Lysine transporters in human trypanosomatid pathogens

In previous studies we characterized arginine transporter genes from Trypanosoma cruzi and Leishmania donovani, the etiological agents of chagas disease and kala azar, respectively, both fatal diseases in humans. Unlike arginine transporters in higher eukaryotes that transport also lysine, these par...

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Autor principal: Inbar, E.
Otros Autores: Canepa, G.E, Carrillo, C., Glaser, F., Grotemeyer, M.S, Rentsch, D., Zilberstein, D., Pereira, C.A
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2012
Acceso en línea:Registro en Scopus
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024 7 |2 scopus  |a 2-s2.0-84860246976 
024 7 |2 Molecular Sequence Numbers  |a GENBANK: AAC49885, AAD40315, ABD64602, CAA47729, NP_058913, NP_072141, NP_175076, NP_193844, NP_199774, NP_416661, NP_600195, P19145, XP_714306, XP_859317; 
024 7 |2 cas  |a alanine, 56-41-7, 6898-94-8; arginine, 1119-34-2, 15595-35-4, 7004-12-8, 74-79-3; asparagine, 70-47-3, 7006-34-0; aspartic acid, 56-84-8, 6899-03-2; cysteine, 4371-52-2, 52-89-1, 52-90-4; glycine, 56-40-6, 6000-43-7, 6000-44-8; histidine, 645-35-2, 7006-35-1, 71-00-1; lysine, 56-87-1, 6899-06-5, 70-54-2; methionine, 59-51-8, 63-68-3, 7005-18-7; proline, 147-85-3, 7005-20-1; serine, 56-45-1, 6898-95-9; threonine, 36676-50-3, 72-19-5 
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100 1 |a Inbar, E. 
245 1 0 |a Lysine transporters in human trypanosomatid pathogens 
260 |c 2012 
270 1 0 |m Zilberstein, D.; Faculty of Biology, Technion-Israel Institute of Technology, 32000 Haifa, Israel; email: danz@tx.technion.ac.il 
506 |2 openaire  |e Política editorial 
504 |a Akerman, M., Shaked-Mishan, P., Mazareb, S., Volpin, H., Zilberstein, D., Novel motifs in amino acid permease genes from Leishmania (2004) Biochemical and Biophysical Research Communications, 325 (1), pp. 353-366. , DOI 10.1016/j.bbrc.2004.09.212, PII S0006291X04022703 
504 |a Azevedo, R.A., Arruda, P., Turner, W.L., Lea, P.J., The biosynthesis and metabolism of the aspartate derived amino acids in higher plants (1997) Phytochemistry, 46 (3), pp. 395-419. , DOI 10.1016/S0031-9422(97)00319-1, PII S0031942297003191 
504 |a Barak, E., Amin-Spector, S., Gerliak, E., Goyard, S., Holland, N., Zilberstein, D., Differentiation of Leishmania donovani in host-free system: Analysis of signal perception and response (2005) Molecular and Biochemical Parasitology, 141 (1), pp. 99-108. , DOI 10.1016/j.molbiopara.2005.02.004 
504 |a Barrett, M.P., Burchmore, R.J.S., Stich, A., Lazzari, J.O., Frasch, A.C., Cazzulo, J.J., Krishna, S., The trypanosomiases (2003) Lancet, 362 (9394), pp. 1469-1480. , DOI 10.1016/S0140-6736(03)14694-6 
504 |a Blum, J.J., Effects of osmotic stress on metabolism, shape, and amino acid content of Leishmania (1996) Biology of the Cell, 87 (1-2), pp. 9-16. , DOI 10.1016/S0248-4900(97)89833-4 
504 |a Boucherie, H., Protein synthesis during transition and stationary phases under glucose limitation in Saccharomyces cerevisiae (1985) Journal of Bacteriology, 161 (1), pp. 385-392 
