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硫酸类肝素
产品纠错
CAS号:9050-30-0 | 英文名称:Heparitin, sulfate
分子式 C14H23NO21S3
分子量
EINECS号 232-939-9
MDL
Smiles
InChIKey
乙二醇化学百科
基本信息
中文名称 硫酸类肝素
英文名称 Heparitin, sulfate
CAS号 9050-30-0
分子式 C14H23NO21S3
分子量 0
EINECS号 232-939-9
物化性质
溶解度 可溶于酸性水溶液(轻微)、水(轻微)
形态 固体
颜色 白色至类白色
安全信息
生产及用途

硫酸类肝素是一种复杂的线性多糖。它作为硫酸乙酰肝素蛋白聚糖的一部分出现,在细胞表面和细胞外基质中表达丰富。

Heparan sulfate是一种复杂的线性多糖。它作为硫酸乙酰肝素蛋白聚糖的一部分出现,在细胞表面和细胞外基质中表达丰富。

Human Endogenous Metabolite

Heparan sulfate is a linear polysaccharide and belongs to the family of glycosaminoglycans. Heparan sulfate is composed of glucuronic acid (GlcA) and iduronic acid (IdoA) residues as well as N-acetyl glucosamines (GlcNAc) with various sulfation modifications, and is typically 50-200 disaccharides in length. Heparan sulfate interacts with numerous proteins, including growth factors, morphogens, and adhesion molecules, and thereby regulates important developmental processes in invertebrates and vertebrates. Heparan sulfate chains regulate developmental signaling by acting as co-factors through a variety of mechanisms that include but are not limited to maintenance of morphogen gradients and co-receptor functions. Heparan sulfate proteoglycans can act as receptors for proteases and protease inhibitors regulating their spatial distribution and activity. Membrane Heparan sulfate proteoglycans act as coreceptors for various tyrosine kinase-type growth factor receptors, lowering their activation threshold or changing the duration of signaling reactions. Heparan sulfate influences the binding affinity of intestinal epithelium cells to Wnt, thereby promoting activation of canonical Wnt signaling and facilitating regeneration of small intestinal crypts after epithelial injury.

Digestion of heparan sulfate impairs context discrimination in a fear conditioning paradigm and oscillatory network activity in the low theta band after fear conditioning. Thus, heparan sulfate maintains neuronal excitability and, as a consequence, support synaptic plasticity and learning. FGF-2/FGFR system is involved in the regulation of astrocytic reactivity and/or proliferation in the brain and its action is potentiated by heparan sulfate.

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