Structure of Peptide Deformylase and Identification of the Substrate Binding Site
Peptide deformylase is an essential metalloenzyme required for the removal of the formyl group at the N terminus of nascent polypeptide chains in eubacteria. The Escherichia coli enzyme uses Fe 2+ and nearly retains its activity on substitution of the metal ion by Ni 2+ . We have solved the structur...
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Veröffentlicht in: | The Journal of biological chemistry 1998-05, Vol.273 (19), p.11413-11416 |
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Sprache: | eng |
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Zusammenfassung: | Peptide deformylase is an essential metalloenzyme required for the removal of the formyl group at the N terminus of nascent
polypeptide chains in eubacteria. The Escherichia coli enzyme uses Fe 2+ and nearly retains its activity on substitution of the metal ion by Ni 2+ . We have solved the structure of the Ni 2+ enzyme at 1.9-Ã
resolution by x-ray crystallography. Each of the three monomers in the asymmetric unit contains one Ni 2+ ion and, in close proximity, one molecule of polyethylene glycol. Polyethylene glycol is shown to be a competitive inhibitor
with a K I value of 6 m m with respect to formylmethionine under conditions similar to those used for crystallization. We have also solved the structure
of the inhibitor-free enzyme at 2.5-Ã
resolution. The two structures are identical within the estimated errors of the models.
The hydrogen bond network stabilizing the active site involves nearly all conserved amino acid residues and well defined water
molecules, one of which ligates to the tetrahedrally coordinated Ni 2+ ion. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.273.19.11413 |