概括
两个信号识别事件涉及信号识别粒子 (SRP) 和Sec61p复合体,对于共翻译蛋白传输到ER至关重要. 脂质也可能在这个过程中在信号序列歧视中发挥关键作用.
科学领域:
- 分子生物学分子生物学
- 细胞生物学 细胞生物学
- 蛋白质的运输方式
背景情况:
- 蛋白质转移到内 плазма网膜 (ER) 对于细胞功能至关重要.
- 这涉及两种主要机制,即共同翻译和后翻译传输.
- 信号识别事件调解了蛋白质的向ER膜的过程.
研究的目的:
- 审查和综合当前对蛋白质运输中信号识别事件的理解.
- 阐明信号识别粒子 (SRP) 和Sec61p复合物的作用.
- 探索脂质在信号序列识别中的潜在参与.
主要方法:
- 审查现有的文献和实验发现.
- 分析涉及SRP,Sec61p复合体和新生多相关复合体 (NAC) 的研究.
- 在信号功能中考虑脂质-蛋白质相互作用.
主要成果:
- SRP和Sec61p复合体的识别对于高效的共翻译ER转位至关重要.
- 在特定的实验条件下,NAC可以通过防止过早的核糖体-Sec61p关联来规避SRP的需要.
- 脂质可能积极参与信号序列歧视,Sec61p复合体发挥更广泛的转位作用.
结论:
- 有效的协译蛋白传输需要SRP和Sec61p复合体的协调识别.
- 脂质在信号序列识别中的作用需要进一步研究.
- 了解这些机制对于理解蛋白质生物发生和细胞内的向至关重要.
相关概念视频
ER Retrieval Pathway
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...
Directing Proteins to the Rough Endoplasmic Reticulum
The organelle-specific signaling sequences direct proteins synthesized in the cytosol to their final destination like ER, mitochondria, peroxisomes, etc. Some of the proteins directed to ER are then trafficked via vesicles to other organelles within the cell or the extracellular environment through the Golgi complex. For example, the rough ER synthesizes soluble proteins for transportation to the lysosomes or secretion out of the cell. It can also synthesize transmembrane proteins that can...
Cotranslational Protein Translocation
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...
Insertion of Single-pass Transmembrane Proteins in the RER
Integral membrane proteins are proteins adhered to the lipid bilayer of a cell organelle or membrane. They can be of two types: transmembrane integral proteins that span the lipid bilayer and monotopic proteins that are attached to either side of the membrane but do not pass through it.
Integral transmembrane proteins possess transmembrane and extra membrane domains. The transmembrane domains are primarily made of 20-25 hydrophobic amino acids arranged in a helical secondary confirmation. These...
Integral transmembrane proteins possess transmembrane and extra membrane domains. The transmembrane domains are primarily made of 20-25 hydrophobic amino acids arranged in a helical secondary confirmation. These...
Insertion of Multi-pass Transmembrane Proteins in the RER
The rough ER membrane synthesizes, assembles, and embeds transmembrane proteins in diverse topologies. These proteins function as transporters or channels and can remain in the ER membrane or are sent to the Golgi complex, lysosome, and cell membrane.
The multipass transmembrane proteins are the type IV integral membrane proteins with multiple topogenic sequences determining their spatial arrangement in the ER membrane. Nearly all multipass proteins lack a cleavable signal sequence and use...
The multipass transmembrane proteins are the type IV integral membrane proteins with multiple topogenic sequences determining their spatial arrangement in the ER membrane. Nearly all multipass proteins lack a cleavable signal sequence and use...
Post-translational Translocation of Proteins to the RER
A sizable fraction of proteins destined for ER are first synthesized in the cell cytosol and then transported across the ER membrane–a process called post-translational translocation. Similar to cotranslationally translocated proteins, these proteins also use the Sec translocon complex to enter the ER lumen.
Targeting proteins to the ER
Hsp40 and Hsp70 chaperone molecules bind the translated proteins in the cytosol to prevent their folding. The chaperone binding helps to keep the signal...
Targeting proteins to the ER
Hsp40 and Hsp70 chaperone molecules bind the translated proteins in the cytosol to prevent their folding. The chaperone binding helps to keep the signal...


