Please use this identifier to cite or link to this item: https://saber.ucv.ve/jspui/handle/10872/13967
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dc.contributor.authorDiaz, E.-
dc.contributor.authorZacarias, A.K.-
dc.contributor.authorPérez, S.-
dc.contributor.authorVanegas, O.-
dc.contributor.authorKöhidai, L.-
dc.contributor.authorPadrón-Nieves, M.-
dc.contributor.authorPonte-Sucre, Alicia-
dc.date.accessioned2016-12-26T17:31:29Z-
dc.date.available2016-12-26T17:31:29Z-
dc.date.issued2016-12-26-
dc.identifier.issn0031-1820-
dc.identifier.issn1469-8161-
dc.identifier.urihttp://hdl.handle.net/10872/13967-
dc.description.abstractIn the sand-fly mid gut, Leishmania promastigotes are exposed to acute changes in nutrients, e.g. amino acids (AAs). These metabolites are the main energy sources for the parasite, crucial for its differentiation and motility. We analysed the migratory behaviour and morphological changes produced by aliphatic, monocarboxylic, dicarboxylic, heterocyclic and sulphur-containing AAs in Leishmania amazonensis and Leishmania braziliensis and demonstrated that L-methionine (10−12 M), L-tryptophan (10−11 M), L-glutamine and L-glutamic acid (10−6 M), induced positive chemotactic responses, while L-alanine (10−7 M), L-methionine (10−11 and 10−7 M), L-tryptophan (10−11 M), L-glutamine (10−12 M) and L-glutamic acid (10−9 M) induced negative chemotactic responses. L-proline and L-cysteine did not change the migratory potential of Leishmania. The flagellum length of L. braziliensis, but not of L. amazonensis, decreased when incubated in hyperosmotic conditions. However, chemo-repellent concentrations of L-alanine (Hypo-/hyper-osmotic conditions) and L-glutamic acid (hypo-osmotic conditions) decreased L. braziliensis flagellum length and L-methionine (10−11 M, hypo-/hyper-osmotic conditions) decreased L. amazonensis flagellum length. This chemotactic responsiveness suggests that Leishmania discriminate between slight concentration differences of small and structurally closely related molecules and indicates that besides their metabolic effects, AAs play key roles linked to sensory mechanisms that might determine the parasite’s behaviour.en_US
dc.description.sponsorshipAlexander von Humboldt Foundation, Council for Research grant, CDCH-UCV PI-09-00-7084-2008 (E.D.); PG-09-00-7378-2008/2 (A.P.S.), Universidad Central de Venezuela, Faculty of Medicine Grant, FACMED CI 3/2008 (E.D.), CI 5/2011-1 (E.D.).en_US
dc.language.isoenen_US
dc.relation.ispartofseriesParasitology;142(13):1621-1630, 2015.-
dc.subjectAmino acidsen_US
dc.subjectchemotaxisen_US
dc.subjectflagellum lengthen_US
dc.subjectLeishmania braziliensisen_US
dc.subjectLeishmania amazonensisen_US
dc.subjectparasite’s motilityen_US
dc.subjectosmotic stressen_US
dc.titleEffect of aliphatic, monocarboxylic, dicarboxylic, heterocyclic and sulphur-containing amino acids on Leishmania spp. chemotaxisen_US
dc.typeArticleen_US
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