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Role of esterase enzymes in monitoring for resistance of California red scale, Aonidiella aurantii (Homoptera: Diaspididae), to organophosphate and carbamate insecticides.

Eighty-seven populations of California red scale, Aonidiella aurantii (Maskell), from the San Joaquin Valley of California were tested for insecticide resistance by using chlorpyrifos, methidathion, and/or carbaryl in a standard fruit-dip bioassay as well as for general esterase activity by using alpha-naphthyl acetate as a substrate in a colorimetric test. The percentage of individuals that survived a discriminating concentration of methidathion, chlorpyrifos, or carbaryl was significantly correlated with the percentage of individuals showing > 0.4 nmol of esterase activity per minute per microgram of protein in the colorimetric test. Scale survival of the organophosphates showed a higher correlation with esterase activity than survival of carbaryl. These results suggest that the colorimetric test of esterase activity is useful as an indicator of the frequency of organophosphate-resistant and, to a lesser extent, carbamate-resistant individuals in California red scale populations. The results of tests for activity and inhibition of acetylcholinesterase activity suggest that California red scale is using increased amounts of esterase enzymes, including acetylcholinesterase, to sequester organophosphate and carbamate insecticides, rather than modified acetylcholinesterase. Third instars collected from twigs, leaves, and fruit showed similar levels of esterase activity. The colorimetric test of esterase activity is a useful tool to detect organophosphate and carbamate resistance in San Joaquin Valley California red scale because of its speed of testing over a wide range of months, allowing for within-season decision making by citrus growers.

Acetylcholinesterase↗

Two esterases released from Mycobacterium smegmatis from the hydrolysis of long chain acyl-CoAs and Tween.

An esterase activity hydrolyzing palmitoyl-CoA was released into the culture medium from Mycobacterium smegmatis. Although another esterase activity hydrolyzing Tween 20 (polyoxyethylene sorbitan monolaurate) was also found in the culture medium, the bulk of the esterase activity was retained in the cells. However, treatment of early-log phase cells with lysozyme to prepare ghosts released 80% of the Tween 20 hydrolyzing activity, indicating the localization of the esterase in the periplasmic space or the cell envelope fraction. The presence of two different esterases hydrolyzing palmitoyl-CoA and Tween 20, suggested by the above results, was confirmed by the separation of these esterases on phenyl-Sepharose column chromatography. Palmitoyl-CoA hydrolase (thioesterase) was purified 630-fold from lysozyme-treated supernatant fluid to homogeneity, by means of Sephadex G-100 gel filtration, and DEAE-cellulose, phenyl-Sepharose and Blue-Agarose column chromatographies. Its molecular weight was approximately 42,000. Tween hydrolase was partially purified 150-fold by the same purification procedure up to the step of phenyl-Sepharose chromatography and its molecular weight was found to be about 51,000. These activities were stable against heating at 60 degrees C and treatment with non-ionic detergents. Thioesterase hydrolyzed long chain acyl-CoAs (C12-C20), but not Tween 20-80 or beta-naphthyl acetate. On the other hand, Tween hydrolase hydrolyzed Tween 20-80 and beta-naphthyl acetate. On the other hand, Tween hydrolase hydrolyzed Tween 20-80 and beta-naphthyl acetate, but not acyl-CoAs. Both esterases hydrolyzed monoolein, but not diolein, triolein, or phosphatidylcholine.

Acyl Coenzyme A↗

Comparative electrophoretic polymorphism of esterases and other enzymes in Escherichia coli.

The electrophoretic polymorphism of esterases was compared with that of other enzymes in Escherichia coli populations by investigating allozyme distribution of four esterases (A, B, C and I) within both the subspecific groups I, II and III and the new groups A, B1, B2, C, D and E, which have been distinguished by electrophoretic analysis of 11 and 35 enzymes respectively in the 72 reference strains of the ECOR collection. Electrophoretic distribution of esterases was distinct for each of the three subspecific groups as indicated by distributions of allozymes and electrophoretic types (distinctive combination of allozyme for the four esterases). Esterase polymorphisms of the three subspecific groups appeared to have similar features to those of three previously studied natural populations of strains obtained from human and animal gastro-intestinal tracts and extra-intestinal infections in humans. Multiple correspondence analyses using data obtained from the four esterases and the 11 other enzymes also distinguished the groups A, B1, B2, C, D and E. All strains of group B2 showed the B2 electrophoretic pattern of esterase B, which appeared to be a marker of a distinct cluster of strains frequently implicated in extra-intestinal infections.

