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The Mediator co-activator complex regulates Ty1 retromobility by controlling the balance between Ty1i and Ty1 promoters

机译:介体共激活复合物通过控制Ty1i和Ty1启动子之间的平衡来调节Ty1的逆行性

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The Ty1 retrotransposons present in the genome of Saccharomyces cerevisiae belong to the large class of mobile genetic elements that replicate via an RNA intermediary and constitute a significant portion of most eukaryotic genomes. The retromobility of Ty1 is regulated by numerous host factors, including several subunits of the Mediator transcriptional co-activator complex. In spite of its known function in the nucleus, previous studies have implicated Mediator in the regulation of post-translational steps in Ty1 retromobility. To resolve this paradox, we systematically examined the effects of deleting non-essential Mediator subunits on the frequency of Ty1 retromobility and levels of retromobility intermediates. Our findings reveal that loss of distinct Mediator subunits alters Ty1 retromobility positively or negatively over a >10,000-fold range by regulating the ratio of an internal transcript, Ty1i, to the genomic Ty1 transcript. Ty1i RNA encodes a dominant negative inhibitor of Ty1 retromobility that blocks virus-like particle maturation and cDNA synthesis. These results resolve the conundrum of Mediator exerting sweeping control of Ty1 retromobility with only minor effects on the levels of Ty1 genomic RNA and the capsid protein, Gag. Since the majority of characterized intrinsic and extrinsic regulators of Ty1 retromobility do not appear to effect genomic Ty1 RNA levels, Mediator could play a central role in integrating signals that influence Ty1i expression to modulate retromobility. Author summary Retrotransposons are mobile genetic elements that copy their RNA genomes into DNA and insert the DNA copies into the host genome. These elements contribute to genome instability, control of host gene expression and adaptation to changing environments. Retrotransposons depend on numerous host factors for their own propagation and control. The retrovirus-like retrotransposon, Ty1, in the yeast Saccharomyces cerevisiae has been an invaluable model for retrotransposon research, and hundreds of host factors that regulate Ty1 retrotransposition have been identified. Non-essential subunits of the Mediator transcriptional co-activator complex have been identified as one set of host factors implicated in Ty1 regulation. Here, we report a systematic investigation of the effects of loss of these non-essential subunits of Mediator on Ty1 retrotransposition. Our findings reveal a heretofore unknown mechanism by which Mediator influences the balance between transcription from two promoters in Ty1 to modulate expression of an autoinhibitory transcript known as Ty1i RNA. Our results provide new insights into host control of retrotransposon activity via promoter choice and elucidate a novel mechanism by which the Mediator co-activator governs this choice.
机译:酿酒酵母基因组中存在的Ty1逆转座子属于一类可移动的遗传元件,可通过RNA中介进行复制,并构成大多数真核生物基因组的重要部分。 Ty1的逆行性受到众多宿主因素的调节,包括介体转录共激活因子复合物的几个亚基。尽管其在细胞核中具有已知功能,但先前的研究已暗示介体与Ty1逆行性中翻译后步骤的调控有关。为了解决这个矛盾,我们系统地研究了删除非必要介体亚基对Ty1逆行性频率和逆行性中间体水平的影响。我们的发现表明,通过调节内部转录本Ty1i与基因组Ty1转录本的比率,独特的介体亚基的丢失会在大于10,000倍的范围内正向或负向改变Ty1逆行性。 Ty1i RNA编码Ty1逆行性的显性负抑制剂,阻止病毒样颗粒成熟和cDNA合成。这些结果解决了介体对Ty1逆行性进行全面控制的难题,而对Ty1基因组RNA和衣壳蛋白Gag的水平影响很小。由于Ty1逆行性的大多数特征性内在和外在调节因子似乎都不影响基因组Ty1 RNA水平,介体可能在整合影响Ty1i表达的信号以调节逆行性中起核心作用。作者摘要逆转座子是可移动的遗传元件,可将其RNA基因组复制到DNA中,并将DNA副本插入宿主基因组中。这些元素导致基因组不稳定,宿主基因表达的控制以及对不断变化的环境的适应。逆转座子依赖于许多宿主因子来自身传播和控制。酿酒酵母中的逆转录病毒样逆转录转座子Ty1已成为逆转录转座子研究的重要模型,并且已鉴定出数百种调节Ty1逆转座的宿主因子。介体转录共激活因子复合物的非必需亚基已被鉴定为与Ty1调节有关的一组宿主因子。在这里,我们报告系统的调查这些介导的这些非必需亚基的损失对Ty1逆转座子的影响。我们的发现揭示了迄今为止未知的机制,通过该机制,介体影响Ty1中两个启动子的转录之间的平衡,从而调节被称为Ty1i RNA的自抑制转录物的表达。我们的结果提供了新的见解,通过启动子的选择对宿主的逆转录转座子活动的控制,并阐明了介导的共激活因子控制这一选择的新机制。

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