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In vivo Imaging of Transgenic Leishmania Parasites in a Live Host
Published on: July 28, 2010
Evidence that intracellular beta1-2 mannan is a virulence factor in Leishmania parasites
Julie E Ralton1, Thomas Naderer, Helena L Piraino
1Department of Biochemistry and Molecular Biology, University of Melbourne, Parkville, Victoria 3010, Australia.
Abstract:
The protozoan parasite Leishmania mexicana proliferates within macrophage phagolysosomes in the mammalian host. In this study we provide evidence that a novel class of intracellular beta1-2 mannan oligosaccharides is important for parasite survival in host macrophages. Mannan (degree of polymerization 4-40) is expressed at low levels in non-pathogenic promastigote stages but constitutes 80 and 90% of the cellular carbohydrate in the two developmental stages that infect macrophages, non-dividing promastigotes, and lesion-derived amastigotes, respectively. Mannan is catabolized when parasites are starved of glucose, suggesting a reserve function, and developmental stages having low mannan levels or L. mexicana GDPMP mutants lacking all mannose molecules are highly sensitive to glucose starvation. Environmental stresses, such as mild heat shock or the heat shock protein-90 inhibitor, geldanamycin, that trigger the differentiation of promastigotes to amastigotes, result in a 10-25-fold increase in mannan levels. Developmental stages with low mannan levels or L. mexicana mutants lacking mannan do not survive heat shock and are unable to differentiate to amastigotes or infect macrophages in vitro. In contrast, a L. mexicana mutant deficient only in components of the mannose-rich surface glycocalyx differentiates normally and infects macrophages in vitro. Collectively, these data provide strong evidence that mannan accumulation is important for parasite differentiation and survival in macrophages.
Insights
Mannan oligosaccharides are crucial for Leishmania mexicana survival within macrophages. Increased mannan levels aid parasite differentiation and resistance to environmental stresses like heat shock and glucose starvation.
Area of Science:
- Parasitology
- Molecular Biology
- Biochemistry
Background:
- Leishmania mexicana, a protozoan parasite, infects mammalian macrophages.
- Parasite survival relies on intracellular proliferation within macrophage phagolysosomes.
Purpose of the Study:
- To investigate the role of beta1-2 mannan oligosaccharides in Leishmania mexicana survival.
- To understand the function of mannan during parasite differentiation and host cell invasion.
Main Methods:
- Analysis of mannan levels in different developmental stages of Leishmania mexicana.
- Assessment of parasite survival under glucose starvation and heat shock conditions.
- Characterization of Leishmania mexicana mutants lacking mannan or specific mannan components.
Main Results:
- Mannan constitutes a significant portion of cellular carbohydrate in macrophage-infective stages.
- Low mannan levels or absence of mannan renders parasites sensitive to glucose starvation and heat shock.
- Mannan accumulation is induced by environmental stresses that trigger differentiation.
- Mutants lacking mannan are impaired in differentiation and macrophage infection.
Conclusions:
- Beta1-2 mannan oligosaccharides are essential for Leishmania mexicana differentiation and survival in macrophages.
- Mannan plays a critical role as a reserve carbohydrate and in mediating stress responses.
- Targeting mannan synthesis or accumulation could be a strategy against leishmaniasis.
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