Synthetic peptides from P. falciparum sexual stage 25-kDa protein induce antibodies that react with the native protein: the role of IL-2 and conformational structure on immunogenicity of Pfs25.

Peptide research Pub Date : 1995-11-01
I A Quakyi, L H Miller, M F Good, J D Ahlers, S N Isaacs, J H Nunberg, R A Houghten, D B Keister, J E Coligan, B Moss
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Abstract

To identify B-cell epitopes of the Plasmodium falciparum 25-kDa ookinete protein, Pfs25, 41 overlapping synthetic peptides spanning the entire length of the protein were used individually to immunize CAF1 (F1 hybrid of BALB/c female and A/J male) mice. Antipeptide sera were tested for reactivity to live intact zygote/early ookinete (post-fertilization stage) by immunofluorescence, and by Western blot analysis under nonreducing and reducing conditions, immunoprecipitation of 35S-cysteine-labeled antigen, and ELISA using a vaccinia recombinant Pfs25 antigen. Fourteen B-cell epitopes were identified. These peptides were immunogenic only when administered with high-dose recombinant interleukin-2. Antibodies to 11 peptides recognized only the native conformational structure, one peptide induced antibodies that recognized both reduced and native protein, and two other peptides, after primary immunization, made antibodies to denatured Pfs25, but after boosting the antibodies reacted to both denatured and native Pfs25. Anti-sera to peptides in the first (peptide 7) and fourth (peptide 34) epidermal growth factor-like domains of Pfs25 reacted most strongly with zygotes/ookinetes by immunofluorescence assay. The antibodies elicited by immunization with peptide 34 suppressed infectivity of the parasite to mosquitoes. We further observed that the secondary structure of Pfs25 may be important for immunogenicity because monoclonal antibodies (MAbs) 1C7 and 1D2, both transmission-blocking MAbs, protected enzyme cleavage sites in Pfs25 from proteolysis, suggesting that discontinuous segments of Pfs25 may come together to form immunogenic epitopic sites. Thus, definition of B- and T-cell epitopes may be required to construct a Pfs25 vaccine for optimum immunogenicity.

恶性疟原虫性期25kda蛋白合成肽诱导抗体与天然蛋白反应:IL-2及其构象结构对Pfs25免疫原性的影响
为了鉴定恶性疟原虫25-kDa卵母细胞蛋白Pfs25的b细胞表位,我们分别使用41个重叠的合成肽段,跨越蛋白的整个长度,免疫CAF1 (BALB/c雌性和A/J雄性的F1杂交)小鼠。采用免疫荧光法检测抗肽血清对活的完整受精卵/早期卵母细胞(受精后)的反应性,并在非还原和还原条件下进行Western blot分析,免疫沉淀35s半胱氨酸标记抗原,ELISA检测痘苗重组Pfs25抗原。鉴定出14个b细胞表位。这些肽只有在与高剂量重组白细胞介素-2一起施用时才具有免疫原性。11个肽段的抗体只识别天然构象结构,一个肽段诱导的抗体同时识别还原蛋白和天然蛋白,另外两个肽段在初次免疫后产生变性Pfs25抗体,但在增强后抗体对变性Pfs25和天然Pfs25都有反应。免疫荧光分析显示,Pfs25第1(肽7)和第4(肽34)表皮生长因子样结构域的抗血清与受精卵/卵型子反应最强烈。肽34免疫诱导的抗体抑制了疟原虫对蚊虫的感染性。我们进一步观察到Pfs25的二级结构可能对免疫原性很重要,因为单克隆抗体(mab) 1C7和1D2都是传输阻断mab,保护Pfs25的酶裂解位点免受蛋白质水解,这表明Pfs25的不连续片段可能聚集在一起形成免疫原性表位位点。因此,可能需要确定B细胞和t细胞表位来构建Pfs25疫苗以获得最佳的免疫原性。
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