Literature DB >> 10089216

Differences between the trypanosomal and human GlcNAc-PI de-N-acetylases of glycosylphosphatidylinositol membrane anchor biosynthesis.

D K Sharma1, T K Smith, C T Weller, A Crossman, J S Brimacombe, M A Ferguson.   

Abstract

De-N-acetylation of N-acetylglucosaminyl-phosphatidylino-sitol (GlcNAc-PI) is the second step of glycosylphosphatidylino-sitol (GPI) membrane anchor biosynthesis in eukaryotes. This step is a prerequisite for the subsequent processing of glucosaminyl-phosphatidylinositol (GlcN-PI) that leads to mature GPI membrane anchor precursors, which are transferred to certain proteins in the endoplasmic reticulum. In this article, we used a direct de-N-acetylase assay, based on the release of [14C]acetate from synthetic GlcN[14C]Ac-PI and analogues thereof, and an indirect assay, based on the mannosylation of GlcNAc-PI analogues, to study the substrate specificities of the GlcNAc-PI de-N-acetylase activities of African trypanosomes and human (HeLa) cells. The HeLa enzyme was found to be more fastidious than the trypanosomal enzyme such that, unlike the trypanosomal enzyme, it was unable to act on a GlcNAc-PI analogue containing 2-O-octyl-d- myo -inositol or on the GlcNAc-PI diastereoisomer containing l- myo -inositol (GlcNAc-P(l)I). These results suggest thatselective inhibition of the trypanosomal de-N-acetylase may be possible and that this enzyme should be considered as a possible therapeutic target. The lack of strict stereospecificity of the trypanosomal de-N-acetylase for the d- myo -inositol component was also seen for the trypanosomal GPI alpha-manno-syltransferases when GlcNAc-P(l)I was added to the trypanosome cell-free system, but not when GlcN-P(l)I was used. In an attempt to rationalize these data, we modeled the structure and dynamics of d-GlcNAcalpha1-6d- myo -inositol-1-HPO4-( sn )-3-glycerol and its diastereoisomer d-GlcNAcalpha1-6l- myo -inositol-1-HPO4-( sn )-3-glycerol. These studies indicate that the latter compound visits two energy minima, one of which resembles the low-energy conformer of former compound. Thus, it is conceivable that the trypanosomal de-N-acetylase acts on GlcNAc-P(l)I when it occupies a GlcNAc-PI-likeconformation and that GlcN-P(l)I emerging from the de-N-acetylase may be channeled to the alpha-mannosyltransferases in this conformation.

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Year:  1999        PMID: 10089216     DOI: 10.1093/glycob/9.4.415

Source DB:  PubMed          Journal:  Glycobiology        ISSN: 0959-6658            Impact factor:   4.313


  9 in total

1.  Specificity of GlcNAc-PI de-N-acetylase of GPI biosynthesis and synthesis of parasite-specific suicide substrate inhibitors.

Authors:  T K Smith; A Crossman; C N Borissow; M J Paterson; A Dix; J S Brimacombe; M A Ferguson
Journal:  EMBO J       Date:  2001-07-02       Impact factor: 11.598

2.  Biosynthesis of glycosylphosphatidylinositols of Plasmodium falciparum in a cell-free incubation system: inositol acylation is needed for mannosylation of glycosylphosphatidylinositols.

Authors:  P Gerold; N Jung; N Azzouz; N Freiberg; S Kobe; R T Schwarz
Journal:  Biochem J       Date:  1999-12-15       Impact factor: 3.857

3.  Geldanamycin treatment ameliorates the response to LPS in murine macrophages by decreasing CD14 surface expression.

Authors:  Virginia L Vega; Antonio De Maio
Journal:  Mol Biol Cell       Date:  2003-02       Impact factor: 4.138

4.  Genes for glycosylphosphatidylinositol toxin biosynthesis in Plasmodium falciparum.

Authors:  Mauro Delorenzi; Adrienne Sexton; Hosam Shams-Eldin; Ralph T Schwarz; Terry Speed; Louis Schofield
Journal:  Infect Immun       Date:  2002-08       Impact factor: 3.441

Review 5.  Targeting the GPI biosynthetic pathway.

Authors:  Usha Yadav; Mohd Ashraf Khan
Journal:  Pathog Glob Health       Date:  2018-02-27       Impact factor: 2.894

Review 6.  Trypanosome glycosylphosphatidylinositol biosynthesis.

Authors:  Yeonchul Hong; Taroh Kinoshita
Journal:  Korean J Parasitol       Date:  2009-08-28       Impact factor: 1.341

7.  Inhibitors incorporating zinc-binding groups target the GlcNAc-PI de-N-acetylase in Trypanosoma brucei, the causative agent of African sleeping sickness.

Authors:  Nuha Z Abdelwahab; Arthur T Crossman; Lauren Sullivan; Michael A J Ferguson; Michael D Urbaniak
Journal:  Chem Biol Drug Des       Date:  2012-03       Impact factor: 2.817

8.  Identification and functional analysis of Trypanosoma cruzi genes that encode proteins of the glycosylphosphatidylinositol biosynthetic pathway.

Authors:  Mariana S Cardoso; Caroline Junqueira; Ricardo C Trigueiro; Hosam Shams-Eldin; Cristiana S Macedo; Patrícia R Araújo; Dawidson A Gomes; Patrícia M Martinelli; Jürgen Kimmel; Philipp Stahl; Sebastian Niehus; Ralph T Schwarz; José O Previato; Lucia Mendonça-Previato; Ricardo T Gazzinelli; Santuza M R Teixeira
Journal:  PLoS Negl Trop Dis       Date:  2013-08-08

9.  Probing the substrate specificity of Trypanosoma brucei GlcNAc-PI de-N-acetylase with synthetic substrate analogues.

Authors:  Amy S Capes; Arthur Crossman; Michael D Urbaniak; Sophie H Gilbert; Michael A J Ferguson; Ian H Gilbert
Journal:  Org Biomol Chem       Date:  2014-02-12       Impact factor: 3.876

  9 in total

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