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Genetic mapping with multiple levels of phenotypic information reveals determinants of lymphocyte glucocorticoid sensitivity

机译:具有多个表型信息水平的遗传作图揭示了淋巴细胞糖皮质激素敏感性的决定因素

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Clinical response to glucocorticoids, steroid hormones widely used as pharmaceuticals, varies extensively in that many individuals (~30%) show a weak response to treatment. Although little is known about the molecular basis of this variation, regulatory polymorphisms are likely to play a key role given that glucocorticoids act largely through activation of a transcription factor, the glucocorticoid receptor. In an effort to characterize the molecular basis of variation in glucocorticoid sensitivity, we measured in vitro lymphocyte glucocorticoid sensitivity and transcriptome-wide response to glucocorticoids in peripheral-blood mononuclear cells from African American healthy donors. We found that variation in lymphocyte glucocorticoid sensitivity was correlated with transcriptional response at 27 genes (false-discovery rate 0.1). Furthermore, a genome-wide association scan revealed a quantitative trait locus (QTL) for lymphocyte glucocorticoid sensitivity (rs11129354, p = 4 × 10-8); it was also associated with transcriptional response at multiple genes, including many (14/27) where transcriptional response was correlated with lymphocyte glucocorticoid sensitivity. Using allelic-imbalance assays, we show that this QTL is a glucocorticoid-dependent cis-regulatory polymorphism for RBMS3, which encodes an RNA-binding protein known as a tumor suppressor. We found that siRNA-mediated knockdown of RBMS3 expression increased cellular proliferation in PBMCs, consistent with the role of the gene as a negative regulator of proliferation. We propose that differences in lymphocyte glucocorticoid sensitivity reflect variation in transcriptional response, which is influenced by a glucocorticoid-dependent regulatory polymorphism that acts in cis relative to RBMS3 and in trans to affect the transcriptional response of multiple distant genes.
机译:对糖皮质激素(类固醇激素,广泛用作药物)的临床反应差异很大,因为许多人(〜30%)对治疗的反应较弱。尽管对这种变异的分子基础知之甚少,但鉴于糖皮质激素在很大程度上通过激活糖皮质激素受体的转录因子而发挥作用,因此调控多态性可能起着关键作用。为了描述糖皮质激素敏感性变化的分子基础,我们测量了来自非洲裔美国健康捐献者外周血单个核细胞中的体外淋巴细胞糖皮质激素敏感性和转录组范围内对糖皮质激素的反应。我们发现淋巴细胞糖皮质激素敏感性的变化与27个基因的转录反应相关(错误发现率<0.1)。此外,全基因组关联扫描显示了对淋巴细胞糖皮质激素敏感性的定量性状基因座(QTL)(rs11129354,p = 4×10-8);它也与多种基因的转录反应有关,包括许多(14/27),其中转录反应与淋巴细胞糖皮质激素敏感性相关。使用等位基因不平衡分析,我们显示该QTL是RBMS3的糖皮质激素依赖性顺式多态性,它编码称为肿瘤抑制子的RNA结合蛋白。我们发现,siRNA介导的RBMS3表达的敲低增加了PBMC中的细胞增殖,这与该基因作为增殖的负调节剂的作用一致。我们提出,淋巴细胞对糖皮质激素敏感性的差异反映了转录反应的变化,这受糖皮质激素依赖性调节多态性的影响,该多态性在顺式相对于RBMS3的作用下,反式影响多个远处基因的转录反应。

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