Gavaldá Sandra, Santos-Pereira José M, García-Rubio María L, Luna Rosa, Aguilera Andrés
Centro Andaluz de Biología Molecular y Medicina Regenerativa CABIMER, Universidad de Sevilla, Seville, Spain.
PLoS Genet. 2016 Apr 1;12(4):e1005966. doi: 10.1371/journal.pgen.1005966. eCollection 2016 Apr.
Yra1 is an essential nuclear factor of the evolutionarily conserved family of hnRNP-like export factors that when overexpressed impairs mRNA export and cell growth. To investigate further the relevance of proper Yra1 stoichiometry in the cell, we overexpressed Yra1 by transforming yeast cells with YRA1 intron-less constructs and analyzed its effect on gene expression and genome integrity. We found that YRA1 overexpression induces DNA damage and leads to a transcription-associated hyperrecombination phenotype that is mediated by RNA:DNA hybrids. In addition, it confers a genome-wide replication retardation as seen by reduced BrdU incorporation and accumulation of the Rrm3 helicase. In addition, YRA1 overexpression causes a cell senescence-like phenotype and telomere shortening. ChIP-chip analysis shows that overexpressed Yra1 is loaded to transcribed chromatin along the genome and to Y' telomeric regions, where Rrm3 is also accumulated, suggesting an impairment of telomere replication. Our work not only demonstrates that a proper stoichiometry of the Yra1 mRNA binding and export factor is required to maintain genome integrity and telomere homeostasis, but suggests that the cellular imbalance between transcribed RNA and specific RNA-binding factors may become a major cause of genome instability mediated by co-transcriptional replication impairment.
Yra1是hnRNP样输出因子进化保守家族的一个必需核因子,过度表达时会损害mRNA输出和细胞生长。为了进一步研究细胞中Yra1正确化学计量的相关性,我们通过用无内含子的YRA1构建体转化酵母细胞来过度表达Yra1,并分析其对基因表达和基因组完整性的影响。我们发现YRA1过度表达会诱导DNA损伤,并导致由RNA:DNA杂交体介导的转录相关的高重组表型。此外,如通过减少BrdU掺入和Rrm3解旋酶积累所观察到的,它会导致全基因组复制延迟。此外,YRA1过度表达会导致细胞衰老样表型和端粒缩短。ChIP-chip分析表明,过度表达的Yra1沿着基因组加载到转录染色质上,并加载到Y'端粒区域,Rrm3也在该区域积累,这表明端粒复制受损。我们的工作不仅表明需要Yra1 mRNA结合和输出因子的正确化学计量来维持基因组完整性和端粒稳态,而且表明转录RNA与特定RNA结合因子之间的细胞失衡可能成为由共转录复制损伤介导的基因组不稳定的主要原因。