Liao Yuping, Zhang Feng, Yang Fang, Huang Shijin, Su Sha, Tan Xuemei, Zhong Linlin, Deng Lingjie, Pang Lihong
Department of Prenatal Diagnosis, The First Affiliated Hospital of Guangxi Medical University, Nanning, Guangxi, China.
Center of Reproductive Medicine, Seven Affiliated Hospital of Guangxi Medical University (Wuzhou Gongren Hospital), Wuzhou, Guangxi, China.
PLoS One. 2024 Aug 1;19(8):e0306043. doi: 10.1371/journal.pone.0306043. eCollection 2024.
Haemoglobin H (HbH) disease is caused by a disorder of α-globin synthesis, and it results in a wide range of clinical symptoms. M6A methylation modification may be one of the mechanisms of heterogeneity. Therefore, this article explored the role of methyltransferase like 16 (METTL16) in HbH disease.
The results of epigenetic transcriptome microarray were analysed and verified through bioinformatic methods and qRT-PCR, respectively. The overexpression or knock down of METTL16 in K562 cells was examined to determine its role in reactive oxygen species (ROS), cell cycle processes or iron overload. YTH domain family protein 3 (YTHDF3) was knocked down in K562 cells and K562 cells overexpressing METTL16 via siRNA to investigate its function. In addition, haemoglobin expression was detected through benzidine staining. qRT-PCR, WB, methylated RNA Immunoprecipitation (MeRIP) and (RNA Immunoprecipitation) RIP experiments were conducted to explore the mechanism of intermolecular interaction.
METTL16, YTHDF3 and solute carrier family 5 member 3 (SLC5A3) mRNA and the methylation level of SLC5A3 mRNA were downregulated in HbH patients. Insulin-like growth factor 2 mRNA-binding protein 3 (IGF2BP3) mRNA expression was negatively correlated with HGB content among patients with HbH-CS disease. Overexpression of METTL16 increased ROS and intracellular iron contents in K562 cells, changed the K562 cell cycle, reduced hemin-induced haemoglobin synthesis, increased the expressions of SLC5A3 and HBG and increased SLC5A3 mRNA methylation levels. Knockdown of METTL16 reduced ROS and intracellular iron contents in K562 cells. Hemin treatment of K562 cells for more than 14 days reduced the protein expressions of METTL16 and SLC5A3 and SLC5A3 mRNA methylation levels. Knockdown of YTHDF3 rescued the intracellular iron content changes induced by the overexpression of METTL16. The RIP experiment revealed that SLC5A3 mRNA can be enriched by METTL16 antibody.
METTL16 may affect the expression of SLC5A3 by changing its m6A modification level and regulating ROS synthesis, intracellular iron and cycle of red blood cells. Moreover, METTL16 possibly affects the expression of haemoglobin through IGF2BP3, which regulates the clinical phenotype of HbH disease.
血红蛋白H(HbH)病由α-珠蛋白合成紊乱引起,会导致一系列临床症状。m6A甲基化修饰可能是导致异质性的机制之一。因此,本文探讨了甲基转移酶样16(METTL16)在HbH病中的作用。
分别通过生物信息学方法和qRT-PCR分析并验证表观遗传转录组微阵列的结果。检测K562细胞中METTL16的过表达或敲低情况,以确定其在活性氧(ROS)、细胞周期进程或铁过载中的作用。通过小干扰RNA(siRNA)在K562细胞和过表达METTL16的K562细胞中敲低YTH结构域家族蛋白3(YTHDF3),以研究其功能。此外,通过联苯胺染色检测血红蛋白表达。进行qRT-PCR、蛋白质免疫印迹法(WB)、甲基化RNA免疫沉淀(MeRIP)和RNA免疫沉淀(RIP)实验,以探索分子间相互作用的机制。
HbH患者中METTL16、YTHDF3和溶质载体家族5成员3(SLC5A3)的mRNA以及SLC5A3 mRNA的甲基化水平均下调。在HbH-CS病患者中,胰岛素样生长因子2 mRNA结合蛋白3(IGF2BP3)的mRNA表达与血红蛋白(HGB)含量呈负相关。METTL16的过表达增加了K562细胞中的ROS和细胞内铁含量,改变了K562细胞周期,减少了血红素诱导的血红蛋白合成,增加了SLC5A3和血红蛋白G(HBG)的表达,并提高了SLC5A3 mRNA的甲基化水平。敲低METTL16降低了K562细胞中的ROS和细胞内铁含量。用血红素处理K562细胞超过14天可降低METTL16和SLC5A3的蛋白表达以及SLC5A3 mRNA的甲基化水平。敲低YTHDF3可挽救因METTL16过表达诱导的细胞内铁含量变化。RIP实验表明,SLC5A3 mRNA可被METTL16抗体富集。
METTL16可能通过改变SLC5A3的m6A修饰水平并调节ROS合成、细胞内铁和红细胞周期来影响SLC5A3的表达。此外,METTL16可能通过IGF2BP3影响血红蛋白的表达,从而调节HbH病的临床表型。