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Journal ArticleDOI

Thioltransferase is a specific glutathionyl mixed disulfide oxidoreductase.

Stephen A. Gravina, +1 more
- 06 Apr 1993 - 
- Vol. 32, Iss: 13, pp 3368-3376
TLDR
Thioltransferase (glutaredoxin) appears to be specific for glutathione-containing mixed disulfides, and in separate experiments, TTase from rat liver displayed analogous selectivity.
Abstract
To study the substrate specificity and mechanism of thioltransferase (TTase) catalysis, we have used 14C- and 35S-radiolabeled mixed disulfides of cysteine and glutathione (GSH) with various cysteine-containing proteins. These protein mixed disulfide substrates were incubated with glutathione, glutathione disulfide (GSSG) reductase, and NADPH in the presence or absence of thioltransferase. Glutathione-dependent reduction of protein mixed disulfides was monitored both by release of trichloroacetic acid soluble radiolabel and by formation of GSSG in an NADPH-linked spectrophotometric assay. GSH-dependent dethiolation of [35S]glutathione-papain mixed disulfide (papain-SSG) and the corresponding bovine serum albumin mixed disulfide (BSA-SSG) were catalyzed by thioltransferase (from human red blood cells) as shown by the radiolabel assay, and equivalent rates were measured by the spectrophotometric assay. Dethiolation of [35S]hemoglobin-glutathione mixed disulfide (Hb-SSG) was also catalyzed by TTase. In contrast, TTase did not catalyze GSH-dependent dethiolation of [14C]papain-SScysteine or [14C]BSA-SScysteine as measured by the radiolabel assay. [14C]Hb-SScysteine and Hb-SScysteamine also did not serve as substrates. In separate experiments, TTase from rat liver displayed analogous selectivity. Thus, thioltransferase (glutaredoxin) appears to be specific for glutathione-containing mixed disulfides. Apparent TTase catalysis of GSSG formation from the papain- and BSA-SScysteine mixed disulfides was observed by the spectrophotometric assay, but a lag phase occurred consistent with preenzymatic formation of GSScysteine which could serve as the actual TTase substrate. Two-substrate kinetic studies of TTase with GSH and GSScysteine gave patterns of parallel lines on double-reciprocal plots (1/V vs 1/[S]), consistent with a simple ping-pong mechanism involving a TTase-SSG intermediate.

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Cysteine-Mediated Redox Signaling: Chemistry, Biology, and Tools for Discovery

TL;DR: This Review will focus exclusively on cysteine, whose identity as cellular target or “sensor” of reactive intermediates is most prevalent and established and which results in a range of sulfur-containing products, not just disulfide bridges, as typically presented in biochemistry textbooks.
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Glutathione catalysis and the reaction mechanisms of glutathione-dependent enzymes.

TL;DR: This comprehensive review summarizes fundamental principles of glutathione catalysis and compares the structures and mechanisms ofglutathione-dependent enzymes, including glutathion reductase, glutaredoxins, glutATHione peroxidases, peroxiredoxinases, glyoxalases 1 and 2, glutthione transferases and MAPEG.
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Real-time imaging of the intracellular glutathione redox potential.

TL;DR: It is demonstrated that the fusion of human glutaredoxin-1 to roGFP2 facilitates specific real-time equilibration between the sensor protein and the glutathione redox couple, which facilitated the observation of redox changes associated with growth factor availability, cell density, mitochondrial depolarization, respiratory burst activity and immune receptor stimulation.
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Redox-based regulation of signal transduction : Principles, pitfalls, and promises

TL;DR: Some of the recent findings that illuminate the significance of redox signaling and exciting future perspectives are reviewed to highlight some of the current pitfalls and the approaches needed to advance this important area of biochemical and biomedical research.
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Thioredoxin and related molecules--from biology to health and disease.

TL;DR: Thioredoxin and binding proteins appear to control apoptosis or metabolic states such as carbohydrate and lipid metabolism related to diseases such as diabetes and atherosclerosis and the fundamental differences between bacterial and mammalian thiOREDoxin reductases offer new principles for treatment of infections.
References
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Journal ArticleDOI

Tissue sulfhydryl groups

TL;DR: A water-soluble (at pH 8) aromatic disulfide [5,5′-dithiobis(2-nitrobenzoic acid] has been synthesized and shown to be useful for determination of sulfhydryl groups.
Journal ArticleDOI

Standardization of hemoglobinometry. II. The hemiglobincyanide method.

TL;DR: An easy and reliable (spectro-)photometric procedure is described for the determination of hemoglobin as hemiglobincyanide by substituting (140 mg/l) KH2PO4 for the NaHCO3 in the diluent conventionally used in the HiCN method.
Journal ArticleDOI

Role of reversible oxidation-reduction of enzyme thiols-disulfides in metabolic regulation

TL;DR: EnzYMES MODIFIED BY THIOL : DISULFIDE EXCHANGE-AN OVERVIEW .
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