Shariati Laleh, Modarressi Mohammad Hossein, Tabatabaiefar Mohammad Amin, Kouhpayeh Shirin, Hejazi Zahra, Shahbazi Mansoureh, Sabzehei Faezeh, Salehi Mansoor, Khanahmad Hossein
Applied Physiology Research Center, Cardiovascular Research Institute, Isfahan University of Medical Sciences, Isfahan, Iran.
Isfahan Cardiovascular Research Center, Cardiovascular Research Institute, Isfahan University of Medical Sciences, Isfahan, Iran.
J Cell Biochem. 2019 May;120(5):8438-8446. doi: 10.1002/jcb.28130. Epub 2018 Dec 16.
Elevation of hemoglobin F (HbF) ameliorates symptoms of β-thalassemia, as a common autosomal recessive disorder. In this study, the ability of an engineered zinc-finger nuclease (ZFN) system was assesed to disrupt the KLF1 gene to inhibit the γ to β hemoglobin switching in K562 cells. This study was performed using a second generation integration-deficient lentiviral vector assigned to transient gene targeting. The sequences coding for zinc finger protein arrays were designed and subcloned in TDH plus as a transfer vector. Transduction of K562 cells was performed with the integrase minus lentivirus containing ZFN. The indel percentage of the transducted cells with lentivirus containing ZFN was about 29%. Differentiation of K562 cell line into erythroid cell lineage was induced with cisplatin concentration of 15 µg/mL. After differentiation, γ-globin and HbF expression were evaluated using real-time reverse-transcription polymerase chain reaction and hemoglobin electrophoresis methods. The levels of γ-globin messenger RNA were nine-fold higher in the ZFN treated cells compared with untreated cells 5 days after differentiation. Hemoglobin electrophoresis method showed the same results for HbF level measurement. Application of the ZFN tool to induce KLF1 gene mutation in adult erythroid progenitors might be a candidate to stimulate HbF expression in β-thalassemia patients.
血红蛋白F(HbF)水平升高可改善β地中海贫血(一种常见的常染色体隐性疾病)的症状。在本研究中,评估了一种工程化锌指核酸酶(ZFN)系统破坏KLF1基因以抑制K562细胞中γ向β血红蛋白转换的能力。本研究使用了第二代整合缺陷型慢病毒载体进行瞬时基因靶向。设计编码锌指蛋白阵列的序列,并将其亚克隆到TDH plus中作为转移载体。用含有ZFN的整合酶缺陷型慢病毒对K562细胞进行转导。含有ZFN的慢病毒转导细胞的插入缺失百分比约为29%。用浓度为15µg/mL的顺铂诱导K562细胞系向红系细胞谱系分化。分化后,使用实时逆转录聚合酶链反应和血红蛋白电泳方法评估γ珠蛋白和HbF的表达。分化5天后,ZFN处理的细胞中γ珠蛋白信使RNA水平比未处理的细胞高9倍。血红蛋白电泳方法对HbF水平测量显示了相同的结果。应用ZFN工具在成人红系祖细胞中诱导KLF1基因突变可能是刺激β地中海贫血患者HbF表达的一个候选方法。