Blackstock W.P., Weir M.P. 1999. Proteomics: quantitative and physical mapping of cellular proteins. TIBTECH 17: 121-127.
Boothroyd J.C., Hehl A., Knoll L.J., Manger I.D. 1998. The surface of Toxoplasma: more and less. International Journal for Parasitology 28: 3-9.
Carrey K.L., Donahue C.G., Ward G.G. 2000. Identification and molecular characterization of GRAS, a novel, proline-rich, dense granule protein of Toxoplasma gondi. Molecular and Biochemical Parasitology 105: 25-37.
Carruthers V.B., Giddings O., Sibley L.D. 1999. Secretion of micronemal proteins is associated with toxoplasma invasion of host cells. Cellular Microbiology 1: 225-235.
Carruthers V.B. 2002. http://www.jhsph.edu/mmi/faculty/carruthers/carruthers.html
Cohen A.M., Rumpel K., Coombs G.H., Wastling J.M. 2002. Characterization of global protein expression by two-dimensional electrophoresis and mass spectrometry: proteomics of Toxoplasma gondii. International Journal for Parasitology 2: 39-51.
Długońska H., Dytnerska K. 2000. Identyfikacja antygenów Toxoplasma gondi rozpoznawanych przez swoiste limfocyty T. Wiadomości Parazytologiczne 46: 455-458.
Długońska H., Dytnerska K., Reichmann G., Stachelhaus S., Fischer H.-G. 2001. Towards the Toxoplasma gondii proteome: position of 13 parasite excretory antigens on standardized map of two-dimensionally separated tachyzoite proteins. Parasitology Research 87: 634-637.
Ezzell C. 2000. Co dalej z ludzkim genomem? Świat Nauki 10: 64-69.
Ferguson D.J.P., Brecht S., Soldati D. 2000. The microneme protein MIC4, or MIC4 - like protein, is expressed within macrogamete and associated with oocyst wall formation in Toxoplasma gondii. International Journal for Parastiology 30: 1203-1209.
Hehl A.B., Lekutis C., Grigg M.E., Bardley P.J., Dubremetz J.-F., Ortega-Baria E., Boothroyd J.C. 2000. Toxoplasma gondii homologue of Plasrmodium Apical Membrane Antigenns involved in invasion of host cells. Infection and Immunity 68: 7078-7086.
Johnson A.M., Illana S. 1991. Cloning of Toxoplasma gondii gene fragments encoding diagnostic antigens. Gene 99: 127-132.
Kaasch A.J., Joiner K.A. 2000. Targeting and subcellular localization of Toxoplasma gondii catalase. The Journal of Biological Chemistry 275: 1112-1118.
Lekutis C., Ferguson D.J.P., Grigg M.E., Camps M., Boothroyd J.C. 200 l. Surface antigens of Toxoplasma gondii: variations on a theme. International Journal for Parasitology 31: 1285-1292.
Lüder C.G.K., Bohne W., Soldati D. 2001. Toxoplasmosis: a persisting challenge. Trends in Paratsitology 17: 460-463.
Meissner M., Reiss M., Viebig N., Carruthers Y.B., Toursel C., Tomavo S., Aijoka J.W., Soldati D. 2002. A family o transmembrane microneme proteins of Toxoplasma gondii contain EFG-like domains and function as escorters. Journal of Cellular Scieice n5: 563-574.
Miller S.A., Binder E.M., Blackman M.J., Carruthers Y.B., Kim K. 2001. A conserved subtilisin-like protein TgSUB 1 in microneme organelle of Toxoplasma gondii. The Journal of Biological Chemistry 276: 4541-4548.
Que X., Ngo H., Gray M., Liu Q., Engel J., Brinen L., Ghosh P., Joiner K.A., Reed S.L. 2002. The catepsin B of Toxoplasma gondii, Toxopain-1, is critical for parasite invasion and rhoptry protein processing. JBC JBC papers in press, online 8 May 2002.
Rabenau K.E., Sohrabi A., Tripathy A., Reitter C., Ajioka J. W., Tomley F.M., Carruthers Y.B. 2001. TgM2AP participates in Toxoplasma gondi invasion of host cells and is tightly associated with adhesive protein TgMIC2. Molecular Microbiology 41: 537-547.
Reichmann G., Długońska H., Hiszczyńska-Sawicka E., Fischer H. 2001. Tachyzoite - specific isoform of Toxoplasma gondi lactate dehydrogenase is target antigen of murine CD4+ T-cell clone. Microbes and Infection 3: 779-787.
Reichmann G., Długońska H., Fischer H.-G. 2002. Characterization of TgROP9, a novel rhoptry protein of Toxoplasma gondii tachyzoites identified by T cell clone. Molecular and Biochemical Parasitology 119: 43-54.
Rojas P.A., Martin V., Nigro M., Echeverria P.C., Guamera E.A., Pszenny V., Angel S.O. 2000. Expression of cDNA encoding a Toxoplasma gondii protein belonging to the heat-schock 90 family and analysis of its antigenicity. FEMS Microbiology Letters 190: 209-213.
Soldati D., Dubremetz J.-F., Lebrun M. 2001. Microneme proteins: structural and functional requirements to promote adhesion and invasion by the apicomplexan parasite Toxoplasma gondi. International Journal for Parasitology 31: 1293-1302.
Spano F., Ricci I., Di Cristina M., Possenti A., Tinti M., Dendouga N., Tomavo S., Crisanti A. 2002. The SAG5 locus of Toxoplasma gondii encodes three novel proteins belonging to SAG 1 family of surface antigens. International Jounal for Parasitology 32: 121-131.
Tomavo S. 2001. The differential expression of multiple isoenzyme forms during stage conversion of Toxoplasma gondii: an adaptive developmental strategy. International Journal for Patrasitology 31: 1023-1031.
Tomley F.M., Soldati D.S. 2001. Mix and match modules: structure and function of microeneme proteins in apicomplexan parasites. Trends in Parasitology 17: 81-88.
Wędrychowicz H. 2000. Nowe rodzaje szczepionek przeciwpasożytniczych. Wiadomiości Parazytologiczne 46: 21-27.
Weiss L.M., Kim K. 2000. The development and biology of bradyzoites of Toxoplasma gondi. Frontiers in Bioscience 5: D391-405.
Zhang Y.W., Halonen S.K., Ma Y.F.,Wittner M., Weiss L.M. 2001. Initial characterization of CST1, a Toxoplasma gondii cyst wall glycoprotein. Infection and Immunity 69: 501-507.