转座因子是调控基因表达的重要因子。

IF 4.7 2区 生物学 Q1 GENETICS & HEREDITY Mobile DNA Pub Date : 2023-08-18 DOI:10.1186/s13100-023-00297-3
Alemu Gebrie
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引用次数: 0

摘要

被称为转座因子(te)的分散重复,通常被称为可移动因子,构成了高等动物基因组的重要部分。te在转录和转录后水平上参与调控基因的局部甚至远端表达,这是其对基因功能和基因组进化的重要功能作用之一。TEs通过不同的机制控制基因的表达。首先,te在基因组中提供了对自身表达具有内在调控特性的顺式调控区域,使其成为控制宿主基因表达的潜在因子。启动子和增强子元件包含由TE产生的顺式调控位点,这些位点作为多种反式作用因子的结合位点。其次,相当一部分mirna和长链非编码rna (lncrna)已被证明具有编码调控rna的TE,揭示了这些rna的TE起源。此外,研究表明TE序列对这些rna的调控作用至关重要,包括与目标mRNA的结合。作为顺式调控RNA和调节性RNA序列的成员,te因此发挥了重要的调控作用。此外,有研究表明te衍生的调控rna和顺式调控区域都有助于基因调控的进化新颖性。此外,这些由TE引起的调节系统通常具有组织特异性功能。这篇综述的目的是讨论TE介导的基因调控,特别强调的过程,各种TE类型的贡献,不同组织类型的差异作用,主要基于最近对人类的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Transposable elements as essential elements in the control of gene expression.

Interspersed repetitions called transposable elements (TEs), commonly referred to as mobile elements, make up a significant portion of the genomes of higher animals. TEs contribute in controlling the expression of genes locally and even far away at the transcriptional and post-transcriptional levels, which is one of their significant functional effects on gene function and genome evolution. There are different mechanisms through which TEs control the expression of genes. First, TEs offer cis-regulatory regions in the genome with their inherent regulatory features for their own expression, making them potential factors for controlling the expression of the host genes. Promoter and enhancer elements contain cis-regulatory sites generated from TE, which function as binding sites for a variety of trans-acting factors. Second, a significant portion of miRNAs and long non-coding RNAs (lncRNAs) have been shown to have TEs that encode for regulatory RNAs, revealing the TE origin of these RNAs. Furthermore, it was shown that TE sequences are essential for these RNAs' regulatory actions, which include binding to the target mRNA. By being a member of cis-regulatory and regulatory RNA sequences, TEs therefore play essential regulatory roles. Additionally, it has been suggested that TE-derived regulatory RNAs and cis-regulatory regions both contribute to the evolutionary novelty of gene regulation. Additionally, these regulatory systems arising from TE frequently have tissue-specific functions. The objective of this review is to discuss TE-mediated gene regulation, with a particular emphasis on the processes, contributions of various TE types, differential roles of various tissue types, based mostly on recent studies on humans.

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来源期刊
Mobile DNA
Mobile DNA GENETICS & HEREDITY-
CiteScore
8.20
自引率
6.10%
发文量
26
审稿时长
11 weeks
期刊介绍: Mobile DNA is an online, peer-reviewed, open access journal that publishes articles providing novel insights into DNA rearrangements in all organisms, ranging from transposition and other types of recombination mechanisms to patterns and processes of mobile element and host genome evolution. In addition, the journal will consider articles on the utility of mobile genetic elements in biotechnological methods and protocols.
期刊最新文献
Analysis of pericentromere composition and structure elucidated the history of the Hieracium alpinum L. genome, revealing waves of transposable elements insertions. International congress on transposable elements (ICTE 2024) in Saint Malo: breaking down transposon waves and their impact. Accelerating de novo SINE annotation in plant and animal genomes. Association of hyperactivated transposon expression with exacerbated immune activation in systemic lupus erythematosus. Widespread HCD-tRNA derived SINEs in bivalves rely on multiple LINE partners and accumulate in genic regions.
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