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Mimivirus encodes a multifunctional primase with DNA/RNA polymerase terminal transferase and translesion synthesis activities

机译:Mimivirus编码具有DNA / RNA聚合酶末端转移酶和跨病变合成活性的多功能引发酶

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摘要

Acanthamoeba polyphaga mimivirus is an amoeba-infecting giant virus with over 1000 genes including several involved in DNA replication and repair. Here, we report the biochemical characterization of gene product 577 (gp577), a hypothetical protein (product of L537 gene) encoded by mimivirus. Sequence analysis and phylogeny suggested gp577 to be a primase-polymerase (PrimPol)—the first PrimPol to be identified in a nucleocytoplasmic large DNA virus (NCLDV). Recombinant gp577 protein purified as a homodimer and exhibited de novo RNA as well as DNA synthesis on circular and linear single-stranded DNA templates. Further, gp577 extends a DNA/RNA primer annealed to a DNA or RNA template using deoxyribonucleoties (dNTPs) or ribonucleotides (NTPs) demonstrating its DNA/RNA polymerase and reverse transcriptase activity. We also show that gp577 possesses terminal transferase activity and is capable of extending ssDNA and dsDNA with NTPs and dNTPs. Mutation of the conserved primase motif residues of gp577 resulted in the loss of primase, polymerase, reverse transcriptase and terminal transferase activities. Additionally, we show that gp577 possesses translesion synthesis (TLS) activity. Mimiviral gp577 represents the first protein from an NCLDV endowed with primase, polymerase, reverse transcriptase, terminal transferase and TLS activities.
机译:Acanthamoeba polyphaga mimivirus是一种感染变形虫的巨型病毒,具有超过1000个基因,其中一些基因参与DNA复制和修复。在这里,我们报告基因产物577(gp577)的生化特性,该产物是由mimivirus编码的一种假设蛋白(L537基因的产物)。序列分析和系统发育研究表明,gp577是一种引发酶聚合酶(PrimPol),这是在胞质大DNA病毒(NCLDV)中鉴定出的第一个PrimPol。重组gp577蛋白纯化为同型二聚体,并从头显示RNA以及在圆形和线性单链DNA模板上进行DNA合成。此外,gp577使用脱氧核糖核苷酸(dNTP)或核糖核苷酸(NTP)扩展了退火至DNA或RNA模板的DNA / RNA引物,证明了其DNA / RNA聚合酶和逆转录酶的活性。我们还显示,gp577具有末端转移酶活性,并且能够通过NTP和dNTPs扩展ssDNA和dsDNA。 gp577保守的primase基序残基的突变导致primase,聚合酶,逆转录酶和末端转移酶活性的丧失。此外,我们显示gp577具有跨病变合成(TLS)活性。拟病毒gp577代表来自NCLDV的第一个蛋白质,具有引发酶,聚合酶,逆转录酶,末端转移酶和TLS活性。

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