PLASMODIUM-FALCIPARUM - D260, AN INTRAERYTHROCYTIC PARASITE PROTEIN, IS A MEMBER OF THE GLUTAMIC-ACID DIPEPTIDE-REPEAT FAMILY OF PROTEINS

被引:16
作者
BARNES, DA
WOLLISH, W
NELSON, RG
LEECH, JH
PETERSEN, C
机构
[1] UNIV CALIF SAN FRANCISCO,SAN FRANCISCO GEN HOSP,DIV INFECT DIS,SAN FRANCISCO,CA 94110
[2] UNIV CALIF SAN FRANCISCO,DEPT MED,SAN FRANCISCO,CA 94110
[3] UNIV CALIF SAN FRANCISCO,DEPT PHARMACEUT CHEM,SAN FRANCISCO,CA 94143
关键词
PLASMODIUM FALCIPARUM; GLUTAMIC ACID DIPEPTIDE REPEATS; SEROLOGIC CROSS-REACTIVITY;
D O I
10.1006/expr.1995.1095
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
Members of a serologically cross-reacting family of proteins including Ag332 and Pf11.1, megadalton proteins of schizont-infected red blood cells, and gametocytes, respectively, and Pf155-RESA, a 155-kDa protein of ring-infected red blood cells, have been reported to share amino acid repeat sequences. These repeats are rich in glutamic acid dipeptides postulated to be involved in generating serologic cross-reactivity. We report the identification and characterization of another member of this cross-reacting family, a 260-kDa glutamic acid-rich intraerythrocytic protein. Human antibodies affinity purified on the 260-kDa region of Western blots of trophozoite proteins of Plasmodium falciparuna were used to screen a trophozoite-stage lambda gt11 cDNA library. A 1.8-kb clone was identified and human antibodies were affinity purified on the expressing clone. Using this affinity-purified antibody and the 1.8-kb clone, the corresponding protein, its gene, and its chromosomal location were investigated. The 260-kDa corresponding protein serologically cross-reacts with Pf155-RESA, but is the product of a different gene. The 260-kDa protein is Triton X-100 soluble and is variable in molecular weight in different isolates. Immunoprecipitation of [S-35]methionine-labeled infected red blood cells indicates that the protein is synthesized throughout the intraerythrocytic cycle but is most prominent in schizonts. The protein, as has been shown previously, is not immunoprecipitated from I-125 surface-labeled infected red blood cells and is thus not PfEMP1, the antigen associated with cytoadherence. indirect fluorescent antibody studies using fixed infected red blood cells suggest that the protein is localized to the periphery of the intraerythrocytic parasite. (C) 1995 Academic Press, Inc.
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收藏
页码:79 / 89
页数:11
相关论文
共 28 条
  • [1] Anders R.F., Multiple cross-reactivities amongst antigens of Plasmodium falciparum impair the development of protective immunity against malaria, Parasite Immu' Nology, 8, pp. 529-539, (1986)
  • [2] Barnes D.A., Thompson J., Triglia T., Day K., Kemp D.J., Mapping the genetic locus implicated in cytoadherence of Plasmodium falciparum to melanoma cells, Molecular and Biochemical Parasitology, 66, pp. 21-29, (1994)
  • [3] Beall J.A., Mitchell G.F., Identification of a particular antigen from a parasite cDNA library using antibodies affinity purified from selected portions of Western blots, Journal of Immunological Methods, 86, pp. 217-223, (1986)
  • [4] Brown G.V., Culvenor J.G., Crewther P.E., Bianco A.E., Coppel R.L., Saint R.K., Stahl H.D., Kemp D.J., Anders R.F., Localization of the ringinfected erythrocyte surface antigen (RESA) of P. Falciparum in merozoites and ring-infected erythrocytes, Journal of Experimental Medicine, 162, pp. 774-779, (1985)
  • [5] Collins W.E., Ers R.F., Pappaioanou M., Campbell G.H., Brown G.V., Kemp D.J., Coppel R.L., Skinner J.C., Rysick P.M., Favaloro J.M., Corcoran L.M., Broderson J.R., Mitchell G.F., Campbell C.C., Immunization of Aotus monkeys with recombinant proteins of an erythrocyte surface antigen of P. Falciparum, Nature, 323, pp. 259-262, (1986)
  • [6] Coppel R.L., Saint R.B., Stahl H.D., Langford C.J., Brown G.V., Ers R.F., Kemp D.J., Plasmodium falciparum: Differentiation of isolates with DNA hybridization using antigen gene probes, Experimental Parasitology, 60, pp. 82-89, (1984)
  • [7] Cowman A.F., Coppel R.L., Saint R.B., Favolaro J., Crewther P.E., Stahl H.D., Bianco A.E., Brown V., Ers R.F., Kemp D.J., The ringinfected erythrocyte surface antigen (RESA) polypeptide of P. Falciparum contains two separate blocks of tandem repeats encoding antigenic epitopes that are naturally immunogenic in man, Molecular Biology and Medicine, 2, pp. 207-221, (1984)
  • [8] Favolaro J.M., Coppel R.L., Corcoran L.M., Foote S.J., Brown G.V., Ers R.F., Kemp D.J., Structure of the RESA gene of P. Falciparum, Nucleic Acids Research, 14, pp. 8265-8277, (1986)
  • [9] Feinberg A.P., Vogelstein B., A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity, Analytical Biochemistry, 132, pp. 6-13, (1983)
  • [10] How Ard R.J., Lyon J.A., Shigehike U., Saul A.J., Aley S.K., Klotz F., Panton L.J., Sherwood J.A., Marsh K., Aikawa M., Rock E.P., Transport of an Mr 300, 000 Plasmodium falciparum protein (PfEMP2) from the intraerythrocytic asexual parasite to the cytoplasmic face of the host cell membrane, Journal of Cell Biology, 104, pp. 1269-1280, (1987)