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Drug
Enzyme
Compound
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Target Concepts:
Gene/Protein
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Query: EC:2.5.1.18 (
glutathione S-transferase
)
22,582
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
We isolated and sequenced a clone for Candida albicans
enolase
from a C. albicans cDNA library by using molecular genetic techniques. The 1.4-kbp cDNA encoded one long open reading frame of 440 amino acids which was 87 and 75% similar to predicted enolases of Saccharomyces cerevisiae and enolases from other organisms, respectively. The cDNA included the entire coding region and predicted a protein of molecular weight 47,178. The codon usage was highly biased and similar to that found for the highly expressed EF-1 alpha proteins of C. albicans. Northern (RNA) blot analysis showed that the
enolase
cDNA hybridized to an abundant C. albicans mRNA of 1.5 kb present in both yeast and hyphal growth forms. The polypeptide product of the cloned cDNA, which was purified as a recombinant protein fused to
glutathione S-transferase
, had
enolase
enzymatic activity and inhibited radioimmunoprecipitation of a single C. albicans protein of molecular weight 47,000. Analysis of the predicted C. albicans
enolase
showed strong conservation in regions of alpha helices, beta sheets, and beta turns, as determined by comparison with the crystal structure of apo-
enolase
A of S. cerevisiae. The lack of cysteine residues and a two-amino-acid insertion in the main domain differentiated C. albicans
enolase
from S. cerevisiae
enolase
. Immunofluorescence of whole C. albicans cells by using a mouse antiserum generated against the purified fusion protein showed that
enolase
is not located on the surface of C. albicans. Recombinant C. albicans
enolase
will be useful in understanding the pathogenesis and host immune response in disseminated candidiasis, since
enolase
is an immunodominant antigen which circulates during disseminated infections.
...
PMID:Molecular cloning of cDNA and analysis of protein secondary structure of Candida albicans enolase, an abundant, immunodominant glycolytic enzyme. 140 Feb 28
Studies of others have shown that class 3 aldehyde dehydrogenase is a major component of the epithelial cells of the mammalian cornea. Here we demonstrate by peptide sequencing that other major proteins of the corneal epithelium are also identical or related to enzymes in the human, mouse, kangaroo, chicken, and squid. Aldehyde dehydrogenase class 3 was found to be the major protein of human, mouse, and kangaroo corneal epithelial cells. Peptidyl prolyl cis-trans isomerase (cyclophilin) or a homologue thereof is strikingly abundant in the corneal epithelial cells of chicken, but not mammals, and appears to be absent from the cornea of squid. By contrast,
enolase
or its homologue is relatively abundant in both the mammalian and chicken corneal epithelial cells. In some instances, abundant enzymes are common to cornea and lens in the same species--for example, arginino-succinate lyase/delta 1-crystallin in the chicken and
glutathione S-transferase
-like protein in the squid; in other cases, the abundant proteins in the cornea have not been found as lens crystallins in any species--for example, aldehyde dehydrogenase class 3 and cyclophilin. These data suggest that enzymes and certain enzyme-crystallins have been recruited as major corneal proteins in a taxon-specific manner and may serve structural rather than, or as well as, enzymatic roles in corneal epithelial cells.
...
PMID:Taxon-specific recruitment of enzymes as major soluble proteins in the corneal epithelium of three mammals, chicken, and squid. 157 Mar 26
Crystallins, the principal components of the lens, have been regarded simply as soluble, structural proteins. It now appears that the major taxon-specific crystallins of vertebrates and invertebrates are either enzymes or closely related to enzymes. In terms of sequence similarity, size, and other physical characteristics delta-crystallin is closely related to argininosuccinate lyase, tau-crystallin to
enolase
, and SIII-crystallin to
glutathione S-transferase
; moreover, it has recently been demonstrated that epsilon-crystallin is an active lactate dehydrogenase. Enzymes may have been recruited several times as lens proteins, perhaps because of the developmental history of the tissue or simply because of evolutionary pragmatism (the selection of existing stable structures for a new structural role).
...
