Cargando…

Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages

BACKGROUND: Bacillus subtilis glucokinase (GlcK) (GenBank NP_390365) is an ATP-dependent kinase that phosphorylates glucose to glucose 6-phosphate. The GlcK protein has very low sequence identity (13.7%) to the Escherichia coli glucokinase (Glk) (GenBank P46880) and some other glucokinases (EC 2.7.1...

Descripción completa

Detalles Bibliográficos
Autores principales: Mesak, Lili R, Mesak, Felix M, Dahl, Michael K
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC365027/
https://www.ncbi.nlm.nih.gov/pubmed/15018644
http://dx.doi.org/10.1186/1471-2180-4-6
_version_ 1782121258941415424
author Mesak, Lili R
Mesak, Felix M
Dahl, Michael K
author_facet Mesak, Lili R
Mesak, Felix M
Dahl, Michael K
author_sort Mesak, Lili R
collection PubMed
description BACKGROUND: Bacillus subtilis glucokinase (GlcK) (GenBank NP_390365) is an ATP-dependent kinase that phosphorylates glucose to glucose 6-phosphate. The GlcK protein has very low sequence identity (13.7%) to the Escherichia coli glucokinase (Glk) (GenBank P46880) and some other glucokinases (EC 2.7.1.2), yet glucose is merely its substrate. Our lab has previously isolated and characterized the glcK gene. RESULTS: Microbial glucokinases can be grouped into two different lineages. One of the lineages contains three conserved cysteine (C) residues in a CXCGX(2)GCXE motif. This motif is also present in the B. subtilis GlcK. The GlcK protein occurs in both monomer and homodimer. Each GlcK monomer has six cysteines. All cysteine residues have been mutated, one-by-one, into alanine (A). The in vivo GlcK enzymatic activity was assayed by functional complementation in E. coli UE26 (ptsG ptsM glk). Mutation of the three motif-specific residues led to an inactive enzyme. The other mutated forms retained, or in one case (GlcK(C321A)) even gained, activity. The fluorescence spectra of the GlcK(C321A )showed a red shift and enhanced fluorescence intensity compare to the wild type's. CONCLUSIONS: Our results emphasize the necessity of cysteines within the CXCGX(2)GCXE motif for GlcK activity. On the other hand, the C321A mutation led to higher GlcK(C321A )enzymatic activity with respect to the wild type's, suggesting more adequate glucose phosphorylation.
format Text
id pubmed-365027
institution National Center for Biotechnology Information
language English
publishDate 2004
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-3650272004-03-12 Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages Mesak, Lili R Mesak, Felix M Dahl, Michael K BMC Microbiol Research Article BACKGROUND: Bacillus subtilis glucokinase (GlcK) (GenBank NP_390365) is an ATP-dependent kinase that phosphorylates glucose to glucose 6-phosphate. The GlcK protein has very low sequence identity (13.7%) to the Escherichia coli glucokinase (Glk) (GenBank P46880) and some other glucokinases (EC 2.7.1.2), yet glucose is merely its substrate. Our lab has previously isolated and characterized the glcK gene. RESULTS: Microbial glucokinases can be grouped into two different lineages. One of the lineages contains three conserved cysteine (C) residues in a CXCGX(2)GCXE motif. This motif is also present in the B. subtilis GlcK. The GlcK protein occurs in both monomer and homodimer. Each GlcK monomer has six cysteines. All cysteine residues have been mutated, one-by-one, into alanine (A). The in vivo GlcK enzymatic activity was assayed by functional complementation in E. coli UE26 (ptsG ptsM glk). Mutation of the three motif-specific residues led to an inactive enzyme. The other mutated forms retained, or in one case (GlcK(C321A)) even gained, activity. The fluorescence spectra of the GlcK(C321A )showed a red shift and enhanced fluorescence intensity compare to the wild type's. CONCLUSIONS: Our results emphasize the necessity of cysteines within the CXCGX(2)GCXE motif for GlcK activity. On the other hand, the C321A mutation led to higher GlcK(C321A )enzymatic activity with respect to the wild type's, suggesting more adequate glucose phosphorylation. BioMed Central 2004-02-03 /pmc/articles/PMC365027/ /pubmed/15018644 http://dx.doi.org/10.1186/1471-2180-4-6 Text en Copyright © 2004 Mesak et al; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research Article
Mesak, Lili R
Mesak, Felix M
Dahl, Michael K
Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages
title Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages
title_full Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages
title_fullStr Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages
title_full_unstemmed Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages
title_short Bacillus subtilis GlcK activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages
title_sort bacillus subtilis glck activity requires cysteines within a motif that discriminates microbial glucokinases into two lineages
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC365027/
https://www.ncbi.nlm.nih.gov/pubmed/15018644
http://dx.doi.org/10.1186/1471-2180-4-6
work_keys_str_mv AT mesaklilir bacillussubtilisglckactivityrequirescysteineswithinamotifthatdiscriminatesmicrobialglucokinasesintotwolineages
AT mesakfelixm bacillussubtilisglckactivityrequirescysteineswithinamotifthatdiscriminatesmicrobialglucokinasesintotwolineages
AT dahlmichaelk bacillussubtilisglckactivityrequirescysteineswithinamotifthatdiscriminatesmicrobialglucokinasesintotwolineages