Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “ESTERASES”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 451 records · Page 25Linked to original sources

Enantioselective hydrolysis of oxazepam 3-acetate by esterases in human and rat liver microsomes and rat brain S9 fraction.

Rates of hydrolysis of racemic and enantiomeric oxazepam 3-acetates (OXA) by esterases in human and rat liver microsomes and rat brain S9 fraction were compared. When rac-OXA was the substrate, esterases in human and rat liver microsomes were highly enantioselective toward (R)-OXA. In contrast, esterases in rat brain S9 fraction were highly enantioselective toward (S)-OXA. Hydrolysis rates of rac-OXA were highly dependent on the amount of esterases used. At 0.05 mg protein equivalent of esterases and 150 nmol of rac-OXA per ml of incubation mixture, the (R)-OXA was hydrolyzed 3.6-fold and 18.5-fold faster than (S)-OXA by rat and human liver microsomes, respectively. The specific activities (nmol of OXA hydrolyzed/mg microsomal protein/min) of liver microsomes in the hydrolysis of enantiomerically pure (R)-OXA were approximately 120 (rat) and 1,980 (human), and in the hydrolysis of enantiomerically pure (S)-OXA were 4 (rat) and 7 (human), respectively. In the incubation of rac-OXA with rat brain S9 fraction, (S)-OXA was hydrolyzed approximately 6-fold faster than (R)-OXA. Results also indicated an enantiomeric interaction in the hydrolysis of rac-OXA by esterases in rat and human liver microsomes; the presence of (R)-OXA stimulated the hydrolysis of (S)-OXA, whereas the presence of (S)-OXA inhibited the hydrolysis of (R)-OXA. In rat brain S9 fraction, the presence of (R)-OXA inhibited the hydrolysis of (S)-OXA, whereas the presence of (S)-OXA appeared to have stimulated the hydrolysis of (R)-OXA.

Animals↗

Enantioselectivity suggests a cytosolic origin for a commercial pig liver esterase preparation.

A widely utilized pig liver esterase preparation has been found to be derived essentially exclusively from the cytosolic fraction of pig livers. Esterases in cytosol and microsomes prepared from a fresh pig liver hydrolyzed the S- and R-enantiomers of racemic oxazepam 3-acetate (rac-OXA) with specific activity ratios of approximately 2.3:1 and 1:62, respectively. Product formations were analyzed by chiral stationary phase high-performance liquid chromatography. The commercial pig liver esterase preparation showed greater activity toward S-OXA than did the esterases in the cytosolic fraction prepared from fresh pig liver. The results established that (i) esterases contained in microsomes and cytosol of pig liver have opposite enantioselectivity in the hydrolysis of rac-OXA and (ii) the commercial pig liver esterase preparation has a cytosolic origin.

Animals↗

Nonspecific acid esterase activity: a criterion for differentiation of T and B lymphocytes in mouse lymph nodes.

A modified technique was used to demonstrate lymphocytic acid alpha-naphthyl acetate esterase activity in frozen sections of mouse lymphoid tissue or smears. Positive, dot-like reaction products were noticed in more than 94% of the lymphocytes located in the diffuse cortical ("paracortical", "thymus-dependent") area of mesenteric lymph nodes of young adult ICR mice. Almost identical values were found for lymphocytes in the cisterna chyli. In contrast, the follicular cortex which is predominantly occupied by B cells, contained less than 7% esterase-positive lymphocytes. In vitro, cytotoxic anti-theta serum destroyed the vast majority of esterase positive lymphocytes while esterase-negative lymphocytes were resistent to this treatment. In mesenteric nodes of nude BALB/c (nu/nu) mice, follicular cortex and paracortex together contained approximately 16 times less esterase-positive lymphocytes than in the immunologically competent hybrid BALB/c (nu/+) animals. These findings indicate that non-specific acid esterase activity may serve as a criterion to differentiate peripheral T and B lymphocytes in lymph node sections and smears of mice by light microscopy. Possible implications of this enzyme activity in thymus-derived lymphocytes are discussed.

Animals↗

Early alterations in plasma esterases with associated pathology following oral administration of diethylnitrosamine and butylated hydroxytoluene singly or in combination.

