相关实验视频
Updated: Sep 10, 2025

12:04
FtsZ Polymerization Assays: Simple Protocols and Considerations
Published on: November 16, 2013
15.4K
在FliPQR蛋白质输出通道上的β-cap作为初始鞭子杆组件的盖子
Miki Kinoshita1,2, Tomoko Miyata1,2, Fumiaki Makino1,2,3
1Graduate School of Frontier Biosciences, Osaka University, Suita, Osaka 565-0871, Japan.
概括
FliPQR复合体可以输出鞭毛蛋白和模板杆组件. 一个新的β-cap结构揭示了FliE子单元如何打开围流体门以进行连续的棒组装.
科学领域:
- 微生物学
- 结构生物学
- 分子电机
背景情况:
- 鞭子输出装置对于细菌的运动至关重要.
- FliPQR复合体形成了鞭子杆组件的通道和模板.
- 之前的FliE对周等离子体门开放机制的理解是不完整的.
研究的目的:
- 阐明FliPQR复合体周等离子体门的结构机制.
- 了解第一个FliE子单元如何启动杆组装.
- 为了确定β-cap在门调节中的作用.
主要方法:
- 低温电子显微镜 (cryo-EM) 的分辨率为3.0 Å.
- 在封闭状态下对FliPQR综合体进行结构分析.
主要成果:
- 由FliP和FliR N终端β链形成的β盖封闭了封闭的周等离子门.
- 贝塔有一个狭窄的孔,引导初始的FliE子单元.
- 在FliP和FliR中诱导构造变化,通过拆解β打开门.
结论:
- 贝塔作为一个关键的调节器,确保准确的初始FliE子单元组装.
- 比特拉丝从比特拉帽的顺序分离会为后续的FliE子单元创建对接点.
- 这种机制有助于有效和有序地组装鞭子杆结构.
相关概念视频
Flagella and Motility in Bacteria
466
Flagella are specialized, thread-like structures that extend from a bacteria's cell envelope. They play a crucial role in motility and chemotaxis. Their structural organization and functioning exemplify sophisticated biological engineering, enabling bacterial survival and adaptability in diverse environments.Structure of the FlagellumA bacterial flagellum consists of three key components: the filament, the hook, and basal body. The filament, a long, helical structure composed of repeating...
466
Mechanism of Filopodia Formation
2.5K
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...
2.5K
Coat Assembly and GTPases
3.6K
Vesicles incorporate different coat protein subunits in different cell locations, which changes the properties of the coat, such as the shape and geometry of the transport vesicles. Thus, vesicle coat proteins also play a significant role in cargo selection.
Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...
Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...
3.6K
Generation of Straight or Branched Actin Filaments
3.0K
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...
3.0K
Cotranslational Protein Translocation
7.6K
Translocation of proteins across membranes is an ancient process that occurs even in bacteria and archaebacteria. In fact, the components of the translocation machinery are still conserved between prokaryotes and eukaryotes.
Sec61 channel partners for cotranslational translocation
During cotranslational translocation, the Sec61 channel partners with the signal recognition particle (SRP), the signal recognition particle receptor (SR), and the ribosomes to transport the nascent polypeptide chain...
Sec61 channel partners for cotranslational translocation
During cotranslational translocation, the Sec61 channel partners with the signal recognition particle (SRP), the signal recognition particle receptor (SR), and the ribosomes to transport the nascent polypeptide chain...
7.6K
Microtubules in Cell Motility
3.5K
Microtubules are thick hollow cylindrical proteins that help form the cytoskeleton. Microtubules have varied roles in the cell. These filaments help form cellular appendages like cilia and flagella, which are responsible for locomotion. The cilia arise from basal bodies, separated from the main body by a membrane-like structure forming the transition zone. This zone is the gate for the entry of lipids and proteins, creating a unique composition of lipids and proteins in the ciliary membrane and...
3.5K

