dc.creatorFessel M.R.
dc.creatorLira C.B.
dc.creatorGiorgio S.
dc.creatorRamos C.H.I.
dc.creatorCano M.I.N.
dc.date2011
dc.date2015-06-30T20:21:21Z
dc.date2015-11-26T14:48:27Z
dc.date2015-06-30T20:21:21Z
dc.date2015-11-26T14:48:27Z
dc.date.accessioned2018-03-28T21:59:14Z
dc.date.available2018-03-28T21:59:14Z
dc.identifier
dc.identifierParasitology. , v. 138, n. 10, p. 1245 - 1258, 2011.
dc.identifier311820
dc.identifier10.1017/S0031182011001077
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-80053067069&partnerID=40&md5=2fee211a88b6d614ef66c0eaa420dc2b
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/107665
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/107665
dc.identifier2-s2.0-80053067069
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1253613
dc.descriptionSirtuin proteins form a family of NAD +-dependent protein deacetylases that are considered potential drug targets against parasites. Here, we present the first characterization of a sirtuin orthologue from Leishmania amazonensis, an aetiological agent of American tegumentary leishmaniasis that has been the subject of many studies focused in the development of therapeutic approaches. The protein has high sequence identity with other Kinetoplastid Silent information regulator 2 Related Protein 1 (Sir2RP1) and was named LaSir2RP1. The gene exists as a single copy, encoding a monomeric protein (LaSir2RP1) of approximately 41 kDa that has NAD +-dependent deacetylase activity. LaSir2RP1 was immunodetected in total protein extracts, in cytoplasmic granules, and in the secreted material of both promastigotes and lesion-derived amastigotes. Analysis of both lectin-affinity purified promastigote and amastigote extracts revealed the presence of a major enriched protein of approximately 66 kDa that was recognized by an anti-LaSir2RP1 serum, suggesting that a parasite sirtuin could be glycosylated in vivo. © 2011 Cambridge University Press.
dc.description138
dc.description10
dc.description1245
dc.description1258
dc.descriptionAvalos, J.L., Bever, K.M., Wolberger, C., Mechanism of sirtuin nhibition by nicotinamide: Altering the NAD + cosubstrate specificity of a Sir2 enzyme (2005) Molecular Cell, 17 (6), pp. 855-868. , DOI 10.1016/j.molcel.2005.02.022
dc.descriptionBarbieri, C.L., Giorgio, S., Merjan, A.J.C., Figueiredo, E.N., Glycosphingolipid antigens of Leishmania (Leishmania) amazonensis amastigotes identified by use of a monoclonal antibody (1993) Infection and Immunity, 61 (5), pp. 2131-2137
dc.descriptionBitterman, K.J., Anderson, R.M., Cohen, H.Y., Latorre-Esteves, M., Sinclair, D.A., Inhibition of silencing and accelerated aging by nicotinamide, a putative negative regulator of yeast Sir2 and human SIRT1 (2002) Journal of Biological Chemistry, 277 (47), pp. 45099-45107. , DOI 10.1074/jbc.M205670200
dc.descriptionCorrea, D.H.A., Ramos, C.H.I., The use of circular dichroism spectroscopy to study protein folding, form and function (2009) African Journal of Biochemistry Research, 3, pp. 164-173
dc.descriptionCotrim, P.C., Paranhos, G.S., Mortara, R.A., Wanderley, J., Rassi, A., Camargo, M.E., Franco Da Silveira, J., Expression in Escherichia coli of a dominant immunogen of Trypanosoma cruzi recognized by human Chagasic sera (1990) Journal of Clinical Microbiology, 28 (3), pp. 519-524
dc.descriptionCuervo, P., De Jesus, J.B., Saboia-Vahia, L., Mendonça-Lima, L., Domont, G.B., Cupolillo, E., Proteomic characterization of the released/secreted proteins of Leishmania (Viannia) braziliensis promasti-gotes (2009) Journal of Proteomics, 73, pp. 79-92
dc.descriptionDesjeux, P., Leishmaniasis: Current situation and new perspectives (2004) Comparative Immunology, Microbiology and Infectious Diseases, 27 (5), pp. 305-318. , DOI 10.1016/j.cimid.2004.03.004, PII S0147957104000232
dc.descriptionFrye, R.A., Phylogenetic classification of prokaryotic and eukaryotic Sir2-like proteins (2000) Biochemical and Biophysical Research Communications, 273 (2), pp. 793-798. , DOI 10.1006/bbrc.2000.3000
