dc.creatorMiranda K.
dc.creatorSouza W.d.
dc.creatorPlattner H.
dc.creatorHentschel J.
dc.creatorKawazoe U.
dc.creatorFang J.
dc.creatorMoreno S.N.J.
dc.date2008
dc.date2015-06-30T19:30:31Z
dc.date2015-11-26T14:45:07Z
dc.date2015-06-30T19:30:31Z
dc.date2015-11-26T14:45:07Z
dc.date.accessioned2018-03-28T21:54:16Z
dc.date.available2018-03-28T21:54:16Z
dc.identifier
dc.identifierExperimental Parasitology. , v. 118, n. 1, p. 2 - 9, 2008.
dc.identifier144894
dc.identifier10.1016/j.exppara.2007.07.009
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-37349048536&partnerID=40&md5=d27a18db41a49b749f30c28efe9438b8
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/106529
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/106529
dc.identifier2-s2.0-37349048536
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1252381
dc.descriptionAcidocalcisomes are acidic calcium stores found in diverse organisms, being conserved from bacteria to man. They posses an acidic matrix that contains several cations bound to phosphates, mainly present in the form of short and long polyphosphate chains. Their matrix is acidified through the action of proton pumps such as a vacuolar proton ATPase and a vacuolar proton pyrophosphatase. The calcium uptake occurs through a Ca2+/H+ counter transporting ATPase located in the membrane of the organelle. Acidocalcisomes have been identified in a variety of microorganisms, including Apicomplexan parasites such as Plasmodium and Eimeria species, and in Toxoplasma gondii. In this paper, we review the structural, biochemical and physiological aspects of acidocalcisomes in Apicomplexan parasites and discuss their functional roles in the maintenance of intracellular ion homeostasis. © 2007.
dc.description118
dc.description1
dc.description2
dc.description9
dc.descriptionAlleva, L.M., Kirk, K., Calcium regulation in the intraerythrocytic malaria parasite Plasmodium falciparum (2001) Molecular and Biochemical Parasitology, 117, pp. 121-128
dc.descriptionBerridge, M.J., Lipp, P., Bootman, M.D., The versatility and universality of calcium signaling (2000) Nature Reviews Molecular and Cellular Biology, 1, pp. 11-21
dc.descriptionBonhomme, A., Pingret, L., Bonhomme, P., Michel, J., Balossier, G., Lhotel, M., Pluot, M., Pinon, J.M., Subcellular calcium localization in Toxoplasma gondii by electron microscopy and by X-ray and electron energy loss spectroscopies (1993) Microscopy Research Techniques, 25, pp. 276-285
dc.descriptionBouchot, A., Jaillet, J.D., Bonhomme, A., Alessandro, N.P., Laquerriere, P., Kilian, L., Burlet, H., Pinon, J.M., Detection and localization of a Ca2+-ATPase activity in Toxoplasma gondii (2001) Cell Structure and Function, 26, pp. 49-60
dc.descriptionBouchot, A., Zierold, K., Bonhomme, A., Kilian, L., Belloni, A., Balossier, G., Pinon, J.M., Bonhomme, P., Tachyzoite calcium changes during cell invasion by Toxoplasma gondii (1999) Parasitology Research, 85, pp. 809-818
dc.descriptionBowman, E.J., Siebers, A., Altendorf, K., Bafilomycins: a class of inhibitors of membrane ATPases from microorganisms, animal cells, and plant cells (1988) Proceedings of the National Academy of Sciences of the United States of America, 85, pp. 7972-7976
dc.descriptionCastro, C.D., Meehan, A.J., Koretsky, A.P., Domach, M.M., In situ 31P nuclear magnetic resonance for observation of polyphosphate and catabolite responses of chemostat-cultivated Saccharomyces cerevisiae after alkalinization (1995) Applied and Environmental Microbiology, 61, pp. 4448-4453