Plasma esterase changes are apparent in BALB/c mice within 3 weeks after feeding them laboratory chow with 0.75% of the antioxidant BHT added. Other esterase changes, different from those in BHT-treated animals, are also apparent in plasma of mice during exposure to the carcinogen DENA. Interference with these DENA esterase alterations is apparent in plasma of mice treated concomitantly with both DENA and BHT. Esterase changes resulting from either the carcinogen or antioxidant exposure precede the overt histologically detected changes induced by these compounds. The early esterase changes and subsequent tumorigenesis resulting from DENA exposure are more severe in female mice. Some of the esterases altered by DENA or BHT exposure are testosterone-related.

Administration, Oral↗

Esterase-mediated tolerance to a formulation of the organophosphate insecticide monocrotophos in the entomopathogenic fungus, Beauveria bassiana (Balsamo) Vuill: a promising biopesticide.

The use of biopesticides compatible with chemical pesticides is recommended in pest management as an effective and ecologically sound strategy. The entomopathogenic fungus Beauveria bassiana (Balsamo) Vuill, which is used as a biopesticide, was found to exhibit and lose tolerance to two organophosphorus insecticides widely used in Indian fields. The pattern of response is similar to the esterase-mediated organophosphate tolerance in aphids achieved through esterase gene duplication. Therefore the role of esterase in the tolerance exhibited by isolates of B. bassiana to the organophosphate, monocrotophos, was studied. Both the total soluble protein content and esterase activity were found to increase significantly in B. bassiana cultures that were able to grow in the presence of monocrotophos. With the hitherto established linkage between esterase overproduction and organophosphate tolerance in insects and the observed similarity in response of the insects and B. bassiana to the chemical, it is concluded that tolerance to monocrotophos in B. bassiana may be due to a mechanism similar to that operating in insects. Habituation of the fungus to monocrotophos to initiate expression of esterase gene may help in achieving compatibility between the two.

Adaptation, Physiological↗

The effect of piperonyl butoxide on pyrethroid-resistance-associated esterases in Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae).

Pyrethroid resistance in field populations of Australian Helicoverpa armigera (Hübner) is primarily a consequence of the overproduction of esterase isoenzymes which metabolise and sequester pyrethroid insecticides. Biochemical studies have shown that pyrethroid-resistance-associated esterases in H armigera are inhibited by the insecticide synergist piperonyl butoxide (PBO). Esterase inhibition by PBO did not occur immediately after dosing, but exhibited maximum inhibition 3-4 h after dosage. Esterase activity subsequently recovered until full activity was restored by 24 h. Topical bioassays using a pre-treatment of PBO showed that maximum H armigera mortality was achieved with pre-treatment times corresponding to maximum esterase inhibition. These results demonstrated that, with correct temporal application, PBO can restore pyrethroid efficacy against H armigera. It would also be expected that restoration of efficacy with other conventional insecticides, currently compromised by esterase-based resistance mechanisms, would occur.

Animals↗

Esterase isozymes of Apis mellifera: substrate and inhibition characteristics, developmental ontogeny, and electrophoretic variability.

Starch gel electrophoresis utilizing different types of substrates and inhibitors made it possible to detect several esterases in crude extracts of Apis mellifera. Our results suggest that there are six Apis mellifera esterase isozymes (esterases 1-6) that differ not only in electrophoretic mobility but also in substrate specificity and inhibition properties. Some of the esterase isozymes are controlled by more than one allele. The frequency of these genetic variants was analyzed in four populations of Apis mellifera from several localities. Esterases 1, 2, and 4 do not exhibit developmental changes, but the electrophoretic profile of esterases 3, 4, and 6 varies during ontogenetic development.

Alleles↗

Nonspecific esterases of Mus musculus.

Seventeen genes controlling the expression of carboxylic ester hydrolases, commonly known as esterases, have been identified in the mouse Mus musculus. Seven esterase loci are found on chromosome 8, where two clusters of esterase loci occur. It seems probable that the genes within these clusters have arisen from a common ancestral gene by tandem duplication. Close linkage of esterase genes is also found in the rat, rabbit, and prairie vole. Some mouse esterases appear to be homologous with certain human esterases. The function of these nonspecific enzymes is still unknown.

Animals↗

Identity of esterase-22 and egasyn, the protein which complexes with microsomal beta-glucuronidase.

