Epigenome editing for targeted DNA (de)methylation: a new perspective in modulating gene expression.

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Critical Reviews in Biochemistry and Molecular Biology Pub Date : 2024-02-01 Epub Date: 2024-03-05 DOI:10.1080/10409238.2024.2320659
Karishma Seem, Simardeep Kaur, Suresh Kumar, Trilochan Mohapatra
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Abstract

Traditionally, it has been believed that inheritance is driven as phenotypic variations resulting from changes in DNA sequence. However, this paradigm has been challenged and redefined in the contemporary era of epigenetics. The changes in DNA methylation, histone modification, non-coding RNA biogenesis, and chromatin remodeling play crucial roles in genomic functions and regulation of gene expression. More importantly, some of these changes are inherited to the next generations as a part of epigenetic memory and play significant roles in gene expression. The sum total of all changes in DNA bases, histone proteins, and ncRNA biogenesis constitutes the epigenome. Continuous progress in deciphering epigenetic regulations and the existence of heritable epigenetic/epiallelic variations associated with trait of interest enables to deploy epigenome editing tools to modulate gene expression. DNA methylation marks can be utilized in epigenome editing for the manipulation of gene expression. Initially, genome/epigenome editing technologies relied on zinc-finger protein or transcriptional activator-like effector protein. However, the discovery of clustered regulatory interspaced short palindromic repeats CRISPR)/deadCRISPR-associated protein 9 (dCas9) enabled epigenome editing to be more specific/efficient for targeted DNA (de)methylation. One of the major concerns has been the off-target effects, wherein epigenome editing may unintentionally modify gene/regulatory element which may cause unintended change/harmful effects. Moreover, epigenome editing of germline cell raises several ethical/safety issues. This review focuses on the recent developments in epigenome editing tools/techniques, technological limitations, and future perspectives of this emerging technology in therapeutics for human diseases as well as plant improvement to achieve sustainable developmental goals.

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表观基因组编辑的定向 DNA(脱)甲基化:调节基因表达的新视角。
传统上,人们认为遗传是由 DNA 序列变化导致的表型变异驱动的。然而,这一范式在当代表观遗传学时代受到了挑战并被重新定义。DNA 甲基化、组蛋白修饰、非编码 RNA 生物发生和染色质重塑的变化在基因组功能和基因表达调控中发挥着至关重要的作用。更重要的是,其中一些变化会作为表观遗传记忆的一部分遗传给下一代,并在基因表达中发挥重要作用。DNA 碱基、组蛋白和 ncRNA 生物发生的所有变化的总和构成了表观基因组。表观遗传调控的解密工作不断取得进展,而且存在与相关性状相关的遗传表观遗传/外显子变异,因此可以利用表观基因组编辑工具来调节基因表达。在表观基因组编辑过程中,DNA 甲基化标记可用于操纵基因表达。最初,基因组/表观基因组编辑技术依赖于锌指蛋白或转录激活剂样效应蛋白。然而,簇状调控间隔短回文重复序列(CRISPR)/deadCRISPR-associated protein 9(dCas9)的发现使表观基因组编辑在靶向 DNA(脱)甲基化方面更具特异性/效率。其中一个主要的问题是脱靶效应,即表观基因组编辑可能会无意中修改基因/调控元件,从而导致意想不到的变化/有害影响。此外,对生殖细胞进行表观基因组编辑还会引发一些伦理/安全问题。本综述重点介绍表观基因组编辑工具/技术的最新发展、技术局限性以及这一新兴技术在治疗人类疾病和改良植物以实现可持续发展目标方面的未来前景。
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来源期刊
CiteScore
14.90
自引率
0.00%
发文量
6
期刊介绍: As the discipline of biochemistry and molecular biology have greatly advanced in the last quarter century, significant contributions have been made towards the advancement of general medicine, genetics, immunology, developmental biology, and biophysics. Investigators in a wide range of disciplines increasingly require an appreciation of the significance of current biochemical and molecular biology advances while, members of the biochemical and molecular biology community itself seek concise information on advances in areas remote from their own specialties. Critical Reviews in Biochemistry and Molecular Biology believes that well-written review articles prove an effective device for the integration and meaningful comprehension of vast, often contradictory, literature. Review articles also provide an opportunity for creative scholarship by synthesizing known facts, fruitful hypotheses, and new concepts. Accordingly, Critical Reviews in Biochemistry and Molecular Biology publishes high-quality reviews that organize, evaluate, and present the current status of high-impact, current issues in the area of biochemistry and molecular biology. Topics are selected on the advice of an advisory board of outstanding scientists, who also suggest authors of special competence. The topics chosen are sufficiently broad to interest a wide audience of readers, yet focused enough to be within the competence of a single author. Authors are chosen based on their activity in the field and their proven ability to produce a well-written publication.
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