首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >A Locus on Chromosome 7 Determines Dramatic Up-Regulation of Osteopontin in Dystrophic Cardiac Calcification in Mice
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A Locus on Chromosome 7 Determines Dramatic Up-Regulation of Osteopontin in Dystrophic Cardiac Calcification in Mice

机译:7号染色体上的一个位点确定营养不良性钙化在小鼠中骨桥蛋白的戏剧性上调。

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摘要

Calcification of necrotic tissue is frequently observed in chronic inflammation and atherosclerosis. A similar response of myocardium to injury, referred to as dystrophic cardiac calcinosis (DCC), occurs in certain inbred strains of mice. We now examined a putative inhibitor of calcification, osteopontin, in DCC after transdiaphragmal myocardial freeze-thaw injury. Strong osteopontin expression was found co-localizing with calcification in DCC-susceptible strain C3H/HeNCrlBr, which exhibited low osteopontin plasma concentrations otherwise. Osteopontin mRNA induction was 20-fold higher than in resistant strain C57BL/6NCrlBr, which exhibited fibrous lesions without calcification and little osteopontin expression. Sequence analysis identified several polymorphisms in calcium-binding and phosphorylation sites in osteopontin cDNA. Their potential relevance for DCC was tested in congenic mice, which shared the osteopontin locus with C57BL/6NCrlBr, but retained a chromosomal segment from C3H/HeNCrlBr on proximal chromosome 7. These mice exhibited strong osteopontin expression and DCC comparable to C3H/HeNCrlBr suggesting that a >trans-activator of osteopontin transcription residing on chromosome 7 and not the osteopontin gene on chromosome 5 was responsible for the genetic differences in osteopontin expression. A known osteopontin activator encoded by a gene on chromosome 7 is the transforming growth factor-β1, which was more induced (3.5×) in C3H/HeNCrlBr than in C57BL/6NCrlBr mice.
机译:在慢性炎症和动脉粥样硬化中经常观察到坏死组织的钙化。某些自交系小鼠发生心肌对损伤的类似反应,称为营养不良性心脏钙化病(DCC)。我们现在检查了横dia肌心肌冻融损伤后DCC中的钙化抑制剂骨桥蛋白。在DCC易感株C3H / HeNCrlBr中发现强骨桥蛋白表达与钙化共定位,否则其显示出低骨桥蛋白血浆浓度。骨桥蛋白mRNA诱导比抗性菌株C57BL / 6NCrlBr高20倍,后者显示出纤维化病变,无钙化且骨桥蛋白表达很少。序列分析鉴定了骨桥蛋白cDNA中钙结合和磷酸化位点的几种多态性。在与C57BL / 6NCrlBr共享骨桥蛋白基因座,但在近端7号染色体上保留了C3H / HeNCrlBr染色体片段的同基因小鼠中测试了它们与DCC的潜在相关性。这些小鼠表现出与C3H / HeNCrlBr相当的强骨桥蛋白表达和DCC。骨桥蛋白转录的>反式激活子而不是5号染色体上的骨桥蛋白基因是造成骨桥蛋白表达遗传差异的原因。由7号染色体上的基因编码的已知骨桥蛋白活化剂是转化生长因子-β1,与C57BL / 6NCrlBr小鼠相比,C3H / HeNCrlBr诱导的转化生长因子-β1的诱导率更高(3.5倍)。

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