Thompson H A, Spooner B S
J Cell Biol. 1983 May;96(5):1443-50. doi: 10.1083/jcb.96.5.1443.
The proteoglycans and glycosaminoglycans synthesized by embryonic mouse salivary glands during normal morphogenesis and in the presence of beta-xyloside, an inhibitor of branching morphogenesis, have been partially characterized. Control and rho-nitrophenyl-beta-D-xyloside-treated salivary rudiments synthesize proteoglycans that are qualitatively similar, based on mobility on Sepharose CL-4B under dissociative conditions and glycosaminoglycan composition. However, beta-xyloside inhibits total proteoglycan-associated glycosaminoglycan synthesis by 50%, and also stimulates synthesis of large amounts of free chondroitin (dermatan) sulfate. This free glycosaminoglycan accounts for the threefold stimulation of total glycosaminoglycan synthesis in beta-xyloside-treated cultures. Several observations suggest that the disruption of proteoglycan synthesis rather than the presence of large amounts of free glycosaminoglycan is responsible for the inhibition of branching morphogenesis. (a) We have been unable to inhibit branching activity by adding large amounts of chondroitin (dermatan) sulfate, extracted from beta-xyloside-treated cultures, to the medium of salivary rudiments undergoing morphogenesis. (b) In the range of 0.1-0.4 mM beta-xyloside, the dose-dependent inhibition of branching morphogenesis is directly correlated with the inhibition of proteoglycan synthesis. The stimulation of free glycosaminoglycan synthesis is independent of dose in this range, since stimulation is maximal even at the lowest concentration used, 0.1 mM. The data strongly suggest that the inhibition of branching morphogenesis is caused by the disruption of proteoglycan synthesis in beta-xyloside-treated salivary glands.
在正常形态发生过程中以及存在分支形态发生抑制剂β-木糖苷的情况下,对胚胎小鼠唾液腺合成的蛋白聚糖和糖胺聚糖进行了部分表征。基于在解离条件下在琼脂糖CL-4B上的迁移率和糖胺聚糖组成,对照和经对硝基苯基-β-D-木糖苷处理的唾液原基合成的蛋白聚糖在性质上相似。然而,β-木糖苷可使与蛋白聚糖相关的糖胺聚糖总合成量减少50%,并且还刺激大量游离硫酸软骨素(硫酸皮肤素)的合成。这种游离糖胺聚糖导致了在经β-木糖苷处理的培养物中糖胺聚糖总合成量增加了两倍。几项观察结果表明,蛋白聚糖合成的破坏而非大量游离糖胺聚糖的存在是分支形态发生受到抑制的原因。(a) 我们无法通过向正在进行形态发生的唾液原基培养基中添加从经β-木糖苷处理的培养物中提取的大量硫酸软骨素(硫酸皮肤素)来抑制分支活性。(b) 在0.1 - 0.4 mM的β-木糖苷范围内,分支形态发生的剂量依赖性抑制与蛋白聚糖合成的抑制直接相关。在该范围内,游离糖胺聚糖合成的刺激与剂量无关,因为即使在使用的最低浓度0.1 mM下刺激也是最大的。数据强烈表明,经β-木糖苷处理的唾液腺中分支形态发生的抑制是由蛋白聚糖合成的破坏引起的。