504 |a Bouvier, L.A., Silber, A.M., Galvao Lopes, C., Canepa, G.E., Miranda, M.R., Tonelli, R.R., Colli, W., Pereira, C.A., Post genomic analysis of permeases from the amino acid/auxin family in protozoan parasites (2004) Biochemical and Biophysical Research Communications, 321 (3), pp. 547-556. , DOI 10.1016/j.bbrc.2004.07.002, PII S0006291X0401472X 
504 |a Braun, E.L., Fuge, E.K., Padilla, P.A., Werner-Washburne, M., A stationary-phase gene in Saccharomyces cerevisiae is a member of a novel, highly conserved gene family (1996) Journal of Bacteriology, 178 (23), pp. 6865-6872 
504 |a Busch, W., Saier Jr., M.H., The iubmb-endorsed transporter classification system (2003) Methods Mol Biol, 227, pp. 21-36 
504 |a Camargo, E.P., Growth and differentiation in Trypanosoma cruzi. I. Origin of metacyclic trypanosomes in liquid media (1964) Rev Inst Med Trop Sao Paulo, 6, pp. 93-100 
504 |a Canepa, G.E., Silber, A.M., Bouvier, L.A., Pereira, C.A., Biochemical characterization of a low-affinity arginine permease from the parasite Trypanosoma cruzi (2004) FEMS Microbiology Letters, 236 (1), pp. 79-84. , DOI 10.1016/j.femsle.2004.05.021, PII S0378109704003593 
504 |a Canepa, G.E., Bouvier, L.A., Urias, U., Miranda, M.R., Colli, W., Alves, M.J.M., Pereira, C.A., Aspartate transport and metabolism in the protozoan parasite Trypanosoma cruzi (2005) FEMS Microbiology Letters, 247 (1), pp. 65-71. , DOI 10.1016/j.femsle.2005.04.029, PII S0378109705002612 
504 |a Canepa, G.E., Bouvier, L.A., Miranda, M.R., Uttaro, A.D., Pereira, C.A., Characterization of Trypanosoma cruzi l-cysteine transport mechanisms and their adaptive regulation (2009) FEMS Microbiol Lett, 292 (1), pp. 27-32 
504 |a Carrillo, C., Canepa, G.E., Giacometti, A., Bouvier, L.A., Miranda, M.R., De Los Milagros Camara, M., Pereira, C.A., Trypanosoma cruzi amino acid transporter Tcaaap411 mediates arginine uptake in yeasts (2010) FEMS Microbiol Lett, 306 (2), pp. 97-102 
504 |a Christensen, H.N., Role of amino acid transport and countertransport in nutrition and metabolism (1990) Physiological Reviews, 70 (1), pp. 43-77 
504 |a Closs, E.I., Albritton, L.M., Jung Woo Kim, Cunningham, J.M., Identification of a low affinity, high capacity transporter of cationic amino acids in mouse liver (1993) Journal of Biological Chemistry, 268 (10), pp. 7538-7544 
504 |a Cruz, A., Coburn, C.M., Beverley, S.M., Double targeted gene replacement for creating null mutants (1991) Proceedings of the National Academy of Sciences of the United States of America, 88 (16), pp. 7170-7174 
504 |a Da Silva, R., Sacks, D.L., Metacyclogenesis is a major determinant of Leishmania promastigote virulence and attenuation (1987) Infection and Immunity, 55 (11), pp. 2802-2806 
504 |a Darlyuk, I., Goldman, A., Roberts, S.C., Ullman, B., Rentsch, D., Zilberstein, D., Arginine homeostasis and transport in the human pathogen Leishmania donovani (2009) J Biol Chem, 284, pp. 19800-19807 
504 |a Dixon, M., Webb, E.C., (1964) Enzymes, pp. 67-70. , Longmans Green & Co., London 
504 |a Do, C.B., Mahabhashyam, M.S.P., Brudno, M., Batzoglou, S., ProbCons: Probabilistic consistency-based multiple sequence alignment (2005) Genome Research, 15 (2), pp. 330-340. , DOI 10.1101/gr.2821705 
504 |a Dohmen, R.J., Strasser, A.W., Honer, C.B., Hollenberg, C.P., An efficient transformation procedure enabling long-term storage of competent cells of various yeast genera (1991) Yeast, 7 (7), pp. 691-692 