PMID:Recruitment of enzymes as lens structural proteins. 358 69
The angiotensin II type-1 (AT1) receptor, a G protein-coupled receptor, lacks intrinsic kinase activity. However, recent data show that angiotensin II (Ang II) stimulates tyrosine phosphorylation of phospholipase C-gamma 1 (PLC-gamma 1), Stat91 (one of the signal transducers and activators of transcription), and paxillin in vascular smooth muscle cells. The tyrosine kinases responsible for these phosphorylation events are unknown. Src family kinases have been shown to phosphorylate PLC-gamma 1 and to be activated by G protein-coupled receptors. We hypothesized that pp60c-src associates with the AT1 receptor and is activated after Ang II stimulation of smooth muscle cells. We immunoprecipitated pp60c-src from Ang II-stimulated vascular smooth muscle cells and measured pp60c-src activity by autophosphorylation and by phosphorylation of
enolase
. Both assays demonstrated an approximately threefold increase in pp60c-src activity within 1 minute. A similar increase in Ang II-stimulated pp60c-src activity was observed in Chinese hamster ovary cells transfected with the AT1 receptor but not in untransfected cells. These data are the first to show that pp60c-src is activated by Ang II. To determine if pp60c-src associated with the AT1 receptor, the AT1 receptor was immunoprecipitated (with two different antibodies), and Western blots were performed with two different anti-pp60c-src antibodies. No pp60c-src was detected. In addition, direct interaction between the AT1 receptor and pp60c-src could not be demonstrated by using a
glutathione S-transferase
(
GST
)-AT1 fusion protein to bind proteins from cell lysates stimulated by Ang II.(ABSTRACT TRUNCATED AT 250 WORDS)
...
PMID:Angiotensin II activates pp60c-src in vascular smooth muscle cells. 758 16
The C-terminal src kinase (Csk) is responsible for the phosphorylation of the carboxy-terminal tyrosine of several tyrosine kinases of the Src family. This phosphorylation site has a negative regulatory function. Csk is unique among the members of the protein tyrosine kinase family because it lacks the conserved tyrosine autophosphorylation site and has been thought to be devoid of autophosphorylation activity. Using the
glutathione S-transferase
(
GST
) bacterial expression system, we have produced large amounts of a chimeric rat Csk protein. We have determined that the
GST
-Csk fusion protein isolated from bacteria is autophosphorylated on tyrosine residue(s).
GST
-Csk and purified Csk are capable of undergoing autophosphorylation on tyrosine residue(s) in vitro. The
GST
-Csk fusion protein also phosphorylates exogenous substrates, including the heteropolymer poly-Glu/Tyr and
enolase
. This is the first indication that Csk is autophosphorylated on tyrosine residue(s) both in vivo in bacteria expressing Csk cDNA and in vitro. These findings suggest that the autophosphorylation of Csk might play a role in the regulation of its kinase activity as well as its binding to other cellular proteins.
...
PMID:Recombinant Csk expressed in Escherichia coli is autophosphorylated on tyrosine residue(s). 768 30
The c-fes proto-oncogene product is expressed predominantly in hematopoietic cells of the myeloid lineage and has been implicated in the regulation of myeloid differentiation. The c-fes locus encodes a 93-kDa protein tyrosine kinase (p93c-fes) that possesses several structural features characteristic of the cytoplasmic class of protein tyrosine kinases, including a consensus sequence for autophosphorylation surrounding Tyr-713 and a src homology 2 (SH2) domain. To assess the effect of each of these potential regulatory sites on p93c-fes protein tyrosine kinase activity, we specifically deleted the c-fes SH2 domain using the polymerase chain reaction and replaced Tyr-713 with phenylalanine by oligonucleotide-directed mutagenesis (Y713F mutant). The resulting mutants were expressed in Escherichia coli and assayed for changes in protein tyrosine kinase activity using an immune complex kinase assay. Both mutations produced a marked decrease in the rate and extent of autophosphorylation and phosphorylation of the model substrate,
enolase
. To test whether the c-fes SH2 domain could interact with the autophosphorylated kinase domain, the SH2 domain was expressed as a fusion protein with
glutathione S-transferase
and immobilized on glutathione-agarose. The recombinant c-fes SH2 domain precipitated p93c-fes as readily as a monoclonal antibody. Binding of the SH2 domain to p93c-fes was completely dependent upon autophosphorylation, as a kinase-defective mutant of p93c-fes was not precipitated by the SH2 domain. High-affinity binding was also observed with recombinant SH2 domains from v-src and v-fps, raising the possibility of protein-protein interactions between various members of the cytoplasmic PTK family. These results indicate that the c-fes SH2 domain and consensus autophosphorylation site (Tyr-713) play major roles in the positive regulation of p93c-fes tyrosine kinase activity, possibly through intramolecular interaction.
...
