Hendig Doris, Langmann Thomas, Kocken Sarah, Zarbock Ralf, Szliska Christiane, Schmitz Gerd, Kleesiek Knut, Götting Christian
Institut für Laboratoriums-und Transfusionsmedizin, Herz-und Diabeteszentrum Nordrhein-Westfalen, Universitätsklinik der Ruhr-Universität Bochum, Bad Oeynhausen, Germany.
Lab Invest. 2008 Dec;88(12):1303-15. doi: 10.1038/labinvest.2008.96. Epub 2008 Oct 20.
Mutations in the ABCC6 gene, encoding the multidrug resistance-associated protein 6 (MRP6), cause pseudoxanthoma elasticum (PXE). This heritable disorder leads to pathological alterations in connective tissues. The implication of MRP6 deficiency in PXE is still unknown. Moreover, nothing is known about a possible compensatory expression of other ATP binding-cassette (ABC) transporter proteins in MRP6-deficient cells. We investigated the gene expression profile of 47 ABC transporters in human dermal fibroblasts of healthy controls (n=2) and PXE patients (n=4) by TaqMan low-density array. The analysis revealed the expression of 37 ABC transporter genes in dermal fibroblasts. ABCC6 gene expression was not quantifiable in fibroblasts derived from PXE patients. Seven genes (ABCA6, ABCA9, ABCA10, ABCB5, ABCC2, ABCC9 and ABCD2) were induced, whereas the gene expression of one gene (ABCA3) was decreased, comparing controls and PXE patients (with at least twofold changes). We reanalyzed the gene expression of selected ABC transporters in a larger set of dermal fibroblasts from controls and PXE patients (n=6, each). Reanalysis showed high interindividual variability between samples, but confirmed the results obtained in the array analysis. The gene expression of ABC transporter genes, as well as lineage markers of PXE, was further examined after inhibition of ABCC6 gene expression by using specific small-interfering RNA. These experiments corroborated the observed gene expression alterations, most notably in the ABCA subclass (up to fourfold, P<0.05). We therefore conclude that MRP6-deficient dermal fibroblasts exhibit a distinct gene expression profile of ABCA transporters, potentially to compensate for MRP6 deficiency. Moreover, our results point to a function for ABCC6/MRP6 in sterol transport, as sterols are preferential regulators of ABCA transporter activity and expression. Further studies are now required to uncover the role of ABCA transporters in PXE.
编码多药耐药相关蛋白6(MRP6)的ABCC6基因突变会导致弹性假黄瘤(PXE)。这种遗传性疾病会导致结缔组织发生病理改变。MRP6缺乏在PXE中的影响尚不清楚。此外,关于MRP6缺陷细胞中其他ATP结合盒(ABC)转运蛋白是否可能存在代偿性表达也一无所知。我们通过TaqMan低密度阵列研究了健康对照者(n = 2)和PXE患者(n = 4)的人皮肤成纤维细胞中47种ABC转运蛋白的基因表达谱。分析显示在皮肤成纤维细胞中有37种ABC转运蛋白基因表达。在源自PXE患者的成纤维细胞中无法定量ABCC6基因表达。与对照者和PXE患者相比(至少有两倍变化),有7个基因(ABCA6、ABCA9、ABCA10、ABCB5、ABCC2、ABCC9和ABCD2)被诱导,而一个基因(ABCA3)的基因表达下降。我们在来自对照者和PXE患者的更大一组皮肤成纤维细胞(每组n = 6)中重新分析了所选ABC转运蛋白的基因表达。重新分析显示样本之间个体差异很大,但证实了阵列分析中获得的结果。在使用特异性小干扰RNA抑制ABCC6基因表达后,进一步检查了ABC转运蛋白基因的基因表达以及PXE的谱系标志物。这些实验证实了观察到的基因表达改变,最明显的是在ABCA亚类中(高达四倍,P<0.05)。因此,我们得出结论,MRP6缺陷的皮肤成纤维细胞表现出ABCA转运蛋白独特的基因表达谱,可能是为了补偿MRP6缺陷。此外,我们的结果表明ABCC6/MRP6在甾醇转运中起作用,因为甾醇是ABCA转运蛋白活性和表达的优先调节因子。现在需要进一步研究以揭示ABCA转运蛋白在PXE中的作用。