Recent experiments have demonstrated that egasyn not only sequesters beta-glucuronidase in microsomes by forming high molecular weight complexes with beta-glucuronidase, but also has carboxyl esterase activity. We have found several new phenotypes of egasyn-esterase after electrophoresis and isoelectric focusing of liver homogenates and purified egasyn of inbred and wild mouse strains. Several phenotypes corresponded in relative mobility and relative isoelectric point among inbred strains to that recently reported for esterase-22 by Eisenhardt and von Deimling [(1982). Comp. Biochem. Physiol. 73B:719]. This genetic evidence, plus a wide variety of comparative biochemical and physiological data, indicates that egasyn is identical to esterase-22. Both parental types of egasyn isozymes are expressed in heterozygous F1 progeny, suggesting that alterations in the egasyn structural gene are responsible for the altered isoelectric points. Also, egasyn is a monomer since no new esterase bands appear in F1 progeny. The variants in isoelectric point of egasyn map at or near the egasyn (Eg) gene within the esterases of cluster 1 near Es-9 on chromosome 8.

Animals↗

Evolutionary genetics of Drosophila esterases.

Over 30 carboxylester hydrolases have been identified in D. melanogaster. Most are classified as acetyl, carboxyl or cholinesterases. Sequence similarities among most of the carboxyl and all the cholinesterases so far characterised from D. melanogaster and other eukaryotes justify recognition of a carboxyl/cholinesterase multigene family. This family shows minimal sequence similarities with other esterases but crystallographic data for a few non-drosophilid enzymes show that the family shares a distinctive overall structure with some other carboxyl and aryl esterases, so they are all put in one superfamily of/beta hydrolases. Fifteen esterase genes have been mapped in D. melanogaster and twelve are clustered at two chromosomal sites. The constitution of each cluster varies across Drosophila species but two carboxyl esterases in one cluster are sufficiently conserved that their homologues can be identified among enzymes conferring insecticide resistance in other Diptera. Sequence differences between two other esterases, the EST6 carboxyl esterase and acetylcholinesterase, have been interpreted against the consensus super-secondary structure for the carboxyl/cholinesterase multigene family; their sequence differences are widely dispersed across the structure and include substantial divergence in substrate binding sites and the active site gorge. This also applies when EST6 is compared across species where differences in its expression indicate a difference in function. However, comparisons within and among species where EST6 expression is conserved show that many aspects of the predicted super-secondary structure are tightly conserved. Two notable exceptions are a pair of polymorphisms in the substrate binding site of the enzyme in D. melanogaster. These polymorphisms are associated with differences in substrate interactions in vitro and demographic data indicate that the alternative forms are not selectively equivalent in vivo.

Amino Acid Sequence↗

The selection and genetic analysis of esterase electromorphs in an organophosphate-resistant strain of Culex pipiens from Italy.

An Italian organophosphate-resistant strain of Culex pipiens (Lucca) was found to be polymorphic for elevated and nonelevated esterases. Selection for high esterase activity produced a strain homozygous for elevated esterases A2 and B2. Selection for low activity produced a strain homozygous for nonelevated esterases, A4i and B1i. Crossing experiments showed that A2 and B2 are coded by separate but closely linked genes, as are A4i and B1i. Results indicate that elevated A2 and nonelevated A4i are alleles of a single gene (Est-3 locus), as are elevated B2 and nonelevated B1i (Est-2 locus). Selection for electromorph variants gave four elevated A variants and three elevated B variants. These esterases were not selected in the field. In Lucca, A2 and B2 replaced A1, suggesting a selective advantage to the former over the latter in the presence of chlorpyrifos. It is hypothesized that the degree of amplification is an important factor in the selection of a particular esterase electromorph as a resistance mechanism and that migrating individuals with amplified genes could have an advantage when invading a population under selection.

Alleles↗

Esterases from Bacillus subtilis and B. stearothermophilus share high sequence homology but differ substantially in their properties.

