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2004 | 50 | 1 |

Tytuł artykułu

Struktura i metabolizm komorek pasozyta Toxoplasma gondii - nowe aspekty

Autorzy

Treść / Zawartość

Warianty tytułu

Języki publikacji

PL

Abstrakty

EN
Cell structure and metabolism of the parasite Toxoplasma gondii - new aspects. The article is based on newly published data concerning cell structure (cytoskeleton and cytoplasmic organelle) and biochemistry of the protozoon Toxoplasma gondii, many of which can be applied in therapy of toxoplasmosis.

Wydawca

-

Rocznik

Tom

50

Numer

1

Opis fizyczny

s.5-11,bibliogr.

Twórcy

autor
  • Uniwersytet Lodzki, ul.Banacha 12/16, 90-237 Lodz

Bibliografia

  • Aijoka J.W., Fitzpatńck J.M., Reitter C.P. 2001. Toxoplasma gondii genomics: shedding light on pathogenesis and chemotherapy. Expert Reviews in Molecular Medicine http://www.ermm.cb-cu.cam.ac.uk.
  • Azzouz N., Rauscher B., Gerold P., Cesbron-Delauw M.-F., Dubremetz J.-F. Schwarz R.T. 2002. Evidence for de novo sphingolipid biosynthesis in Toxoplasma gondii. International Journal for Parasitology 32: 677-684.
  • Charon A.J., Sibley D. 2002. Host cells: mobilizable lipid resources for the intracellular parasite Toxoplasma gondii. Journal of Cell Science 115: 3049-3059.
  • Coombs G.H., Müller S. 2002. Recent advances in the search for new anti-coccidial drugs. International Journal for Parasitology 32: 497-508.
  • Coppin A., Dzierszinski F., Legrand S., Mortuaire M., Ferguson D., Tomavo S. 2003. Developmentally regulated biosynthesis of carbohydrate and storage polysaccharide during differentiation and tissue formation in Toxoplasma gondii. Biochimie 85: 353-361.
  • Ding M., Clayton C., Soldati D. 2000. Toxoplasma gondii catalase: are peroxisomes in Toxoplasma? Journal of Cell Science 113: 2409-2419.
  • Docampo R., Moreno S.N.J. 1999. Acidocalcisome: a novel Ca2+ storage compartment in trypanosomatids and apicomplexan parasites. Parasitology Today 15: 443-448.
  • Gornicki P. 2003. Apicoplast fatty acids as a target for medical intervention in apicomplexan parasites. International Journal for Parasitology 33: 885-896.
  • Heintzelman M.B. 2003. Gliding motility: the molecules behind the motion. Current Biology 13: R57-R59.
  • Hu K., Roos D.S., Murray J.M. 2002. A novel polymer of tubulin forms the conoid of Toxoplasma gondii. The Journal of Cell Biology 156: 1039-1049.
  • Kaash A.J., Joiner K.A. 2000. Targeting and subcellular localization of Toxoplasma gondii catalase. Journal of Biological Chemistry 275: 1112-1118.
  • Kissinger J.C. 1999. http://www.sas.upenn.edu/-kissing/toxomap.html, Genbank accession number U87145.
  • Lüder C.K.K., Bohne W., Soldati D. 2001. Toxoplasmosis: a persisting challenge. Trends in Parasitology 17: 460-463.
  • Marechal E., Cesbron-Delauw M.F. 2001. The apicoplast: a new member of the plastid farnily. Trends in Plant Science 6: 200-205.
  • McLeod R., Muench S.P., Rafferty J.B., Kyle D.E., Mui E.J., Kirisits M.J., Mack D.G., Roberts C.W., Samuel B.U., Lyons R.E., Dorris M., Milhous W.K., Rice D.W. 2001. Triclosan inhibits the growth of Plasmodium falciparum and Toxoplasma gondii by inhibition of apicomplexan Fab I. International Journal for Parasitology 31: 109-113.
  • Martin M.B., Grimley J.S., Lewis J.C., Heath H.T., Bailey B.N., Kendrick H., Yardley V., Caldera A., Lira R., Urbina J.A., Moreno S.N., Docampo R., Croft S.L., Oldfield E. 2001. Bisphophonates inhibit the growth of Trypanosoma brucei, Trypanosoma cruzi, Leishmania donovani, Toxoplasma gondii and Plasmodium falciparum: a potential route to chemotherapy. Journal of Medical Chemistry 44: 909-916.
  • Moreno S.N.J., Zhong L. 1996. Acidocalcisomes in Toxoplasma gondii tachyzoites. Biochemical Journal 813: 655-659.
  • Morrisette N.S., Sibley L.D. 2002. Cytoskeleton of apicomplexan parasites. Microbiology and Molecular Biology Reviews 66: 21-38.
  • Morrisette N.S., Murray J.M., Roos D.S. 1997. Subpellicular microtubules associate with an intramembranous particie lattice in the protozoan parasite Toxoplasma gondii. Journal of Cell Science 110: 35-42.
  • Nischik N., Schade B., Dytnerska K., Długońska H., Reichmann G., Fischer H.-G. 2001. Attenuation of mouse-virulent Toxoplasma gondii parasites is associated with a decrease in interleukin-12-inducing activity and reduced expression of actin, catalase and secretory proteins. Microbes and Infection 3: 689-699.
  • Paugham A., Creuzet C., Dupouy-Camet J., Roisin M.P. 2001. Evidence for the existence of a proteasom in Toxoplasma gondii: intracellular localization and specific peptidase activities. Parasite 8: 267-273.
  • Paugham A., Creuzet C., Dupouy-Camet J., Roisin M.P. 2002. In vitro effects of gliotoxin, a naturally proteasom inhibitor, on the infectivity and proteolytic activity of Toxoplasma gondii. Parasitology Research 88: 785-787.
  • Que X., Ngo H., Lawton J., Gray M., Liu Q., Engel J., Brinen I., Ghosh P., Joiner K.A., Reed S.L. 2002. The catepsin B of Toxoplasma gondii, toxopain 1, is critical for parasite invasion and rhoptry processing. The Journal of Biological Chemistry 277: 25791-25797.
  • Show M.K., Roos D.S., Tilney L.G. 2002. Cysteine and serine protease inhibitors block intracellular development and disrupt the secretory pathway of Toxoplasma gondii. Microbes and Infection 4: 119-132.
  • de Souza W. 2002. Special organelles in some pathogenic protozoa. Parasitology Research 88: 1013-1025.
  • Vieira M.C.F., Moreno S.N.J. 2000. Mobilization of intracellular calcium upon attachment of Toxoplasma gondii tachyzoites to human fibroblasts is required for invasion. Molecular and Biochemical Parasitology 106: 157-162.
  • Wetzel D.M., Hakansson S., Hu K., Roos D., Sibley L.D. 2003. Actin filament polymerization regulates gliding motility by apicomplexan parasites. Molecular Biology of the Cell 14: 396-406.

Typ dokumentu

Bibliografia

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Identyfikator YADDA

bwmeta1.element.agro-article-a0ccd19a-c96e-4548-a9c5-ec8ad48a50b1
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