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1.
Eur J Biochem ; 271(14): 3064-7, 2004 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-15233803

RESUMO

We report here that Escherichia coli pyrophosphatase aggregates in the presence of millimolar Cd(2+). This highly cooperative process was specific to both the metal ion and the protein and could be reversed fully by decreasing the Cd(2+) concentration. Aggregation was enhanced by Mg(2+), the natural cofactor of pyrophosphatase, and Mn(2+). Mutations at the intersubunit metal-binding site had no effect, whereas mutation at Glu139, which is part of the peripheral metal-binding site found in pyrophosphatase crystals near the contact region between two enzyme molecules, suppressed aggregation. These findings indicate that aggregation is affected by Cd(2+) binding to the peripheral metal-binding site, probably by strengthening intermolecular Trp149-Trp149' stacking interactions.


Assuntos
Cádmio/metabolismo , Proteínas de Escherichia coli/metabolismo , Escherichia coli/enzimologia , Pirofosfatases/metabolismo , Sítios de Ligação , Proteínas de Escherichia coli/química , Proteínas de Escherichia coli/genética , Magnésio/metabolismo , Manganês/metabolismo , Modelos Moleculares , Estrutura Secundária de Proteína , Pirofosfatases/química , Pirofosfatases/genética
2.
J Biol Chem ; 277(18): 15465-71, 2002 May 03.
Artigo em Inglês | MEDLINE | ID: mdl-11854292

RESUMO

Yeast (Saccharomyces cerevisiae) pyrophosphatase (Y-PPase) is a tight homodimer with two active sites separated in space from the subunit interface. The present study addresses the effects of mutation of four amino acid residues at the subunit interface on dimer stability and catalytic activity. The W52S variant of Y-PPase is monomeric up to an enzyme concentration of 300 microm, whereas R51S, H87T, and W279S variants produce monomer only in dilute solutions at pH > or = 8.5, as revealed by sedimentation, gel electrophoresis, and activity measurements. Monomeric Y-PPase is considerably more sensitive to the SH reagents N-ethylmaleimide and p-hydroxymercurobenzosulfonate than the dimeric protein. Additionally, replacement of a single cysteine residue (Cys(83)), which is not part of the subunit interface or active site, with Ser resulted in insensitivity of the monomer to SH reagents and stabilization against spontaneous inactivation during storage. Active site ligands (Mg(2+) cofactor, P(i) product, and the PP(i) analog imidodiphosphate) stabilized the W279S dimer versus monomer predominantly by decreasing the rate of dimer to monomer conversion. The monomeric protein exhibited a markedly increased (5-9-fold) Michaelis constant, whereas k(cat) remained virtually unchanged, compared with dimer. These results indicate that dimerization of Y-PPase improves its substrate binding performance and, conversely, that active site adjustment through cofactor, product, or substrate binding strengthens intersubunit interactions. Both effects appear to be mediated by a conformational change involving the C-terminal segment that generally shields the Cys(83) residue in the dimer.


Assuntos
Pirofosfatases/química , Saccharomyces cerevisiae/enzimologia , 4-Cloromercuriobenzenossulfonato/farmacologia , Substituição de Aminoácidos , Sítios de Ligação , Dimerização , Estabilidade Enzimática , Etilmaleimida/farmacologia , Variação Genética , Cinética , Ligantes , Modelos Moleculares , Mutagênese Sítio-Dirigida , Conformação Proteica , Subunidades Proteicas , Pirofosfatases/genética , Pirofosfatases/metabolismo , Proteínas Recombinantes/química , Proteínas Recombinantes/metabolismo
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