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High-level Expression of Glycoprotein D by a Dominant-negative HSV-1 Virus Augments Its Efficacy as a Vaccine Against HSV-1 Infection

机译:显性阴性HSV-1病毒高表达糖蛋白D增强了其作为抗HSV-1感染疫苗的功效

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摘要

Using the T-REx™ (Invitrogen, CA) gene switch technology, we previously generated a dominant-negative HSV-1 recombinant, CJ83193, capable of inhibiting its own replication as well as that of wild-type HSV-1 and HSV-2. It has been further demonstrated that CJ83193 is an effective vaccine against HSV-1 infection in a mouse ocular model. To ensure its safety and augment its efficacy, we generated an improved CJ83193-like HSV-1 recombinant, CJ9-gD, which contains a deletion in an HSV-1 essential gene and encodes an extra copy of gene-encoding glycoprotein D (gD) driven by the tetO-bearing hCMV major immediate-early promoter. Unlike CJ83193, which exhibits limited plaque-forming capability in Vero cells and expresses little gD in infected cells, CJ9-gD is completely replication defective, yields high-level expression of gD following infection, and cannot establish detectable infection in mouse trigeminal ganglia following intranasal and ocular inoculation. Mice immunized with CJ9-gD produced 3.5-fold higher HSV-1 neutralizing antibody titer than CJ83193-immunized mice, and were completely protected from herpetic ocular disease following corneal challenge with wild-type HSV-1. Moreover, immunization of mice with CJ9-gD elicited a strong HSV-1-specific T-cell response and led to an 80% reduction in latent infection by challenge wild-type HSV-1 compared with the mock-immunized control.
机译:我们使用T-REx™(Invitrogen,CA)基因转换技术,先前产生了显性阴性HSV-1重组体CJ83193,能够抑制其自身复制以及野生型HSV-1和HSV-2的复制。进一步证明CJ83193是在小鼠眼模型中抗HSV-1感染的有效疫苗。为了确保其安全性并增强功效,我们生成了改良的CJ83193-like HSV-1重组体CJ9-gD,其在HSV-1必需基因中包含一个缺失,并编码了额外的基因编码糖蛋白D(gD)由携带tetO的hCMV主要立即早期启动子驱动。与CJ83193不同,CJ9193-gD在Vero细胞中具有有限的噬菌斑形成能力,在受感染的细胞中几乎不表达gD,它完全复制缺陷,在感染后产生高水平的gD表达,并且在鼻内小鼠三叉神经节中无法建立可检测的感染和眼睛接种。用CJ9-gD免疫的小鼠产生的HSV-1中和抗体滴度比用CJ83193免疫的小鼠高3.5倍,并且在用野生型HSV-1角膜攻击后完全免受疱疹性眼病的侵害。此外,与模拟免疫对照相比,用CJ9-gD免疫小鼠会引起强烈的HSV-1特异性T细胞反应,并通过攻击野生型HSV-1导致潜伏感染减少80%。

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