A novel esterase from Bacillus subtilis (BsubE) was cloned, functionally expressed in Escherichia coli and biochemically characterized. BsubE shows high homology (74% identity, >95% homology) to an esterase from the thermophilic B. stearothermophilus (BsteE). Both enzymes were efficiently expressed in E. coli, using a L-rhamnose-expression system [11,500 units/l (BsteE), 3,400 units/l (BsubE)] and were purified by Ni-nitrilotriacetic acid chromatography, yielding specific activities of 70 units/mg (BsteE) and 40 units/mg (BsubE), as determined by the hydrolysis of p-nitrophenyl acetate. Despite the high homology, both esterases revealed remarkable differences in their properties. As expected, the esterase from the thermophilic organism showed significantly higher temperature stability. Whereas BsteE showed highest activity at 65-70 degrees C, BsubE was almost inactivated at 50 degrees C. Moreover, both enzymes showed quite different substrate patterns in the hydrolysis of various esters. Whilst the B. subtilis esterase accepted esters with a branched alcohol moiety well, the B. stearothermophilus esterase was more useful in the hydrolysis of substrates with a sterically demanding carboxylic acid group. BsteE showed excellent enantioselectivity ( E>100) in the kinetic resolution of menthyl acetate and even accepted the bulky menthyl benzoate as substrate ( E=19). In contrast, BsubE converted 1-phenethylacetate with higher selectivity ( E>150 vs E=8).

Amino Acid Sequence↗

In vitro inhibition of esterase activity in amniotic fluid: comparison with bacterial cultures.

Assessment of leukocyte esterase activity in amniotic fluid for the rapid and reliable diagnosis of chorioamnionitis has been demonstrated previously. We compared in vitro inhibition of esterase activity in amniotic fluid with bacterial cultures to identify the origins of the specific esterases released by the infecting organisms. One hundred forty-one samples were tested (90 uninfected, 51 infected). Each sample was evaluated for Gram stain, cultures, and an in vitro esterase assay followed by ebelactone inhibition. Forty-two patients had positive amniotic fluid cultures. Ebelactone produced varying degrees of inhibition of esterase activity (range, 20% to 60%) in the uninfected samples and in those infected with gram-negative organisms. There was no inhibition in the samples infected with gram-positive organisms. Thus different groups of bacteria may elicit the production of different and specific esterases in infected amniotic fluid, as shown by the differences in in vitro inhibition.

Amniotic Fluid↗

Isolation and characterization of a fatty acyl esterase from rat lung.

In an effort to facilitate studies of the reaction involved in the removal of fatty acids from acyl proteins, we have synthesized an octanoic acid ester of doubly blocked serine, specifically octanoyl N-carbobenzoxy-L-serine-benzyl ester (octanoyl boc-serine), and used it as a substrate to guide the purification of an esterase from rat lung. The esterase was purified 228-fold by column chromatography on DE-52 cellulose, hydroxylapatite, octyl-Sepharose, and concanavalin A-Sepharose and by HPLC gel filtration. The final enzyme preparation ran as a single 77,000-Da band when subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis and exhibited a single symmetrical peak (sedimentation coefficient, 4.5 S) when centrifuged through a sucrose density gradient (empirical Mr, 63,000). The esterase is an acidic protein, pI 4.1, and is very active against p-nitrophenyl esters comprised of C4-C14 fatty acids; the highest specific activity (26.5 mumol/min/mg) was obtained using p-nitrophenyl caprylate as substrate. The pH optimum of the lung esterase is near 8.0 and the activity on octanoyl boc-serine is maximum when 0.3% (w/v) Myrj-52 is included in the assay medium. The activity of the esterase is not dependent on calcium ions. The enzyme does not remove acyl groups from the G-protein of vesicular stomatitis virus or the proteolipid of bovine brain. The possible role of the esterase in the metabolism of acylated proteins is considered.

Animals↗

Cholesteryl esterase and endogenous cholesteryl ester pools in ovaries from maturing and superovulated immature rats.

Results from the assay of cholesteryl esterase (EC 3.1.1.13) with radiolabelled substrate are difficult to interpret if endogenous cholesteryl ester is present. We overcame this problem by using an isotope dilution method to measure the endogenous pool sizes of cholesteryl ester in subcellular fractions of the ovary. This permitted calculation of the total cholesteryl esterase activity of the mitochondrial microsomal, and cytosolic fractions of the ovary. At all stages of ovarian development most cholesteryl esterase acitivity was found in the cytosol, and generally there was more activity in the microsomes than the mitochondria. The cholesteryl esterase in all three fractions exhibited higher activity with cholesteryl oleate as substrate than with cholesteryl palmitate. Increases in cholesteryl esterase activity and endogenous ester concentration were found at two stages of ovarian development; firstly after initiation of follicular growth by gonadotropin in the immature ovary, and secondly during luteinization. The increases were observed in all three sub-cellular fractions. Administration of human choriogonadotropin to rats which possessed luteinized ovaries resulted in activation of the mitochondrial and microsomal cholesteryl esterase but not the cytosolic enzyme.

