现代基因组与反转录:反转录转置元素,反转录和新基因的起源。

Genome dynamics Pub Date : 2007-01-01 DOI:10.1159/000107611
J-N Volff, J Brosius
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引用次数: 43

摘要

逆转录的一个令人着迷的进化方面是它能够产生一个动态的序列库,以便在基因组中形成新的基因。逆转录因子基因,如来自逆转录转座子的gag或来自内源性逆转录病毒的包膜基因,在进化过程中被反复提取和驯化。这些基因在宿主生物学的各个方面实现了现在有用的新功能,例如哺乳动物的胎盘形成。新的蛋白质编码基因也可以通过自主逆转录元件的酶机制从“经典”基因中逆转录mRNA产生。许多这些逆转录基因,与它们的分子前基因相比,通常表现出一种修饰的表达模式,具有睾丸偏向性表达,并在不同动物的精子发生中发挥潜在作用。在进化过程中,新的非蛋白编码RNA基因也通过逆转录反复产生。在啮齿类动物的BC1基因和灵长类动物的BC200基因这两个RNA基因之间,已经观察到惊人的进化平行。尽管这两个基因来自不同类型的序列(分别是tRNA和Alu短穿插元件),但它们都在神经元中几乎特异性表达,被转运到树突中,并被包含聚(A)结合蛋白PABP的核糖核蛋白复合物所包含。BC1和BC200 RNA都能够在体外抑制翻译,并且是短穿插元件新家族的祖先。这些基因可能在动物行为中发挥作用,提供了两个不同哺乳动物谱系进化趋同的惊人例子,这也观察到来自内源性逆转录病毒的胎盘基因。最后,有迹象表明,小核仁rna (snoRNAs)和microRNAs (miRNAs)的基因也可以通过逆转录进行复制。综上所述,这些观察结果明确地证明了逆转录作为基因组可塑性和基因新颖性的中介的主要作用。因此,基因组的“回顾”实际上表明了它们的现代性。
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Modern genomes with retro-look: retrotransposed elements, retroposition and the origin of new genes.

A fascinating evolutionary facet of retroposition is its ability to generate a dynamic reservoir of sequences for the formation of new genes within genomes. Retroelement genes, such as gag from retrotransposons or envelope genes from endogenous retroviruses, have been repeatedly exapted and domesticated during evolution. Such genes fulfill now useful novel functions in diverse aspects of host biology, for example placenta formation in mammals. New protein-coding genes can also be generated through the reverse transcription of mRNA from 'classical' genes by the enzymatic machinery of autonomous retroelements. Many of these retrogenes, which generally show a modified expression pattern compared to their molecular progenitor, have a testis-biased expression and a potential role in spermatogenesis in different animals. New non-protein-coding RNA genes have also been repeatedly generated through retroposition during evolution. A striking evolutionary parallel has been observed between two such RNA genes, the rodent BC1 and the primate BC200 genes. Although both genes are derived from different types of sequences (tRNA and Alu short interspersed element, respectively), they are both expressed almost specifically in neurons, transported into the dendrites and included in ribonucleoprotein complexes containing the poly(A)-binding protein PABP. Both BC1 and BC200 RNA are able to inhibit translation in vitro and are progenitors of new families of short interspersed elements. These genes, which might play a role in animal behavior, provide an astonishing example of evolutionary convergence in two distinct mammalian lineages, which is also observed for placenta genes derived from endogenous retroviruses. Finally, there are indications that genes for small nucleolar RNAs (snoRNAs) and possibly microRNAs (miRNAs) can also be duplicated via retroposition. Taken together, these observations definitely demonstrate the major role of retroposition as mediator of genomic plasticity and contributor to gene novelties. Therefore, the 'retro-look' of genomes is in fact indicative of their modernity.

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