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Carriers of a novel frame-shift insertion in WNT16a possess elevated pancreatic expression of TCF7L2

机译:WNT16a中新型移码插入的载体具有TCF7L2的胰腺表达升高

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Background The discovery of TCF7L2 as a global type 2 diabetes (T2D) gene has sparked investigations to explore the clinical utility of its variants for guiding the development of new diagnostic and therapeutic strategies. However, interpreting the resulting associations into function still remains unclear. Canonical Wnt signaling regulates β-catenin and its binding with TCF7L2, which in turn is critical for the production of glucagon-like peptide-1 (GLP-1). This study examines the role of a novel frame-shift insertion discovered in a conserved region of WNT16a, and it is proposed that this mutation affects T2D susceptibility in conjunction with gene variants in TCF7L2. Results Our results predicted that the insertion would convert the upstream open reading frame in the Wnt16a mRNA to an alternative, in-frame translation initiation site, resulting in the prevention of nonsense-mediated decay, leading to a consequent stabilization of the mutated WNT16a message. To examine the role of Wnt16a in the Wnt signaling pathway, DNA and serum samples from 2,034 individuals (48% with T2D) from the Sikh Diabetes Study were used in this investigation. Prevalence of Wnt16a insertion did not differ among T2D cases (33%) and controls (32%). However, there was a 3.2 fold increase in Wnt16a mRNA levels in pancreatic tissues from the insertion carriers and a significant increase (70%, p Conclusions Our results suggest synergistic effects of WNT16a insertion and the at-risk ‘T’ allele of TCF7L2 (rs7903146) for elevating the expression of TCF7L2 in human pancreas which may affect the regulation of downstream target genes involved in the development of T2D through Wnt/β-catenin/TCF7L2 signaling pathway. However, further studies would be needed to mechanistically link the two definitively.
机译:背景技术TCF7L2作为全球2型糖尿病(T2D)基因的发现引发了许多研究,以探索其变体的临床实用性,以指导新的诊断和治疗策略的发展。但是,将产生的关联解释为功能仍然不清楚。规范的Wnt信号传导调节β-catenin及其与TCF7L2的结合,这反过来对于胰高血糖素样肽1(GLP-1)的产生至关重要。这项研究检查了WNT16a保守区中发现的新型移码插入的作用,并提出该突变与TCF7L2中的基因变异一起影响T2D易感性。结果我们的结果预测,该插入将把Wnt16a mRNA中的上游开放阅读框转化为一个备选的框内翻译起始位点,从而防止了无义介导的衰变,从而导致突变的WNT16a信息的稳定。为了研究Wnt16a在Wnt信号通路中的作用,本次研究使用了来自锡克教糖尿病研究的2,034个人(48%的T2D患者)的DNA和血清样本。 Wnt16a插入的患病率在T2D病例(33%)和对照(32%)之间没有差异。但是,胰腺组织中插入载体携带的Wnt16a mRNA水平增加了3.2倍,并且显着增加(70%,p结论)我们的结果表明,WNT16a插入与TCF7L2的高风险“ T”等位基因具有协同作用(rs7903146 ),以提高TCF7L2在人胰腺中的表达,这可能通过Wnt /β-catenin/ TCF7L2信号通路影响下游靶基因对T2D发育的调控,但仍需要进一步的研究以机械方式将两者联系起来。

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