Agwale S M, Shata M T, Reitz M S, Kalyanaraman V S, Gallo R C, Popovic M, Hone D M
Division of Vaccine Research, Institute of Human Virology, University of Maryland Biotechnology Institute, Baltimore, MD 21202, USA.
Proc Natl Acad Sci U S A. 2002 Jul 23;99(15):10037-41. doi: 10.1073/pnas.152313899. Epub 2002 Jul 2.
The rational design of new therapies against HIV-1 necessitates an improved understanding of the mechanisms underlying the production of ineffective immune responses to HIV-1 in most infected individuals. This report shows that the CD8(+) T cell responses to gp120 were greatly diminished in mice vaccinated with a bicistronic gp120-Tat DNA vaccine, compared with those induced by a DNA vaccine encoding gp120 alone. The CD8(+) T cell responses induced by the latter included strong gp120-specific IFN-gamma secretion and protective antiviral immunity against challenge by a vaccinia-env pseudotype. The degree to which Tat influenced CD8(+) T cell responses depended on the bioactivity of Tat. Thus, a bicistronic DNA vaccine that expresses gp120 and a truncated Tat defective for LTR activation elicited strong IFN-gamma -secreting CD8(+) T cell responses to gp120 but conferred only marginal protection against the vaccinia-env challenge. The effect of Tat was completely blocked, however, by immunization with inactivated Tat protein before vaccination with the bicistronic gp120-Tat DNA vaccine.
合理设计抗HIV-1的新疗法需要更好地理解大多数受感染个体对HIV-1产生无效免疫反应的潜在机制。本报告显示,与单独编码gp120的DNA疫苗诱导的反应相比,用双顺反子gp120-Tat DNA疫苗接种的小鼠对gp120的CD8(+) T细胞反应大大减弱。后者诱导的CD8(+) T细胞反应包括强烈的gp120特异性IFN-γ分泌以及针对痘苗病毒-env假型攻击的保护性抗病毒免疫。Tat影响CD8(+) T细胞反应的程度取决于Tat的生物活性。因此,表达gp120和对LTR激活有缺陷的截短Tat的双顺反子DNA疫苗引发了对gp120的强烈分泌IFN-γ的CD8(+) T细胞反应,但对痘苗病毒-env攻击仅提供了微弱的保护。然而,在用双顺反子gp120-Tat DNA疫苗接种前用灭活的Tat蛋白免疫,可完全阻断Tat的作用。