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首页> 外文期刊>Journal of vascular research >Identification of differentially expressed genes in human varicose veins: involvement of matrix gla protein in extracellular matrix remodeling.
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Identification of differentially expressed genes in human varicose veins: involvement of matrix gla protein in extracellular matrix remodeling.

机译:鉴定人静脉曲张中差异表达的基因:基质gla蛋白参与细胞外基质重塑。

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摘要

This study was designed to identify the global pattern of differentially expressed genes in human varicose veins. Using suppressive subtractive hybridization, we identified overexpression of genes known to be associated with extracellular matrix remodeling, including collagen III, tissue inhibitor of metalloproteinases I, dermatopontin, matrix Gla protein (MGP) and tenascin C. Real-time polymerase chain reaction analysis confirmed the differential expression of these genes. The overexpression of MGP transcript was associated with increased MGP level in varicose veins, in particular the undercarboxylated form of the protein. Smooth muscle cells from varicose veins showed increased proliferation rate and enhanced matrix mineralization. This observation correlated with the presence of ectopic mineralization areas in the varicose vein walls. The use of warfarin, to inhibit MGP activity, or siRNA targeting MGP transcript induced a reduction in the exacerbated proliferation of varicose vein smooth muscle cells. Our results suggest that high expression of MGP in varicose veins may contribute to venous wall remodeling by affecting proliferation and mineralization processes probably through impaired carboxylation of MGP. In addition, suppressive subtractive hybridization results also produce a profile of differentially expressed genes in varicose veins, in particular extracellular matrix components. Further study of these genes will provide insights into their specific roles in the etiology of venous disease.
机译:本研究旨在确定人静脉曲张中差异表达基因的整体模式。使用抑制性消减杂交,我们发现了已知与细胞外基质重塑相关的基因的过表达,包括胶原蛋白III,金属蛋白酶I的组织抑制剂I,皮肤通透素,基质Gla蛋白(MGP)和腱糖蛋白C。实时聚合酶链反应分析证实了这些基因的差异表达。 MGP转录物的过表达与静脉曲张中MGP水平升高有关,特别是蛋白质的羧化不足形式。来自静脉曲张的平滑肌细胞显示出增加的增殖速率和增强的基质矿化。该观察结果与静脉曲张壁中异位矿化区域的存在有关。使用华法林抑制MGP活性,或靶向MGP转录本的siRNA导致静脉曲张平滑肌细胞恶化增殖的减少。我们的结果表明,MGP在静脉曲张中的高表达可能通过影响MGP的羧化作用影响增殖和矿化过程,从而有助于静脉壁重塑。另外,抑制性消减杂交结果还产生了静脉曲张中差异表达基因的概况,特别是细胞外基质成分。这些基因的进一步研究将提供其在静脉疾病的病因学中的具体作用的见解。

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