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Translation from nonautonomous type IAP retrotransposon is a critical determinant of transposition activity: Implication for retrotransposon-mediated genome evolution

机译:非自主型IAP反转录转座子的翻译是转座活性的关键决定因素:对反转录转座子介导的基因组进化的影响

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摘要

Retrotransposons constitute a major component of the genome and their proliferation significantly impacts genome evolution. Retrotransposons can propagate autonomously or nonautonomously. Nonautonomous type transposition occurs through trans-complementation by autonomous type retrotransposons. While autonomous type retrotransposons have been studied extensively, the translation products from nonautonomous type retrotransposons are not well characterized. In a previous study, we isolated both autonomous and nonautonomous type intracisternal A particle (IAP) elements from the mouse genome and established a tissue culture assay to examine trans-complementation of nonautonomous type IAP element. Using this system in the present study, we determined an active role for the translation product from nonautonomous type IAP element. Point mutations that either eliminated or truncated the IAP protein were introduced and their effects on trans-complementation were examined. Trans-complementation efficiency correlated with the expression of nonautonomous type IAP protein. The effect of nonautonomous type IAP protein was observed only when it was provided in cis, suggesting an interaction of nonautonomous type IAP protein and its transcript immediately after transcription. Interaction of autonomous and nonautonomous type IAP proteins was demonstrated by immunostaining and coimmunoprecipitation assay. Based on these findings, we propose a model in which nonautonomous type IAP protein associates with its transcript, recruits autonomous type IAP protein, and promotes the assembly of transposition competent IAP particle. The active role of the nonautonomous type IAP protein revealed in this study may provide a new insight into retrotransposon proliferation within the genome.
机译:逆转录转座子是基因组的主要组成部分,其增殖显着影响基因组的进化。逆转座子可以自主或非自主繁殖。非自主型转座是通过自主型逆转座子的反式互补而发生的。虽然自主型逆转录转座子已被广泛研究,但非自主型逆转录转座子的翻译产物尚未得到很好的表征。在以前的研究中,我们从小鼠基因组中分离了自主和非自主型脑池内A颗粒(IAP)元件,并建立了组织培养测定法以检查非自主型IAP元件的反式互补。在本研究中,使用该系统,我们确定了非自主型IAP元素对翻译产物的积极作用。引入消除或截断IAP蛋白的点突变,并检查其对反式互补的影响。反补效率与非自主型IAP蛋白的表达相关。仅当以顺式提供IAP蛋白时,才观察到非自主型IAP蛋白的作用,这表明非自主型IAP蛋白与转录后的转录本相互作用。通过免疫染色和免疫共沉淀法证明了自主型和非自主型IAP蛋白的相互作用。基于这些发现,我们提出了一个模型,其中非自主型IAP蛋白与其转录物相关联,募集自主型IAP蛋白,并促进易位IAP颗粒的组装。在这项研究中揭示的非自主型IAP蛋白的积极作用可能为基因组内反转录转座子的增殖提供新的见解。

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