Michiels L, Van der Rauwelaert E, Van Hasselt F, Kas K, Merregaert J
Department of Biochemistry, University of Antwerp, Wilrijk, Belgium.
Oncogene. 1993 Sep;8(9):2537-46.
The Finkel-Biskis-Reilly murine sarcoma virus (FBR-MuSV) is capable of inducing osteosarcomas in susceptible mice. This retrovirus transduced sequences derived from the transcription factor c-fos and from an unrelated mouse sequence called fox. Here, we describe the cloning and sequence analysis of human and mouse cellular cDNAs hybridizing to the fox sequence. The cloned cDNAs encode for a single ubiquitin-like (Fubi) protein fused in frame to S30, a protein of the small ribosomal subunit. Fubi conserved amino acid residues known to be involved in the ATP-dependent proteolytic activity of ubiquitin. Moreover, the fau gene is conserved in several species, while its mRNA is ubiquitously expressed in different mouse tissues. Surprisingly, FBR-MuSV transduced the complete but mutated open reading frame (ORF) in its reversed transcriptional orientation. This is the first report about a retrovirus in which an antisense sequence to a cellular gene, which we called fau (FBR-MuSV-associated ubiquitously expressed gene), is discovered. Rat-2 cells transfected with plasmids containing v-fau/fox recombinants of FBR-MuSV revealed a twofold increase of the transformation capacity of FBR-MuSV 'in vitro' because of the fau antisense sequence. Newly formed retropseudogenes were identified in three out of eight primary radiation-induced osteosarcomas. This high incidence of creating retropseudogenes in these 90Sr-induced bone tumours may contribute to the mechanism by which FBR-MuSV, originally isolated from such tumours, acquired the fau gene in its reverse orientation.
芬克尔-比斯克斯-赖利小鼠肉瘤病毒(FBR-MuSV)能够在易感小鼠中诱发骨肉瘤。这种逆转录病毒转导了源自转录因子c-fos以及一个名为fox的无关小鼠序列的序列。在此,我们描述了与fox序列杂交的人和小鼠细胞cDNA的克隆及序列分析。克隆的cDNA编码一种单一的泛素样(Fubi)蛋白,该蛋白与小核糖体亚基的一种蛋白S30读框融合。Fubi具有已知参与泛素的ATP依赖性蛋白水解活性的保守氨基酸残基。此外,fau基因在多个物种中保守,而其mRNA在不同的小鼠组织中普遍表达。令人惊讶的是,FBR-MuSV以其逆转录方向转导了完整但发生突变的开放阅读框(ORF)。这是关于一种逆转录病毒的首次报道,在该病毒中发现了一个细胞基因的反义序列,我们将其称为fau(FBR-MuSV相关普遍表达基因)。用含有FBR-MuSV的v-fau/fox重组体的质粒转染的大鼠-2细胞显示,由于fau反义序列,FBR-MuSV在“体外”的转化能力提高了两倍。在8个原发性辐射诱导的骨肉瘤中有3个鉴定出了新形成的反转录假基因。在这些90Sr诱导的骨肿瘤中产生反转录假基因的高发生率可能有助于解释最初从此类肿瘤中分离出的FBR-MuSV以反向方向获得fau基因的机制。