Extracellular matrix modifications in rat tissues of different ages. Correlations between elastin and collagen type I mRNA expression and lysyl-oxidase activity.

Matrix (Stuttgart, Germany) Pub Date : 1993-11-01
D Quaglino, C Fornieri, L B Nanney, J M Davidson
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Abstract

We used a rat model to correlate age, matrix gene expression and lysyl oxidase activity in three connective tissues, skin, aorta and lung. By in situ hybridization, we showed that intense collagen type I and elastin mRNA expression were limited to a brief postnatal period. Although there were some organ-specific differences, the mRNA abundance for these two scleroproteins drastically diminished with time. Thus, the majority of mesenchymal cells in young (60 days) and old (720 days) animals, appeared to be in a quiescent state, consistent with the slow turnover of these two scleroproteins. We also measured the activity of lysyl oxidase, an enzyme which plays a crucial role in the formation of crosslinks in both procollagen and tropoelastin molecules. In all the organs investigated, we observed a tissue-dependent pattern of activity. Moreover in this study we focused on the importance of gene matrix expression in evaluating lysyl oxidase activity of aging tissues.

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不同年龄大鼠组织的细胞外基质修饰。弹性蛋白与ⅰ型胶原mRNA表达及赖氨酸氧化酶活性的相关性研究。
我们使用大鼠模型来关联年龄,基质基因表达和赖氨酸氧化酶活性在三个结缔组织,皮肤,主动脉和肺。通过原位杂交,我们发现强烈的I型胶原蛋白和弹性蛋白mRNA表达仅限于出生后的短暂时期。尽管存在一些器官特异性差异,但这两种硬化蛋白的mRNA丰度随着时间的推移而急剧减少。因此,幼龄动物(60天)和老年动物(720天)的大部分间充质细胞似乎处于静止状态,这与这两种硬化蛋白的缓慢周转一致。我们还测量了赖氨酸氧化酶的活性,赖氨酸氧化酶在前胶原蛋白和对弹性蛋白分子的交联形成中起着至关重要的作用。在所有被调查的器官中,我们观察到一种组织依赖的活动模式。此外,本研究还着重讨论了基因基质表达在评估衰老组织赖氨酸氧化酶活性中的重要性。
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