dc.descriptionChapman, A.G., Atkinson, D.E., Adenine nucleotide concentrations and turnover rates. Their correlation with biological activity in bacteria and yeast (1977) Advances in Microbial Physiology, 15, pp. 253-306
dc.descriptionDocampo, R., Scott, D.A., Vercesi, A.E., Moreno, S.N.J., Intracellular Ca2+ storage in acidocalcisomes of Trypanosoma cruzi (1995) Biochemical Journal, 310, pp. 1005-1012
dc.descriptionDocampo, R., de Souza, W., Miranda, K., Rohloff, P., Moreno, S.N., Acidocalcisomes-conserved from bacteria to man (2005) Nature Reviews Microbiology, 3, pp. 251-261
dc.descriptionDocampo, R., Moreno, S.N., The acidocalcisome (2001) Molecular and Biochemical Parasitology, 114, pp. 151-159
dc.descriptionDrake, R., Serrano, A., Perez-Castiñeira, J.R., Heterelogous expression of membrane-bound inorganic pyrophosphatase in Saccharomyces cerevisiae is significantly improved by constructing chimeras with the N-terminal domain of Trypanosoma cruzi H+-PPase (2004) Recent Advances in Inorganic Pyrophosphatase Research, pp. 56-59. , White S.A. (Ed), University of Birmingham, Edgbaston, Birmingham, United Kingdom
dc.descriptionDrozdowicz, Y.M., Shaw, M., Nishi, M., Striepen, B., Liwinski, H.A., Roos, D.S., Rea, P.A., Isolation and characterization of TgVP1, a type I vacuolar H+-translocating pyrophosphatase from Toxoplasma gondii. The dynamics of its subcellular localization and the cellular effects of a diphosphonate inhibitor (2003) Journal of Biological Chemistry, 278, pp. 1075-1085
dc.descriptionGarcia, C.R., Ann, S.E., Tavares, E.S., Dluzewski, A.R., Mason, W.T., Paiva, F.B., Acidic calcium pools in intraerythrocytic malaria parasites (1998) European Journal of Cell Biology, 76, pp. 133-138
dc.descriptionGomez-Garcia, M.R., Kornberg, A., Formation of an actin-like filament concurrent with the enzymatic synthesis of inorganic polyphosphate (2004) Proceedings of the National Academy of Sciences of the United States of America, 101, pp. 15876-15880
dc.descriptionHarper, J.M., Huynh, M.-H., Coppens, I., Perussini, F., Moreno, S.N.J., Carruthers, V.B., A cleavable propeptide influences Toxoplasma infection by facilitating the trafficking and secretion of the TgMIC2-M2AP invasion complex (2006) Molecular Biology of the Cell, 17, pp. 4551-4563
dc.descriptionIshige, K., Noguchi, T., Inorganic polyphosphate kinase and adenylate kinase participate in the polyphosphate:AMP phosphotransferase activity of Escherichia coli (2000) Proceedings of the National Academy of Sciences of the United States of America, 97, pp. 14168-14171
dc.descriptionKornberg, A., Inorganic polyphosphate: a molecule of many functions (1999) Progress in Molecular and Subcellular Biology, 23, pp. 1-18
dc.descriptionKulaev, I., Kulakovskaya, T., Polyphosphate and phosphate pump (2000) Annual Reviews of Microbiology, 54, pp. 709-734
dc.descriptionKunze, W., Über Ocheobius herpobdellae Schuberg et Kunze (1907) Archives Protistenkunde, 9, pp. 383-390
dc.descriptionLeFurgey, A., Ingram, P., Blum, J.J., Compartmental responses to acute osmotic stress in Leishmania major result in rapid loss of Na+ and Cl- (2001) Comparative Biochemistry and Physiology A Molecular Integrative Physiology, 128, pp. 385-394
dc.descriptionLemercier, G., Bakalara, N., Santarelli, X., On-column refolding of an insoluble histidine tag recombinant exopolyphosphatase from Trypanosoma brucei overexpressed in Escherichia coli (2003) Journal of Chromatography B Analytical Technology and Biomedical Life Science, 786, pp. 305-309
