Raz Vered, Dickson George, 't Hoen Peter A C
Department of Human Genetics, Leiden University Medical Centre, Leiden, The Netherlands.
School of Biological Science, Royal Holloway University of London, Egham, Surrey, United Kingdom.
Oncotarget. 2017 Sep 5;8(43):73516-73528. doi: 10.18632/oncotarget.20640. eCollection 2017 Sep 26.
Post-transcription mRNA processing in the 3'-untranslated region (UTR) of transcripts alters mRNA landscape. Alternative polyadenylation (APA) utilization in the 3'-UTR often leads to shorter 3'-UTR affecting mRNA stability, a process that is regulated by PABPN1. In skeletal muscles PABPN1 levels reduce with age and a greater decrease in found in Oculopharyngeal muscular dystrophy (OPMD). OPMD is a late onset autosomal dominant myopathy caused by expansion mutation in PABPN1. In OPMD models a shift from distal to proximal polyadenylation site utilization in the 3'-UTR, and PABPN1 was shown to play a prominent role in APA. Whether PABPN1-mediated APA transcripts are functional is not fully understood. We investigate nuclear export and translation efficiency of transcripts in OPMD models. We focused on autophagy-regulated genes (ATGs) with APA utilization in cell models with reduced functional PABPN1. We provide evidence that ATGs transcripts from distal PAS retain in the nucleus and thus have reduced translation efficiency in cells with reduced PABPN1. In contrast, transcripts from proximal PAS showed a higher cytoplasmic abundance but a reduced occupancy in the ribosome. We therefore suggest that in reduced PABPN1 levels ATG transcripts from APA may not effectively translate to proteins. In those conditions we found constitutive autophagosome fusion and reduced autophagy flux. Augmentation of PABPN1 restored autophagosome fusion, suggesting that PABPN1-mediated APA plays a role in autophagy in OPMD and in aging muscles.
转录本3'非翻译区(UTR)的转录后mRNA加工会改变mRNA格局。3'-UTR中的可变聚腺苷酸化(APA)利用通常会导致3'-UTR变短,从而影响mRNA稳定性,这一过程由PABPN1调控。在骨骼肌中,PABPN1水平会随年龄降低,而在眼咽型肌营养不良(OPMD)中下降更为明显。OPMD是一种迟发性常染色体显性肌病,由PABPN1中的扩增突变引起。在OPMD模型中,3'-UTR的聚腺苷酸化位点利用从远端向近端转变,并且PABPN1在APA中发挥着重要作用。PABPN1介导的APA转录本是否具有功能尚未完全明确。我们研究了OPMD模型中转录本的核输出和翻译效率。我们聚焦于在功能性PABPN1减少的细胞模型中具有APA利用的自噬调节基因(ATG)。我们提供的证据表明,来自远端聚腺苷酸化位点(PAS)的ATG转录本保留在细胞核中,因此在PABPN1减少的细胞中翻译效率降低。相反,来自近端PAS的转录本在细胞质中的丰度较高,但在核糖体中的占有率降低。因此,我们认为在PABPN1水平降低时,来自APA的ATG转录本可能无法有效地翻译成蛋白质。在这些情况下,我们发现组成型自噬体融合和自噬通量降低。PABPN1的增加恢复了自噬体融合,这表明PABPN1介导的APA在OPMD和衰老肌肉的自噬中发挥作用。