Libri Domenico, Dower Ken, Boulay Jocelyne, Thomsen Rune, Rosbash Michael, Jensen Torben Heick
Centre National de la Recherche Scientifique, Centre de Genetique Moleculaire, 91190 Gif-sur-Yvette, France.
Mol Cell Biol. 2002 Dec;22(23):8254-66. doi: 10.1128/MCB.22.23.8254-8266.2002.
Several aspects of eukaryotic mRNA processing are linked to transcription. In Saccharomyces cerevisiae, overexpression of the mRNA export factor Sub2p suppresses the growth defect of hpr1 null cells, yet the protein Hpr1p and the associated THO protein complex are implicated in transcriptional elongation. Indeed, we find that a pool of heat shock HSP104 transcripts are 3'-end truncated in THO complex mutant as well as sub2 mutant backgrounds. Surprisingly, however, this defect can be suppressed by deletion of the 3'-5' exonuclease Rrp6p. This indicates that incomplete RNAs result from nuclear degradation rather than from a failure to efficiently elongate transcription. RNAs that are not degraded are retained at the transcription site in a Rrp6p-dependent manner. Interestingly, the addition of a RRP6 deletion to sub2 or to THO complex mutants shows a strong synthetic growth phenotype, suggesting that the failure to retain and/or degrade defective mRNAs is deleterious. mRNAs produced in the 3'-end processing mutants rna14-3 and rna15-2, as well as an RNA harboring a 3' end generated by a self-cleaving hammerhead ribozyme, are also retained in Rrp6p-dependent transcription site foci. Taken together, our results show that several classes of defective RNPs are subject to a quality control step that impedes release from transcription site foci and suggest that suboptimal messenger ribonucleoprotein assembly leads to RNA degradation by Rrp6p.
真核生物mRNA加工的几个方面与转录相关。在酿酒酵母中,mRNA输出因子Sub2p的过表达可抑制hpr1缺失细胞的生长缺陷,然而蛋白质Hpr1p和相关的THO蛋白复合物与转录延伸有关。实际上,我们发现一批热休克HSP104转录本在THO复合物突变体以及sub2突变体背景下3'端被截短。然而,令人惊讶的是,这种缺陷可通过缺失3'-5'核酸外切酶Rrp6p来抑制。这表明不完全RNA是由核降解产生的,而非转录有效延伸失败所致。未被降解的RNA以Rrp6p依赖的方式保留在转录位点。有趣的是,在sub2或THO复合物突变体中添加RRP6缺失会表现出强烈的合成生长表型,这表明未能保留和/或降解有缺陷的mRNA是有害的。在3'端加工突变体rna14-3和rna15-2中产生的mRNA,以及带有由自切割锤头状核酶产生的3'端的RNA,也保留在Rrp6p依赖的转录位点焦点中。综上所述,我们的结果表明几类有缺陷核糖核蛋白体经历了一个质量控制步骤,该步骤阻碍其从转录位点焦点释放,并表明次优信使核糖核蛋白组装导致Rrp6p介导的RNA降解。