dc.descriptionLovett, J.L., Sibley, L.D., Intracellular calcium stores in Toxoplasma gondii govern invasion of host cells (2003) Journal of Cell Science, 116, pp. 3009-3016
dc.descriptionLing, Y., Sahota, G., Odeh, S., Chan, J.M., Araujo, F.G., Moreno, S.N., Oldfield, E., Bisphosphonate inhibitors of Toxoplasma gondii growth: in vitro, QSAR, and in vivo investigations (2005) Journal of Medicinal Chemistry, 48, pp. 3130-3140
dc.descriptionLu, H.G., Zhong, L., Chang, K.P., Docampo, R., Intracellular Ca2+ pool content and signaling and expression of a calcium pump are linked to virulence in Leishmania mexicana amazonensis (1997) Journal of Biological Chemistry, 272. , 9646-9473
dc.descriptionLuo, S., Ruiz, F.A., Moreno, S.N., The acidocalcisome Ca2+-ATPase (TgA1) of Toxoplasma gondii is required for polyphosphate storage, intracellular calcium homeostasis and virulence (2005) Molecular Microbiology, 55, pp. 1034-1045
dc.descriptionLuo, S., Vieira, M., Graves, J., Zhong, L., Moreno, S.N., A plasma membrane-type Ca2+-ATPase co-localizes with a vacuolar H+-pyrophosphatase to acidocalcisomes of Toxoplasma gondii (2001) European Molecular Biology Organization Journal, 20, pp. 55-64
dc.descriptionMagowan, C., Brown, J.T., Liang, J., Heck, J., Coppel, R.L., Mohandas, N., Meyer-Ilse, W., Intracellular structures of normal and aberrant Plasmodium falciparum malaria parasites imaged by soft x-ray microscopy (1997) Proceedings of the National Academy of Sciences of the United States of America, 94, pp. 6222-6227
dc.descriptionMarchesini, N., Luo, S., Rodrigues, C.O., Moreno, S.N., Docampo, R., Acidocalcisomes and a vacuolar H+-pyrophosphatase in malaria parasites (2000) Biochemical Journal, 347, pp. 243-253
dc.descriptionMira Gutierrez, J., Del Rey Calero, J., Volutina in Toxoplasma gondii (1966) Medicina Tropical (Madrid), 42, pp. 20-39
dc.descriptionMiranda, K., Benchimol, M., Docampo, R., de Souza, W., The fine structure of acidocalcisomes in Trypanosoma cruzi (2000) Parasitology Research, 86, pp. 373-384
dc.descriptionMiranda, K., Rodrigues, C.O., Hentschel, J., Vercesi, A., Plattner, H., de Souza, W., Docampo, R., Acidocalcisomes of Phytomonas francai possess distinct morphological characteristics and contain iron (2004) Microscopy and Microanalysis, 10, pp. 647-655
dc.descriptionMoreno, S.N.J., Docampo, R., Calcium regulation in protozoan parasites (2003) Current Opinion in Microbiology, 6, pp. 359-364
dc.descriptionMoreno, S.N.J., Miranda, K., Fang, J., Rohloff, P., de Souza, W., Calcium storage and homeostasis in Toxoplasma gondii. (2007) Toxoplasma gondii. The model Apicomplexan: Perspectives and Methods, pp. 245-263. , Weiss L.M., and Kim K. (Eds), Elsevier, Amsterdam, Netherlands
dc.descriptionMoreno, S.N.J., Miranda, K., de Souza, W., Calcium homeostasis and acidocalcisomes in Toxoplasma gondii (2007) Toxoplasma: gondii: Molecular and Cellular Biology, pp. 491-504. , Ajioka J., and Soldatti D. (Eds), Horizon Press, Norwich, United Kingdom
dc.descriptionMoreno, S.N.J., Silva, J., Vercesi, A.E., Docampo, R., Cytosolic free calcium elevation in Trypanosoma cruzi is required for cell invasion (1994) Journal of Experimental Medicine, 180, pp. 1535-1540
dc.descriptionMoreno, S.N., Zhong, L., Acidocalcisomes in Toxoplasma gondii tachyzoites (1996) Biochemical Journal, 313, pp. 655-659
