Literature DB >> 19472335

Structural and functional characterization of a putative polysaccharide deacetylase of the human parasite Encephalitozoon cuniculi.

Jonathan E Urch1, Ramon Hurtado-Guerrero, Damien Brosson, Zhanliang Liu, Vincent G H Eijsink, Catherine Texier, Daan M F van Aalten.   

Abstract

The microsporidian Encephalitozoon cuniculi is an intracellular eukaryotic parasite considered to be an emerging opportunistic human pathogen. The infectious stage of this parasite is a unicellular spore that is surrounded by a chitin containing endospore layer and an external proteinaceous exospore. A putative chitin deacetylase (ECU11_0510) localizes to the interface between the plasma membrane and the endospore. Chitin deacetylases are family 4 carbohydrate esterases in the CAZY classification, and several bacterial members of this family are involved in evading lysis by host glycosidases, through partial de-N-acetylation of cell wall peptidoglycan. Similarly, ECU11_0510 could be important for E. cuniculi survival in the host, by protecting the chitin layer from hydrolysis by human chitinases. Here, we describe the biochemical, structural, and glycan binding properties of the protein. Enzymatic analyses showed that the putative deacetylase is unable to deacetylate chitooligosaccharides or crystalline beta-chitin. Furthermore, carbohydrate microarray analysis revealed that the protein bound neither chitooligosaccharides nor any of a wide range of other glycans or chitin. The high resolution crystal structure revealed dramatic rearrangements in the positions of catalytic and substrate binding residues, which explain the loss of deacetylase activity, adding to the unusual structural plasticity observed in other members of this esterase family. Thus, it appears that the ECU11_0510 protein is not a carbohydrate deacetylase and may fulfill an as yet undiscovered role in the E. cuniculi parasite.

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Year:  2009        PMID: 19472335      PMCID: PMC2774430          DOI: 10.1002/pro.128

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  44 in total

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5.  Microsporidia are related to Fungi: evidence from the largest subunit of RNA polymerase II and other proteins.

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6.  Genome sequence and gene compaction of the eukaryote parasite Encephalitozoon cuniculi.

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  13 in total

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Journal:  Mass Spectrom Rev       Date:  2014-05-26       Impact factor: 10.946

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6.  The genome of Spraguea lophii and the basis of host-microsporidian interactions.

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Review 9.  Substrate Recognition and Specificity of Chitin Deacetylases and Related Family 4 Carbohydrate Esterases.

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