PMID:Regulation of the human c-fes protein tyrosine kinase (p93c-fes) by its src homology 2 domain and major autophosphorylation site (Tyr-713). 768 63
We previously reported the isolation from Entamoeba histolytica of a novel rac family protein kinase gene, termed Ehrac1, for "related to cAMP-dependent protein kinases and protein kinase Cs". To study the function and properties of this kinase gene further, we fused the full-length coding region and the truncated catalytic domain of the Ehrac1 gene in frame with the gene encoding
glutathione S-transferase
in the pGEX-KG vector and expressed the fusion in Escherichia coli. The thrombin-cleaved and uncleaved fusion proteins,
GST
-Ehrac1 and
GST
-Ehrac1-c (catalytic domain), were purified and found to exhibit similar protein kinase activities. The Ehrac1 fusion kinase was found to phosphorylate serine/threonine residues exclusively in vitro. The preferred substrate for the enzyme was histone H1 with a Km of approx. 14 microM. Histone H3 and kemptide were phosphorylated at about half the rate of histone H1. Protamine,
enolase
, bovine serum albumin, and poly (Glu:Tyr) were not substrates for the enzyme. The protein kinase activity was higher in the presence of Mn2+ than Mg2+. Neither cAMP, Ca2+, nor Ca2+/calmodulin stimulated enzyme activity. The pH optimum of the enzyme was 7.5. The Ehrac1 kinase can utilize GTP as well as ATP as a phosphate donor with an apparent Km of 80 microM. Enzyme activity was inhibited 30-40% by a crude cAMP-dependent protein kinase inhibitor from rabbit and by thiol reagents. The expression and purification of enzymatically active Ehrac1 protein kinase should allow further analysis of the regulation and signal transduction pathways of E. histolytica.
...
PMID:Expression and characterization of a rac family protein kinase of Entamoeba histolytica. 798 73
Immune responses to defined antigens of the AIDS opportunistic pathogen Candida albicans that arise as a consequence of alimentary tract colonization or induced candidemia were assessed. Lymphocyte activation and antibody production to the abundant immunodominant antigen
enolase
were evident in germfree mice colonized with C. albicans. Lymphocytes from colonized or intravenously challenged mice responded to a recombinant C. albicans
enolase
fusion protein (EFP). The responses to EFP were significantly higher than the responses to a control protein,
glutathione S-transferase
. In immunoblotting experiments,
enolase
was the immunodominant humoral immunogen in these mice. These results demonstrate that
enolase
stimulates cellular and humoral responses and that specific immune responses to
enolase
are sensitive indicators of the presence of proliferating C. albicans in mice.
...
PMID:Humoral and cellular immune responses to enolase after alimentary tract colonization or intravenous immunization with Candida albicans. 803 25
A baculovirus vector system that expresses cloned DNA sequences as
glutathione S-transferase
fusion proteins was developed. This system was used to express and purify the lymphocyte-specific tyrosine kinase p56lck. This recombinant p56lck was purified to homogeneity in a single chromatography step using glutathione resin. By SDS gel analysis recombinant p56lck was found to migrate as two species with molecular masses of approximately 56,000 Da. p56lck purified in this manner retained a high level of activity, phosphorylated an exogenous substrate on tyrosine residues, and underwent autophosphorylation on tyrosine residues. The Km (approximately 0.33 mmol) and Vmax (approximately 83 pmol min-1 mg-1) values were also determined by using
enolase
as a substrate.
...
PMID:Analysis of the tyrosine protein kinase p56lck expressed as a glutathione S-transferase fusion protein in Spodoptera frugiperda cells. 825 50
The human placental form of glutathione S-transferase pi (GST-pi) was measured by a sandwich enzyme-linked immunosorbent assay in lung cancer cell lines established in our laboratories. In classic-type small cell lung cancer (SCLC), variant-type SCLC and non-small cell lung cancer (NSCLC), the respective mean
GST
-pi values were 0.83 +/- 0.88, 3.27 +/- 2.85 and 2.40 +/- 0.76 micrograms/mg protein. Cell lines with high
GST
-pi content had low levels of neuron specific
enolase
, which is known as a representative tumor marker for SCLC. This suggests that
GST
-pi may also be used as a potential marker for NSCLC. The lines with low
GST
-pi content were more sensitive to radiation than those with high
GST
-pi content. Cell lines not subjected to prior therapy also showed a good correlation between
GST
-pi levels and chemosensitivity to cisplatin. The findings suggest that
GST
-pi can be used as an adjunctive marker for lung cancer.
...
PMID:Glutathione S-transferase pi levels in a panel of lung cancer cell lines and its relation to chemo-radiosensitivity. 838 71
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