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1.
Mem Inst Oswaldo Cruz ; 105(7): 928-30, 2010 Nov.
Article in English | MEDLINE | ID: mdl-21120366

ABSTRACT

Lutzomyia longipalpis s.l. is the primary vector of Leishmania (L.) infantum in the New World. In this study, male Lutzomyia longipalpis specimens from Posadas, Argentina were characterized for two polymorphic markers: the male sex pheromone and the period (per) gene. The male sex pheromone was identified as (S)-9-methylgermacrene-B, the same compound produced by Lu. longipalpis from Paraguay and many populations from Brazil. The analysis of per gene sequences revealed that the population from Argentina is significantly differentiated from previously studied Brazilian populations. Marker studies could contribute to the understanding of the distribution and spread of urban American visceral leishmaniasis, thus aiding in the design of regional surveillance and control strategies.


Subject(s)
Insect Vectors/chemistry , Psychodidae/chemistry , Sesquiterpenes, Germacrane/genetics , Sex Attractants/genetics , Animals , Argentina , Male
2.
J Biol Chem ; 285(22): 16588-98, 2010 May 28.
Article in English | MEDLINE | ID: mdl-20351109

ABSTRACT

Sesquiterpene lactones are characteristic natural products in Asteraceae, which constitutes approximately 8% of all plant species. Despite their physiological and pharmaceutical importance, the biochemistry and evolution of sesquiterpene lactones remain unexplored. Here we show that germacrene A oxidase (GAO), evolutionarily conserved in all major subfamilies of Asteraceae, catalyzes three consecutive oxidations of germacrene A to yield germacrene A acid. Furthermore, it is also capable of oxidizing non-natural substrate amorphadiene. Co-expression of lettuce GAO with germacrene synthase in engineered yeast synthesized aberrant products, costic acids and ilicic acid, in an acidic condition. However, cultivation in a neutral condition allowed the de novo synthesis of a single novel compound that was identified as germacrene A acid by gas and liquid chromatography and NMR analyses. To trace the evolutionary lineage of GAO in Asteraceae, homologous genes were further isolated from the representative species of three major subfamilies of Asteraceae (sunflower, chicory, and costus from Asteroideae, Cichorioideae, and Carduoideae, respectively) and also from the phylogenetically basal species, Barnadesia spinosa, from Barnadesioideae. The recombinant GAOs from these genes clearly showed germacrene A oxidase activities, suggesting that GAO activity is widely conserved in Asteraceae including the basal lineage. All GAOs could catalyze the three-step oxidation of non-natural substrate amorphadiene to artemisinic acid, whereas amorphadiene oxidase diverged from GAO displayed negligible activity for germacrene A oxidation. The observed amorphadiene oxidase activity in GAOs suggests that the catalytic plasticity is embedded in ancestral GAO enzymes that may contribute to the chemical and catalytic diversity in nature.


Subject(s)
Asteraceae/enzymology , Evolution, Molecular , Oxidoreductases/chemistry , Sesquiterpenes, Germacrane/chemistry , Catalysis , Chromatography, Thin Layer/methods , Cytochrome P-450 Enzyme System/chemistry , Gene Expression Regulation , Genetic Variation , Magnetic Resonance Spectroscopy , Mass Spectrometry/methods , Microsomes/metabolism , Molecular Sequence Data , Oxidoreductases/genetics , Plant Proteins/metabolism , Recombinant Proteins/chemistry , Sesquiterpenes, Germacrane/genetics
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