Literature DB >> 11560410

Encephalitozoon cuniculi (Microspora): characterization of a phospholipid metabolic pathway potentially linked to therapeutics.

H El Alaoui1, J Bata, P Peyret, C P Vivarès.   

Abstract

Phospholipid metabolism of the microsporidian Encephalitozoon cuniculi, an obligate intracellular parasite, has been investigated. Labeled precursor incorporation experiments have shown that phosphatidylserine decarboxylase and phosphatidylethanolamine N-methyltransferase are more active in cells infected by E. cuniculi than in uninfected cells. In contrast, no difference was observed in the activity of Kennedy pathway's enzymes, the mammalian pathway. This suggests the occurrence in microsporidia of a bacteria- and fungi-typical pathway for phospholipid synthesis, which is supported by the identification of two genes implicated in this pathway, the cds gene encoding the key enzyme CDP-diacylglycerol synthase (E.C. 2.7.7.41) and the pss gene for CDP-alcohol phosphatidyltransferase. The pss gene could encode phosphatidylserine synthase (E.C. 2.7.8.8.), which catalyses the de novo synthesis of phosphatidylserine in bacteria and fungi. The complete CDP-diacylglycerol synthase messenger has been isolated and shows very short 5' and 3' untranslated regions. This is strong evidence for the functionality of a metabolic pathway which could be a potential target against microsporidia which infect humans. Copyright 2001 Academic Press.

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Year:  2001        PMID: 11560410     DOI: 10.1006/expr.2001.4635

Source DB:  PubMed          Journal:  Exp Parasitol        ISSN: 0014-4894            Impact factor:   2.011


  2 in total

1.  The nascent parasitophorous vacuole membrane of Encephalitozoon cuniculi is formed by host cell lipids and contains pores which allow nutrient uptake.

Authors:  Karin Rönnebäumer; Uwe Gross; Wolfgang Bohne
Journal:  Eukaryot Cell       Date:  2008-04-11

Review 2.  Current Therapy and Therapeutic Targets for Microsporidiosis.

Authors:  Junhong Wei; Zhihui Fei; Guoqing Pan; Louis M Weiss; Zeyang Zhou
Journal:  Front Microbiol       Date:  2022-03-09       Impact factor: 5.640

  2 in total

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