Type I collagen messenger RNA levels in experimental granulation tissue and silicosis in rats.

Medical biology Pub Date : 1986-01-01
J K Mäkelä, E Vuorio
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Abstract

A complementary DNA (cDNA) clone was constructed for chick pro alpha 2(I) collagen mRNA. This and previously constructed cDNA clones for chick and human pro alpha 1(I) collagen mRNAs were used to measure levels of type I procollagen messenger RNAs in two experimental models: viscose cellulose sponge-induced experimental granulation tissue and silica-induced experimental lung fibrosis in rats. Both Northern RNA blot and RNA dot hybridizations were used to quantitate procollagen mRNAs during formation of granulation tissue. The period of rapid collagen synthesis was characterized by high levels of procollagen mRNAs, which were reduced when collagen production returned to a low basal level. The rate of collagen synthesis and the levels of procollagen mRNAs during the period of rapid reduction in collagen production did not, however, parallel with each other. This suggests that translational control mechanisms are important during this time in preventing overproduction of collagen. In silicotic lungs, the early stages of fibroblast activation follow a similar path but appear faster. At a later stage, however, the RNA levels increase again and permit collagen synthesis to continue at a high rate, resulting in massive collagen accumulation.

ⅰ型胶原信使RNA在实验性肉芽组织和矽肺大鼠中的表达。
构建了鸡原α 2(I)胶原mRNA的互补cDNA克隆。该克隆和先前构建的鸡和人α 1(I)胶原mrna cDNA克隆用于测量粘胶纤维海绵诱导的实验性肉芽组织和二氧化硅诱导的实验性大鼠肺纤维化两种实验模型中I型前胶原信使rna的水平。采用Northern RNA印迹法和RNA点杂交法对肉芽组织形成过程中的前胶原mrna进行定量分析。快速胶原合成的时期以高水平的前胶原mrna为特征,当胶原生成恢复到低基础水平时,前胶原mrna减少。然而,胶原合成速率和胶原蛋白生成快速减少期间的前胶原mrna水平并不平行。这表明,在这段时间内,翻译控制机制在防止胶原蛋白过度产生方面是重要的。在矽肺中,成纤维细胞激活的早期阶段遵循类似的途径,但似乎更快。然而,在后期,RNA水平再次增加,并允许胶原蛋白合成以高速率继续,导致大量胶原蛋白积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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