Science · 2001 · 120 citations · 17 references
BiologyLeishmania DifferentiationInfectious CycleBiosynthesisInfective StagePteridine MetabolismBiochemistryParasitic ProtozoaNatural SciencesMedicinePathogenesisParasite ControlMolecular BiologyHost ResistanceProteomicsVisceral LeishmaniasisParasitologyHost-parasite Relationship
A critical step in the infectious cycle of Leishmania is the differentiation of parasites within the sand fly vector to the highly infective metacyclic promastigote stage. Here, we establish tetrahydrobiopterin (H4B) levels as an important factor controlling the extent of metacyclogenesis. H4B levels decline substantially during normal development, and genetic or nutritional manipulations showed that low H4B caused elevated metacyclogenesis. Mutants lacking pteridine reductase 1 (PTR1) had low levels of H4B, remained infectious to mice, and induced larger cutaneous lesions (hypervirulence). Thus, the control of pteridine metabolism has relevance to the mechanism of Leishmania differentiation and the limitation of virulence during evolution.
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Gene replacement in parasitic protozoa
Ângela K. Cruz, Stephen M. Beverley · Nature · 1990 · 240 citations
Alexandre Ribeiro Bello, Bakela Nare, D. Freedman et al. · Proceedings of the National Academy of Sciences · 1994 · 192 citations · Full text