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The Impact of Transposable Elements in Genome Evolution and Genetic Instability and Their Implications in Various Diseases

机译:转座因子对基因组进化和遗传不稳定性的影响及其在多种疾病中的意义

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摘要

Approximately 45% of the human genome is comprised of transposable elements (TEs). Results from the Human Genome Project have emphasized the biological importance of TEs. Many studies have revealed that TEs are not simply "junk" DNA, but rather, they play various roles in processes, including genome evolution, gene expression regulation, genetic instability, and cancer disposition. The effects of TE insertion in the genome varies from negligible to disease conditions. For the past two decades, many studies have shown that TEs are the causative factors of various genetic disorders and cancer. TEs are a subject of interest worldwide, not only in terms of their clinical aspects but also in basic research, such as evolutionary tracking. Although active TEs contribute to genetic instability and disease states, non-long terminal repeat transposons are well studied, and their roles in these processes have been confirmed. In this review, we will give an overview of the importance of TEs in studying genome evolution and genetic instability, and we suggest that further in-depth studies on the mechanisms related to these phenomena will be useful for both evolutionary tracking and clinical diagnostics.
机译:人类基因组中约45%由转座因子(TEs)组成。人类基因组计划的结果强调了TEs的生物学重要性。许多研究表明,TE不仅是简单的“垃圾” DNA,而且在过程中扮演着各种角色,包括基因组进化,基因表达调控,遗传不稳定和癌症倾向。 TE在基因组中的插入效果随疾病状况的变化而变化。在过去的二十年中,许多研究表明TE是各种遗传疾病和癌症的致病因素。 TE不仅在临床方面,而且在基础研究(例如进化跟踪)方面都是全球关注的主题。尽管活跃的TE有助于遗传不稳定和疾病状态,但对非长末端重复转座子的研究却很深入,并且已经证实了它们在这些过程中的作用。在这篇综述中,我们将概述TEs在研究基因组进化和遗传不稳定性方面的重要性,并且我们建议对与这些现象相关的机制进行深入研究将对进化跟踪和临床诊断均有用。

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