Novel human ocular glutathione S-transferases with high activity toward 4-hydroxynonenal. 1995

S S Singhal, and S Awasthi, and S K Srivastava, and P Zimniak, and N H Ansari, and Y C Awasthi
Department of Internal Medicine, University of Texas Medical Branch, Galveston.

OBJECTIVE To study the distribution and expression of glutathione S-transferase isozymes involved in detoxification of endogenously generated toxic products of lipid peroxidation, namely, 4-hydroxynonenal (4-HNE) in human lens, retina, cornea, iris, ciliary body and to study their kinetic and structural properties. METHODS The authors have previously cloned and sequenced cDNA of mouse mGSTA4-4, which shows high activity towards 4-HNE. They have expressed it in Escherichia coli and have raised antibodies against the recombinant mGSTA4-4. In the present study, these antibodies were used in Western blot analysis and immunoaffinity chromatography to study the expression and to purify the human ortholog(s) of mGSTA4-4 from ocular tissues. RESULTS Western blot analyses of human ocular tissues indicated that a glutathione S-transferases (GST) isozyme immunologically similar to mGSTA4-4 was expressed in cornea, retina, and iris and ciliary body, but not in lens. This isozyme designated as hGST 5.8 was purified to homogeneity from human retina, cornea, and iris and ciliary body by immunoabsorption on immobilized antibodies against mGSTA4-4. The human ortholog of mGSTA4-4, designated as hGST 5.8 purified from all these tissues and pI value of 5.8, subunit Mr value of 25 k and blocked N-terminal. Amino acid sequences of CNBr fragments of hGST 5.8 isozymes of human ocular tissues showed a high degree of primary structure homologies with the corresponding regions of mGSTA4-4. There were noticeable differences in the amino acid sequences of hGST 5.8 of cornea, retina, and iris and ciliary body, suggesting the presence of several closely related hGST 5.8 subunits in the ocular tissues. This heterogeneity was due to tissue-specific expression rather than simple allelic polymorphism. The hGST 5.8 had about sixfold to eightfold higher activity toward 4-hydroxynonenal than 1-chloro-2,4-dinitrobenzene, or CDNB. The catalytic efficiency (Kcat/Km) of ocular hGST 5.8 for 4-HNE was about 100-fold higher than those for the alpha, mu, or pi classes of GST. In addition, hGST 5.8 expressed glutathione peroxidase activity toward phospholipid hydroperoxides and GSH-conjugating activity toward 9,10-epoxy stearic acid. CONCLUSIONS The results indicate that hGST 5.8 isozyme(s) distinct from the alpha, mu, and pi classes of GSTs, are differentially expressed in human ocular tissues and may play an important role in protective mechanisms against endogenous toxicants generated during lipid peroxidation.

UI MeSH Term Description Entries
D007526 Isoelectric Point The pH in solutions of proteins and related compounds at which the dipolar ions are at a maximum. Isoelectric Points,Point, Isoelectric,Points, Isoelectric
D007527 Isoenzymes Structurally related forms of an enzyme. Each isoenzyme has the same mechanism and classification, but differs in its chemical, physical, or immunological characteristics. Alloenzyme,Allozyme,Isoenzyme,Isozyme,Isozymes,Alloenzymes,Allozymes
D007700 Kinetics The rate dynamics in chemical or physical systems.
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D008970 Molecular Weight The sum of the weight of all the atoms in a molecule. Molecular Weights,Weight, Molecular,Weights, Molecular
D010446 Peptide Fragments Partial proteins formed by partial hydrolysis of complete proteins or generated through PROTEIN ENGINEERING techniques. Peptide Fragment,Fragment, Peptide,Fragments, Peptide
D010449 Peptide Mapping Analysis of PEPTIDES that are generated from the digestion or fragmentation of a protein or mixture of PROTEINS, by ELECTROPHORESIS; CHROMATOGRAPHY; or MASS SPECTROMETRY. The resulting peptide fingerprints are analyzed for a variety of purposes including the identification of the proteins in a sample, GENETIC POLYMORPHISMS, patterns of gene expression, and patterns diagnostic for diseases. Fingerprints, Peptide,Peptide Fingerprinting,Protein Fingerprinting,Fingerprints, Protein,Fingerprint, Peptide,Fingerprint, Protein,Fingerprinting, Peptide,Fingerprinting, Protein,Mapping, Peptide,Peptide Fingerprint,Peptide Fingerprints,Protein Fingerprint,Protein Fingerprints
D002846 Chromatography, Affinity A chromatographic technique that utilizes the ability of biological molecules, often ANTIBODIES, to bind to certain ligands specifically and reversibly. It is used in protein biochemistry. (McGraw-Hill Dictionary of Scientific and Technical Terms, 4th ed) Chromatography, Bioaffinity,Immunochromatography,Affinity Chromatography,Bioaffinity Chromatography
D005123 Eye The organ of sight constituting a pair of globular organs made up of a three-layered roughly spherical structure specialized for receiving and responding to light. Eyes
D005982 Glutathione Transferase A transferase that catalyzes the addition of aliphatic, aromatic, or heterocyclic FREE RADICALS as well as EPOXIDES and arene oxides to GLUTATHIONE. Addition takes place at the SULFUR. It also catalyzes the reduction of polyol nitrate by glutathione to polyol and nitrite. Glutathione S-Alkyltransferase,Glutathione S-Aryltransferase,Glutathione S-Epoxidetransferase,Ligandins,S-Hydroxyalkyl Glutathione Lyase,Glutathione Organic Nitrate Ester Reductase,Glutathione S-Transferase,Glutathione S-Transferase 3,Glutathione S-Transferase A,Glutathione S-Transferase B,Glutathione S-Transferase C,Glutathione S-Transferase III,Glutathione S-Transferase P,Glutathione Transferase E,Glutathione Transferase mu,Glutathione Transferases,Heme Transfer Protein,Ligandin,Yb-Glutathione-S-Transferase,Glutathione Lyase, S-Hydroxyalkyl,Glutathione S Alkyltransferase,Glutathione S Aryltransferase,Glutathione S Epoxidetransferase,Glutathione S Transferase,Glutathione S Transferase 3,Glutathione S Transferase A,Glutathione S Transferase B,Glutathione S Transferase C,Glutathione S Transferase III,Glutathione S Transferase P,Lyase, S-Hydroxyalkyl Glutathione,P, Glutathione S-Transferase,Protein, Heme Transfer,S Hydroxyalkyl Glutathione Lyase,S-Alkyltransferase, Glutathione,S-Aryltransferase, Glutathione,S-Epoxidetransferase, Glutathione,S-Transferase 3, Glutathione,S-Transferase A, Glutathione,S-Transferase B, Glutathione,S-Transferase C, Glutathione,S-Transferase III, Glutathione,S-Transferase P, Glutathione,S-Transferase, Glutathione,Transfer Protein, Heme,Transferase E, Glutathione,Transferase mu, Glutathione,Transferase, Glutathione,Transferases, Glutathione

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