Spaller Thomas, Groth Marco, Glöckner Gernot, Winckler Thomas
Pharmaceutical Biology, Institute of Pharmacy, University of Jena, Jena, Germany.
Core Facility DNA Sequencing, Leibniz Institute for Age Research-Fritz Lipmann Institute, Jena, Germany.
PLoS One. 2017 Apr 13;12(4):e0175729. doi: 10.1371/journal.pone.0175729. eCollection 2017.
The amoeba Dictyostelium discoideum has a haploid genome in which two thirds of the DNA encodes proteins. Consequently, the space available for selfish mobile elements to expand without excess damage to the host genome is limited. The non-long terminal repeat retrotransposon TRE5-A maintains an active population in the D. discoideum genome and apparently adapted to this gene-dense environment by targeting positions ~47 bp upstream of tRNA genes that are devoid of protein-coding regions. Because only ~24% of tRNA genes are associated with a TRE5-A element in the reference genome, we evaluated whether TRE5-A retrotransposition is limited to this subset of tRNA genes. We determined that a tagged TRE5-A element (TRE5-Absr) integrated at 384 of 405 tRNA genes, suggesting that expansion of the current natural TRE5-A population is not limited by the availability of targets. We further observed that TRE5-Absr targets the ribosomal 5S gene on the multicopy extrachromosomal DNA element that carries the ribosomal RNA genes, indicating that TRE5-A integration may extend to the entire RNA polymerase III (Pol III) transcriptome. We determined that both natural TRE5-A and cloned TRE5-Absr retrotranspose to locations on the extrachromosomal rDNA element that contain tRNA gene-typical A/B box promoter motifs without displaying any other tRNA gene context. Based on previous data suggesting that TRE5-A targets tRNA genes by locating Pol III transcription complexes, we propose that A/B box loci reflect Pol III transcription complex assembly sites that possess a function in the biology of the extrachromosomal rDNA element.
盘基网柄菌变形虫具有单倍体基因组,其中三分之二的DNA编码蛋白质。因此,自私的移动元件在不对宿主基因组造成过度损害的情况下进行扩张的可用空间是有限的。非长末端重复逆转座子TRE5-A在盘基网柄菌基因组中维持着活跃的群体,并且显然通过靶向缺乏蛋白质编码区的tRNA基因上游约47 bp的位置来适应这种基因密集的环境。由于在参考基因组中只有约24%的tRNA基因与一个TRE5-A元件相关联,我们评估了TRE5-A逆转座是否仅限于tRNA基因的这个子集。我们确定一个标记的TRE5-A元件(TRE5-Absr)整合到了405个tRNA基因中的384个上,这表明当前天然TRE5-A群体的扩张不受靶标的可用性限制。我们进一步观察到TRE5-Absr靶向携带核糖体RNA基因的多拷贝染色体外DNA元件上的核糖体5S基因,这表明TRE5-A整合可能扩展到整个RNA聚合酶III(Pol III)转录组。我们确定天然的TRE5-A和克隆的TRE5-Absr都逆转座到染色体外rDNA元件上含有tRNA基因典型A/B盒启动子基序的位置,而不显示任何其他tRNA基因背景。基于先前的数据表明TRE5-A通过定位Pol III转录复合物来靶向tRNA基因,我们提出A/B盒位点反映了在染色体外rDNA元件生物学中具有功能的Pol III转录复合物组装位点。