拉布6介导的从戈尔吉的逆向贩运:管道的麻烦
Lucy G Dornan1, Jeremy C Simpson1
1Cell Screening Laboratory, UCD School of Biology & Environmental Science, University College Dublin, Dublin, Ireland.
Small GTPases
|July 25, 2023
概括
独立于COPI的途径是一个独特的细胞运输路径,由Rab6 GTPase调节,而不是蛋白质外套. 这条路径使用管状载体进行Golgi-to-ER运输,与囊泡运输不同.
科学领域:
- 细胞生物学 细胞生物学
- 分子生物学分子生物学
- 生物化学 生物化学
背景情况:
- 独立于COPI的途径在真核细胞中促进了戈尔吉装置和内质网膜 (ER) 之间的运输.
- 与其他途径不同,它是由小GTPase Rab6调节的,而不是蛋白质外套.
- 这种途径独特地使用管状载体而不是囊泡.
研究的目的:
- 审查和综合关于COPI独立途径的当前文献.
- 描述Rab6介导的管状运输的调节机制,货物和生物发生.
- 确定未来研究的悬而未决的问题.
主要方法:
- 文献综述和综合 文献综述和综合
- 分子机制的分析.
- 讨论蛋白质相互作用和细胞运输.
主要成果:
- 独立于COPI的路径依赖Rab6进行调节,并使用管道进行运输.
- 货物分子可能在Rab6管生物发生过程中发挥作用.
- 氨酸,肌氨酸和丁氨酸电机参与运输Rab6-涂层管道.
结论:
- 独立于COPI的途径代表了一个独特的细胞内贩运模式.
- 需要进一步的研究,以充分阐明控制这种途径的分子机制.
- 了解Rab6介导的运输对于理解细胞组织至关重要.
关键词:
独立于COPI的运输运输戈尔吉仪器是一台高尔基仪器.拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉布拉拉布拉布拉布拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉拉膜的交通流量.膜管道中的管道.逆行运输是一种逆行运输.相关概念视频
Export of Misfolded Proteins out of the ER
3.7K
After folding, the ER assesses the quality of secretory and membrane proteins. The correctly folded proteins are cleared by the calnexin cycle for transport to their final destination, while misfolded proteins are held back in the ER lumen. The ER chaperones attempt to unfold and refold the misfolded proteins but sometimes fail to achieve the correct native conformation. Such terminally misfolded proteins are then exported to the cytosol by ER-associated degradation or ERAD pathway for...
3.7K
Rab Cascades
2.7K
Rab GTPases act in a regulated cascade during membrane fusion, helping the lipid bilayers mix. The Rab family of proteins are active when bound to GTP, and inactive when bound to GDP. Hence, they act as guanine nucleotide-dependent molecular switches. Rab-GTP recognizes and binds to long or short-range tethering proteins to capture the target vesicle. These tethers coordinate with SNAREs on the vesicle and the target membrane to assemble the trans SNARE complex that locks the mixing bilayers.
2.7K
Transport Across the Golgi
4.3K
While it is unclear how molecules move between adjacent Golgi cisternae, it is apparent that the molecules move from cis- cisterna, the entry face, to the trans- cisterna, the exit face. Experiments initially suggested vesicles that bud from one cisterna and fuse with the next cisterna to transport proteins between the cisternae. This vesicular transport model describes the Golgi apparatus as a relatively static structure with a unique enzyme composition in each cisterna. Molecules are...
4.3K
ER Retrieval Pathway
3.9K
In the secretory pathway, vesicles transport proteins from one cellular compartment to another in forward transport to deliver the protein to its correct location. Occasionally, misfolded proteins and incorrect proteins escape their original compartments, and a retrieval pathway is used to return the escaped proteins to their original compartment.
The ER uses many checkpoints to prevent the entry of incorrectly folded or a resident protein as cargo onto a transport vesicle. These mechanisms...
The ER uses many checkpoints to prevent the entry of incorrectly folded or a resident protein as cargo onto a transport vesicle. These mechanisms...
3.9K
Golgi Apparatus
91.2K
As they leave the Endoplasmic Reticulum (ER), properly folded and assembled proteins are selectively packaged into vesicles. These vesicles are transported by microtubule-based motor proteins and fuse together to form vesicular tubular clusters, subsequently arriving at the Golgi apparatus, a eukaryotic endomembrane organelle that often has a distinctive ribbon-like appearance.
91.2K
Rab Proteins
4.0K
Rab proteins constitute the largest family of monomeric GTPases, of which 70 members are present in humans. Rab proteins and their effectors regulate consecutive stages of vesicle transport such as vesicle transport, docking, and fusion to the correct recipient membrane.
Rab proteins switch between a cytosolic, GDP-bound inactive state and a membrane-anchored, GTP-bound active state. By themselves, Rabs show slow rates of GDP/GTP exchange and GTP hydrolysis. Thus, Rab proteins are considered...
Rab proteins switch between a cytosolic, GDP-bound inactive state and a membrane-anchored, GTP-bound active state. By themselves, Rabs show slow rates of GDP/GTP exchange and GTP hydrolysis. Thus, Rab proteins are considered...
4.0K


