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首页> 外文期刊>The Journal of Biochemistry >Significant decrease in tropoelastin gene expression in fibroblasts from a Japanese Costello syndrome patient with impaired elastogenesis and enhanced proliferation.
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Significant decrease in tropoelastin gene expression in fibroblasts from a Japanese Costello syndrome patient with impaired elastogenesis and enhanced proliferation.

机译:具有损伤的日本Costello综合征患者的成纤维细胞对成纤维细胞中的Tropoelastin基因表达的显着降低,增强增殖。

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摘要

Costello syndrome is a connective tissue disorder associated with sparse, thin, and fragmented elastic fibers in tissues. In this study we demonstrated a significant decrease in the expression of tropoelastin mRNA in fibroblasts derived from a Japanese Costello syndrome patient with impaired elastogenesis and enhanced proliferation. In contrast, there were no changes in expression of the Harvey ras (HRAS), fibrillin-1, fibulin-5, microfibril-associated glycoprotein-1 (MAGP-1), lysyl oxidase (LOX), or 67-kDa non-integrin elastin-binding protein (EBP) gene. The proliferative activity of the Costello fibroblasts was about 4-fold higher than that of the normal and pathological control ones. However, no mutations were detected in the coding region of HRAS mRNA. Transduction of the bovine tropoelastin (bTE) gene with the lentiviral vector restored the elastic fiber formation and decreased the growth rate in the Costello fibroblasts. These results strongly suggest that the defect of human tropoelastin (hTE) gene expression should induce the impaired elastogenesis and enhanced proliferation of Costello fibroblasts, and that a primary cause other than the HRAS gene mutation should contribute to the pathogenesis in the present Costello case.
机译:Costello综合征是与组织中的稀疏,薄,碎片的弹性纤维相关的结缔组织障碍。在这项研究中,我们证明了Troproelastin mRNA在衍生自日本Costello综合征患者的成纤维细胞中具有受损的弹性发生和增强增殖的成纤维细胞的表达显着降低。相反,哈维拉斯(HRAS),Fibrillin-1,纤维蛋白-5,微纤维相关糖蛋白-1(MagP-1),赖氨酸氧化酶(LOX),或67-KDA非整合素的表达没有变化。 Elastin结合蛋白(EBP)基因。 Costello成纤维细胞的增殖活性高于正​​常和病理对照组的4倍。然而,在HRAS mRNA的编码区域中未检测到突变。将牛TropoElastin(BTE)基因与慢病毒载体进行转导恢复了弹性纤维形成并降低了Costello成纤维细胞中的生长速率。这些结果强烈表明人体Tropeelastin(HTE)基因表达的缺陷应诱导损伤的弹性发生和增强的Costello成纤维细胞增强,并且除了HRAS基因突变以外的主要原因应该有助于目前的Costello病例中的发病机制。

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