NEDD4和NEDD4L:与消化系统疾病密切相关的乌比奎丁联
Jiafan Xu1, Wang Jiang1, Tian Hu1
1Department of Digestive Diseases, The Affiliated Changsha Central Hospital, Hengyang Medical School, University of South China, 161 Shaoshan Road, Changsha 410000, China.
Biomolecules
|May 24, 2024
概括
包括NEDD4和NEDD4L在内的E3泛素酶的NEDD4家族,通过调节蛋白质降解,在消化系统疾病中起着至关重要的作用. 了解它们的功能为疾病预防和治疗提供了新的途径.
科学领域:
- 生物化学 生物化学
- 分子生物学分子生物学
- 胃肠病学 胃肠病学
背景情况:
- 蛋白质ubiquitination是一种对细胞过程至关重要的翻译后修饰.
- E3 泛素酶,特别是 NEDD4 家族 (NEDD4,NEDD4L),是蛋白质降解的关键调节者.
- 这些链酶的失调越来越多地与各种疾病有关.
研究的目的:
- 审查NEDD4和NEDD4L在消化系统疾病中的作用.
- 阐明它们在调节细胞增殖,侵入,转移和抗药性方面的机制.
- 探索它们在消化系统内的关键信号通路中的参与.
主要方法:
- 对当前研究证据的文献综述.
- 对研究NEDD4和NEDD4L功能的研究分析.
- 对它们对蛋白质基质 (例如,PTEN,c-Myc,P21) 的影响的结合发现.
主要成果:
- 在NEDD4和NEDD4L中,通过基质无处不在和降解来调节消化功能.
- 这些酶影响关键的病理过程,如细胞增殖,侵入和转移.
- 它们的作用包括调节化疗药物耐药性和信号通路.
结论:
- NEDD4家族成员在消化系统疾病的发病过程中是重要的参与者.
- 针对NEDD4和NEDD4L提出了对消化系统疾病的潜在治疗策略.
- 对这些E3链酶的进一步研究可以为疾病管理提供新的见解.
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
Lysosomal Hydrolases
3.8K
Lysosomes are the site for the degradation of macromolecules and biological polymers released during membrane trafficking events such as secretory, endocytic, autophagic, and phagocytic pathways. The membrane-enclosed area of the lysosome, called the lumen, contains hydrolytic enzymes active in an acidic environment. These acid hydrolases are functional at a pH between 4.5 and 5 and are involved in cellular processes such as cell signaling, energy metabolism, restoration of the plasma membrane,...
3.8K
Role Of Notch Signalling In Intestinal Stem Cell Renewal
2.1K
Notch signaling was first discovered in Drosophila melanogaster, where it is involved in cell lineage differentiation. Notch signaling regulates the maintenance and differentiation of intestinal stem cells or ISCs by controlling the expression of atonal homolog 1 or Atoh1. Atoh1 directs cells to differentiate into secretory cells.
Direct cell-to-cell contact is needed for the activation of Notch signaling. The signal is initiated when a notch ligand binds to a receptor on an adjacent cell, also...
Direct cell-to-cell contact is needed for the activation of Notch signaling. The signal is initiated when a notch ligand binds to a receptor on an adjacent cell, also...
2.1K
Protein Folding Quality Check in the RER
3.7K
ER is the primary site for the maturation and folding of soluble and transmembrane secretory proteins. The calnexin cycle is a specific chaperone system that folds and assesses the confirmation of N-glycosylated proteins before they can exit the ER lumen. The primary players of this quality check pipeline are the lectins, ER-resident chaperones, and a glucosyl transferase enzyme. In case the calnexin system in the lumen fails to salvage a misfolded protein, it is transported to the cytoplasm...
3.7K
Covalently Linked Protein Regulators
6.8K
Proteins can undergo many types of post-translational modifications, often in response to changes in their environment. These modifications play an important role in the function and stability of these proteins. Covalently linked molecules include functional groups, such as methyl, acetyl, and phosphate groups, and also small proteins, such as ubiquitin. There are around 200 different types of covalent regulators that have been identified.
These groups modify specific amino acids in a protein....
These groups modify specific amino acids in a protein....
6.8K
Receptor Downregulation in MVBs
2.0K
Multivesicular bodies (MVBs) are mature endosomes that sort ubiquitinated proteins and then fuse with lysosomes to degrade the sorted proteins. Epidermal growth factor (EGF) and its receptor (EGFR) form a complex that can be internalized through endocytosis, sorted into an MVB, and later degraded.
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR...
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR...
2.0K


