Reap Elizabeth A, Dryga Sergey A, Morris John, Rivers Bryan, Norberg Pamela K, Olmsted Robert A, Chulay Jeffrey D
AlphaVax, Inc., 2 Triangle Drive, P.O. Box 110307, Research Triangle Park, NC 27709-0307, USA.
Clin Vaccine Immunol. 2007 Jun;14(6):748-55. doi: 10.1128/CVI.00037-07. Epub 2007 Apr 18.
Development of vaccines against cytomegalovirus (CMV) is an important public health priority. We used a propagation-defective, single-cycle RNA replicon vector system derived from an attenuated strain of an alphavirus, Venezuelan equine encephalitis virus, to produce virus-like replicon particles (VRP) expressing various combinations of pp65, IE1, or gB proteins of human CMV. Protein expression in VRP-infected cells was highest with single-promoter replicons expressing pp65, IE1, a pp65/IE1 fusion protein, or the extracellular domain of gB and with double-promoter replicons expressing pp65 and IE1. Protein expression was lower with double- and triple-promoter replicons expressing gB, especially the full-length form of gB. BALB/c mice immunized with VRP expressing gB developed high titers of neutralizing antibody to CMV, and mice immunized with VRP expressing pp65, IE1, or a pp65/IE1 fusion protein developed robust antigen-specific T-cell responses as measured by gamma interferon enzyme-linked immunospot assay. Three overlapping immunodominant pp65 peptides contained a nine-amino-acid sequence (LGPISGHVL) that matches the consensus binding motif for a major histocompatibility complex H2-D(d) T-cell epitope. These data provide the basis for further development and clinical evaluation of an alphavirus replicon vaccine for CMV expressing the pp65, IE1, and gB proteins.
开发抗巨细胞病毒(CMV)疫苗是一项重要的公共卫生优先事项。我们使用了一种源自委内瑞拉马脑炎病毒减毒株的增殖缺陷型单循环RNA复制子载体系统,来生产表达人巨细胞病毒pp65、IE1或gB蛋白各种组合的病毒样复制子颗粒(VRP)。在VRP感染的细胞中,表达pp65、IE1、pp65/IE1融合蛋白或gB胞外结构域的单启动子复制子,以及表达pp65和IE1的双启动子复制子的蛋白表达最高。表达gB的双启动子和三启动子复制子,尤其是全长形式的gB,其蛋白表达较低。用表达gB的VRP免疫的BALB/c小鼠产生了高滴度的抗CMV中和抗体,用表达pp65、IE1或pp65/IE1融合蛋白的VRP免疫的小鼠,通过γ干扰素酶联免疫斑点试验检测,产生了强烈的抗原特异性T细胞反应。三个重叠的免疫显性pp65肽包含一个九氨基酸序列(LGPISGHVL),该序列与主要组织相容性复合体H2-D(d) T细胞表位的共有结合基序相匹配。这些数据为进一步开发和临床评估表达pp65、IE1和gB蛋白的CMV甲病毒复制子疫苗提供了基础。