首页> 外文期刊>European journal of human genetics: EJHG >A rare variant in the osteoarthritis-associated locus GDF5 is functional and reveals a site that can be manipulated to modulate GDF5 expression
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A rare variant in the osteoarthritis-associated locus GDF5 is functional and reveals a site that can be manipulated to modulate GDF5 expression

机译:骨关节炎相关基因座GDF5中的一种罕见变体具有功能,并揭示了一个可调控GDF5表达的位点

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摘要

Osteoarthritis (OA) is a polygenic disease characterized by cartilage loss, with the single-nucleotide polymorphism (SNP) rs143383 (C/T) influencing OA susceptibility across a range of ethnic groups. The SNP resides within the 50-UTR of the growth and differentiation factor 5 gene (GDF5), with the OA-associated T-allele mediating reduced GDF5 expression. As GDF5 codes for a cartilage anabolic protein, this reduced expression may explain why the T-allele of rs143383 is an OA risk factor. Our deep sequencing of GDF5 identified a C/A transversion located 41 bp relative to the gene's transcription start site. This promoter variant is predicted to affect transcription factor binding and it may therefore highlight a regulatory site that could be exploited to manipulate GDF5 expression and alleviate the detrimental effect mediated by the T-allele of rs143383. Here, we describe our functional assessment of the 41 bp variant. Using reporter constructs we demonstrated that the transversion leads to increased gene expression to such a degree that the A-allele is able to compensate for the reduced expression mediated by the T-allele of rs143383. Using electrophoretic mobility shift assays we identified YY1 as a trans-acting factor that differentially binds to the alleles of the 41 bp variant, with more avid binding to allele A. Knockdown of YY1 led to a significant reduction in GDF5 expression, supporting YY1 as a GDF5 activator. In conclusion, we demonstrated that the 41 bp variant is functional and we have identified a regulatory region of GDF5 that can be exploited to overcome the OA genetic deficit mediated by the T-allele of rs143383.
机译:骨关节炎(OA)是一种以软骨丧失为特征的多基因疾病,单核苷酸多态性(SNP)rs143383(C / T)影响着各个种族的OA易感性。 SNP位于生长和分化因子5基因(GDF5)的50-UTR范围内,而与OA相关的T等位基因介导了降低的GDF5表达。由于GDF5编码软骨合成代谢蛋白,这种减少的表达可能可以解释为什么rs143383的T等位基因是OA的危险因素。我们对GDF5的​​深度测序确定了相对于基因转录起始位点41 bp的C / A转化。预测该启动子变体会影响转录因子结合,因此它可能会突出一个调控位点,可利用该调控位点来操纵GDF5表达并减轻rs143383的T等位基因介导的有害作用。在这里,我们描述了41 bp变异的功能评估。使用报道基因构建体,我们证明了颠换导致基因表达增加到这样的程度,使得A等位基因能够补偿由rs143383的T等位基因介导的减少的表达。使用电泳迁移率变动分析法,我们确定YY1为差异结合41 bp变体等位基因的反式作用因子,与A等位基因A的结合更紧密。 GDF5激活剂。总之,我们证明了41 bp的变体是有功能的,并且我们确定了GDF5的​​调控区,可以利用该区来克服由rs143383的T等位基因介导的OA遗传缺陷。

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