首页> 外文期刊>Molecular pharmacology. >Restoration of human beta-globin gene expression in murine and human IVS2-654 thalassemic erythroid cells by free uptake of antisense oligonucleotides.
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Restoration of human beta-globin gene expression in murine and human IVS2-654 thalassemic erythroid cells by free uptake of antisense oligonucleotides.

机译:通过自由摄取反义寡核苷酸来恢复鼠类和人IVS2-654拟南芥红系细胞中人β-珠蛋白基因的表达。

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摘要

Correct human beta-globin mRNA has been restored in erythroid cells from transgenic mice carrying the human gene with beta-globin IVS2-654 splice mutation and from thalassemia patients with the IVS2-654/beta(E) genotype. This was accomplished in a dose- and time-dependent manner by free uptake of morpholino oligonucleotide antisense to the aberrant splice site at position 652 of intron 2 in beta-globin pre-mRNA. Under optimal conditions of oligonucleotide uptake, the maximal levels of correct human beta-globin mRNA and hemoglobin A in patients' erythroid cells were 77 and 54%, respectively. These levels of correction were equal to, if not higher than, those obtained by syringe loading of the oligonucleotide into the cells. Comparison of splicing correction results with the cellular uptake of fluorescein-labeled oligonucleotide indicated that the levels of mRNA and hemoglobin A correlate well with the nuclear localization of the oligonucleotide and the degree of erythroid differentiation of cultured cells. Similar but not as pronounced results were obtained after the oligonucleotide treatment of bone marrow cells from IVS2-654 mouse. The effectiveness of the free antisense morpholino oligonucleotide in restoration of correct splicing of IVS2-654 pre-mRNA in cultured erythropoietic cells from transgenic mice and thalassemic patients suggests the applicability of this or similar compounds in in vivo experiments and possibly in treatment of thalassemia.
机译:已从携带带有β-珠蛋白IVS2-654剪接突变的人基因的转基因小鼠和具有IVS2-654 / beta(E)基因型的地中海贫血患者的红系细胞中恢复了正确的人类β-珠蛋白mRNA。这是通过剂量依赖性和时间依赖性的方式,通过自由摄取反义的吗啉代寡核苷酸对β-珠蛋白pre-mRNA中内含子2位置652处异常剪接位点而实现的。在最佳的寡核苷酸摄取条件下,患者红细胞中正确的人β-珠蛋白mRNA和血红蛋白A的最高水平分别为77%和54%。这些校正水平等于或不高于通过注射器将寡核苷酸装载到细胞中获得的校正水平。剪接校正结果与荧光素标记的寡核苷酸的细胞摄取的比较表明,mRNA和血红蛋白A的水平与寡核苷酸的核定位和培养细胞的红系分化程度密切相关。用寡核苷酸处理来自IVS2-654小鼠的骨髓细胞后,获得了相似但不明显的结果。游离反义吗啉代寡核苷酸可有效恢复转基因小鼠和地中海贫血患者培养的造血细胞中IVS2-654 pre-mRNA的正确剪接,表明该化合物或类似化合物在体内实验以及可能在地中海贫血的治疗中的适用性。

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