The loss of both pUL16 and pUL21 in HSV-1-infected cells alters capsid-tegument composition, nuclear membrane architecture, cytoplasmic maturation and cell-to-cell spread.

IF 3.6 4区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Kellen Roddy, Peter Grzesik, Barbara J Smith, Nathan Ko, Sanjay Vashee, Prashant J Desai
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引用次数: 0

Abstract

Previously, we had developed synthetic genomics methods to assemble an infectious clone of herpes simplex virus type-1 (HSV-1) strain KOS. To do this, the genome was assembled from 11 separate cloned fragments in yeast using transformation-associated recombination. Using this method, we generated null mutations in five tegument protein-coding genes as well as different combinations of these mutants. The single-locus mutants were all able to plaque on Vero cells. However, one multi-locus combination, ∆UL16/UL21, proved lethal for virus replication in non-permissive cells. The proteins encoded by the genes UL16 and UL21 are of interest because they are known to physically interact and are constituents of the tegument structure. Furthermore, their roles in HSV-1-infected cells are unclear. Both are dispensable for HSV-1 replication; however, in HSV-2, their mutation results in nuclear retention of assembled capsids and has activities that impact nuclear membrane integrity as well as activities of proteins that function in nuclear egress. We thus characterized these HSV-1 viruses that carry the single and double mutants. What we found was that the single mutants could replicate within cells and spread from infected to uninfected cells, albeit at significantly reduced levels. However, the double mutant (∆16/21) could not produce infectious progeny in a 24 h growth cycle and could not spread from cell to cell. Confocal microscopy of VP16-Venus expressed by these viruses as well as immunofluorescence assays for glycoprotein B showed perturbation of the nuclear membrane, which was pronounced in ∆21 and ∆16/21 infected cells. All the mutants assembled DNA-filled capsids as judged by ultrastructural analyses and sedimentation studies. Electron microscopy revealed the presence of numerous mature viruses in WT-infected cells but fewer such particles in the ∆16- and ∆21-infected cells. What we discovered is that in cells where both pUL16 and pUL21 are absent, cytoplasmic capsids were evident, but mature enveloped particles were not detected. The capsid particles isolated from all the single- and multi-locus mutant-infected cells showed significantly lower levels of incorporation of both VP16 and pUL37 when compared to the WT capsids. This reduced incorporation may be related to the loss of the integrity of the architecture of the nuclear membrane. Interestingly, the incorporation of pUL16 was not affected by the absence of pUL21 and vice versa, as judged by immunoblots. These data now show that of the tegument proteins, like the essential pUL36, pUL37 and VP16, the complex of pUL16 and pUL21 should be considered as important mediators of maturation and cell-to-cell spread of the particle.

在hsv -1感染的细胞中,pUL16和pUL21的缺失会改变衣壳被组成、核膜结构、细胞质成熟和细胞间扩散。
以前,我们已经开发了合成基因组学方法来组装1型单纯疱疹病毒(HSV-1)株KOS的传染性克隆。为了做到这一点,基因组是由11个独立的克隆片段在酵母中使用转化相关重组组装而成的。利用这种方法,我们在5个被盖蛋白编码基因中产生了零突变,以及这些突变的不同组合。单位点突变体都能在Vero细胞上形成空斑。然而,一个多位点组合,∆UL16/UL21,被证明对病毒在非受纳细胞中的复制是致命的。由UL16和UL21基因编码的蛋白质之所以受到关注,是因为已知它们具有物理相互作用,并且是被皮结构的组成部分。此外,它们在hsv -1感染细胞中的作用尚不清楚。两者对于HSV-1复制都是不可缺少的;然而,在HSV-2中,它们的突变导致组装衣壳的核保留,并具有影响核膜完整性以及在核出口中起作用的蛋白质活性的活性。因此,我们对这些携带单突变体和双突变体的HSV-1病毒进行了表征。我们发现,单个突变体可以在细胞内复制,并从感染的细胞传播到未感染的细胞,尽管水平显著降低。然而,双突变体(∆16/21)在24 h的生长周期内不能产生感染性后代,也不能在细胞间传播。这些病毒表达的VP16-Venus的共聚焦显微镜和糖蛋白B的免疫荧光检测显示,在∆21和∆16/21感染的细胞中,核膜受到了明显的扰动。根据超微结构分析和沉积研究,所有突变体都组装了充满dna的衣壳。电镜显示wt感染细胞中存在大量成熟病毒,但∆16和∆21感染细胞中这种颗粒较少。我们发现,在缺乏pUL16和pUL21的细胞中,细胞质衣壳明显,但未检测到成熟的包膜颗粒。从所有单位点和多位点突变感染细胞中分离的衣壳颗粒与WT衣壳相比,VP16和pUL37的掺入水平显著降低。这种减少的掺入可能与核膜结构完整性的丧失有关。有趣的是,通过免疫印迹判断,pUL16的结合不受pUL21缺失的影响,反之亦然。这些数据现在表明,在被膜蛋白中,如必不可少的pUL36、pUL37和VP16, pUL16和pUL21的复合体应该被认为是颗粒成熟和细胞间扩散的重要介质。
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来源期刊
Journal of General Virology
Journal of General Virology 医学-病毒学
CiteScore
7.70
自引率
2.60%
发文量
91
审稿时长
3 months
期刊介绍: JOURNAL OF GENERAL VIROLOGY (JGV), a journal of the Society for General Microbiology (SGM), publishes high-calibre research papers with high production standards, giving the journal a worldwide reputation for excellence and attracting an eminent audience.
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