Changes in DNMT1 expression as a marker of epigenetic regulation disturbanses in multiple sclerosis patients

Evgenia A. Tsymbalova, E. А. Chernyavskaya, Darja Е. Ryzhkova, Gennady N. Bisaga, Irina N. Abdurasulova, V. I. Lioudyno
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Abstract

BACKGROUND: Multiple sclerosis is a chronic neurodegenerative autoimmune disease characterized by the presence of foci of inflammation and demyelination in the central nervous system. The initiation of pathological processes in multiple sclerosis is caused by a complex interaction of genetic factors, unfavorable environmental factors and epigenetic influences. Progressive neurological symptoms caused by axonal conduction disorders, axonal death and neurodestruction lead to a significant decreased patients’ quality of life and disability. The search for a new markers to improve diagnostic and therapeutic methods, including taking into account the genetic background and epigenetic interactions, is an urgent task. AIM: The work was aimed to study the changes in DNMT1 mRNA expression in multiple sclerosis patients with different disease duration, to analyze methylation of DNMT1 promoter, and compare the changes in the level of DNMT1 expression with the homocysteine content in the blood, and the presence of polymorphic variants in genes coding the key folate cycle enzymes. MATERIALS AND METHODS: The level of DNMT1 mRNA expression in peripheral mononuclear blood cells was assessed by reversed transcription followed by polymerase chain reaction. Fluorescent polymerase chain reaction followed by methyl-sensitive analysis of high-resolution melting curves was used to analyze methylation of the DNMT1 promoter. The content of homocysteine in the blood was determined by chemiluminescence immunoassay. The real-time polymerase chain reaction was used for genotyping by polymorphism of folate cycle genes; the fluorescent probes with the LNA modifications were used to discriminate alleles. RESULTS: It has been shown that in multiple sclerosis patients, including those at the onset of the disease, the level of DNMT1 mRNA expression is significantly lower than in the control group. No relationship was found between the decrease in DNMT1 expression and the level of promoter methylation. Strong positive relationship between the level of DNMT1 mRNA expression and homocysteine content in patients with multiple sclerosis and the combined effects of the genotypes of MTR A2756G and MTHFR C677T polymorphism on the expression of DNMT1 have been shown. These findings suggest that genetically determined features of folate metabolism may contribute to the disruption of epigenetic regulation in multiple sclerosis. CONCLUSIONS: The obtained results indicate the promise of research aimed to identifying the factors causing epigenetic changes in multiple sclerosis. Studying the mechanisms of the folate cycle genes polymorphic variants contribution to the pathogenesis of multiple sclerosis could be one of the possible ways to improve diagnostic and therapeutic approaches.
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DNMT1 表达的变化是多发性硬化症患者表观遗传调控紊乱的标志物
背景:多发性硬化症是一种慢性神经退行性自身免疫性疾病,其特征是中枢神经系统存在炎症和脱髓鞘病灶。多发性硬化症病理过程的起因是遗传因素、不利环境因素和表观遗传影响的复杂相互作用。由轴突传导障碍、轴突死亡和神经毁损引起的进行性神经症状会显著降低患者的生活质量并导致残疾。寻找新的标记物以改进诊断和治疗方法,包括考虑遗传背景和表观遗传学的相互作用,是一项紧迫的任务。目的:研究不同病程的多发性硬化症患者 DNMT1 mRNA 表达的变化,分析 DNMT1 启动子的甲基化情况,比较 DNMT1 表达水平的变化与血液中同型半胱氨酸含量的关系,以及叶酸循环关键酶编码基因是否存在多态性变异。材料与方法:外周单核细胞中 DNMT1 mRNA 的表达水平通过反转录后聚合酶链反应进行评估。利用荧光聚合酶链反应和高分辨率熔解曲线的甲基敏感分析来分析 DNMT1 启动子的甲基化情况。血液中的同型半胱氨酸含量是通过化学发光免疫测定法测定的。利用实时聚合酶链反应对叶酸循环基因的多态性进行基因分型;利用 LNA 修饰的荧光探针来区分等位基因。结果:研究表明,多发性硬化症患者(包括发病初期患者)的 DNMT1 mRNA 表达水平明显低于对照组。在 DNMT1 表达量减少与启动子甲基化水平之间没有发现任何关系。多发性硬化症患者的 DNMT1 mRNA 表达水平与同型半胱氨酸含量之间存在密切的正相关关系,MTR A2756G 和 MTHFR C677T 多态性基因型对 DNMT1 的表达具有联合影响。这些研究结果表明,叶酸代谢的基因决定特征可能会导致多发性硬化的表观遗传调控紊乱。结论:研究结果表明,旨在确定导致多发性硬化症表观遗传变化的因素的研究大有可为。研究叶酸循环基因多态性变异对多发性硬化症发病机制的影响,可能是改进诊断和治疗方法的途径之一。
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