影响非编码rna的表观遗传学和实验方法。

3区 生物学 Q2 Biochemistry, Genetics and Molecular Biology
Urvashi Vijay, Ashmeet Kaur, Sunil Polipalli
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引用次数: 0

摘要

表观遗传学具有各种各样的环境,这些环境与非编码rna密切相关,而非编码rna通常被认为是基因表达调控的小rna,并有助于指导复杂生物体的胞嘧啶甲基化和组蛋白修饰。表观遗传学的一个关键特点是,相同的基因组显示不寻常的表型,这些表型位于不同的表观遗传学状态。在过去的十年中,研究的大多数纠缠表观遗传现象包括转座子活性和沉默,它们直接或间接地与RNA成分相关,目前主要集中在pirna (piwi相互作用RNA),位置效应变异,x染色体失活,亲本印迹和参数化。目前,一些非编码rna参与表观遗传基因调控,但其机制尚不清楚。在酵母、植物和小鼠中,ncrna促进表观遗传状态的遗传,有效地跨代传递信息。这种跨代表观遗传强调了ncrna作为遗传信息载体的潜力,弥合了环境线索和遗传反应之间的差距。总之,ncrna在表观遗传调控和遗传信息传递中发挥着核心作用,突出了它们在高等生物进化和复杂性中的重要性。在这篇综述文章中,正在进行的研究继续揭示这些分子的多方面功能,为支撑生命的调控结构提供更深入的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenetic and experimental approaches influencing non-coding RNAs.

Epigenetics having sundry ambiences which are robustly linked to non-coding RNAs, precisely small RNAs that are generally imputated in gene expression regulation and helps in directing cytosine methylation and histone modifications of complex organisms. A pivotal peculiarity of epigenetics is that the same genome shows unwonted phenotypes which are situated in different epigenetics states. In last decade, the majority tangled epigenetic phenomena studied encompasses transposon activity and silencing which are directly or indirectly associated in RNA component and are currently epitomize by piRNAs (piwi-interacting RNAs), position effect variegation, X-chromosome inactivation, parental imprinting, and paramutation. Envisagly, there are certain non - coding RNAs are players in epigenetics gene regulation but their mechanism is still underlying. In yeast, plants, and mice, ncRNAs facilitate the inheritance of epigenetic states, effectively transmitting information across generations. This transgenerational epigenetic inheritance underscores the potential of ncRNAs to act as carriers of heritable information, bridging the gap between environmental cues and genetic responses. In conclusion, ncRNAs play a central role in epigenetic regulation and the transfer of genetic information, highlighting their importance in the evolution and complexity of higher organisms. In this review article, ongoing research continues to uncover the multifaceted functions of these molecules, offering deeper insights into the regulatory architectures that underpin life.

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来源期刊
CiteScore
6.90
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Progress in Molecular Biology and Translational Science (PMBTS) provides in-depth reviews on topics of exceptional scientific importance. If today you read an Article or Letter in Nature or a Research Article or Report in Science reporting findings of exceptional importance, you likely will find comprehensive coverage of that research area in a future PMBTS volume.
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