首页> 美国卫生研究院文献>Journal of Virology >Pseudorabies Virus Glycoprotein gK Is a Virion Structural Component Involved in Virus Release but Is Not Required for Entry
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Pseudorabies Virus Glycoprotein gK Is a Virion Structural Component Involved in Virus Release but Is Not Required for Entry

机译:伪狂犬病病毒糖蛋白gK是参与病毒释放的病毒体结构成分但不是进入所必需的

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摘要

The pseudorabies virus (PrV) gene homologous to herpes simplex virus type 1 (HSV-1) UL53, which encodes HSV-1 glycoprotein K (gK), has recently been sequenced (J. Baumeister, B. G. Klupp, and T. C. Mettenleiter, J. Virol. 69:5560–5567, 1995). To identify the corresponding protein, a rabbit antiserum was raised against a 40-kDa glutathione S-transferase–gK fusion protein expressed in Escherichia coli. In Western blot analysis, this serum detected a 32-kDa polypeptide in PrV-infected cell lysates as well as a 36-kDa protein in purified virion preparations, demonstrating that PrV gK is a structural component of virions. After treatment of purified virions with endoglycosidase H, a 34-kDa protein was detected, while after incubation with N-glycosidase F, a 32-kDa protein was specifically recognized. This finding indicates that virion gK is modified by N-linked glycans of complex as well as high-mannose type. For functional analysis, the UL53 open reading frame was interrupted after codon 164 by insertion of a gG-lacZ expression cassette into the wild-type PrV genome (PrV-gKβ) or by insertion of the bovine herpesvirus 1 gB gene into a PrV gB genome (PrV-gKgB). Infectious mutant virus progeny was obtained only on complementing gK-expressing cells, suggesting that gK has an important function in the replication cycle. After infection of Vero cells with either gK mutant, only single infected cells or small foci of infected cells were visible. In addition, virus yield was reduced approximately 30-fold, and penetration kinetics showed a delay in entry which could be compensated for by phenotypic gK complementation. Interestingly, the plating efficiency of PrV-gKβ was similar to that of wild-type PrV on complementing and noncomplementing cells, pointing to an essential function of gK in virus egress but not entry. Ultrastructurally, virus assembly and morphogenesis of PrV gK mutants in noncomplementing cells were similar to wild-type virus. However, late in infection, numerous nucleocapsids were found directly underneath the plasma membrane in stages typical for the entry process, a phenomenon not observed after wild-type virus infection and also not visible after infection of gK-complementing cells. Thus, we postulate that presence of gK is important to inhibit immediate reinfection.
机译:最近已对与单纯疱疹病毒1型(HSV-1)UL53同源的伪狂犬病病毒(PrV)基因编码HSV-1糖蛋白K(gK)进行了测序(J.Baumeister,BG Klupp和TC Mettenleiter,J. 69:5560-5567,1995)。为了鉴定相应的蛋白质,针对在大肠杆菌中表达的40 kDa谷胱甘肽S-转移酶– gK融合蛋白产生了兔抗血清。在蛋白质印迹分析中,该血清在被PrV感染的细胞裂解物中检测到32 kDa的多肽,在纯化的病毒体制品中检测到36 kDa的蛋白质,表明PrV gK是病毒体的结构成分。用内切糖苷酶H处理纯化的病毒体后,检测到34-kDa蛋白,而与N-糖苷酶F孵育后,特异性识别出32-kDa蛋白。该发现表明病毒体gK被复杂的以及高甘露糖型的N-连接聚糖修饰。为了进行功能分析,通过将gG-lacZ表达盒插入野生型PrV基因组(PrV-gKβ)或将牛疱疹病毒1 gB基因插入PrV gB < sup>-基因组(PrV-gK gB )。感染性突变病毒后代仅在表达互补性gK的细胞上获得,表明gK在复制周期中具有重要作用。用gK突变体感染Vero细胞后,仅可见单个感染细胞或小的感染细胞灶。此外,病毒的产量降低了约30倍,并且渗透动力学显示进入延迟,这可以通过表型gK互补来弥补。有趣的是,PrV-gKβ在补体细胞和非补体细胞上的铺板效率与野生型PrV相似,这表明gK在病毒流出而不是进入中的基本功能。在超微结构上,非互补细胞中PrV gK突变体的病毒组装和形态发生与野生型病毒相似。然而,在感染晚期,在进入过程的典型阶段,在质膜正下方直接发现了许多核衣壳,这种现象在野生型病毒感染后未观察到,在感染gK补体细胞后也未见。因此,我们假设存在gK对于抑制立即再感染很重要。

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