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相关概念视频

Oligosaccharide Assembly01:24

Oligosaccharide Assembly

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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...
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Protein Glycosylation

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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.
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  1. 首页
  2. 链接编辑伪糖类:降低α-fluorovinl-c-糖化策略以创建具有改变生物活性的糖类类
  1. 首页
  2. 链接编辑伪糖类:降低α-fluorovinl-c-糖化策略以创建具有改变生物活性的糖类类

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Chemo-enzymatic Synthesis of N-glycans for Array Development and HIV Antibody Profiling
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Chemo-enzymatic Synthesis of N-glycans for Array Development and HIV Antibody Profiling

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链接编辑伪糖类:降低α-Fluorovinl-C-糖化策略以创建具有改变生物活性的糖类类

Takahiro Moriyama1, Makoto Yoritate1, Naoki Kato2,3

  • 1Graduate School of Pharmaceutical Sciences, Kyushu University, 3-1-1, Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

Journal of the American Chemical Society
|January 10, 2024

在PubMed 上查看摘要

概括
此摘要是机器生成的。

甘氨酸中的化学易受伤害的O-甘氨酸键可以被稳定的C-甘氨酸类似物取代. 这项研究创造了伪糖,发现CH2-异盐酸增强了氨酶的产生,而CHF-α-GalCer则对抗了iNKT细胞.

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Regioselective O-Glycosylation of Nucleosides via the Temporary 2',3'-Diol Protection by a Boronic Ester for the Synthesis of Disaccharide Nucleosides
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Metabolic Glycoengineering of Sialic Acid Using N-acyl-modified Mannosamines

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科学领域:

  • 碳水化合物化学
  • 葡萄糖生物学
  • 医学化学

背景情况:

  • 甘氨酸中的乙 (O-甘氨酸) 键易受化学和生物降解.
  • 作为类似物,C-糖化物提供了更高的稳定性,促使对其生物活性进行研究.
  • O- 糖化物链接的功能表明,C- 糖化物类型的活性可能取决于它们的替代物.

研究的目的:

  • 开发一种"链接编辑策略",用于创建稳定的甘氨酸类型 (伪甘氨酸).
  • 合成具有模仿O-糖性质的CH2和CHF链接的伪糖.
  • 评估来自异糖和α-GalCer的新型伪糖的生物活性.

主要方法:

  • 设计和合成具有CH2和CHF连接的三种类型的伪糖.
  • 使用基化和选择性化以实现高效的合成.
  • 将该策略应用于异糖 (IM) 和α- 银糖胺 (α- GalCer).

主要成果:

  • 成功合成了具有类似O-糖化物特性的CH2和CHF伪糖体.
  • 与原生IM相比,CH2- IM具有更强的诱导氨酶的能力.
  • CHF-α-GalCer对iNKT细胞表现出对抗作用,对抗原生α-GalCer的作用.

结论:

  • 链接编辑策略提供了一个可行的方法来创建稳定的糖类型.
  • 伪糖类可以表现出明显的生物活性,包括增强或对抗作用.
  • 已开发的类似物显示出适用于调节与氨酶表达和iNKT细胞激活相关的生物过程的潜力.