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恶性疟原虫有性阶段抗原Pfs230特定区域诱导疟疾传播阻断免疫的差异能力。

Differential ability of specific regions of Plasmodium falciparum sexual-stage antigen, Pfs230, to induce malaria transmission-blocking immunity.

作者信息

Bustamante P J, Woodruff D C, Oh J, Keister D B, Muratova O, Williamson K C

机构信息

Department of Biology, Loyola University of Chicago, IL 60626, USA.

出版信息

Parasite Immunol. 2000 Aug;22(8):373-80. doi: 10.1046/j.1365-3024.2000.00315.x.

DOI:10.1046/j.1365-3024.2000.00315.x
PMID:10972844
Abstract

Antibodies raised against an Escherichia coli-produced recombinant protein encoding a 76-kDa section (region C) of malaria transmission-blocking vaccine candidate, Pfs230, have previously been shown to significantly reduce the ability of Plasmodium falciparum parasites to infect mosquitoes (71.2-89.8%). To further define the region of the Pfs230 required for transmission-blocking activity, four recombinant proteins each encoding a section of region C (Pfs230 amino acids 443-1132) were produced using the same E. coli expression system and tested for immunogenicity in mice: (i) r230/MBP.C5' encodes the first half of region C (amino acids 443-791, six cysteines); (ii) r230/MBP.CM1 encodes only cysteine motif (CM) 1 (amino acids 583-913, eight cysteines); (iii) r230/MBP.C1.6 (amino acids 453-913, eight cysteines) also includes all of CM1; and (iv) r230/MBP.C2 encodes only CM2 (amino acids 914-1268, 11 cysteines). All the recombinant proteins induced antibodies that recognized parasite-produced Pfs230, but the titre of the Pfs230 specific-antibodies generated varied, C = C1.6 = C5' > CM1 > CM2. Two recombinants, r230/MBP.C5' and r230/MBP.C1.6, induced antibody titres that were equivalent to or greater than the titre generated by r230/MBP.C. However, in contrast to r230/MBP.C, none of the recombinants induced antibodies that effectively blocked parasite infectivity to mosquitoes. This suggests that the inclusion of amino acids 914-1132 is important for the production of the transmission-blocking epitope present in region C.

摘要

先前已证明,针对大肠杆菌产生的重组蛋白产生的抗体可显著降低恶性疟原虫感染蚊子的能力(降低71.2 - 89.8%),该重组蛋白编码疟疾传播阻断疫苗候选物Pfs230的一个76 kDa片段(区域C)。为了进一步确定Pfs230中传播阻断活性所需的区域,使用相同的大肠杆菌表达系统制备了四种重组蛋白,每种蛋白编码区域C的一个片段(Pfs230氨基酸443 - 1132),并在小鼠中测试其免疫原性:(i)r230/MBP.C5'编码区域C的前半部分(氨基酸443 - 791,六个半胱氨酸);(ii)r230/MBP.CM1仅编码半胱氨酸基序(CM)1(氨基酸583 - 913,八个半胱氨酸);(iii)r230/MBP.C1.6(氨基酸453 - 913,八个半胱氨酸)也包含所有的CM1;(iv)r230/MBP.C2仅编码CM2(氨基酸914 - 1268,11个半胱氨酸)。所有重组蛋白均诱导产生了能识别寄生虫产生的Pfs230的抗体,但产生的Pfs230特异性抗体的效价各不相同,C = C1.6 = C5' > CM1 > CM2。两种重组蛋白r230/MBP.C5'和r230/MBP.C1.6诱导产生的抗体效价等于或高于r230/MBP.C产生的效价。然而,与r230/MBP.C不同的是,没有一种重组蛋白诱导产生能有效阻断寄生虫感染蚊子的抗体。这表明包含氨基酸914 - 1132对于产生区域C中存在的传播阻断表位很重要。

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