首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Abnormal ambient glucose levels inhibit proteoglycan core protein gene expression and reduce proteoglycan accumulation during chondrogenesis: possible mechanism for teratogenic effects of maternal diabetes.
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Abnormal ambient glucose levels inhibit proteoglycan core protein gene expression and reduce proteoglycan accumulation during chondrogenesis: possible mechanism for teratogenic effects of maternal diabetes.

机译:异常的环境葡萄糖水平会抑制蛋白聚糖核心蛋白基因的表达并减少软骨形成过程中蛋白聚糖的积累:这可能是孕产妇糖尿病致畸作用的机制。

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摘要

Using a tissue culture system based on a nearly pure population of avian precartilage mesenchymal cells, we have found that ambient glucose levels as little as 50% lower, or 100% higher, than normally present in embryonic sera are deleterious to cartilage development, as measured by the accumulation of highly sulfated proteoglycan and the corresponding cartilage-specific chondroitin sulfate core protein mRNA. Abnormal glucose concentrations in the ranges studied did not selectively influence cell replication, and the effects on chondrogenesis were not due to differences in overall protein synthesis or glucose utilization in the treatment groups. Core protein gene expression was more severely affected than accumulation of extracellular product, suggesting the existence of posttranscriptional compensatory mechanisms. The sensitivity to ambient glucose levels of both expression of the cartilage-specific chondroitin sulfate core protein gene and the accumulation of the corresponding extracellular matrix macromolecules during chondrogenesis suggest a molecular mechanism for the well-known adverse effect of maternal diabetes on embryonic skeletogenesis. The results further suggest that hypoglycemia resulting from stringent control of diabetes may also be deleterious to skeletal development.
机译:使用基于几乎纯的禽软骨前间充质细胞群体的组织培养系统,我们发现,与正常人血清相比,环境葡萄糖含量低至正常水平低50%或高100%对软骨发育有害通过积累高度硫酸化的蛋白聚糖和相应的软骨特异性硫酸软骨素核心蛋白mRNA。研究范围内的异常葡萄糖浓度没有选择性地影响细胞复制,并且对软骨形成的影响不是由于治疗组中总体蛋白质合成或葡萄糖利用率的差异所致。核心蛋白基因表达比细胞外产物的积累受到更严重的影响,表明存在转录后补偿机制。软骨特异性硫酸软骨素核心蛋白基因的表达以及软骨形成过程中相应细胞外基质大分子的积累对环境葡萄糖水平的敏感性表明,母体糖尿病对胚胎骨骼形成的众所周知的不良影响的分子机制。结果进一步表明,严格控制糖尿病引起的低血糖症也可能对骨骼发育有害。

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