GATA3基因3'-UTR rs1058240多态性对miRNA潜在结合的影响及其与RRMS风险的关系:生物信息学分析和病例对照研究。

IF 1.7 4区 医学 Q4 NEUROSCIENCES
International Journal of Neuroscience Pub Date : 2024-12-01 Epub Date: 2023-10-24 DOI:10.1080/00207454.2023.2272043
Shirin Anarlouei, Fatemeh Roohy, Parisa Mohamadynejad
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引用次数: 0

摘要

目的:多发性硬化症被认为是一种自身免疫性疾病,受T辅助细胞(Th)分化的影响。GATA3通过将Th细胞分化为Th2和调节性T细胞,同时抑制Th1和Th17细胞的分化,在降低MS的发展和严重程度方面发挥重要作用。考虑到rs1058240 SNP在GATA3 mRNA 3'-UTR中的功能作用,研究了靶SNP与RRMS风险的相关性。方法:从200例RRMS患者和226例健康人的全血样本中提取基因组DNA作为对照组。用RFLP-PCR技术测定了rs1058240 SNP的不同基因型。统计分析采用SPSS软件,χ2和logistic回归检验。分别使用RNAfold和RNAhybrid程序评估GATA3 mRNA二级结构的稳定性和具有不同等位基因的GATA3 miRNA的结合模式。结果:GATA3 rs1058240 G等位基因(p值=0.010,OR=1.45,CI=1.09-1.93)和GG基因型(调整后的p值 = 0.017,OR=2.27,95%CI=1.16-4.44)增加RRMS的风险,尤其是在女性中(调整后的p值 = 0.006,OR=2.99,95%CI=1.37-6.52)。生物信息学分析显示,尽管该多态性的等位基因变异对mRNA稳定性只有轻微影响(-177至-177.20),但与a等位基因相比,G等位基因显著增加了hsa-miR-337-5p、hsa-miR-4445-3p、hsa-miR-4485-3p和hsa-miR-95-3p的miRNA结合强度和miRNA mRNA热力学稳定性(ΔMFE>0)。结论:GATA3信使核糖核酸3'-UTR中rs1058240的G等位基因和GG基因型是增加RRMS易感性的危险因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of rs1058240 polymorphism in 3'-UTR of GATA3 gene on potential binding of miRNAs and its association with RRMS risk: bioinformatics analysis and case-control study.

Aim: Multiple sclerosis is believed to be an autoimmune disease that is influenced by T helper (Th) cell differentiation. GATA3 plays an important role in reducing the development and severity of MS by shifting the differentiation of Th cells to Th2 and regulatory T cells while inhibiting the differentiation of Th1 and Th17 cells. Considering the functional role of rs1058240 SNP in the 3'-UTR of GATA3 mRNA, the association of target SNP with the risk of RRMS was examined.

Methods: Genomic DNA was extracted from whole blood samples of 200 RRMS patients and 226 healthy individuals as a control group. Different genotypes of rs1058240 SNP were determined using the RFLP-PCR technique. Statistical analysis was performed using SPSS software and χ2 and logistic regression tests. The stability of GATA3 mRNA secondary structures and the binding patterns of GATA3-miRNAs with different alleles were evaluated using RNAfold and RNAhybrid programs, respectively.

Results: The results indicated that the GATA3 rs1058240 G allele (p value = 0.010, OR = 1.45, CI = 1.09-1.93) and GG genotype (adjusted p value = 0.017, OR = 2.27, 95%CI = 1.16-4.44) increased the risk of RRMS, particularly in women (adjusted p value = 0.006, OR = 2.99, 95%CI = 1.37-6.52). Bioinformatics analysis revealed that although the allelic variation of this polymorphism had only a slight effect on mRNA stability (-177 to -177.20), the G allele significantly increased miRNA binding strength and miRNA-mRNA thermodynamic stability for hsa-miR-337-5p, hsa-miR-4445-3p, hsa-miR-4485-3p, hsa-miR-95-3p (ΔMFE > 0) compared to the A allele.

Conclusion: The G allele and GG genotype of rs1058240 in GATA3 mRNA 3'-UTR were found to be risk factors for increasing the susceptibility to RRMS.

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来源期刊
CiteScore
5.10
自引率
0.00%
发文量
132
审稿时长
2 months
期刊介绍: The International Journal of Neuroscience publishes original research articles, reviews, brief scientific reports, case studies, letters to the editor and book reviews concerned with problems of the nervous system and related clinical studies, epidemiology, neuropathology, medical and surgical treatment options and outcomes, neuropsychology and other topics related to the research and care of persons with neurologic disorders.  The focus of the journal is clinical and transitional research. Topics covered include but are not limited to: ALS, ataxia, autism, brain tumors, child neurology, demyelinating diseases, epilepsy, genetics, headache, lysosomal storage disease, mitochondrial dysfunction, movement disorders, multiple sclerosis, myopathy, neurodegenerative diseases, neuromuscular disorders, neuropharmacology, neuropsychiatry, neuropsychology, pain, sleep disorders, stroke, and other areas related to the neurosciences.
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