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体内分析发育性红细胞生成和珠蛋白基因调控的模型。

An in vivo model for analysis of developmental erythropoiesis and globin gene regulation.

机构信息

2Cell and Gene Therapy Group, Murdoch Childrens Research Institute, Royal Children's Hospital, Flemington Road, Parkville, VIC, 3052, Australia.

出版信息

FASEB J. 2014 May;28(5):2306-17. doi: 10.1096/fj.13-246637. Epub 2014 Jan 17.

DOI:10.1096/fj.13-246637
PMID:24443374
Abstract

Expression of fetal γ-globin in adulthood ameliorates symptoms of β-hemoglobinopathies by compensating for the mutant β-globin. Reactivation of the silenced γ-globin gene is therefore of substantial clinical interest. To study the regulation of γ-globin expression, we created the GG mice, which carry an intact 183-kb human β-globin locus modified to express enhanced green fluorescent protein (eGFP) from the Gγ-globin promoter. GG embryos express eGFP first in the yolk sac blood islands and then in the aorta-gonad mesonephros and the fetal liver, the sites of normal embryonic hematopoiesis. eGFP expression in erythroid cells peaks at E9.5 and then is rapidly silenced (>95%) and maintained at low levels into adulthood, demonstrating appropriate developmental regulation of the human β-globin locus. In vitro knockdown of the epigenetic regulator DNA methyltransferase-1 in GG primary erythroid cells increases the proportion of eGFP(+) cells in culture from 41.9 to 74.1%. Furthermore, eGFP fluorescence is induced >3-fold after treatment of erythroid precursors with epigenetic drugs known to induce γ-globin expression, demonstrating the suitability of the Gγ-globin eGFP reporter for evaluation of γ-globin inducers. The GG mouse model is therefore a valuable model system for genetic and pharmacologic studies of the regulation of the β-globin locus and for discovery of novel therapies for the β-hemoglobinopathies.

摘要

在成年期表达胎儿 γ-珠蛋白可以通过补偿突变的 β-珠蛋白来改善 β-血红蛋白病的症状。因此,沉默的 γ-珠蛋白基因的重新激活具有重要的临床意义。为了研究 γ-珠蛋白表达的调控,我们创建了 GG 小鼠,其携带完整的 183kb 人β-珠蛋白基因座,该基因座经过修饰后可从 Gγ-珠蛋白启动子表达增强型绿色荧光蛋白(eGFP)。GG 胚胎首先在卵黄囊血岛中表达 eGFP,然后在主动脉-性腺-中肾和胎儿肝脏中表达,这些部位是正常胚胎造血的部位。eGFP 在红系细胞中的表达在 E9.5 时达到峰值,然后迅速沉默(>95%)并在成年期维持低水平,表明人类β-珠蛋白基因座的发育调控适当。在 GG 原代红系细胞中体外敲低表观遗传调节剂 DNA 甲基转移酶-1,可将培养物中 eGFP(+)细胞的比例从 41.9%增加到 74.1%。此外,用已知诱导 γ-珠蛋白表达的表观遗传药物处理红系前体细胞后,eGFP 荧光可诱导>3 倍,表明 Gγ-珠蛋白 eGFP 报告基因适合评估 γ-珠蛋白诱导剂。因此,GG 小鼠模型是研究β-珠蛋白基因座调控的遗传和药理学以及发现新型β-血红蛋白病治疗方法的有价值的模型系统。

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