Institute of Bioinformatics and Systems Biology, National Chiao Tung University, Hsin-Chu 300, Taiwan.
Nucleic Acids Res. 2013 Apr 1;41(6):3734-47. doi: 10.1093/nar/gkt047. Epub 2013 Feb 1.
Pseudogenes, especially those that are transcribed, may not be mere genomic fossils, but their biological significance remains unclear. Postulating that in the human genome, as in animal models, pseudogenes may function as gene regulators through generation of endo-siRNAs (esiRNAs), antisense RNAs or RNA decoys, we performed bioinformatic and subsequent experimental tests to explore esiRNA-mediated mechanisms of pseudogene involvement in oncogenesis. A genome-wide survey revealed a partial retrotranscript pseudogene ψPPM1K containing inverted repeats capable of folding into hairpin structures that can be processed into two esiRNAs; these esiRNAs potentially target many cellular genes, including NEK8. In 41 paired surgical specimens, we found significantly reduced expression of two predicted ψPPM1K-specific esiRNAs, and the cognate gene PPM1K, in hepatocellular carcinoma compared with matched non-tumour tissues, whereas the expression of target gene NEK8 was increased in tumours. Additionally, NEK8 and PPM1K were downregulated in stably transfected ψPPM1K-overexpressing cells, but not in cells transfected with an esiRNA1-deletion mutant of ψPPM1K. Furthermore, expression of NEK8 in ψPPM1K-transfected cells demonstrated that NEK8 can counteract the growth inhibitory effects of ψPPM1K. These findings indicate that a transcribed pseudogene can exert tumour-suppressor activity independent of its parental gene by generation of esiRNAs that regulate human cell growth.
假基因,特别是那些转录的假基因,可能不仅仅是基因组化石,但它们的生物学意义仍不清楚。假设在人类基因组中,与动物模型一样,假基因可能通过产生内源性 siRNA(esiRNA)、反义 RNA 或 RNA 诱饵来作为基因调节剂发挥作用,我们进行了生物信息学和后续的实验测试,以探索假基因参与肿瘤发生的 esiRNA 介导的机制。全基因组调查显示,一个部分逆转录假基因 ψPPM1K 含有能够折叠成发夹结构的反向重复,这些结构可以被加工成两个 esiRNA;这些 esiRNA 可能靶向许多细胞基因,包括 NEK8。在 41 对手术标本中,与匹配的非肿瘤组织相比,我们发现肝癌中两个预测的 ψPPM1K 特异性 esiRNA 和同源基因 PPM1K 的表达明显降低,而肿瘤中靶基因 NEK8 的表达增加。此外,在稳定转染过表达 ψPPM1K 的细胞中,NEK8 和 PPM1K 下调,但在转染 ψPPM1K esiRNA1 缺失突变体的细胞中没有下调。此外,在转染 ψPPM1K 的细胞中表达 NEK8 表明,NEK8 可以抵消 ψPPM1K 的生长抑制作用。这些发现表明,转录假基因可以通过产生调节人类细胞生长的 esiRNA 来发挥独立于其亲本基因的肿瘤抑制活性。