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锌水平与DNA甲基化的关联及其影响:一项系统综述。

Association of zinc level with DNA methylation and its consequences: A systematic review.

作者信息

Azimi Ziauddin, Isa Mohamad Rodi, Khan Jesmine, Wang Seok Mui, Ismail Zaliha

机构信息

Department of Biochemistry and Molecular Medicine, Faculty of Medicine, Universiti Teknologi MARA, 47000, Sungai Buloh Selangor Malaysia.

Department of Public Health Medicine, Faculty of Medicine, Universiti Teknologi MARA, 47000, Sungai Buloh Selangor Malaysia.

出版信息

Heliyon. 2022 Sep 28;8(10):e10815. doi: 10.1016/j.heliyon.2022.e10815. eCollection 2022 Oct.

Abstract

BACKGROUND

DNA methylation is an effective epigenetic process that is frequently linked to changes in gene expression. Zinc is a vital micronutrient that plays a crucial role in DNA methylation. Therefore, abnormal zinc levels may cause aberrant DNA methylation and other diseases.

OBJECTIVES

To investigate the influence of zinc on gene-specific and global DNA methylation in humans and rodents, their tissues and their cells.

METHOD

Systematic literature searches were conducted using Medline, Scopus, Google Scholar, and Web of Science databases. Studies that met the inclusion criteria and were published in English language were included. Data including the first author, sample size, subjects, targeted genes, tissue types or cells analysed, zinc level, molecular techniques, DNA methylation outcomes, and consequences were extracted.

RESULTS

From a total of 2360 articles screened by title and abstract, 15 met the inclusion criteria. Qualitative analysis indicates that there are associations between zinc deficiency and gene-specific hypomethylation in humans and between zinc deficiency and hypermethylation in rodents. Zinc did not influence LINE-1 methylation in humans. Depending on cell type, zinc could have a positive or negative effect on global methylation in humans and rodents. As predicted, in general, gene expression was elevated by DNA hypomethylation and the corresponding protein levels were also upregulated. However, some studies showed that zinc deficiency led to reduced gene expression or no alteration in mRNA levels and corresponding protein levels.

CONCLUSION

Our study shows links between zinc levels and DNA methylation. However, greater significance may be achieved if more than one independent investigator analyses the same set of genes in the same cell type. Therefore, gene-cell and animal-specific investigations are recommended to reduce variability and allow comparisons across studies.

摘要

背景

DNA甲基化是一种有效的表观遗传过程,常与基因表达变化相关。锌是一种重要的微量营养素,在DNA甲基化中起关键作用。因此,锌水平异常可能导致DNA甲基化异常及其他疾病。

目的

研究锌对人类和啮齿动物及其组织和细胞中基因特异性和全基因组DNA甲基化的影响。

方法

使用Medline、Scopus、谷歌学术和科学网数据库进行系统的文献检索。纳入符合纳入标准且以英文发表的研究。提取的数据包括第一作者、样本量、研究对象、目标基因、分析的组织类型或细胞、锌水平、分子技术、DNA甲基化结果及影响。

结果

通过标题和摘要筛选出的2360篇文章中,15篇符合纳入标准。定性分析表明,锌缺乏与人类基因特异性低甲基化以及锌缺乏与啮齿动物高甲基化之间存在关联。锌对人类LINE-1甲基化无影响。根据细胞类型,锌可能对人类和啮齿动物的全基因组甲基化产生正向或负向影响。如预期的那样,一般来说,DNA低甲基化会使基因表达升高,相应的蛋白质水平也会上调。然而,一些研究表明,锌缺乏会导致基因表达降低或mRNA水平及相应蛋白质水平无变化。

结论

我们的研究表明锌水平与DNA甲基化之间存在联系。然而,如果有不止一名独立研究人员对同一细胞类型中的同一组基因进行分析,可能会得出更有意义的结果。因此,建议进行基因-细胞和动物特异性研究,以减少变异性并便于跨研究进行比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1dd/9530842/e0c26e3fe7d4/gr1.jpg

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