首页> 美国卫生研究院文献>Journal of Virology >Human adenovirus early region 4 open reading frame 1 genes encode growth-transforming proteins that may be distantly related to dUTP pyrophosphatase enzymes.
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Human adenovirus early region 4 open reading frame 1 genes encode growth-transforming proteins that may be distantly related to dUTP pyrophosphatase enzymes.

机译:人类腺病毒早期区域4开放阅读框1基因编码可能与dUTP焦磷酸酶远相关的生长转化蛋白。

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摘要

An essential oncogenic determinant of subgroup D human adenovirus type 9 (Ad9), which uniquely elicits estrogen-dependent mammary tumors in rats, is encoded by early region 4 open reading frame 1 (E4 ORF1). Whereas Ad9 E4 ORF1 efficiently induces transformed foci on the established rat embryo fibroblast cell line CREF, the related subgroup A Ad12 and subgroup C Ad5 E4 ORF1s do not (R. T. Javier, J. Virol. 68:3917-3924, 1994). In this study, we found that the lack of transforming activity associated with non-subgroup D adenovirus E4 ORF1s in CREF cells correlated with significantly reduced protein levels compared to Ad9 E4 ORF1 in these cells. In the human cell line TE85, however, the non-subgroup D adenovirus E4 ORF1s produced protein levels higher than those seen in CREF cells as well as transforming activities similar to that of Ad9 E4 ORF1, suggesting that all adenovirus E4 ORF1 polypeptides possess comparable cellular growth-transforming activities. In addition, searches for known proteins related to these novel viral transforming proteins revealed that the E4 ORF1 proteins had weak sequence similarity, over the entire length of the E4 ORF1 polypeptides, with a variety of organismal and viral dUTP pyrophosphatase (dUTPase) enzymes. Even though adenovirus E4 ORF1 proteins lacked conserved protein motifs of dUTPase enzymes or detectable enzymatic activity, E4 ORF1 and dUTPase proteins were predicted to possess strikingly similar secondary structure arrangements. It was also established that an avian adenovirus protein, encoded within a genomic location analogous to that of the human adenovirus E4 ORF1s, was a genuine dUTPase enzyme. Although no functional similarity was found for the E4 ORF1 and dUTPase proteins, we propose that human adenovirus E4 ORF1 genes have evolved from an ancestral adenovirus dUTPase and, from this structural framework, developed novel transforming properties.
机译:D亚型9人腺病毒(Ad9)的必不可少的致癌决定因素,它独特地引发了大鼠的雌激素依赖性乳腺肿瘤,由早期4区开放阅读框1(E4 ORF1)编码。 Ad9 E4 ORF1有效地诱导已建立的大鼠胚胎成纤维细胞系CREF上的转化灶,而相关的A亚组Ad12和C亚组Ad5 E4 ORF1却没有(R. T. Javier,J. Virol。68:3917-3924,1994)。在这项研究中,我们发现与这些细胞中的Ad9 E4 ORF1相比,CREF细胞中与非亚D腺病毒E4 ORF1s相关的转化活性的缺乏与蛋白质水平显着降低有关。然而,在人类细胞系TE85中,非D类腺病毒E4 ORF1产生的蛋白水平高于CREF细胞中观察到的蛋白水平,并且转化活性类似于Ad9 E4 ORF1,这表明所有腺病毒E4 ORF1多肽都具有可比的细胞促进增长的活动。此外,对与这些新型病毒转化蛋白相关的已知蛋白的搜索显示,E4 ORF1蛋白在E4 ORF1多肽的全长范围内与各种生物和病毒dUTP焦磷酸酶(dUTPase)酶的序列相似性较弱。即使腺病毒E4 ORF1蛋白缺乏dUTPase酶的保守蛋白基序或可检测的酶活性,E4 ORF1和dUTPase蛋白也被预测具有惊人相似的二级结构排列。还确定在与人腺病毒E4 ORF1s类似的基因组位置内编码的禽腺病毒蛋白是真正的dUTPase酶。尽管未发现E4 ORF1和dUTPase蛋白具有功能相似性,但我们提出人腺病毒E4 ORF1基因已从祖传腺病毒dUTPase进化而来,并从该结构框架发展了新的转化特性。

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