504 |a Field, M.C., Carrington, M., The trypanosome flagellar pocket (2009) Nat Rev Microbiol, 7 (11), pp. 775-786 
504 |a Fischer, W.-N., Loo, D.D.F., Koch, W., Ludewig, U., Boorer, K.J., Tegeder, M., Rentsch, D., Frommer, W.B., Low and high affinity amino acid H +-cotransporters for cellular import of neutral and charged amino acids (2002) Plant Journal, 29 (6), pp. 717-731. , DOI 10.1046/j.1365-313X.2002.01248.x 
504 |a Galili, G., Amir, R., Hoefgen, R., Hesse, H., Improving the levels of essential amino acids and sulfur metabolites in plants (2005) Biological Chemistry, 386 (9), pp. 817-831. , http://www.extenza-eps.com/WDG/doi/abs/10.1515/BC.2005.097, DOI 10.1515/BC.2005.097 
504 |a Gaur, U., Roberts, S.C., Dalvi, R.P., Corraliza, I., Ullman, B., Wilson, M.E., An effect of parasite-encoded arginase on the outcome of murine cutaneous leishmaniasis (2007) J Immunol, 179 (12), pp. 8446-8453 
504 |a Ginger, M.L., Niche metabolism in parasitic protozoa (2006) Philosophical Transactions of the Royal Society B: Biological Sciences, 361 (1465), pp. 101-118. , DOI 10.1098/rstb.2005.1756 
504 |a Goldberg, A.L., St John, A.C., Intracellular protein degradation in mammalian and bacterial cells: Part 2 (1976) Annu Rev Biochem, 45, pp. 747-803 
504 |a Hasne, M.P., Coppens, I., Soysa, R., Ullman, B., A high-affinity putrescine-cadaverine transporter from Trypanosoma cruzi (2010) Mol Microbiol, 76 (1), pp. 78-91 
504 |a Hatzoglou, M., Fernandez, J., Yaman, I., Closs, E., Regulation of cationic amino acid transport: The story of the CAT-1 transporter (2004) Annual Review of Nutrition, 24, pp. 377-399. , DOI 10.1146/annurev.nutr.23.011702.073120 
504 |a Herwaldt, B.L., Leishmaniasis (1999) Lancet, 354 (9185), pp. 1191-1199. , DOI 10.1016/S0140-6736(98)10178-2 
504 |a Huson, D.H., Richter, D.C., Rausch, C., Dezulian, T., Franz, M., Rupp, R., Dendroscope: An interactive viewer for large phylogenetic trees (2007) BMC Bioinformatics, 8, p. 460 
504 |a Ito, K., Groudine, M., A new member of the cationic amino acid transporter family is preferentially expressed in adult mouse brain (1997) Journal of Biological Chemistry, 272 (42), pp. 26780-26786. , DOI 10.1074/jbc.272.42.26780 
504 |a Jackson, A.P., Origins of amino acid transporter loci in trypanosomatid parasites (2007) BMC Evol Biol, 7, p. 26 
504 |a Jiang, Y., Roberts, S.C., Jardim, A., Carter, N.S., Shin, S., Ariyanayagam, M., Fairlamb, A.H., Ullman, B., Ornithine decarboxylase gene deletion mutants of Leishmania donovani (1999) Journal of Biological Chemistry, 274 (6), pp. 3781-3788. , DOI 10.1074/jbc.274.6.3781 
504 |a Kandpal, M., Fouce, R.B., Pal, A., Guru, P.Y., Tekwani, B.L., Kinetics and molecular characteristics of arginine transport by Leishmania donovani promastigotes (1995) Mol Biochem Parasitol, 71 (2), pp. 193-201 
504 |a Kim, J.W., Closs, E.I., Albritton, L.M., Cunningham, J.M., Transport of cationic amino acids by the mouse ecotropic retrovirus receptor (1991) Nature, 352 (6337), pp. 725-728 
504 |a Lebowitz, J.H., Coburn, C.M., McMahon-Pratt, D., Beverley, S.M., Development of a stable Leishmania expression vector and application to the study of parasite surface antigen genes (1990) Proceedings of the National Academy of Sciences of the United States of America, 87 (24), pp. 9736-9740 
