首页> 美国卫生研究院文献>Infection and Immunity >Linkage of Exogenous T-cell Epitopes to the 19-Kilodalton Region of Plasmodium yoelii Merozoite Surface Protein 1 (MSP119) Can Enhance Protective Immunity against Malaria and Modulate the Immunoglobulin Subclass Response to MSP119
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Linkage of Exogenous T-cell Epitopes to the 19-Kilodalton Region of Plasmodium yoelii Merozoite Surface Protein 1 (MSP119) Can Enhance Protective Immunity against Malaria and Modulate the Immunoglobulin Subclass Response to MSP119

机译:外源性T细胞表位与约氏疟原虫裂殖子表面蛋白1(MSP119)的19-基达尔顿区域的链接可以增强针对疟疾的保护性免疫力并调节对MSP119的免疫球蛋白亚类应答

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摘要

The degree of protection against Plasmodium yoelii asexual blood stages induced by immunization of mice with the 19-kDa region of merozoite surface protein 1 (MSP119) is H-2 dependent. As a strategy to improve the protection, mouse strains with disparate H-2 haplotypes were immunized with glutathione S-transferase (GST)–MSP119 proteins including either a universal T-cell epitope from tetanus toxin (P2) or an I-Ak-restricted T-cell epitope (P8) from Plasmodium falciparum Pf332. In H-2k mice which are poorly protected following immunization with GST-MSP119, GST-P2-MSP119 significantly improved the protection. In mice partially (H-2k/b) or well protected by GST-MSP119 (H-2d and H-2b), P2 did not further increase the protection. However, the protection of H-2k/b mice and to some extent H-2k mice was improved by immunization with GST-P8-MSP119. The magnitudes of immunoglobulin G1 (IgG1) and IgG2a responses in mice immunized with the GST-MSP119 variants correlated with low peak parasitemia, indicating a protective capacity of these IgG subclasses. In H-2k mice immunized with GST-P2-MSP119, both IgG1 and IgG2a responses were significantly enhanced. The epitope P2 appeared to have a general ability to modulate the IgG subclass response since all four mouse strains displayed elevated IgG2a and/or IgG2b levels after immunization with GST-P2-MSP119. In contrast, GST-P8-MSP119 induced a slight enhancement of IgG responses in H-2k/b and H-2k mice without any major shift in IgG subclass patterns. The ability to improve the protective immunity elicited by P. yoelii MSP119 may have implications for improvement of human vaccines based on P. falciparum MSP119.
机译:通过用裂殖子表面蛋白1(MSP119)的19-kDa区域免疫小鼠诱导的约氏疟原虫无性血液阶段的保护程度是H-2依赖性的。作为改善保护的策略,用谷胱甘肽S-转移酶(GST)-MSP119蛋白免疫具有不同H-2单倍型的小鼠品系,其中包括破伤风毒素的通用T细胞表位(P2)或IA k恶性疟原虫Pf332的限制性T细胞表位(P8)。在用GST-MSP119免疫后,保护力差的H-2 k 小鼠中,GST-P2-MSP119显着改善了保护作用。在部分(H-2 k / b )或受GST-MSP119良好保护的小鼠中(H-2 d 和H-2 b ) ,P2没有进一步增加保护。然而,通过用GST-P8-MSP119免疫,可以改善H-2 k / b 小鼠的保护,并且在一定程度上可以改善H-2 k 小鼠的保护。用GST-MSP119变体免疫的小鼠中免疫球蛋白G1(IgG1)和IgG2a反应的幅度与低峰寄生虫血症相关,表明这些IgG亚类的保护能力。在用GST-P2-MSP119免疫的H-2 k 小鼠中,IgG1和IgG2a的应答均显着增强。表位P2似乎具有调节IgG亚类应答的一般能力,因为所有四种小鼠品系在用GST-P2-MSP119免疫后均显示出升高的IgG2a和/或IgG2b水平。相反,GST-P8-MSP119诱导H-2 k / b 和H-2 k 小鼠的IgG反应略有增强,而IgG亚类模式没有任何重大变化。改善约氏疟原虫MSP119引起的保护性免疫的能力可能对基于恶性疟原虫MSP119的人疫苗的改良具有影响。

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