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Regulation of HIV-Gag Expression and Targeting to the Endolysosomal/Secretory Pathway by the Luminal Domain of Lysosomal-Associated Membrane Protein (LAMP-1) Enhance Gag-Specific Immune Response

机译:调节溶酶体相关膜蛋白(LAMP-1)的发光结构域的HIV-Gag表达和靶向内溶酶体/分泌途径增强了特异性特异性的免疫反应。

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摘要

We have previously demonstrated that a DNA vaccine encoding HIV-p55gag in association with the lysosomal associated membrane protein-1 (LAMP-1) elicited a greater Gag-specific immune response, in comparison to a DNA encoding the native gag. In vitro studies have also demonstrated that LAMP/Gag was highly expressed and was present in MHCII containing compartments in transfected cells. In this study, the mechanisms involved in these processes and the relative contributions of the increased expression and altered traffic for the enhanced immune response were addressed. Cells transfected with plasmid DNA constructs containing p55gag attached to truncated sequences of LAMP-1 showed that the increased expression of gag mRNA required p55gag in frame with at least 741 bp of the LAMP-1 luminal domain. LAMP luminal domain also showed to be essential for Gag traffic through lysosomes and, in this case, the whole sequence was required. Further analysis of the trafficking pathway of the intact LAMP/Gag chimera demonstrated that it was secreted, at least in part, associated with exosome-like vesicles. Immunization of mice with LAMP/gag chimeric plasmids demonstrated that high expression level alone can induce a substantial transient antibody response, but targeting of the antigen to the endolysosomal/secretory pathways was required for establishment of cellular and memory response. The intact LAMP/gag construct induced polyfunctional CD4+ T cell response, which presence at the time of immunization was required for CD8+ T cell priming. LAMP-mediated targeting to endolysosomal/secretory pathway is an important new mechanistic element in LAMP-mediated enhanced immunity with applications to the development of novel anti-HIV vaccines and to general vaccinology field.
机译:先前我们已经证明,与编码天然gag的DNA相比,编码HIV-p55gag与溶酶体相关膜蛋白1(LAMP-1)的DNA疫苗引起更大的Gag特异性免疫反应。体外研究还表明,LAMP / Gag高表达并存在于转染细胞中含有MHCII的区室中。在这项研究中,涉及这些过程的机制以及增加表达和改变交通量以增强免疫反应的相对作用。用含有连接到LAMP-1截短序列的p55gag的质粒DNA构建体转染的细胞显示,gag mRNA表达的增加需要p55gag与至少741 bp的LAMP-1腔结构域一致。 LAMP腔域对于通过溶酶体的Gag转运也显示出至关重要的作用,在这种情况下,需要整个序列。完整的LAMP / Gag嵌合体的运输途径的进一步分析表明,它至少部分地与外泌体样囊泡有关地被分泌。用LAMP / gag嵌合质粒免疫小鼠表明,高表达水平可以单独诱导大量的瞬时抗体应答,但是建立细胞和记忆应答需要将抗原靶向溶酶体/分泌途径。完整的LAMP / gag构建体可诱导多功能CD4 + T细胞应答,免疫接种时必须存在CD8 + T细胞。 LAMP介导的针对溶酶体/分泌途径的靶向是LAMP介导的增强免疫力的重要新机制要素,并应用于新型抗HIV疫苗的开发和一般疫苗学领域。

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