504 |a Malandro, M.S., Kilberg, M.S., Molecular biology of mammalian amino acid transporters (1996) Annual Review of Biochemistry, 65, pp. 305-336 
504 |a Mazareb, S., Fu, Z.Y., Zilberstein, D., Developmental regulation of proline transport in Leishmania donovani (1999) Experimental Parasitology, 91 (4), pp. 341-348. , DOI 10.1006/expr.1998.4391 
504 |a Mukkada, A.J., Schaefer Iii, F.W., Simon, M.W., Neu, C., Delayed in vitro utilization of glucose by Leishmania tropica promastigotes (1974) J Protozool, 21, pp. 393-397 
504 |a Mukkada, A.J., Meade, J.C., Glaser, T.A., Bonventre, P.F., Enhanced metabolism of Leishmania donovani amastigotes at acid pH: An adaptation for intracellular growth (1985) Science, 229 (4718), pp. 1099-1101 
504 |a Opperdoes, F.R., Coombs, G.H., Metabolism of Leishmania: proven and predicted (2007) Trends in Parasitology, 23 (4), pp. 149-158. , DOI 10.1016/j.pt.2007.02.004, PII S1471492207000505 
504 |a Pereira, C.A., Alonso, G.D., Paveto, M.C., Flawia, M.M., Torres, H.N., L-arginine uptake and L-phosphoarginine synthesis in Trypanosoma cruzi (1999) Journal of Eukaryotic Microbiology, 46 (6), pp. 566-570 
504 |a Pereira, C.A., Alonso, G.D., Paveto, M.C., Iribarren, A., Cabanas, M.L., Torres, H.N., Flawia, M.M., Trypanosoma cruzi arginine kinase characterization and cloning. A novel energetic pathway in protozoan parasites (2000) Journal of Biological Chemistry, 275 (2), pp. 1495-1501. , DOI 10.1074/jbc.275.2.1495 
504 |a Pereira, C.A., Alonso, G.D., Torres, H.N., Flawia, M.M., Arginine kinase: A common feature for management of energy reserves in African and American flagellated trypanosomatids (2002) Journal of Eukaryotic Microbiology, 49 (1), pp. 82-85 
504 |a Price, M.N., Dehal, P.S., Arkin, A.P., Fasttree: Computing large minimum evolution trees with profiles instead of a distance matrix (2009) Mol Biol Evol, 26 (7), pp. 1641-1650 
504 |a Rentsch, D., Laloi, M., Rouhara, I., Schmelzer, E., Delrot, S., Frommer, W.B., Ntr1 encodes a high affinity oligopeptide transporter in Arabidopsis (1995) FEBS Lett, 370 (3), pp. 264-268 
504 |a Rentsch, D., Schmidt, S., Tegeder, M., Transporters for uptake and allocation of organic nitrogen compounds in plants (2007) FEBS Letters, 581 (12), pp. 2281-2289. , DOI 10.1016/j.febslet.2007.04.013, PII S001457930700395X, Plant Transporters and Channels 
504 |a Roberts, S.C., Tancer, M.J., Polinsky, M.R., Michael Gibson, K., Heby, O., Ullman, B., Arginase plays a pivotal role in polyamine precursor metabolism in Leishmania: Characterization of gene deletion mutants (2004) Journal of Biological Chemistry, 279 (22), pp. 23668-23678. , DOI 10.1074/jbc.M402042200 
504 |a Rosenzweig, D., Smith, D., Opperdoes, F., Stern, S., Olafson, R.W., Zilberstein, D., Retooling Leishmania metabolism: From sand fly gut to human macrophage (2008) FASEB Journal, 22 (2), pp. 590-602. , http://www.fasebj.org/cgi/reprint/22/2/590, DOI 10.1096/fj.07-9254com 
504 |a Ruepp, S., Furger, A., Kurath, U., Renggli, C.K., Hemphill, A., Brun, R., Roditi, I., Survival of Trypanosoma brucei in the tsetse fly is enhanced by the expression of specific forms of procyclin (1997) Journal of Cell Biology, 137 (6), pp. 1369-1379. , DOI 10.1083/jcb.137.6.1369 
