Laboratory of Human Genome and Multifactorial Diseases (LR12ES07), Faculty of Pharmacy, University of Monastir, Tunisia.
Department of Clinical Hematology, CHU Farhat Hached, Sousse, Tunisia.
Gene. 2022 Aug 5;834:146648. doi: 10.1016/j.gene.2022.146648. Epub 2022 Jun 9.
MicroRNAs (miRNAs) are promising biomarkers of hematological malignancies, including acute lymphoblastic leukaemia (ALL). Recent studies revealed that miRNA single nucleotide polymorphisms (miR-SNP) modulate cancer risk by regulating various signaling pathways. However, their association with altered risk of ALL yielded inconsistent results.
This study aims to investigate the association of four miR-SNPs with altered risk of ALL risk in Tunisian, the first on North African population.
A retrospective case-control study exploring the association of miR-146a, miR-196a2, miR-499, and miR-149 SNPs in 126 ALL patients and 126 healthy controls.
Of the tested variants, significantly lower minor allele frequencies (MAF) of miR-146a C-allele and higher MAF frequency of miR-149 T-allele (P = 0.006) were seen in ALL cases. The association of miR-149 rs2292832 (Pc = 0.02), but not miR-146a rs2910164 (Pc = 0.11) persisted after correcting for multiple comparisons. Significantly reduced prevalence of miR-146a G/C genotype and higher frequency of miR-149 C/T genotype were seen in ALL cases vs. control subjects, which translated into negative association of miR-146a (rs2910164) with ALL according to the codominant and dominant models. Similarly, miR-149 (rs2292832) was positively associated with ALL according to the codominant and dominant genetic models. Three combinations comprising miR-146a/miR-196a2 GG vs CT + TT genotype combination, miR-146a/miR-499 GG vs TC + CC genotype combination, and miR-146a/miR-149 GG vs CT + TT genotype combination, were less frequent in ALL patients than in controls, and were negatively associated with the presence of ALL.
Our study suggests that miR-146a and miR-149 polymorphisms constitute biomarkers for personalized diagnosis of ALL.
MicroRNAs (miRNAs) 是血液系统恶性肿瘤(包括急性淋巴细胞白血病 (ALL))有前途的生物标志物。最近的研究表明,miRNA 单核苷酸多态性 (miR-SNP) 通过调节各种信号通路来调节癌症风险。然而,它们与 ALL 风险改变的关联结果并不一致。
本研究旨在探讨在突尼斯进行的四项 miR-SNPs 与北非人群 ALL 风险改变的关联,这是首次针对北非人群进行的研究。
一项回顾性病例对照研究,探讨了 miR-146a、miR-196a2、miR-499 和 miR-149 SNPs 在 126 例 ALL 患者和 126 例健康对照中的相关性。
在 ALL 病例中,miR-146a C 等位基因的次要等位基因频率 (MAF) 显著降低,miR-149 T 等位基因的 MAF 频率更高(P=0.006)。miR-149 rs2292832(Pc=0.02)与 ALL 相关,但 miR-146a rs2910164(Pc=0.11)在进行多重比较校正后没有相关性。在 ALL 病例中,miR-146a G/C 基因型的患病率较低,miR-149 C/T 基因型的频率较高,这表明 miR-146a(rs2910164)与 ALL 呈负相关,根据共显性和显性模型。同样,miR-149(rs2292832)根据共显性和显性遗传模型与 ALL 呈正相关。miR-146a/miR-196a2 GG 与 CT+TT 基因型组合、miR-146a/miR-499 GG 与 TC+CC 基因型组合以及 miR-146a/miR-149 GG 与 CT+TT 基因型组合这三种组合在 ALL 患者中较对照组少见,且与 ALL 的发生呈负相关。
本研究表明,miR-146a 和 miR-149 多态性构成了 ALL 个性化诊断的生物标志物。