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PMID: 6615425 Published · ppublish English Journal Article

Kinetics and specificity of homogeneous protein disulphide-isomerase in protein disulphide isomerization and in thiol-protein-disulphide oxidoreduction.

The Biochemical journal ·Vol. 213 ·No. 1 ·1983-07-01 ·Pages 235-43

Lambert N, Freedman RB

Abstract

The protein disulphide-bond isomerization activity of highly active homogeneous protein disulphide-isomerase (measured by re-activation of 'scrambled' ribonuclease) is enhanced by EDTA and by phosphate buffers. As shown for previous less-active preparations, the enzyme has a narrow pH optimum around pH 7.8 and requires the presence of either a dithiol or a thiol. The dithiol dithiothreitol is effective at concentrations 100-fold lower than the monothiols reduced glutathione and cysteamine. The enzyme follows Michaelis-Menten kinetics with respect to these substrates; Km values are 4,620 and 380 microM respectively. The enzyme shows apparent inhibition by high concentrations of thiol or dithiol compounds (greater than 10 X Km), but the effect is mainly on the extent of reaction, not the initial rate. This is interpreted as indicating the formation of significant amounts of reduced ribonuclease in these more reducing conditions. The purified enzyme will also catalyse net reduction of insulin disulphide bonds by reduced glutathione (i.e. it has thiol:protein-disulphide oxidoreductase or glutathione:insulin transhydrogenase activity), but this requires considerably higher concentrations of enzyme and reduced glutathione than does the disulphide-isomerization activity. The Km for reduced glutathione in this reaction is an order of magnitude greater than that for the disulphide-isomerization activity, and the turnover number is considerably lower than that of other enzymes that can catalyse thiol-disulphide oxidoreduction. Conventional two-substrate steady-state analysis of the thiol:protein-disulphide oxidoreductase activity indicates that it follows a ternary-complex mechanism. The protein disulphide-isomerase and thiol:protein-disulphide oxidoreductase activities co-purify quantitatively through the final stages of purification, implying that a single protein species is responsible for both activities. It is concluded that previous preparations, from various sources, that have been referred to as protein disulphide-isomerase, disulphide-interchange enzyme, thiol:protein-disulphide oxidoreductase or glutathione:insulin transhydrogenase are identical or homologous proteins. The assay, nomenclature and physiological role of this enzyme are discussed.

MeSH Terms
Animals Buffers Cattle Dithiothreitol/pharmacology Glutathione/metabolism Isomerases/antagonists & inhibitors,metabolism Isomerism Kinetics Liver/enzymology Oxidation-Reduction Protein Disulfide Reductase (Glutathione)/metabolism Protein Disulfide-Isomerases Ribonucleases/metabolism
Chemicals
Buffers Protein Disulfide Reductase (Glutathione) Ribonucleases Isomerases Protein Disulfide-Isomerases Glutathione Dithiothreitol
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Lambert N
Freedman R B
References (32)
32 references, click to expand
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Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
1983-07-01
Pages
235-43
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1152113
Subset
IM
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