Nair Sunita, Phillips Aled O, Norton Nadine, Spurlock Gillian, Williams Hywel J, Craig Kathrine J, Williams John D, Williams Nigel M, Bowen Timothy
Institute of Nephrology, School of Medicine, Cardiff University, Cardiff , Wales, UK.
J Nephrol. 2008 May-Jun;21(3):400-5.
Diabetic nephropathy is characterised by extracellular matrix (ECM) expansion, a key modulator of which is TGF-b1. Glucose-stimulated transcriptional activation of the TGF-b1 gene is an important component of the pathogenesis of nephropathy, following which latent TGF-b1 protein is synthesised. Matrix metalloproteinase 9 (MMP9) remodels the ECM and has been implicated in TGF-b1 activation. The ECM glycosaminoglycan hyaluronan (HA) influences TGF-b1 generation and can modulate its signal transduction activity; renal HA is synthesised by HA synthases HAS2 and HAS3.
We report the first screening of the genes encoding HAS2 and HAS3 for sequence variants predisposing to nephropathy in UK type 2 diabetes patients, together with the MMP9 and TGF-b1 genes. Also for the first time, we used validated DNA pools to carry out association analyses of single nucleotide polymorphisms on nephropathic and non-nephropathic cohorts from a total of 199 type 2 diabetes patients, to increase the throughput and decrease the cost of genotype analysis.
None of the 23 single nucleotide polymorphisms analysed in DNA pools were found to be associated with diabetic nephropathy. However, genotyping of alleles at the MMP9 promoter microsatellite locus D20S838 in individual genomic DNA samples supported previous evidence of association between this locus and diabetic nephropathy.
The use of DNA pooling technology increased the throughput and decreased the cost of our association analysis of nephropathy in our type 2 diabetes sample, which demonstrated sufficient sensitivity to support previous positive findings of association with a microsatellite in the MMP9 promoter region.
糖尿病肾病的特征是细胞外基质(ECM)扩张,其关键调节因子是转化生长因子-β1(TGF-β1)。葡萄糖刺激的TGF-β1基因转录激活是肾病发病机制的重要组成部分,随后合成潜伏性TGF-β1蛋白。基质金属蛋白酶9(MMP9)可重塑ECM,并与TGF-β1激活有关。ECM糖胺聚糖透明质酸(HA)影响TGF-β1的产生,并可调节其信号转导活性;肾脏HA由HA合成酶HAS2和HAS3合成。
我们首次对编码HAS2和HAS3的基因进行筛查,寻找英国2型糖尿病患者中易患肾病的序列变异,同时筛查MMP9和TGF-β1基因。同样也是首次,我们使用经过验证的DNA池对总共199例2型糖尿病患者的肾病组和非肾病组进行单核苷酸多态性的关联分析,以提高通量并降低基因分型分析的成本。
在DNA池中分析的23个单核苷酸多态性均未发现与糖尿病肾病相关。然而,在个体基因组DNA样本中对MMP9启动子微卫星位点D20S838的等位基因进行基因分型,支持了该位点与糖尿病肾病之间关联的先前证据。
DNA池技术的使用提高了我们对2型糖尿病样本中肾病关联分析的通量并降低了成本,该分析显示出足够的敏感性,以支持先前关于MMP9启动子区域微卫星关联的阳性发现。