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Localization and nucleotide specificity of Blastocystis succinyl-CoA synthetase.

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posted on 2025-07-30, 21:22 authored by K Hamblin, DM Standley, MB Rogers, A Stechmann, AJ Roger, R Maytum, M van der Giezen
The anaerobic lifestyle of the intestinal parasite Blastocystis raises questions about the biochemistry and function of its mitochondria-like organelles. We have characterized the Blastocystis succinyl-CoA synthetase (SCS), a tricarboxylic acid cycle enzyme that conserves energy by substrate-level phosphorylation. We show that SCS localizes to the enigmatic Blastocystis organelles, indicating that these organelles might play a similar role in energy metabolism as classic mitochondria. Although analysis of residues inside the nucleotide-binding site suggests that Blastocystis SCS is GTP-specific, we demonstrate that it is ATP-specific. Homology modelling, followed by flexible docking and molecular dynamics simulations, indicates that while both ATP and GTP fit into the Blastocystis SCS active site, GTP is destabilized by electrostatic dipole interactions with Lys 42 and Lys 110, the side-chains of which lie outside the nucleotide-binding cavity. It has been proposed that residues in direct contact with the substrate determine nucleotide specificity in SCS. However, our results indicate that, in Blastocystis, an electrostatic gatekeeper controls which ligands can enter the binding site.

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Notes

addresses: School of Biological and Chemical Sciences, Queen Mary, University of London, Mile End Road, London E1 4NS, UK. notes: PMCID: PMC2440562 types: Journal Article; Research Support, Non-U.S. Gov't Online open article. This is a copy of an article published in Molecular Microbiology © 2008 Blackwell Publishing Ltd. Molecular Microbiology is available online at: http://onlinelibrary.wiley.com/journal/10.1111/(ISSN)1365-2958

Journal

Molecular Microbiology

Publisher

Wiley-Blackwell

Place published

England

Language

en

Citation

Molecular Microbiology, 2008, Vol. 68, Issue 6, pp. 1395 - 1405

Department

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