Alireza Paniri, Mohammad Mahdi Hosseini, Sadegh Fattahi, Galia Amiribozorgi, Mohsen Asouri, Mansooreh Maadi, Nima Motamed, Farhad Zamani, Haleh Akhavan-Niaki
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This study assessed the role of specific genetic variations in MetS susceptibility and their impact on clinical manifestations.</p>\n </section>\n \n <section>\n \n <h3> Method</h3>\n \n <p>In this study, a genotype–phenotype assessment was performed for IKZF3 (rs907091), microRNA-let-7a-2 (rs1143770), and lncRNA-CDKN2B-AS1 (rs1333045).</p>\n </section>\n \n <section>\n \n <h3> Results</h3>\n \n <p>Analyses indicate that while rs907091 and rs1143770 may have potential associations with MetS susceptibility and an increased risk of atherosclerosis and diabetes, there is an observed trend suggesting that the rs1333045 CC genotype may be associated with a decreased risk of MetS. The genotypes and allele frequencies of rs1333045 were significantly different between studied groups (OR = 0.56, 95% CI 0.38–0.81, <i>p</i> = 0.002, and OR = 0.71, 95% CI 0.55–0.92, <i>p</i> = 0.008), with the CC genotype displaying increased levels of HDL. Furthermore, the rs907091 TT genotype was associated with increased triglyceride, cholesterol, and HOMA index in MetS patients. Subjects with the CC genotype for rs1143770 had higher HbA1c and BMI. In silico analyses illustrated that rs907091 C remarkably influences the secondary structure and the target site of a broad spectrum of microRNAs, especially hsa-miR-4497. 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引用次数: 0
摘要
背景和目的:代谢综合征(MetS)会增加动脉粥样硬化和糖尿病的风险,但目前还没有公认的预测指标。本研究评估了特定基因变异在 MetS 易感性中的作用及其对临床表现的影响:本研究对IKZF3(rs907091)、microRNA-let-7a-2(rs1143770)和lncRNA-CDKN2B-AS1(rs1333045)进行了基因型-表型评估:分析表明,rs907091 和 rs1143770 可能与 MetS 易感性及动脉粥样硬化和糖尿病风险增加有关,但观察到的趋势表明,rs1333045 CC 基因型可能与 MetS 风险降低有关。rs1333045的基因型和等位基因频率在研究组之间存在显著差异(OR = 0.56,95% CI 0.38-0.81,p = 0.002;OR = 0.71,95% CI 0.55-0.92,p = 0.008),CC基因型显示高密度脂蛋白水平升高。此外,rs907091 TT 基因型与 MetS 患者甘油三酯、胆固醇和 HOMA 指数的升高有关。具有 rs1143770 CC 基因型的受试者 HbA1c 和体重指数较高。硅学分析表明,rs907091 C 显著影响多种 microRNA 的二级结构和靶位点,尤其是 hsa-miR-4497。此外,rs1333045 还为 7 种不同的 microRNA 创建了一个结合位点:结论:对其他人群的进一步研究可能有助于证实这些 SNPs 是评估 MetS 风险的有用预测标记。
Genetic variations in IKZF3, LET7-a2, and CDKN2B-AS1: Exploring associations with metabolic syndrome susceptibility and clinical manifestations
Background and aim
Metabolic syndrome (MetS) increases the risk of atherosclerosis and diabetes, but there are no approved predictive markers. This study assessed the role of specific genetic variations in MetS susceptibility and their impact on clinical manifestations.
Method
In this study, a genotype–phenotype assessment was performed for IKZF3 (rs907091), microRNA-let-7a-2 (rs1143770), and lncRNA-CDKN2B-AS1 (rs1333045).
Results
Analyses indicate that while rs907091 and rs1143770 may have potential associations with MetS susceptibility and an increased risk of atherosclerosis and diabetes, there is an observed trend suggesting that the rs1333045 CC genotype may be associated with a decreased risk of MetS. The genotypes and allele frequencies of rs1333045 were significantly different between studied groups (OR = 0.56, 95% CI 0.38–0.81, p = 0.002, and OR = 0.71, 95% CI 0.55–0.92, p = 0.008), with the CC genotype displaying increased levels of HDL. Furthermore, the rs907091 TT genotype was associated with increased triglyceride, cholesterol, and HOMA index in MetS patients. Subjects with the CC genotype for rs1143770 had higher HbA1c and BMI. In silico analyses illustrated that rs907091 C remarkably influences the secondary structure and the target site of a broad spectrum of microRNAs, especially hsa-miR-4497. Moreover, rs1333045 creates a binding site for seven different microRNAs.
Conclusion
Further studies on other populations may help confirm these SNPs as useful predictive markers in assessing the MetS risk.
期刊介绍:
Journal of Clinical Laboratory Analysis publishes original articles on newly developing modes of technology and laboratory assays, with emphasis on their application in current and future clinical laboratory testing. This includes reports from the following fields: immunochemistry and toxicology, hematology and hematopathology, immunopathology, molecular diagnostics, microbiology, genetic testing, immunohematology, and clinical chemistry.