转座元件的分子驯化:从有害的寄生虫到有用的宿主基因。

L Sinzelle, Z Izsvák, Z Ivics
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引用次数: 0

摘要

可转座元件(TE)通常被视为分子寄生虫,通过其移动能力在宿主基因组中主要产生中性或有害影响。然而,在过去的二十年里,人们主要关注的是这些元件在基因调控进化和创造多种结构宿主基因方面的积极贡献。事实上,DNA 转座子携带着极具吸引力的复杂酶机制以及 DNA 成分,在一些情况下,宿主基因组通过分子驯化的进化过程将这些 DNA 成分合用。迄今已知的大量转座子衍生基因已被宿主征用,充当转录调控因子;然而,其中大多数基因的生物学作用仍未确定。我们对转座子结构、分布、进化和机制的了解将继续为我们了解宿主基因组功能做出重要贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular domestication of transposable elements: from detrimental parasites to useful host genes.

Transposable elements (TEs) are commonly viewed as molecular parasites producing mainly neutral or deleterious effects in host genomes through their ability to move. However, during the past two decades, major interest has been focusing on the positive contribution of these elements in the evolution of gene regulation and in the creation of diverse structural host genes. Indeed, DNA transposons carry an attractive and elaborate enzymatic machinery as well as DNA components that have been co-opted in several cases by the host genome via an evolutionary process referred to as molecular domestication. A large number of transposon-derived genes known to date have been recruited by the host to function as transcriptional regulators; however, the biological role of the majority of them remains undetermined. Our knowledge on the structure, distribution, evolution and mechanism of transposons will continue to provide important contributions to our understanding of host genome functions.

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