504 |a Saar, Y., Ransford, A., Waldman, E., Mazareb, S., Amin-Spector, S., Plumblee, J., Turco, S.J., Zilberstein, D., Characterization of developmentally-regulated activities in axenic amastigotes of Leishmania donovani (1998) Molecular and Biochemical Parasitology, 95 (1), pp. 9-20. , DOI 10.1016/S0166-6851(98)00062-0, PII S0166685198000620 
504 |a Sacks, D.L., Perkins, P.V., Identification of an infective stage of Leishmania promastigotes (1984) Science, 223 (4643), pp. 1417-1419 
504 |a Saxena, A., Lahav, T., Holland, N., Aggarwal, G., Anupama, A., Huang, Y., Volpin, H., Zilberstein, D., Analysis of the Leishmania donovani transcriptome reveals an ordered progression of transient and permanent changes in gene expression during differentiation (2007) Molecular and Biochemical Parasitology, 152 (1), pp. 53-65. , DOI 10.1016/j.molbiopara.2006.11.011, PII S016668510600332X 
504 |a Shaked-Mishan, P., Suter-Grotemeyer, M., Yoel-Almagor, T., Holland, N., Zilberstein, D., Rentsch, D., A novel high-affinity arginine transporter from the human parasitic protozoan Leishmania donovani (2006) Molecular Microbiology, 60 (1), pp. 30-38. , DOI 10.1111/j.1365-2958.2006.05060.x 
504 |a Silber, A.M., Tonelli, R.R., Martinelli, M., Colli, W., Alves, M.J.M., Active transport of L-proline in Trypanosoma cruzi (2002) Journal of Eukaryotic Microbiology, 49 (6), pp. 441-446. , DOI 10.1111/j.1550-7408.2002.tb00225.x 
504 |a Silber, A.M., Rojas, R.L.G., Urias, U., Colli, W., Alves, M.J.M., Biochemical characterization of the glutamate transport in Trypanosoma cruzi (2006) International Journal for Parasitology, 36 (2), pp. 157-163. , DOI 10.1016/j.ijpara.2005.10.006, PII S0020751905003772 
504 |a Singh, R.K., Pandey, H.P., Sundar, S., Visceral leishmaniasis (kala-azar): Challenges ahead (2006) Indian Journal of Medical Research, 123 (3), pp. 331-344. , http://icmr.nic.in/ijmr/2006/march/0313.pdf 
504 |a Stepansky, A., Yao, Y., Tang, G., Galili, G., Regulation of lysine catabolism in Arabidopsis through concertedly regulated synthesis of the two distinct gene products of the composite AtLKR/SDH locus (2005) Journal of Experimental Botany, 56 (412), pp. 525-536. , DOI 10.1093/jxb/eri031 
504 |a Tetaud, E., Lecuix, I., Sheldrake, T., Baltz, T., Fairlamb, A.H., A new expression vector for Crithidia fasciculata and Leishmania (2002) Molecular and Biochemical Parasitology, 120 (2), pp. 195-204. , PII S0166685102000026 
504 |a Tonelli, R.R., Silber, A.M., Almeida-de-Faria, M., Hirata, I.Y., Colli, W., Alves, J.M., L-Proline is essential for the intracellular differentiation of Trypanosoma cruzi (2004) Cellular Microbiology, 6 (8), pp. 733-741. , DOI 10.1111/j.1462-5822.2004.00397.x 
504 |a Vazquez, M.P., Levin, M.J., Functional analysis of the intergenic regions of TcP2β gene loci allowed the construction of an improved Trypanosoma cruzi expression vector (1999) Gene, 239 (2), pp. 217-225. , DOI 10.1016/S0378-1119(99)00386-8, PII S0378111999003868 
504 |a Zilberstein, D., Gepstein, A., Regulation of L-proline transport in Leishmania donovani by extracellular pH (1993) Molecular and Biochemical Parasitology, 61 (2), pp. 197-205. , DOI 10.1016/0166-6851(93)90066-7 