dc.descriptionGoldstein, I.J., Hollerman, C.E., Smith, E.E., Protein-carbohydrate interaction. II. Inhibition studies on the interaction of Concanavalin A with polysaccharides (1965) Biochemistry, 5, pp. 876-883
dc.descriptionHide, H., Ritleng, A.S., Brizard, J.P., Monte-Allegre, A., Sereno, D., Leishmania infantum: Tuning digitonin fractionation for comparative proteomic of the mitochondrial protein content (2008) Parasitology Research, 103, pp. 989-992
dc.descriptionIlgoutz, S.C., Mullin, K.A., Southwell, B.R., McConville, M.J., Glycosylphosphatidylinositol biosynthetic enzymes are localized to a stable tubular subcompartment of the endoplasmic reticulum in Leishmania mexicana (1999) EMBO Journal, 18 (13), pp. 3643-3654. , DOI 10.1093/emboj/18.13.3643
dc.descriptionImai, S., Guarente, L., Ten years of NAD-dependent SIR2 family deacetylases: Implications for metabolic diseases (2010) Trends in Pharmacological Science, 31, pp. 212-220
dc.descriptionIvens, A.C., Peacock, C.S., Worthey, E.A., Murphy, L., Aggarwal, G., Berriman, M., Sisk, E., Horn, D., The genome of the kinetoplastid parasite, Leishmania major (2005) Science, 309 (5733), pp. 436-442. , DOI 10.1126/science.1112680
dc.descriptionKadam, R.U., Kiran, V.M., Roy, N., Comparative protein modeling and surface analysis of Leishmania sirtuin: A potential target for antileishmanial drug discovery (2006) Bioorganic and Medicinal Chemistry Letters, 16 (23), pp. 6013-6018. , DOI 10.1016/j.bmcl.2006.08.128, PII S0960894X06010286
dc.descriptionKaur, S., Shivange, A.V., Roy, N., Structural analysis of trypanosomal sirtuin: An insight for selective drug design (2010) Molecular Diversity, 14, pp. 169-178
dc.descriptionMcConville, M.J., Mullin, K.A., Ilgoutz, S.C., Teasdale, R.D., Secretory pathway of trypanosomatid parasites (2002) Microbiology and Molecular Biology Reviews, 66 (1), pp. 122-154. , DOI 10.1128/MMBR.66.1.122-154.2002
dc.descriptionMichan, S., Sinclair, D., Sirtuins in mammals: Insights into their biological function (2007) Biochemical Journal, 404 (1), pp. 1-13. , DOI 10.1042/BJ20070140
dc.descriptionMonteiro, J.P., Cano, M.I.N., SIRT1 deacetylase activity and the maintenance of protein homeostasis in response to stress: An overview (2011) Protein and Peptide Letters, 18, pp. 167-173
dc.descriptionMunro, S., Pelham, H.R.B., A C-terminal signal prevents secretion of luminal ER proteins (1987) Cell, 48, pp. 899-907
dc.descriptionNorth, B.J., Verdin, E., Mitotic regulation of SIRT2 by cyclin-dependent kinase 1-dependent phosphorylation (2007) Journal of Biological Chemistry, 282 (27), pp. 19546-19555. , http://www.jbc.org/cgi/reprint/282/27/19546, DOI 10.1074/jbc.M702990200
dc.descriptionNylén, S., Gautam, S., Immunological perspectives of leishmaniasis (2010) Journal of Global Infectious Diseases, 2, pp. 135-146
dc.descriptionRamos, C.H.I., Aspectroscopic-based laboratory course for protein conformational studies (2004) Biochemistry and Molecular Biology Education, 32 (1), pp. 31-34. , DOI 10.1002/bmb.2004.494032010309
dc.descriptionSakaguchi, M., Tomiyoshi, R., Kuroiwa, T., Mihara, K., Omura, T., Functions of signal and signal-anchor sequences are determined by the balance between the hydrophobic segment and the N-terminal charge (1992) Proceedings of the National Academy of Sciences, USA, 89, pp. 16-19
dc.descriptionSchwer, B., Verdin, E., Conserved metabolic regulatory functions of sirtuins (2008) Cell Metabolism, 7 (2), pp. 104-112. , DOI 10.1016/j.cmet.2007.11.006, PII S1550413107003415
dc.descriptionSereno, D., Vanhille, L., Vergnes, B., Monte-Allegre, A., Ouaissi, A., Experimental study of the function of the excreted/secreted Leishmania LmSIR2 protein by heterologous expression in eukaryotic cell line (2005) Kinetoplastid Biology and Disease, 4, p. 1. , http://www.kinetoplastids.com/content/4/1/1, DOI 10.1186/1475-9292-4-1
dc.descriptionShapira, M., Pinelli, E., Heat-shock protein 83 of Leishmania mexicana amazonensis is an abundant cytoplasmic protein with a tandemly repeated genomic arrangement (1989) European Journal of Biochemistry, 185 (2), pp. 231-236
