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逆转座子影响小鼠转录组:对遗传性状差异的影响

Retrotransposons influence the mouse transcriptome: implication for the divergence of genetic traits.

作者信息

Horie Kyoji, Saito Ei-Suke, Keng Vincent W, Ikeda Ryuji, Ishihara Hiroshi, Takeda Junji

机构信息

Research Center for Radiation Emergency Medicine, National Institute of Radiological Sciences, Inage-ku, Chiba 263-8555, Japan.

出版信息

Genetics. 2007 Jun;176(2):815-27. doi: 10.1534/genetics.107.071647. Epub 2007 Apr 15.

Abstract

Massive accumulation of retrotransposons, comprising >40% of human and mouse genomes, is one of the major events in the evolution of the genome. However, most retrotransposons have lost retrotransposition competency, which makes studying their role in genome evolution elusive. Intracisternal A-particle (IAP) elements are long terminal repeat (LTR)-type mouse retrotransposons consisting of full-length and internally deleted types. Some are retrotransposition competent and their upregulated activity has been reported in mutant mice deficient in genome defense systems, suggesting that IAP elements provide a unique platform for studying the interaction between retrotransposons and mammalian genomes. Using the IAP element as a model case, here we show that mobilization of retrotransposons alters the mouse transcriptome. Retrotransposition assay in cultured cells demonstrated that a subset of internally deleted IAP elements, called IDelta1 type, retrotranspose efficiently when supplied with functional IAP proteins. Furthermore, the IDelta1 type IAP element exhibited substantial transcription-inducing activity in the flanking region. Genomewide transcript analysis of embryonic stem (ES) cells identified IAP-induced transcripts, including fusion transcripts between IAP sequence and endogenous genes. Unexpectedly, nearly half of these IAP elements obtained from ES cells derived from 129 mouse strain were absent in the C57BL/6 genome, suggesting that IAP-driven transcription contributes to the unique trait of the individual mouse strain. On the basis of these data, we propose that retrotransposons are one of the drivers that shape the mammalian transcriptome.

摘要

逆转录转座子大量积累,在人类和小鼠基因组中占比超过40%,是基因组进化中的主要事件之一。然而,大多数逆转录转座子已丧失逆转录转座能力,这使得研究它们在基因组进化中的作用变得困难。脑内A颗粒(IAP)元件是长末端重复序列(LTR)型小鼠逆转录转座子,由全长型和内部缺失型组成。其中一些具有逆转录转座能力,并且在缺乏基因组防御系统的突变小鼠中其活性上调,这表明IAP元件为研究逆转录转座子与哺乳动物基因组之间的相互作用提供了一个独特的平台。以IAP元件为模型,我们在此表明逆转录转座子的移动会改变小鼠转录组。在培养细胞中进行的逆转录转座分析表明,当提供功能性IAP蛋白时,一种称为IDelta1型的内部缺失IAP元件子集能够高效逆转录转座。此外,IDelta1型IAP元件在侧翼区域表现出显著的转录诱导活性。对胚胎干细胞(ES)进行全基因组转录分析,鉴定出了IAP诱导的转录本,包括IAP序列与内源基因之间的融合转录本。出乎意料的是,从129小鼠品系来源的ES细胞中获得的这些IAP元件,近一半在C57BL/6基因组中不存在,这表明IAP驱动的转录促成了单个小鼠品系的独特特征。基于这些数据,我们提出逆转录转座子是塑造哺乳动物转录组的驱动因素之一。

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