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压力超负荷诱导大鼠心脏肥大过程中胎儿纤连蛋白mRNA的积累。

Accumulation of fetal fibronectin mRNAs during the development of rat cardiac hypertrophy induced by pressure overload.

作者信息

Samuel J L, Barrieux A, Dufour S, Dubus I, Contard F, Koteliansky V, Farhadian F, Marotte F, Thiéry J P, Rappaport L

机构信息

U127 INSERM, Hopital Lariboisière, Paris, France.

出版信息

J Clin Invest. 1991 Nov;88(5):1737-46. doi: 10.1172/JCI115492.

Abstract

Cardiac pressure overload induces a shift towards the fetal form of major proteins expressed by the myocytes, and an accumulation of extracellular matrix proteins. One of them, fibronectin (FN), accumulates soon after the imposition of pressure overload. Because FN exists both as cellular FN (c-FN) locally synthesized by nonmuscle cells and as "plasma-FN" (p-FN) synthesized by the hepatocytes, the first issue of this study was to determine whether FN accumulation within the myocardium in response to pressure overload is paralleled by a local increase in mRNA. The expression of c-FN isoforms being developmentally regulated in a tissue-specific manner, the types of FN exons expressed by cardiac cells were analyzed. Pressure overload was induced in 25-d-old rats by stenosis of the thoracic aorta. Using in situ hybridization, we show that the mRNAs encoding the fetal forms of c-FN are accumulated in the interstitial tissue of fetal rat hearts but are absent in adult. 1-3 d after aortic stenosis, the fetal forms of c-FN mRNAs were found in the wall of coronary arteries and in focal areas of the myocardium. Thus nonmuscle cells and smooth muscle cells, like myocytes, do respond to pressure overload by reexpressing fetal gene transcripts.

摘要

心脏压力超负荷会导致心肌细胞表达的主要蛋白质向胎儿形式转变,并使细胞外基质蛋白积累。其中一种蛋白,纤连蛋白(FN),在压力超负荷施加后很快就会积累。由于FN既以非肌肉细胞局部合成的细胞纤连蛋白(c-FN)形式存在,又以肝细胞合成的“血浆纤连蛋白”(p-FN)形式存在,本研究的首要问题是确定压力超负荷时心肌内FN的积累是否与mRNA的局部增加平行。c-FN亚型的表达在发育过程中以组织特异性方式受到调控,因此对心脏细胞表达的FN外显子类型进行了分析。通过结扎胸主动脉在25日龄大鼠中诱导压力超负荷。使用原位杂交技术,我们发现编码胎儿形式c-FN的mRNA在胎儿大鼠心脏的间质组织中积累,但在成年大鼠中不存在。主动脉缩窄后1 - 3天,在冠状动脉壁和心肌的局部区域发现了胎儿形式的c-FN mRNA。因此,非肌肉细胞和平滑肌细胞与心肌细胞一样,确实会通过重新表达胎儿基因转录本来对压力超负荷做出反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d68/295716/9771e6322d0b/jcinvest00064-0314-a.jpg

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