Journal of Biological Chemistry 1997-10-24

Mass spectrometric determination of the cleavage sites in Escherichia coli dihydroorotase induced by a cysteine-specific reagent.

R Daniel, E Caminade, A Martel, F Le Goffic, D Canosa, M Carrascal, J Abian

Index: J. Biol. Chem. 272(43) , 26934-9, (1997)

Full Text: HTML

Abstract

Escherichia coli dihydroorotase contains six cysteines/subunit, which are potential ligands of structural and catalytic zinc metals at protein sites of the enzyme. Specific thiol reagents modify, in nondenaturing conditions only, two of these cysteines; these two residues are thought to be ligands of structural zinc. We report here on the localization of these two cysteines on the polypeptide chain through their cyanylation by 2-nitro-5-thiocyanobenzoic acid (NTCB) and the analysis by mass spectrometry of the protein adducts. This is the first study of E. coli dihydroorotase by mass spectrometry, allowing the accurate determination of the subunit molecular weight (38,695). Treatment of dihydroorotase by NTCB induced a cleavage N-terminal to the cyanylated cysteines. The resulting fragments visualized on electrophoresis gel have been N-terminal sequenced, and their masses were determined by electrospray-ionizing mass spectrometry. This allowed the identification of cysteines 221 and 265 as the two residues cyanylated by the reagent NTCB. Results from gel filtration of dihydroorotase cyanylated on the two cysteines indicate that these residues are involved in subunit interactions leading to the active dimer. Consistent with literature data, we assume that cysteine 221 and cysteine 265, along with the neighboring cysteines 263 and 268 arranged in cluster, are potential ligands of structural zinc of E. coli dihydroorotase.


Related Compounds

  • 2-Nitro-5-thiocyan...

Related Articles:

EPOR-Based Purification and Analysis of Erythropoietin Mimetic Peptides from Human Urine by Cys-Specific Cleavage and LC/MS/MS.

2015-09-01

[J. Am. Soc. Mass Spectrom. 26 , 1617-25, (2015)]

Probing the electrostatics of active site microenvironments along the catalytic cycle for Escherichia coli dihydrofolate reductase.

2014-07-23

[J. Am. Chem. Soc. 136(29) , 10349-60, (2014)]

Nonradioactive, ultrasensitive site-specific protein-protein photocrosslinking: interactions of alpha-helix 2 of TATA-binding protein with general transcription factor TFIIA and transcriptional repressor NC2.

2008-11-01

[Nucleic Acids Res. 36(19) , 6143-54, (2008)]

Identification of the cyclosporin-binding site in P-glycoprotein.

1998-12-22

[Biochemistry 37(51) , 18110-8, (1998)]

Chelator-facilitated chemical modification of IMP-1 metallo-beta-lactamase and its consequences on metal binding.

2009-03-27

[Biochem. Biophys. Res. Commun. 381(1) , 107-11, (2009)]

More Articles...