Wang Dongsheng, Si Si, Wang Qiang, Luo Guangcheng, Du Qin, Liang Qi, Guo Xiaolan, Zhang Guoyuan, Feng Jiafu, Leng Zhengwei
Department of Laboratory Medicine, Affiliated Hospital of North Sichuan Medical College, Nanchong, China.
Department of Blood Transfusion, Nanchong Central Hospital, Nanchong, China.
Cell Physiol Biochem. 2018;46(1):365-374. doi: 10.1159/000488436. Epub 2018 Mar 22.
BACKGROUND/AIMS: MicroRNAs (miRNAs) play a crucial role in erythropoiesis. MiR-23a∼27a∼24-2 clusters have been proven to take part in erythropoiesis via some proteins. CDC25B (cell division control Cdc2 phosphostase B) is also the target of mir-27a; whether it regulates erythropoiesis and its mechanism are unknown.
To evaluate the potential role of miR-27a during erythroid differentiation, we performed miR-27a gain- and loss-of-function experiments on hemin-induced K562 cells. We detected miR-27a expression after hemin stimulation at different time points. At the same time, the γ-globin gene also was measured via real-time PCR. According to the results of the chips, we screened the target protein of miR-27a through a dual-luciferase reporter assay and identified it via Western blot analyses. To evaluate the function of CDC25B, benzidine staining and flow cytometry were employed to detect the cell differentiation and cell cycle.
We found that miR-27a promotes hemin-induced erythroid differentiation of human K562 cells by targeting cell division cycle 25 B (CDC25B). Overexpression of miR-27a promotes the differentiation of hemin-induced K562 cells, as demonstrated by γ-globin overexpression. The inhibition of miR-27a expression suppresses erythroid differentiation, thus leading to a reduction in the γ-globin gene. CDC25B was identified as a new target of miR-27a during erythroid differentiation. Overexpression of miR-27a led to decreased CDC25B expression after hemin treatment, and CDC25B was up-regulated when miR-27a expression was inhibited. Moreover, the inhibition of CDC25B affected erythroid differentiation, as assessed by γ-globin expression.
This study is the first report of the interaction between miR-27a and CDC25B, and it improves the understanding of miRNA functions during erythroid differentiation.
背景/目的:微小RNA(miRNA)在红细胞生成中起关键作用。已证实miR-23a∼27a∼24-2簇通过某些蛋白质参与红细胞生成。细胞分裂控制Cdc2磷酸酶B(CDC25B)也是mir-27a的靶标;其是否调节红细胞生成及其机制尚不清楚。
为评估miR-27a在红系分化过程中的潜在作用,我们在血红素诱导的K562细胞上进行了miR-27a功能获得和功能丧失实验。我们在不同时间点检测了血红素刺激后miR-27a的表达。同时,通过实时PCR检测γ-珠蛋白基因。根据芯片结果,我们通过双荧光素酶报告基因检测筛选miR-27a的靶蛋白,并通过蛋白质印迹分析进行鉴定。为评估CDC25B的功能,采用联苯胺染色和流式细胞术检测细胞分化和细胞周期。
我们发现miR-27a通过靶向细胞分裂周期25 B(CDC25B)促进血红素诱导的人K562细胞红系分化。miR-27a的过表达促进了血红素诱导的K562细胞的分化,γ-珠蛋白过表达证明了这一点。miR-27a表达的抑制抑制了红系分化,从而导致γ-珠蛋白基因减少。CDC25B被鉴定为红系分化过程中miR-27a的新靶标。miR-27a的过表达导致血红素处理后CDC25B表达降低,而当miR-27a表达被抑制时,CDC25B上调。此外,通过γ-珠蛋白表达评估,CDC25B的抑制影响了红系分化。
本研究首次报道了miR-27a与CDC25B之间的相互作用,并增进了对红系分化过程中miRNA功能的理解。