dc.descriptionMoreno, S.N., Zhong, L., Lu, H.G., Souza, W.D., Benchimol, M., Vacuolar-type H+ -ATPase regulates cytoplasmic pH in Toxoplasma gondii tachyzoites (1998) Biochemical Journal, 330, pp. 853-860
dc.descriptionPeng, Z.Y., Mansour, J.M., Araujo, F., Ju, J.Y., McKenna, C.E., Mansour, T.E., Some phosphonic acid analogs as inhibitors of pyrophosphate-dependent phosphofructokinase, a novel target in Toxoplasma gondii (1995) Biochemical Pharmacology, 49, pp. 105-113
dc.descriptionRao, N.N., Kornberg, A., Inorganic polyphosphate supports resistance and survival of stationary-phase Escherichia coli (1996) Journal of Bacteriology, 178, pp. 1394-1400
dc.descriptionRodrigues, C.O., Ruiz, F.A., Rohloff, P., Scott, D.A., Moreno, S.N., Characterization of isolated acidocalcisomes from Toxoplasma gondii tachyzoites reveals a novel pool of hydrolyzable polyphosphate (2002) Journal of Biological Chemistry, 277, pp. 48650-48656
dc.descriptionRodrigues, C.O., Ruiz, F.A., Vieira, M., Hill, J.E., Docampo, R., An acidocalcisomal exopolyphosphatase from Leishmania major with high affinity for short chain polyphosphate (2002) Journal of Biological Chemistry, 277, pp. 50899-50906
dc.descriptionRodrigues, C.O., Scott, D.A., Bailey, B.N., De Souza, W., Benchimol, M., Moreno, B., Urbina, J.A., Moreno, S.N., Vacuolar proton pyrophosphatase activity and pyrophosphate (PPi) in Toxoplasma gondii as possible chemotherapeutic targets (2000) Biochemical Journal, 349, pp. 737-745
dc.descriptionRodrigues, C.O., Scott, D.A., Docampo, R., Presence of a vacuolar H+-pyrophosphatase in promastigotes of Leishmania donovani and its localization to a different compartment from the vacuolar H+-ATPase (1999) Biochemical Journal, 340, pp. 759-766
dc.descriptionRohrbach, P., Friedrich, O., Hentschel, J., Plattner, H., Fink, R.H., Lanzer, M., Quantitative calcium measurements in subcellular compartments of Plasmodium falciparum-infected erythrocytes (2005) Journal of Biological Chemistry, 280, pp. 27960-27969
dc.descriptionRuiz, F.A., Luo, S., Moreno, S.N., Docampo, R., Polyphosphate content and fine structure of acidocalcisomes of Plasmodium falciparum (2004) Microscopy and Microanalysis, 10, pp. 563-567
dc.descriptionScott, D.A., Docampo, R., Dvorak, J.A., Shi, S., Leapman, R.D., In situ compositional analysis of acidocalcisomes in Trypanosoma cruzi (1997) Journal of Biological Chemistry, 272, pp. 28020-28029
dc.descriptionSethuraman, A., Rao, N.N., Kornberg, A., The endopolyphosphatase gene: essential in Saccharomyces cerevisiae (2001) Proceedings of the National Academy of Sciences of the United States of America, 98, pp. 8542-8547
dc.descriptionShaw, M.K., Roos, D.S., Tilney, L.G., Acidic compartments and rhoptry formation in Toxoplasma gondii (1998) Parasitology, 117, pp. 435-443
dc.descriptionVercesi, A.E., Moreno, S.N.J., Docampo, R., Ca2+/H+ exchange in acidic vacuoles of Trypanosoma brucei (1994) Biochemical Journal, 304, pp. 227-233
dc.descriptionVieira, M.C., Moreno, S.N.J., Mobilization of intracellular calcium upon attachment of Toxoplasma gondii tachyzoites to human fibroblasts is required for invasion (2000) Molecular and Biochemical Parasitology, 106, pp. 157-162
dc.descriptionWurst, H., Shiba, T., Kornberg, A., The gene for a major exopolyphosphatase of Saccharomyces cerevisiae (1995) Journal of Bacteriology, 177, pp. 898-906
dc.languageen
dc.publisher
dc.relationExperimental Parasitology
dc.rightsfechado
dc.sourceScopus
dc.titleAcidocalcisomes In Apicomplexan Parasites
dc.typeArtículos de revistas


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