dc.descriptionSilva, J.L., Miles, E.W., Weber, G., Pressure dissociation and conformational drift of the beta dimer of tryptophan synthase (1986) Biochemistry, 25, pp. 5780-5786
dc.descriptionSilverman, J.M., Chan, S.K., Robinson, D.P., Dwyer, D.M., Nandan, D., Foster, L.J., Reiner, N., Proteomic analysis of the secretome of Leishmania donovani (2008) Genome Biology, 9, pp. R351-R3521
dc.descriptionSilverman, J.M., Clos, J., De Oliveira, C.C., Shirvani, O., Fang, Y., Wang, C., Foster, L.J., Reiner, N.E., An exosome-based secretion pathway is responsible for protein export from Leishmania and communication with macrophages (2010) Journal of Cell Science, 123, pp. 842-852
dc.descriptionNeto, J.L.S., Lira, C.B.B., Giardini, M.A., Khater, L., Perez, A.M., Peroni, L.A., Dos Reis, J.R.R., Cano, M.I.N., Leishmania replication protein A-1 binds in vivo single-stranded telomeric DNA (2007) Biochemical and Biophysical Research Communications, 358 (2), pp. 417-423. , DOI 10.1016/j.bbrc.2007.04.144, PII S0006291X07008522
dc.descriptionTanner, K.G., Landry, J., Sternglanz, R., Denu, J.M., Silent information regulator 2 family of NAD-dependent histone/protein deacetylases generates a unique product, 1-O-acetyl-ADP-ribose (2000) Proceedings of the National Academy of Sciences of the United States of America, 97 (26), pp. 14178-14182. , DOI 10.1073/pnas.250422697
dc.descriptionTavares, J., Ouaissi, A., Santarém, N., Sereno, D., Vergnes, B., Sampaio, P., Cordeiro-Da-Silva, A., The Leishmania infantum cytosolic Sir2-related protein 1 (LiSir2RP1) is an NAD +-dependent deacetylase and ADP-ribosyltransferase (2008) The Biochemical Journal, 415, pp. 377-386
dc.descriptionVergnes, B., Sereno, D., Madjidian-Sereno, N., Lemesre, J.-L., Ouaissi, A., Cytoplasmic SIR2 homologue overexpression promotes survival of Leishmania parasites by preventing programmed cell death (2002) Gene, 296 (1-2), pp. 139-150. , DOI 10.1016/S0378-1119(02)00842-9, PII S0378111902008429
dc.descriptionVergnes, B., Vanhille, L., Ouaissi, A., Sereno, D., Stage-specific antileishmanial activity of an inhibitor of SIR2 histone deacetylase (2005) Acta Tropica, 94 (2), pp. 107-115. , DOI 10.1016/j.actatropica.2005.03.004, PII S0001706X05000732
dc.descriptionWilson, J.M., Le, V.Q., Zimmerman, C., Marmorstein, R., Pillus, L., Nuclear export modulates the cytoplasmic Sir2 homologue Hst2 (2006) EMBO Reports, 7 (12), pp. 1247-1251. , DOI 10.1038/sj.embor.7400829, PII 7400829
dc.descriptionYahiaoui, B., Taibi, A., Ouaissi, A., A Leishmania major protein with extensive homology to silent information regulator 2 of Saccharomyces cerevisiae (1996) Gene, 169 (1), pp. 115-118. , DOI 10.1016/0378-1119(95)00785-7
dc.descriptionYang, Y., Fu, W., Chen, J., Olashaw, N., Zhang, X., Nicosia, S.V., Bhalla, K., Bai, W., SIRT1 sumoylation regulates its deacetylase activity and cellular response to genotoxic stress (2007) Nature Cell Biology, 9 (11), pp. 1253-1262. , DOI 10.1038/ncb1645, PII NCB1645
dc.descriptionValle, T.Z.D., Gaspar, E.B., Souza-Lemos, C., Souza, C.S.F., Marquez, F.B.Z., Baetas-Da-Cruz, W., D'Escofier, L.N., Da Costa, S.C.G., Experimental Leishmania (L.) amazonensis leishmaniasis: Characterization and immunogenicity of subcellular fractions (2007) Immunological Investigations, 36 (4), pp. 473-492. , DOI 10.1080/08820130701360972, PII 781214862
dc.descriptionZemzoumi, K., Sereno, D., Francois, C., Guilvard, E., Lemesre, J.-L., Ouaissi, A., Leishmania major: Cell type dependent distribution of a 43 kDa antigen related to silent information regulatory-2 protein family (1998) Biology of the Cell, 90 (3), pp. 239-245. , DOI 10.1016/S0248-4900(98)80020-8
dc.languageen
dc.publisher
dc.relationParasitology
dc.rightsfechado
dc.sourceScopus
dc.titleSir2-related Protein 1 From Leishmania Amazonensis Is A Glycosylated Nad +-dependent Deacetylase
dc.typeArtículos de revistas


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