子宫内膜和蛋白质糖化酶之间的甜蜜关系
Linyu Zhang1,2, Ying Feng3, Yue Zhang1,2
1Center for Translational Medicine, Key Laboratory of Birth Defects and Related Diseases of Women and Children (Sichuan University), Ministry of Education, West China Second University Hospital, Sichuan University, Chengdu 610041, China.
Biomolecules
|July 27, 2024
概括
蛋白质糖化是胚胎植入和子宫内膜健康的关键. 改变的糖化会影响子宫内膜受体性,并与子宫内膜异位症和子宫内膜癌有关,具有诊断和治疗潜力.
科学领域:
- 生殖生物学 生殖生物学
- 细胞和分子生物学是细胞和分子生物学.
- 妇科瘤学 妇科瘤学
背景情况:
- 子宫内膜在月经和怀孕中起着至关重要的作用.
- 蛋白质糖化是影响子宫内膜受体性的重要翻译后修饰.
- 异常的甘油化与子宫内膜疾病 (如子宫内膜异位症和癌症) 有关.
研究的目的:
- 审查蛋白质糖化在胚胎与母亲子宫内膜对话中的作用.
- 探索子宫内膜受体和相关疾病中糖化酶的机制.
- 突出葡萄糖酶化的诊断和治疗潜力.
主要方法:
- 对蛋白质糖化和子宫内膜功能研究的文献综述.
- 分析糖化对子宫内膜受体和植入的影响.
- 检查糖化在子宫内膜异位症和子宫内膜癌的发病过程中的作用.
主要成果:
- 糖化增强子宫内膜的受体性,促进胚胎的局部化,粘附和入侵.
- 子宫内膜表面蛋白质的糖化模式与子宫内膜异位症的严重程度相关.
- 糖基化修饰作为子宫内膜癌类型和严重程度的标志物.
结论:
- 蛋白质糖化对成功的胚胎植入至关重要.
- 失调的糖化是子宫内膜受体障碍的一个重要因素.
- 向蛋白质糖化可能为子宫内膜疾病提供新的诊断和治疗策略.
相关概念视频
Protein Glycosylation
6.9K
Glycosylation, the most common post-translational modification for proteins, serves diverse functions. Adding sugars to proteins makes the proteins more resistant to proteolytic digestion. Glycosylated proteins can act as markers and receptors to promote cell-cell adhesion. Additionally, they have many essential quality control functions in the cell, such as correct protein folding and facilitating transport of misfolded proteins to the cytosol, which can be degraded.
Glycosylation occurs in...
Glycosylation occurs in...
6.9K
Oligosaccharide Assembly
2.8K
Protein glycosylation starts in the ER lumen and continues in the Golgi apparatus. Glycosyltransferases catalyze the addition of sugar molecules or glycosylation of proteins. Usually, these enzymes add sugars to the hydroxyl groups of selected serine or threonine residues to form O-linked glycans or the amino groups of asparagine residues to form N-linked glycans. Different positions on the same polypeptide chain can contain differently linked glycans.
Multiple sugar molecules that may or may...
Multiple sugar molecules that may or may...
2.8K
Proteoglycans
3.9K
Glycans, a class of complex heterogeneous molecules, can be covalently attached to proteins to form glycosylated proteins that regulate various physiological and pathological processes. Glycosylated proteins or glycoproteins comprise N-linked and O-linked oligosaccharides. O-glycosylation is the most common type of protein glycosylation. Here, glycans attach to the oxygen atom of the hydroxyl groups of Serine or Threonine residues. O-linked glycosylation occurs later in protein processing,...
3.9K
Matrix Proteoglycans and Glycoproteins
3.9K
Proteoglycans are extensively glycosylated proteins, commonly found in the extracellular matrix, interwoven with collagen fibers. Hyaline cartilage, the most common type of cartilage in the body, consists of short and dispersed collagen fibers associated with large amounts of proteoglycans. These proteoglycans have long negative charges that attract cations, which in turn attract water molecules. This influx of ions and water molecules swells up the proteoglycan like a water-soaked gel that can...
3.9K
Protein Modifications in the RER
5.1K
Modification of secretory and transmembrane proteins entering the rough ER begins in the ER lumen. These modifications aid in protein folding and stabilize the acquired tertiary structure. Protein modifications in the rough ER co-occur at different stages of protein folding.
Broadly, these modifications can be categorized into four main categories — glycosylation, formation of disulfide bonds, assembly of protein subunits, and specific proteolytic cleavages like removal of signal...
Broadly, these modifications can be categorized into four main categories — glycosylation, formation of disulfide bonds, assembly of protein subunits, and specific proteolytic cleavages like removal of signal...
5.1K
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


