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类人猿灵长类动物中的复合非长末端重复逆转座子。

Composite non-LTR retrotransposons in hominoid primates.

作者信息

Damert Annette

机构信息

Institute for Interdisciplinary Research in Bio-Nano-Sciences; Molecular Biology Center; Babes-Bolyai-University ; Cluj-Napoca, Romania.

出版信息

Mob Genet Elements. 2015 Jul 24;5(5):67-71. doi: 10.1080/2159256X.2015.1068906. eCollection 2015 Sep-Oct.

Abstract

Composite retrotransposons are widely distributed in the plant and animal kingdoms. Some of the most complex of these are found in hominoid primates. SVA, LAVA, PVA and FVA combine simple repeats, fragments, a VNTR (Variable Number of Tandem Repeats) and variable 3' domains, which are, except for PVA, derived from other retrotransposons. Although a likely precursor of SVA-a "tailed VNTR" named SVA2-had been identified in the Rhesus genome, the exact sequence and mechanism of the assembly of this type of composite retrotransposon had been elusive. The discovery of LAVA, PVA and FVA in gibbons provided the opportunity to delineate the order of assembly of the components of VNTR-containing retrotransposons. Our recent analysis suggests that an extinct "-SVA2" acquired variant 3' ends by splicing. In this commentary I will discuss the mode of assembly of VNTR composites in the context of their capacity to engage in alternative splicing to co-mobilize host RNA sequences and to become exonized. The second part will focus on structural determinants of VNTR composite retrotransposon mobilization in the context of lineage-specific expansion of particular families/subfamilies of these elements.

摘要

复合反转录转座子广泛分布于植物和动物界。其中一些最复杂的存在于类人猿灵长类动物中。SVA、LAVA、PVA和FVA结合了简单重复序列、片段、一个可变数目串联重复序列(VNTR)和可变的3'结构域,除了PVA之外,这些结构域均源自其他反转录转座子。尽管在恒河猴基因组中已鉴定出SVA可能的前体——一个名为SVA2的“带尾VNTR”,但这类复合反转录转座子的确切序列和组装机制一直难以捉摸。在长臂猿中发现LAVA、PVA和FVA为描绘含VNTR反转录转座子各组分的组装顺序提供了契机。我们最近的分析表明,一个已灭绝的“-SVA2”通过剪接获得了可变的3'末端。在这篇评论中,我将在VNTR复合物参与可变剪接以共同移动宿主RNA序列并被外显子化的能力背景下,讨论其组装模式。第二部分将聚焦于在这些元件特定家族/亚家族的谱系特异性扩增背景下,VNTR复合反转录转座子移动的结构决定因素。

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Composite non-LTR retrotransposons in hominoid primates.类人猿灵长类动物中的复合非长末端重复逆转座子。
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Structure and Expression Analyses of SVA Elements in Relation to Functional Genes.
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