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Generation of a genomic reporter assay system for analysis of γ- and β-globin gene regulation

机译:生成用于分析γ和β珠蛋白基因调控的基因组报告基因检测系统

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摘要

A greater understanding of the regulatory mechanisms that govern γ-globin expression in humans, especially the switching from γ- to β-globin, which occurs after birth, would help to identify new therapeutic targets for patients with β-hemoglobinopathy. To further elucidate the mechanisms involved in γ-globin expression, a novel fluorescent-based cellular reporter assay system was developed. Using homologous recombination, two reporter genes, DsRed and EGFP, were inserted into a 183-kb intact human β-globin locus under the control of Gγ- or Aγ-globin promoter and β-globin promoter, respectively. The modified constructs were stably transfected into adult murine erythroleukaemic (MEL) cells and human embryonic or fetal erythroleukemic (K562) cells, allowing for rapid and simultaneous analysis of fetal and adult globin gene expression according to their developmental stage-specific expression. To demonstrate the utility of this system, we performed RNA interference (RNAi)-mediated knockdown of BCL11A in the presence or absence of known fetal hemoglobin inducers and demonstrated functional derepression of a γ-globin-linked reporter in an adult erythroid environment. Our results demonstrate that the cellular assay system represents a promising approach to perform genetic and functional genomic studies to identify and evaluate key factors associated with γ-globin gene suppression.—Chan, K. S. K., Xu, J., Wardan, H., McColl, B., Orkin, S., Vadolas, J. Generation of a genomic reporter assay system for analysis of γ- and β-globin gene regulation.
机译:对控制人类中γ-珠蛋白表达的调节机制,尤其是出生后发生的从γ-珠蛋白转换为β-珠蛋白的深入了解,将有助于为β-血红蛋白病患者确定新的治疗靶标。为了进一步阐明涉及γ-珠蛋白表达的机制,开发了一种新型的基于荧光的细胞报告基因检测系统。使用同源重组,在 G γ-或 A γ-的控制下,将两个报告基因DsRed和EGFP插入完整的183kb人β-球蛋白基因座。球蛋白启动子和β-球蛋白启动子。将修饰的构建体稳定转染到成年鼠类红白血病(MEL)细胞和人胚或胎儿红白血病(K562)细胞中,从而可以根据其发育阶段特异性表达快速而同时地分析胎儿和成年珠蛋白基因的表达。为了证明该系统的实用性,我们在存在或不存在已知胎儿血红蛋白诱导剂的情况下,进行了BCL11A的RNA干扰(RNAi)介导的敲低,并证明了在成人类红细胞环境中γ球蛋白连接的报告基因的功能降低。我们的结果表明,细胞分析系统代表了一种有前途的方法,可进行遗传和功能基因组研究,以鉴定和评估与γ-珠蛋白基因抑制相关的关键因素。—Chan,KSK,Xu,​​J.,Wardan,H.,McColl, B.,Orkin,S.,Vadolas,J。生成用于分析γ-和β-球蛋白基因调控的基因组报告基因检测系统。

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