与内分泌网膜相关的SARS-CoV-2 ORF3a引起了高度的细胞病变效应,尽管具有强大的ER相关的降解
Jiantao Zhang1, Ruth Cruz-Cosme2, Chenyu Zhang1
1Department of Pathology, University of Maryland School of Medicine, Baltimore, Maryland, USA.
mBio
|December 11, 2023
概括
研究SARS-CoV-2ORF3a蛋白及其突变体揭示了这些病毒因素如何导致COVID-19的严重程度. 了解ORF3a的理解
科学领域:
- 病毒学 病毒学
- 分子生物学分子生物学
- 免疫学 免疫学 免疫学
背景情况:
- 严重急性呼吸系统综合征冠状病毒2 (SARS-CoV-2) 导致COVID-19,这是一种具有显著死亡率的疾病.
- SARS-CoV-2 ORF3a 蛋白质与引发细胞因子风暴有关,这是COVID-19死亡的主要原因.
- 类似于尖端蛋白的ORF3a经历了可能影响COVID-19严重程度的突变.
研究的目的:
- 基于它们的亚细胞局部化,比较两种类型的SARS-CoV-2 ORF3a突变蛋白之间的功能和机制差异.
- 阐明不同ORF3a突变变体在COVID-19病变发生过程中的作用.
主要方法:
- 之前的研究发现了两种不同类型的ORF3a突变蛋白,基于亚细胞局部.
- 这项研究涉及对这些ORF3a变体进行比较调查.
主要成果:
- 这项研究旨在揭示两个ORF3a突变型之间的功能和机制差异.
- 研究结果将揭示这些突变体在COVID-19疾病中的特定作用.
结论:
- 了解ORF3a突变体的功能对于理解COVID-19的发病过程至关重要.
- 这项研究提供了对COVID-19严重程度背后的分子机制的见解.
相关概念视频
Export of Misfolded Proteins out of the ER
3.6K
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...
3.6K
The Unfolded Protein Response
4.6K
The ER is the hub of protein synthesis in a cell. It has robust systems to quality control protein folding and also for degradation of terminally misfolded proteins. Under normal conditions, a small proportion of misfolded proteins that cannot be salvaged need to be transported to the cytoplasm by the ER-associated degradation or ERAD pathways. However, if the ERAD cannot handle the misfolded proteins, the cell activates the unfolded protein response or UPR to adjust the protein folding...
4.6K
Regulation of the Unfolded Protein Response
2.4K
Inositol-requiring kinase one or IRE1 is the most conserved eukaryotic unfolded protein response (UPR) receptor. It is a type I transmembrane protein kinase receptor with a distinctive site-specific RNase activity. As the binding mechanics of the misfolded proteins with the N-terminal domain of IRE-1 are unclear, three binding models — direct, indirect, and allosteric -- are proposed for receptor activation. Nevertheless, it is known that once a misfolded protein associates with IRE1, it...
2.4K
The Endoplasmic Reticulum
14.2K
The endoplasmic reticulum or ER makes up for more than half of the membranes in a cell and accounts for 10% of total cell volume. It is also the primary protein and lipid synthesis factory for most cell organelles, such as the Golgi apparatus, lysosomes, secretory vesicles, and the plasma membrane. Despite being the most extensive and functionally complex subcellular organelle, ER was the last to be discovered. After years of deliberation, Keith Porter and George Palade in the year 1954,...
14.2K
Role of ER in the Secretory Pathway
5.4K
Eukaryotic cells have a special pathway that enables communication between various intracellular membrane-bound compartments and also with the extracellular environment. This pathway is termed as the secretory pathway.
Components of the secretory pathway
About a third of proteins synthesized in the cell are sorted via the secretory route. They shuffle between different compartments in membrane-bound vesicles until they reach their final destination. The main intracellular compartments involved...
Components of the secretory pathway
About a third of proteins synthesized in the cell are sorted via the secretory route. They shuffle between different compartments in membrane-bound vesicles until they reach their final destination. The main intracellular compartments involved...
5.4K
Directing Proteins to the Rough Endoplasmic Reticulum
7.3K
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...
7.3K


