内质网膜压力及其对脂肪生成的影响:涉及的分子机制
Gyuhui Kim1,2, Jiyoon Lee3, Joohun Ha1,2
1Department of Biomedical Science, Graduate School, Kyung Hee University, Seoul 02447, Republic of Korea.
Nutrients
|December 23, 2023
概括
细胞内网膜 (ER) 压力会影响脂肪生成,影响脂肪细胞分化和脂质储存. 了解ER压力中的未折叠蛋白质反应 (UPR) 是新代谢障碍新治疗策略的关键.
科学领域:
- 细胞生物学 细胞生物学
- 代谢科学 代谢科学
- 分子生物学分子生物学
背景情况:
- 细胞内网膜 (ER) 压力与脂肪生成有关,脂肪细胞形成和脂质积累的过程.
- 持续的ER压力可以破坏未折叠的蛋白质反应 (UPR),显著影响脂肪生成.
- UPR通路的失调与代谢功能障碍和炎症有关.
研究的目的:
- 阐明连接ER压力和脂肪生成的分子机制.
- 审查UPR通路 (IRE1-XBP1,PERK,ATF6) 在脂肪细胞分化和脂质代谢中的作用.
- 探索ER压力对脂肪原转录因子和细胞功能的影响.
主要方法:
- 文献综述专注于分子机制.
- 在脂肪生成中对UPR通路调节失调的分析.
- 检查ER压力对转录因子如PPARγ和C/EBP的影响.
主要成果:
- ER压力破坏了UPR信号,影响了脂肪细胞的分化和脂质代谢.
- 关键的脂肪生成转录因子 (PPARγ,C/EBPs) 被ER压力调节.
- 细胞后果包括改变脂质代谢,脂蛋白失调和脂肪组织炎症.
结论:
- ER压力通过UPR通路和转录因子调制对脂肪生成产生深远的影响.
- 这种复杂的关系会影响脂质代谢,阿迪波金信号传递和组织炎症.
- 准ER压力和UPR途径为代谢性疾病的新型治疗干预提供了潜力.
更多相关视频
相关概念视频
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
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 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
Smooth Endoplasmic Reticulum
5.8K
Smooth endoplasmic reticulum or smooth ER is a sub-organelle with specialized functions in animal cells and plant cells. It is often associated with the tubule morphology of the endoplasmic reticulum.
The ER provides optimal conditions for synthesizing steroid hormones and lipids, such as phospholipids and triglycerides. Traditionally, lipid metabolism was considered to be a smooth ER function. However, there is no direct evidence to prove that rough ER is completely excluded from lipid...
The ER provides optimal conditions for synthesizing steroid hormones and lipids, such as phospholipids and triglycerides. Traditionally, lipid metabolism was considered to be a smooth ER function. However, there is no direct evidence to prove that rough ER is completely excluded from lipid...
5.8K
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
Endoplasmic Reticulum
95.1K
The Endoplasmic Reticulum (ER) in eukaryotic cells is a substantial network of interconnected membranes with diverse functions, from calcium storage to biomolecule synthesis. A primary component of the endomembrane system, the ER manufactures phospholipids critical for membrane function throughout the cell. Additionally, the two distinct regions of the ER specialize in the manufacture of specific lipids and proteins.
95.1K


