of three actin monomers to form a new actin filament. Actin-binding proteins such as formins and Arp2/3 complex help filament growth post-nucleation. The Formins form straight actin...
The nucleation phase involves forming a stable nucleus consisting of three actin monomers to form a new actin filament. Actin-binding proteins such as formins and Arp2/3 complex help filament growth post-nucleation. The Formins form straight actin...
Generation of Straight or Branched Actin Filaments
The straight or branched structure formation of actin filaments is controlled by nucleating proteins such as the formins and Arp2/3 complex. Formin-mediated assembly results in straight filaments, whereas Arp2/3 protein complex-mediated assembly results in branched actin filaments.
Arp2/3 Complex
Arp2/3 complex is a seven-subunit complex consisting of two proteins similar to actin- Arp2 and Arp3, and five other subunits that help keep Arp2 and Arp3 inactive. When required, the complex is...
Arp2/3 Complex
Arp2/3 complex is a seven-subunit complex consisting of two proteins similar to actin- Arp2 and Arp3, and five other subunits that help keep Arp2 and Arp3 inactive. When required, the complex is...
Actin Polymerization and Cell Motility
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.
Mechanism of Filopodia Formation
Filopodia are thin, actin-rich cellular protrusions that play an important role in many fundamental cellular functions. They vary in their occurrence, length, and positioning in different cell types, suggesting their diverse roles.
Their main function is to guide migrating cells during normal tissue morphogenesis or cancer metastasis by recognizing and making initial contacts with the extracellular matrix. However, they can also act as stationary cell anchors or help to establish communication...
Their main function is to guide migrating cells during normal tissue morphogenesis or cancer metastasis by recognizing and making initial contacts with the extracellular matrix. However, they can also act as stationary cell anchors or help to establish communication...
Mechanism of Lamellipodia Formation
Cells migrating in response to external stimuli form lamellipodia, which are thin membrane protrusions supported by a mesh of linked, branched, or unbranched actin filaments. These actin filaments interact with myosin motor proteins, creating the dynamic actomyosin complex within the cytoskeleton. Contractility, or the ability to generate contractile stress, is inherent to the actomyosin complex. It helps cells detect the stiffness of the surrounding ECM and exert contractile force for...
Actin Treadmilling
Actin filaments undergo polymerization and depolymerization from either end. The polymerization and depolymerization rates depend on the cytosolic concentration of free G-actins. The polymerization rate is generally higher at the plus or barbed end, while the depolymerization rate is higher at the minus or pointed end. At a steady state, critical concentration describes the concentration of free G-actin monomers at which the polymerization rate at the plus end is equal to that of the...


