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在瞬时共转染试验中,卡波西肉瘤相关疱疹病毒DNA复制区室的起源无关组装及其与ORF-K8蛋白和细胞PML的关联

Origin-independent assembly of Kaposi's sarcoma-associated herpesvirus DNA replication compartments in transient cotransfection assays and association with the ORF-K8 protein and cellular PML.

作者信息

Wu F Y, Ahn J H, Alcendor D J, Jang W J, Xiao J, Hayward S D, Hayward G S

机构信息

Molecular Virology Laboratories, Department of Pharmacology and Molecular Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland 21231-1000, USA.

出版信息

J Virol. 2001 Feb;75(3):1487-506. doi: 10.1128/JVI.75.3.1487-1506.2001.

Abstract

Six predicted Kaposi's sarcoma virus herpesvirus (KSHV) proteins have homology with other well-characterized herpesvirus core DNA replication proteins and are expected to be essential for viral DNA synthesis. Intact Flag-tagged protein products from all six were produced from genomic expression vectors, although the ORF40/41 transcript encoding a primase-helicase component proved to be spliced with a 127-bp intron. The intracellular localization of these six KSHV replication proteins and the mechanism of their nuclear translocation were investigated. SSB (single-stranded DNA binding protein, ORF6) and PPF (polymerase processivity factor, ORF59) were found to be intrinsic nuclear proteins, whereas POL (polymerase, ORF9), which localized in the cytoplasm on its own, was translocated to the nucleus when cotransfected with PPF. PAF (primase-associated factor, ORF40/41), a component of the primase-helicase tripartite subcomplex together with PRI (primase, ORF56) and HEL (helicase, ORF44), required the presence of all five other replication proteins for efficient nuclear translocation. Surprisingly, even in the absence of a lytic cycle replication origin (ori-Lyt) and any known initiator or origin binding protein, the protein products of all six KSHV core replication genes cooperated in a transient cotransfection assay to form large globular shaped pseudo-replication compartments (pseudo-RC), which excluded cellular DNA. These pseudo-RC structures were confirmed to include POL, SSB, PRI, and PAF but did not contain any newly synthesized DNA. Similar to the human cytomegalovirus system, the peripheries of these KSHV pre-RC were also found to be surrounded by punctate PML oncogenic domains (PODs). Furthermore, by transient cotransfection, the six KSHV core replication machinery proteins successfully replicated a plasmid containing EBV ori-Lyt in the presence of the Epstein-Barr virus-encoded DNA binding initiator protein, ZTA. The KSHV-encoded K8 (ORF-K8) protein, which is a distant evolutionary homologue to ZTA, was incorporated into pseudo-RC structures formed by transient cotransfection with the six core KSHV replication genes. However, unlike ZTA, K8 displayed a punctate nuclear pattern both in transfected cells and at early stages of lytic infection and colocalized with the cellular PML proteins in PODs. Finally, K8 was also found to accumulate in functional viral RC, detected by incorporation of pulse-labeled bromodeoxyuridine into newly synthesized DNA in both tetradecanoyl phorbol acetate-induced JSC-1 primary effusion lymphoblasts and in KSHV lytically infected endothelial cells.

摘要

六种预测的卡波西肉瘤病毒疱疹病毒(KSHV)蛋白与其他特征明确的疱疹病毒核心DNA复制蛋白具有同源性,预计对病毒DNA合成至关重要。尽管编码引发酶-解旋酶组分的ORF40/41转录本被证明与一个127bp的内含子发生了剪接,但所有六种蛋白的完整Flag标签蛋白产物均由基因组表达载体产生。研究了这六种KSHV复制蛋白的细胞内定位及其核转运机制。发现单链DNA结合蛋白(SSB,ORF6)和聚合酶持续因子(PPF,ORF59)是内在核蛋白,而单独定位于细胞质中的聚合酶(POL,ORF9)在与PPF共转染时会转运至细胞核。引发酶相关因子(PAF,ORF40/41)是引发酶-解旋酶三方亚复合物的一个组分,与引发酶(PRI,ORF56)和解旋酶(HEL,ORF44)一起,需要其他所有五种复制蛋白的存在才能有效进行核转运。令人惊讶的是,即使在没有裂解周期复制起点(ori-Lyt)以及任何已知的起始子或起点结合蛋白的情况下,所有六个KSHV核心复制基因的蛋白产物在瞬时共转染试验中协同作用,形成了大的球状假复制区室(pseudo-RC),这些区室排除了细胞DNA。这些pseudo-RC结构被证实包含POL、SSB、PRI和PAF,但不包含任何新合成的DNA。与人类巨细胞病毒系统类似,这些KSHV前RC的周边也被点状的早幼粒细胞白血病致癌结构域(PODs)所包围。此外,通过瞬时共转染,在存在爱泼斯坦-巴尔病毒编码的DNA结合起始蛋白ZTA的情况下,六种KSHV核心复制机制蛋白成功复制了一个含有EBV ori-Lyt的质粒。KSHV编码的K8蛋白(ORF-K8)是ZTA的远缘进化同源物,它被整合到通过与六个核心KSHV复制基因瞬时共转染形成的pseudo-RC结构中。然而,与ZTA不同,K8在转染细胞和裂解感染早期均呈现点状核模式,并与细胞PML蛋白在PODs中共定位。最后,还发现K8在功能性病毒RC中积累,这通过在十四烷酰佛波醇乙酸酯诱导的JSC-1原发性渗出性成淋巴细胞和KSHV裂解感染的内皮细胞中,将脉冲标记的溴脱氧尿苷掺入新合成的DNA中得以检测。

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