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Enhanced malignant transformation induced by expression of a distinct protein domain of ribonucleotide reductase large subunit from herpes simplex virus type 2.

机译:通过表达2型单纯疱疹病毒核糖核苷酸还原酶大亚基的独特蛋白质结构域诱导的恶性转化增强。

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摘要

The 1.3-kilobase (kb) Pst I DNA fragment C (Pst I-C) of herpes simplex virus type 2 (HSV-2) morphological transforming region III (mtrIII; map unit 0.562-0.570) encodes part of the N-terminal half of the large subunit of ribonucleotide reductase (RR1; amino acid residues 71-502) and induces the neoplastic transformation of immortalized cell lines. To assess directly the role of these RR1 protein sequences in cell transformation, the Pst I-C fragment was cloned in an expression vector (p91023) containing an adenovirus-simian virus 40 promoter-enhancer to generate recombinant plasmid p9-C. Expression of a protein domain (approximately 65 kDa) was observed in p9-C-transfected COS-7 and Rat2 cells but not in those transfected with plasmid pHC-14 (Pst I-C in a promoterless vector). In Rat2 cells, p9-C induced highly transformed foci at an elevated frequency compared with that of pHC-14. Introduction of translation termination (TAG) condons within the RR1 coding sequence and within all three reading frames inactivated RR1 protein expression from p9-C and reduced its transforming activity to the level seen with the standard pHC-14 construct. Wild-type p9-C specified a protein kinase capable of autophosphorylation. Computer-assisted analysis further revealed significant similarity between regions of mtrIII-specific RR1 and amino acid patterns conserved within the proinsulin precursor family and DNA transposition proteins. These results identify a distinct domain of the HSV-2 RR1 protein involved in the induction of enhanced malignant transformation. In addition, the data indicate that the mtrIII DNA itself can induce basal-level transformation in the absence of protein expression.
机译:单纯疱疹病毒2型(HSV-2)形态转化区III(mtrIII;映射单元0.562-0.570)的1.3千碱基(kb)Pst I DNA片段C(Pst IC)编码部分N末端的一半核糖核苷酸还原酶的大亚基(RR1;氨基酸残基71-502)并诱导永生化细胞系的肿瘤转化。为了直接评估这些RR1蛋白序列在细胞转化中的作用,将Pst I-C片段克隆到含有腺病毒-猿猴病毒40启动子增强子的表达载体(p91023)中,以生成重组质粒p9-C。在p9-C转染的COS-7和Rat2细胞中观察到蛋白结构域的表达(约65 kDa),但在质粒pHC-14(无启动子载体中的Pst I-C)转染的细胞中则没有观察到。在Rat2细胞中,与pHC-14相比,p9-C以较高的频率诱导高度转化的灶。在RR1编码序列内和所有三个阅读框中引入翻译终止(TAG)密码子可使p9-C的RR1蛋白表达失活,并将其转化活性降低至标准pHC-14构建体所见的水平。野生型p9-C指定了一种能够自磷酸化的蛋白激酶。计算机辅助分析进一步揭示了mtrIII特异性RR1区域与胰岛素原前体家族和DNA转座蛋白内保守的氨基酸模式之间的显着相似性。这些结果确定了HSV-2 RR1蛋白的一个独特的域参与增强恶性转化的诱导。另外,数据表明在没有蛋白表达的情况下,mtrIII DNA本身可以诱导基础水平的转化。

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