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在核糖核苷酸还原酶大亚基(ICP10)的PK结构域中缺失的2型单纯疱疹病毒突变体的疫苗潜力。

Vaccine potential of a herpes simplex virus type 2 mutant deleted in the PK domain of the large subunit of ribonucleotide reductase (ICP10).

作者信息

Aurelian L, Kokuba H, Smith C C

机构信息

Virology/Immunology Laboratories, Department of Pharmacology and Experimental Therapeutics, University of Maryland School of Medicine, Baltimore 21201, USA.

出版信息

Vaccine. 1999 Apr 9;17(15-16):1951-63. doi: 10.1016/s0264-410x(98)00470-8.

Abstract

A herpes simplex virus type 2 (HSV-2) mutant deleted in the PK domain of the large subunit of ribonucleotide reductase (ICP10) was evaluated as a potential vaccine for the prevention of HSV-2 infection and disease. This virus, designated ICP10 deltaPK, expressed a 95 kDa ICP10 protein that lacked PK activity and transforming potential. ICP10 deltaPK was growth compromised in dividing and nondividing cells in culture. In dividing cells, onset of virus growth was delayed, with replication initiating at 10-15 h p.i. depending on the multiplicity of infection. In addition to the delayed growth onset, virus replication was significantly impaired (1000-fold lower titers) in nondividing cells. A revertant virus (HSV-2(R)) expressed ICP10, regained transforming activity and had wild type growth properties. ICP10 deltaPK was growth compromised also in infected animals. It was isolated from the site of infection on day 2, but not day 7 p.i. and its titers at this time (2 x 10(2) pfu/ml) were significantly lower than those of HSV-2 (5 x 10(4) pfu/ml). Mice given high titers of ICP10 deltaPK (5 x 10(7) pfu/footpad) remained free of clinical symptoms and survived infection during a 21-day follow-up period and virus was not isolated from latently infected ganglia at 30 days p.i. ICP10 deltaPK immunized animals developed HSV-specific humoral and T-cell responses and evidenced absolute protection from HSV-2 infection and virus-induced disease.

摘要

对一种在核糖核苷酸还原酶大亚基(ICP10)的PK结构域缺失的单纯疱疹病毒2型(HSV-2)突变体进行了评估,以确定其作为预防HSV-2感染和疾病的潜在疫苗的可能性。这种病毒被命名为ICP10 deltaPK,表达一种缺乏PK活性和转化潜能的95 kDa ICP10蛋白。ICP10 deltaPK在培养的分裂细胞和非分裂细胞中生长受限。在分裂细胞中,病毒生长开始延迟,根据感染复数,复制在感染后10-15小时开始。除了生长开始延迟外,在非分裂细胞中病毒复制也显著受损(滴度低1000倍)。一种回复病毒(HSV-2(R))表达ICP10,恢复了转化活性并具有野生型生长特性。ICP10 deltaPK在感染动物中生长也受限。在感染后第2天从感染部位分离到该病毒,但在感染后第7天未分离到,此时其滴度(2×10² pfu/ml)显著低于HSV-2(5×10⁴ pfu/ml)。给予高滴度ICP10 deltaPK(5×10⁷ pfu/足垫)的小鼠在21天的随访期内没有出现临床症状并在感染中存活,并且在感染后30天从潜伏感染的神经节中未分离到病毒。用ICP10 deltaPK免疫的动物产生了HSV特异性体液和T细胞反应,并证明对HSV-2感染和病毒诱导的疾病具有绝对保护作用。

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