520 3 |a In previous studies we characterized arginine transporter genes from Trypanosoma cruzi and Leishmania donovani, the etiological agents of chagas disease and kala azar, respectively, both fatal diseases in humans. Unlike arginine transporters in higher eukaryotes that transport also lysine, these parasite transporters translocate only arginine. This phenomenon prompted us to identify and characterize parasite lysine transporters. Here we demonstrate that LdAAP7 and TcAAP7 encode lysine-specific permeases in L. donovani and T. cruzi, respectively. These two lysine permeases are both members of the large amino acid/auxin permease family and share certain biochemical properties, such as specificity and Km. However, we evidence that LdAAP7 and TcAAP7 differ in their regulation and localization, such differences are likely a reflection of the dissimilar L. donovani and T. cruzi life cycles. Failed attempts to delete both alleles of LdAAP7 support the premise that this is an essential gene that encodes the only lysine permeases expressed in L. donovani promastigotes and T. cruzi epimastigotes, respectively. © Springer-Verlag 2010.  |l eng 
593 |a Faculty of Biology, Technion-Israel Institute of Technology, 32000 Haifa, Israel 
593 |a Departamento de Sustancias Vasoactivas, Laboratorio de Biología Molecular de Trypanosoma Cruzi (LBMTC), Instituto de Investigaciones Médicas Alfredo Lanari, Buenos Aires, Argentina 
593 |a Fundación Instituto Leloir, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires and CONICET, Buenos Aires, Argentina 
593 |a Institute of Plant Sciences, University of Bern, 3013 Bern, Switzerland 
690 1 0 |a AMINO ACID TRANSPORT 
690 1 0 |a LEISHMANIA 
690 1 0 |a LYSINE TRANSPORT 
690 1 0 |a TRYPANOSOMA 
690 1 0 |a ALANINE 
690 1 0 |a AMINO ACID TRANSPORTER 
690 1 0 |a ARGININE 
690 1 0 |a ASPARAGINE 
690 1 0 |a ASPARTIC ACID 
690 1 0 |a AUXIN 
690 1 0 |a CYSTEINE 
690 1 0 |a GLYCINE 
690 1 0 |a HISTIDINE 
690 1 0 |a LEISHMANIA DONOVANI AAP7 
690 1 0 |a LYSINE 
690 1 0 |a LYSINE TRANSPORTER 
690 1 0 |a METHIONINE 
690 1 0 |a PERMEASE 
690 1 0 |a PROLINE 
690 1 0 |a SERINE 
690 1 0 |a THREONINE 
690 1 0 |a TRYPANOSOMA CRUZI AAP7 
690 1 0 |a UNCLASSIFIED DRUG 
690 1 0 |a CONFERENCE PAPER 
690 1 0 |a ENZYME KINETICS 
690 1 0 |a ENZYME REGULATION 
690 1 0 |a ENZYME SPECIFICITY 
690 1 0 |a EPIMASTIGOTE 
690 1 0 |a HUMAN 
690 1 0 |a IMMUNOFLUORESCENCE TEST 
690 1 0 |a LEISHMANIA DONOVANI 
690 1 0 |a LIFE CYCLE 
690 1 0 |a NUCLEOTIDE SEQUENCE 
690 1 0 |a OPEN READING FRAME 
690 1 0 |a PARASITE SURVIVAL 
690 1 0 |a PHYLOGENY 
690 1 0 |a PRIORITY JOURNAL 
690 1 0 |a PROMASTIGOTE 
690 1 0 |a PROTEIN EXPRESSION 
690 1 0 |a PROTEIN LOCALIZATION 
690 1 0 |a SACCHAROMYCES CEREVISIAE 
690 1 0 |a SEQUENCE ANALYSIS 
690 1 0 |a TRYPANOSOMA 
690 1 0 |a TRYPANOSOMA CRUZI 
690 1 0 |a TRYPANOSOMATID INFECTION 
690 1 0 |a EUKARYOTA 
690 1 0 |a LEISHMANIA DONOVANI 
690 1 0 |a NASO HEXACANTHUS 
690 1 0 |a TRYPANOSOMA 
690 1 0 |a TRYPANOSOMA CRUZI 
690 1 0 |a TRYPANOSOMATIDAE 
700 1 |a Canepa, G.E. 
700 1 |a Carrillo, C. 
700 1 |a Glaser, F. 
700 1 |a Grotemeyer, M.S. 
700 1 |a Rentsch, D. 
700 1 |a Zilberstein, D. 
700 1 |a Pereira, C.A. 
773 0 |d 2012  |g v. 42  |h pp. 347-360  |k n. 1  |p Amino Acids  |x 09394451  |t Amino Acids 
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