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有证据表明主要组织相容性复合体(MHC)基因与对恶性疟原虫环子孢子蛋白的免疫无反应性有关。

Evidence implicating MHC genes in the immunological nonresponsiveness to the Plasmodium falciparum CS protein.

作者信息

Good M F, Kumar S, De Groot A S, Weiss W R, Quakyi I A, Dontfraid F, Smith G E, Cochran M, Berzofsky J A, Miller L H

机构信息

Laboratory of Parasitic Diseases, N.I.A.I.D., National Institutes of Health, Bethesda, MD.

出版信息

Bull World Health Organ. 1990;68 Suppl(Suppl):80-4.

Abstract

The circumsporozoite (CS) protein is a major candidate vaccine antigen for the sporozoite stage of malaria. Both cytotoxic T cells (CTL) and antibody specific for the CS protein are thought to be important in protection. By examining the immune response in mice and humans we have shown that genes mapping to the major histocompatibility complex (MHC) are important for immune responsiveness. F1 mice between high antibody responders and low antibody responders are high antibody responders, suggesting that in this model immune suppressor genes do not control the immune response. Using synthetic peptides to map epitopes for CTL and helper T cells (which are important for the antibody response) we have shown that the T-cell epitopes are located in the polymorphic region of the protein, and we hypothesize that T cells have indeed selected the variation observed in the CS protein. The success of subunit vaccines will depend on the pattern of variation in different geographical locations, the ability to construct multivalent vaccines containing different variant epitopes from this protein, and on the existence of other sporozoite and liver-stage proteins involved in protection.

摘要

环子孢子(CS)蛋白是疟疾子孢子阶段的主要候选疫苗抗原。针对CS蛋白的细胞毒性T细胞(CTL)和抗体被认为在保护中起重要作用。通过研究小鼠和人类的免疫反应,我们发现定位到主要组织相容性复合体(MHC)的基因对免疫反应性很重要。高抗体应答者和低抗体应答者之间的F1小鼠是高抗体应答者,这表明在该模型中免疫抑制基因并不控制免疫反应。利用合成肽来定位CTL和辅助性T细胞(对抗体反应很重要)的表位,我们发现T细胞表位位于该蛋白的多态性区域,并且我们推测T细胞确实选择了CS蛋白中观察到的变异。亚单位疫苗的成功将取决于不同地理位置的变异模式、构建包含该蛋白不同变异表位的多价疫苗的能力,以及是否存在其他参与保护的子孢子和肝期蛋白。

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