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Sulphate Removal Induces a Major Conformational Change in Leishmania mexicana Pyruvate Kinase in the Crystalline State

Authors :
Malcolm D. Walkinshaw
Hugh P. Morgan
Véronique Hannaert
Paul A.M. Michels
Linda A. Fothergill-Gilmore
Lindsay B. Tulloch
Source :
Journal of Molecular Biology. 383:615-626
Publication Year :
2008
Publisher :
Elsevier BV, 2008.

Abstract

We report X-ray structures of pyruvate kinase from Leishmania mexicana (LmPYK) that are trapped in different conformations. These, together with the previously reported structure of LmPYK in its inactive (T-state) conformation, allow comparisons of three different conformers of the same species of pyruvate kinase (PYK). Four new site point mutants showing the effects of side-chain alteration at subunit interfaces are also enzymatically characterised. The LmPYK tetramer crystals grown with ammonium sulphate as precipitant adopt an active-like conformation, with sulphate ions at the active and effector sites. The sulphates occupy positions similar to those of the phosphates of ligands bound to active (R-state) and constitutively active (nonallosteric) PYKs from several species, and provide insight into the structural roles of the phosphates of the substrates and effectors. Crystal soaking in sulphate-free buffers was found to induce major conformational changes in the tetramer. In particular, the unwinding of the Aalpha6' helix and the inward hinge movement of the B domain are coupled with a significant widening (4 A) of the tetramer caused by lateral movement of the C domains. The two new LmPYK structures and the activity studies of site point mutations described in this article are consistent with a developing picture of allosteric activity in which localised changes in protein flexibility govern the distribution of conformer families adopted by the tetramer in its active and inactive states.

Details

ISSN :
00222836
Volume :
383
Database :
OpenAIRE
Journal :
Journal of Molecular Biology
Accession number :
edsair.doi.dedup.....44530e563a9b1e81c76252af42b95954