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镉、铅和汞混合物对代谢综合征及其成分以及认知障碍的影响:基因、 microRNAs、转录因子和海绵关系

The Effects of a Mixture of Cadmium, Lead, and Mercury on Metabolic Syndrome and Its Components, as well as Cognitive Impairment: Genes, MicroRNAs, Transcription Factors, and Sponge Relationships : The Effects of a Mixture of Cadmium, Lead, and Mercury on Metabolic Syndrome and Its Components, as well as Cognitive Impairment: Genes, MicroRNAs, Transcription Factors, and Sponge Relationships.

机构信息

Department of Pharmacy, College of Pharmacy and Research Institute of Life and Pharmaceutical Sciences, Sunchon National University, Suncheon, 57922, Republic of Korea.

出版信息

Biol Trace Elem Res. 2023 May;201(5):2200-2221. doi: 10.1007/s12011-022-03343-y. Epub 2022 Jul 7.

Abstract

Converging evidence indicates heavy metal-induced genes, transcription factors (TFs), and microRNAs (miRNAs) are critical pathological components of metabolic syndrome (MetS) and cognitive impairment. Thus, our goals are to identify the interaction of mixed heavy metals (cadmium + lead + mercury) with genes, TFs, and miRNAs involved in MetS and its components, as well as cognitive impairment development. The most commonly retrieved genes for each disease were different, but essential biological pathways such as oxidative stress, altered lipoprotein metabolism, fluid shear stress and atherosclerosis, apoptosis, the IL-6 signaling pathway, and Alzheimer's disease were highlighted. The genes CASP3, BAX, BCL2, IL6, TNF, APOE, HMOX1, and IGF were found to be mutually affected by the heavy metal mixture studied, suggesting the importance of apoptosis, inflammation, lipid, heme, and glucose metabolism in MetS and cognitive impairment, as well as the potentiality of targeting these genes in prospective therapeutic intervention for these diseases. EGR2, ATF3, and NFE2L2 were noted as the most key TFs implicated in the etiology of MetS and its components, as well as cognitive impairment. We also found six miRNAs induced by studied heavy metals were the mutual miRNAs linked to MetS, its components, and cognitive impairment. In particular, we used miRNAsong to construct and verify a miRNA sponge sequence for these miRNAs. These sponges are promising molecules for the treatment of MetS and its components, as well as cognitive impairment.

摘要

越来越多的证据表明,重金属诱导的基因、转录因子(TFs)和 microRNAs(miRNAs)是代谢综合征(MetS)和认知障碍的关键病理组成部分。因此,我们的目标是确定混合重金属(镉+铅+汞)与参与 MetS 及其成分以及认知障碍发展的基因、TFs 和 miRNAs 的相互作用。每种疾病检索到的最常见基因不同,但强调了一些重要的生物学途径,如氧化应激、脂蛋白代谢改变、流体切应力和动脉粥样硬化、细胞凋亡、IL-6 信号通路和阿尔茨海默病。发现研究中混合重金属相互影响的基因 CASP3、BAX、BCL2、IL6、TNF、APOE、HMOX1 和 IGF,提示细胞凋亡、炎症、脂质、血红素和葡萄糖代谢在 MetS 和认知障碍中的重要性,以及针对这些基因进行潜在治疗干预的可能性。EGR2、ATF3 和 NFE2L2 被认为是与 MetS 及其成分以及认知障碍发病机制最相关的关键 TFs。我们还发现六种由研究中的重金属诱导的 miRNAs 是与 MetS、其成分和认知障碍相互关联的共同 miRNAs。特别是,我们使用 miRNAsong 构建并验证了这些 miRNAs 的 miRNA 海绵序列。这些海绵是治疗 MetS 及其成分以及认知障碍的有前途的分子。

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