首页> 美国卫生研究院文献>Journal of Virology >The UL12.5 Gene Product of Herpes Simplex Virus Type 1 Exhibits Nuclease and Strand Exchange Activities but Does Not Localize to the Nucleus
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The UL12.5 Gene Product of Herpes Simplex Virus Type 1 Exhibits Nuclease and Strand Exchange Activities but Does Not Localize to the Nucleus

机译:1型单纯疱疹病毒的UL12.5基因产物具有核酸酶和链交换活性但不位于核内

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摘要

The herpes simplex virus type 1 (HSV-1) alkaline nuclease, encoded by the UL12 gene, plays an important role in HSV-1 replication, as a null mutant of UL12 displays a severe growth defect. Although the precise in vivo role of UL12 has not yet been determined, several in vitro activities have been identified for the protein, including endo- and exonuclease activities, interaction with the HSV-1 single-stranded DNA binding protein ICP8, and an ability to promote strand exchange in conjunction with ICP8. In this study, we examined a naturally occurring N-terminally truncated version of UL12 called UL12.5. Previous studies showing that UL12.5 exhibits nuclease activity but is unable to complement a UL12 null virus posed a dilemma and suggested that UL12.5 may lack a critical activity possessed by the full-length protein, UL12. We constructed a recombinant baculovirus capable of expressing UL12.5 and purified soluble UL12.5 from infected insect cells. The purified UL12.5 exhibited both endo- and exonuclease activities but was less active than UL12. Like UL12, UL12.5 could mediate strand exchange with ICP8 and could also be coimmunoprecipitated with ICP8. The primary difference between the two proteins was in their intracellular localization, with UL12 localizing to the nucleus and UL12.5 remaining in the cytoplasm. We mapped a nuclear localization signal to the N terminus of UL12, the domain absent from UL12.5. In addition, when UL12.5 was overexpressed so that some of the enzyme leaked into the nucleus, it was able to partially complement the UL12 null mutant.
机译:UL12基因编码的单纯疱疹病毒1型(HSV-1)碱性核酸酶在HSV-1复制中起重要作用,因为UL12的无效突变体显示出严重的生长缺陷。尽管尚未确定UL12在体内的确切作用,但已鉴定出该蛋白的几种体外活性,包括核酸内切酶和核酸外切酶活性,与H​​SV-1单链DNA结合蛋白ICP8的相互作用以及与ICP8一起促进链交换。在这项研究中,我们检查了天然存在的UL12的N末端截短形式,称为UL12.5。先前的研究表明,UL12.5具有核酸酶活性,但不能与UL12无效病毒互补,因此陷入了两难境地,并表明UL12.5可能缺乏全长蛋白UL12所具有的关键活性。我们构建了一种重组杆状病毒,能够从被感染的昆虫细胞中表达UL12.5和纯化的可溶性UL12.5。纯化的UL12.5既显示核酸内切酶活性,又显示核酸外切酶活性,但活性不如UL12。像UL12一样,UL12.5可以介导与ICP8的链交换,也可以与ICP8共免疫沉淀。两种蛋白质之间的主要区别在于它们的细胞内定位,其中UL12定位于细胞核,而UL12.5保留在细胞质中。我们将核定位信号映射到UL12的N末端(UL12.5缺少的域)。另外,当UL12.5过表达使得某些酶泄漏到细胞核中时,它能够部分补充UL12空突变体。

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