首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Regulation of Heparan Sulfate and Chondroitin Sulfate Glycosaminoglycan Biosynthesis by 4-Fluoro-glucosamine in Murine Airway Smooth Muscle Cells
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Regulation of Heparan Sulfate and Chondroitin Sulfate Glycosaminoglycan Biosynthesis by 4-Fluoro-glucosamine in Murine Airway Smooth Muscle Cells

机译:4-氟葡萄糖胺在鼠气道平滑肌细胞中调节硫酸乙酰肝素和硫酸软骨素糖胺聚糖的生物合成

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摘要

The importance of the pathological changes in proteoglycans has driven the need to study and design novel chemical tools to control proteoglycan synthesis. Accordingly, we tested the fluorinated analogue of glucosamine (4-fluoro-N-acetyl-glucosamine (4-F-GlcNAc)) on the synthesis of heparan sulfate (HS) and chondroitin sulfate (CS) by murine airway smooth muscle (ASM) cells in the presence of radiolabeled metabolic precursors. Secreted and cell-associated CS and HS were assessed for changes in size by Superose 6 chromatography. Treatment of ASM cells with 4-F-GlcNAc (100 μm) reduced the quantity (by 64.1–76.6%) and decreased the size of HS/CS glycosaminoglycans associated with the cell layer (Kav shifted from 0.30 to 0.45). The quantity of CS secreted into the medium decreased by 65.7–73.0%, and the size showed a Kav shift from 0.30 to 0.50. Treatment of ASM cells with 45 μm and 179 μm 4-F-GlcNAc in the presence of a stimulator of CS synthesis, 4-methylumbelliferyl-β-d-xyloside, reduced the amount of the xyloside-CS chains by 65.4 and 87.0%, respectively. The size of xyloside-CS chains synthesized in the presence of 4-F-GlcNAc were only slightly larger than those with xyloside treatment alone (Kav of 0.55 compared with that of 0.6). The effects of 4-F-GlcNAc to inhibit CS synthesis were not observed with equimolar concentrations of glucosamine. We propose that 4-F-GlcNAc inhibits CS synthesis by inhibiting 4-epimerization of UDP-GlcNAc to UDP-GalNAc, thereby depleting one of the substrates required, whereas HS elongation is inhibited by truncation when the nonreducing terminus of the growing chain is capped with 4-F-GlcNAc.
机译:蛋白聚糖病理变化的重要性推动了对研究和设计新的化学工具来控制蛋白聚糖合成的需求。因此,我们在鼠气道平滑肌(ASM)合成硫酸乙酰肝素(HS)和硫酸软骨素(CS)的过程中测试了氨基葡萄糖的氟化类似物(4-氟-N-乙酰基氨基葡萄糖(4-F-GlcNAc))放射性标记的代谢前体存在下的细胞。通过Superose 6色谱法评估分泌的和细胞相关的CS和HS的大小变化。用4-F-GlcNAc(100μm)处理ASM细胞可减少数量(减少64.1–76.6%),并减少与细胞层相关的HS / CS糖胺聚糖的大小(Kav从0.30变为0.45)。分泌到培养基中的CS数量减少了65.7–73.0%,大小显示Kav从0.30变为0.50。在CS合成刺激物4-methylumbelliferyl-β-d-xyloside的存在下,用45μm和179μm4-F-GlcNAc处理ASM细胞,木糖苷-CS链的数量减少了65.4和87.0%,分别。在存在4-F-GlcNAc的情况下合成的木糖苷-CS链的大小仅比单独使用木糖苷处理的木糖CS链的大小略大(Kav为0.55,而Kav为0.6)。用等摩尔浓度的葡萄糖胺未观察到4-F-GlcNAc抑制CS合成的作用。我们提出4-F-GlcNAc通过抑制UDP-GlcNAc到UDP-GalNAc的4异构化来抑制CS合成,从而耗尽了所需的底物之一,而当增长链的非还原末端被封端时,HS延伸被截短抑制了用4-F-GlcNAc。

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