Animals↗

Species differences in hydrolysis of isocarbacyclin methyl ester (TEI-9090) by blood esterases.

Species differences in the hydrolysis of isocarbacyclin methyl ester (TEI-9090) in whole blood and in its separated components were studied in rats, dogs and human. Esterase activity in rat whole blood was approximately 100 and 400 times higher than that in dog and human whole blood, respectively, and was attributed to high plasma activity. In contrast, TEI-9090 hydrolysis activities in dog and human blood were due to red blood cells (RBC), whose activity in humans was slightly suppressed by albumin. In dogs, activity in RBC membranes was 10 times greater than in the cytosol, while in human membrane and cytosol activity was virtually the same. The effects of the esterase inhibitor diisopropylfluorophosphate, bis-p-nitrophenylphosphate (BNPP), eserine, 5,5'-dithiobis-(2-nitrobenzoic acid) (DTNB) and p-chloromercuribenzoate showed that the rat plasma and RBC cytosol esterases hydrolysing TEI-9090 were carboxylesterase (CarbE) and arylesterase (ArE), respectively. The esterases in dog plasma and RBC membrane were CarbE, and RBC cytosol esterase was ArE. In humans, the esterase activities in plasma, RBC membrane and cytosol were butyrylcholinesterase, CarbE and ArE, respectively.

Animals↗

A 53,000-Da esterase in Strongylocentrotus purpuratus semen is derived from phagocytic cells, not sperm.

Semen from the sea urchin Strongylocentrotus purpuratus contains sperm and a small volume (1%) of phagocytes, which often contain degraded sperm. A 53,000-Da esterase in the semen is inhibited by diisopropyl fluorophosphate, but not by soybean trypsin inhibitor (STI). Differential centrifugation experiments now reveal that 70% of the esterase activity (formerly described as a sperm protease precursor; Levine and Walsh, 1980) is associated with the phagocytes, which sediment more rapidly than the sperm. The 53K esterase is also present in spawned ovaries and testes. However, as previously reported, the sperm do contain an STI-inhibitable protease as shown by the digestion of [14C]lysozyme. Intact sperm exhibit STI-inhibitable hydrolytic activity toward N-alpha-[3H]benzoyl-L-arginine ethyl ester [3H]BAEE), but crude homogenates do not until they are extracted at pH 2.5 and fractionated by ion exchange chromatography. Although not obtained in pure form, the protease activity appears to migrate with a molecular weight of 20,000 (gel filtration). The protease and the esterase differ markedly in acid stability. After preincubation at pH 2.5 the protease still hydrolyzes [3H]BAEE, while the esterase is irreversibly inactivated. This last observation may explain an earlier interpretation (A. E. Levine and K. A. Walsh, 1980, J. Biol. Chem. 255, 4814-4820) that the 53K enzyme dissociated at pH 2.5 into two unequal subunits, one of which was the active protease. Since it has been shown that the contaminating phagocytes contribute most of the esterase activity of the semen, the occurrence of even a small number of nonsperm cells cannot be ignored in future investigations of sperm enzymes.

Animals↗

Comparative studies on acid cholesterol esterase in renal blood vessels and aorta of control and hypercholesterolemic rabbits.

Decreased acid cholesterol esterase has been linked to cholesteryl ester accumulation and may be fundamental in the development of atherosclerosis. The present study compared cholesterol esterase activity with the accumulation of cholesterol and its esters in aorta, renal artery and renal preglomerular microvessels. Tissue was obtained from white New Zealand rabbits fed either a control or 2%-cholesterol diet for 1 month. Cholesterol esterase was increased in microvessels from cholesterol-fed animals when compared to aorta and renal artery. Cholesterol feeding generally produced an increase in cholesterol and cholesteryl ester accumulation in all vascular tissues. The percent distribution of esterified/total cholesterol in renal microvessels was decreased consistent with the concomitant increase in cholesterol esterase. In contrast, aorta and renal artery exhibited an increase in cholesterol and cholesteryl ester accumulation and an increase in the percent of esterified cholesterol consistent with a decrease in acid cholesterol esterase after cholesterol feeding. The data suggest that renal microvessels, when compared to aorta and renal artery, may be relatively protected from developing atherosclerotic microvascular lesions through an organ-specific increase in acid cholesterol esterase activity.

Animals↗