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The genetic and regulatory architecture of ERBB3-type 1 diabetes susceptibility locus

机译:ERBB3型1型糖尿病易感基因位点的遗传和调控结构

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摘要

The study aimed to explore the role of ERBB3 in type 1 diabetes (T1D). We examined whether genetic variation of ERBB3 (rs2292239) affects residual β-cell function in T1D cases. Furthermore, we examined the expression of ERBB3 in human islets, the effect of ERBB3 knockdown on apoptosis in insulin-producing INS-1E cells and the genetic and regulatory architecture of the ERBB3 locus to provide insights to how rs2292239 may confer disease susceptibility. rs2292239 strongly correlated with residual β-cell function and metabolic control in children with T1D. ERBB3 locus associated lncRNA (NONHSAG011351) was found to be expressed in human islets. ERBB3 was expressed and down-regulated by pro-inflammatory cytokines in human islets and INS-1E cells; knockdown of ERBB3 in INS-1E cells decreased basal and cytokine-induced apoptosis. Our data suggests an important functional role of ERBB3 and its potential regulators in the β-cells and may constitute novel targets to prevent β-cell destruction in T1D. © 2015 Elsevier Ireland Ltd.
机译:该研究旨在探讨ERBB3在1型糖尿病(T1D)中的作用。我们检查了ERBB3(rs2292239)的遗传变异是否影响T1D病例中的残留β细胞功能。此外,我们检查了人胰岛中ERBB3的表达,ERBB3敲低对胰岛素产生的INS-1E细胞凋亡的影响以及ERBB3基因座的遗传和调控结构,以提供有关rs2292239如何赋予疾病易感性的见解。 rs2292239与T1D儿童的残余β细胞功能和代谢控制密切相关。发现ERBB3基因座相关lncRNA(NONHSAG011351)在人胰岛中表达。 ERBB3在人类胰岛和INS-1E细胞中被促炎性细胞因子表达并下调。 INS-1E细胞中ERBB3的敲低减少了基础和细胞因子诱导的细胞凋亡。我们的数据表明,ERBB3及其潜在的调节剂在β细胞中具有重要的功能,并且可能构成预防T1D中β细胞破坏的新靶标。 ©2015爱思唯尔爱尔兰有限公司。

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