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PMID: 8807888 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Assignment of the hyperfine-shifted 1H-NMR signals of the heme in the oxygen sensor FixL from Rhizobium meliloti.

Chemistry & biology ·Vol. 3 ·No. 7 ·1996-07-00 ·Pages 561-6

Bertolucci C, Ming LJ, Gonzalez G, Gilles-Gonzalez MA

Abstract

[corrected] The Rhizobial oxygen sensor FixL is a hemoprotein with kinase activity. On binding of strong-field ligands, a change of the ferrous or ferric heme iron from high to low spin reversibly inactivates the kinase. This spin-state change and other information on the heme pocket have been inferred from enzymatic assays, absorption spectra and mutagenesis studies. We set out to investigate the spin-state of the FixL heme and to identify the hyperfine-shifted heme-proton signals by NMR spectroscopy. Using one-dimensional NMR we directly observed the high- and low-spin nature of the met- and cyanomet-FixL heme domain, respectively. We determined the hyperfine-shifted 1H-NMR signals of the heme and the proximal histidine by one- and two-dimensional spectroscopy and note the absence of distal histidine signals. These findings support the spin-state mechanism of FixL regulation. They establish that the site of heme coordination is a histidine residue and strongly suggest that a distal histidine is absent. With a majority of the heme resonances identified, one- and two-dimensional NMR techniques can be extended to provide structural and mechanistic information about the residues that line the heme pocket.

MeSH Terms
Bacterial Proteins/chemistry Biosensing Techniques Heme/chemistry Hemeproteins/chemistry Histidine/chemistry Histidine Kinase Ligands Magnetic Resonance Spectroscopy Molecular Structure Oxygen/analysis Protons Sinorhizobium meliloti/chemistry
Chemicals
Bacterial Proteins Hemeproteins Ligands Protons Heme Histidine FixL protein, Bacteria Histidine Kinase Oxygen
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Bertolucci C
Department of Chemistry and Institute for Biomolecular Science, University of South Florida, 4202 East Fowler Avenue, CHE305, Tampa, FL 33620-5250, USA. [email protected]
Ming L J
Gonzalez G
Gilles-Gonzalez M A
Article Info
Journal
Chemistry & biology
Abbr.
Chem Biol
ISSN
1074-5521
Published
1996-07-00
Pages
561-6
Language
English
Region
United States
NLM ID
9500160
Subset
IM
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