Electrophoresis, Agar Gel↗

Three multidomain esterases from the cellulolytic rumen anaerobe Ruminococcus flavefaciens 17 that carry divergent dockerin sequences.

Three enzymes carrying esterase domains have been identified in the rumen cellulolytic anaerobe Ruminococcus flavefaciens 17. The newly characterized CesA gene product (768 amino acids) includes an N-terminal acetylesterase domain and an unidentified C-terminal domain, while the previously characterized XynB enzyme (781 amino acids) includes an internal acetylesterase domain in addition to its N-terminal xylanase catalytic domain. A third gene, xynE, is predicted to encode a multidomain enzyme of 792 amino acids including a family 11 xylanase domain and a C-terminal esterase domain. The esterase domains from CesA and XynB share significant sequence identity (44%) and belong to carbohydrate esterase family 3; both domains are shown here to be capable of deacetylating acetylated xylans, but no evidence was found for ferulic acid esterase activity. The esterase domain of XynE, however, shares 42% amino acid identity with a family 1 phenolic acid esterase domain identified from Clostridum thermocellum XynZ. XynB, XynE and CesA all contain dockerin-like regions in addition to their catalytic domains, suggesting that these enzymes form part of a cellulosome-like multienzyme complex. The dockerin sequences of CesA and XynE differ significantly from those previously described in R. flavefaciens polysaccharidases, including XynB, suggesting that they might represent distinct dockerin specificities.

Acetylesterase↗

Esterase electrophoretic polymorphism of methicillin-sensitive and methicillin-resistant strains of Staphylococcus aureus.

Methicillin-sensitive and methicillin-resistant strains of Staphylococcus aureus from diverse geographic origins were analysed by polyacrylamide-agarose gel electrophoresis for esterase polymorphism. Three kinds of esterase bands, designated A, B and C, were defined by their ranges of activity toward five synthetic substrates and their resistance to di-isopropyl fluorophosphate. There were five allozymes of esterase A, four of esterase B and four of esterase C. Eighteen distinct combinations of allozymes (zymotypes) were distinguished amongst 105 strains analysed. Two major zymotypes were represented by 35 and 19 strains respectively, whereas other zymotypes were represented by one or, at most, seven strains. The coefficient of genetic diversity was lower for methicillin-resistant strains than for methicillin-sensitive strains. Most of the methicillin-resistant strains are represented by the two major zymotypes which differed from each other by the electrophoretic behaviour of the three esterases. These results indicate that, on the basis of esterase electrophoretic polymorphism, methicillin resistance is expressed in genetically different strains.

Esterases↗

Isolation of alpha cluster esterase genes associated with organophosphate resistance in Lucilia cuprina.

PCR primers designed from the alpha-esterase gene cluster of Drosophila melanogaster have been used to isolate fragments from eight esterase genes in the Australian sheep blowfly, Lucilia cuprina. Phylogenetic analysis suggests that three are homologues of the alpha E7, alpha E8 and alpha E9 genes of the alpha-esterase cluster of D. melanogaster. A further three are also probably alpha-esterases, whereas the remaining two more closely resemble beta-esterases. Transcripts for five of the alpha-esterase genes were detected by PCR in adult midgut, consistent with a role for these enzymes in digestion and/or detoxification. Based on the tissue distribution of these transcripts, Lc alpha E7 may possibly encode the esterase, E3, which is involved in organophosphate resistance.

Amino Acid Sequence↗

The nonspecific esterases of human mononuclear leukocytes metabolize arylamine carcinogens and steroids esters.

The presence of non-specific esterases in various leukocyte subfractions of whole blood is well established, but no endogenous substrates or function for these esterases have been identified. Here we report on the metabolism of N-acetoxy-2-acetylaminofluorene (NA-AAF) and beclomethasone-17-21-dipropinate (BDP) in viable human mononuclear leukocytes (HML). Conversion of NA-AAF to DNA binding intermediates and BDP to beclomethasone-17-monopropionate by a common esterase was demonstrated and then further characterized by a broad spectrum of effectors including well-established inhibitors and substrates for the nonspecific esterases. Two esters, beta estradiol-17-propionate and alpha naphtyl propionate, competitively inhibited this esterase activity. Together, these data identify at least one isozyme of A- or B-classes of HML nonspecific esterases as being responsible for the metabolism of NA-AAF and BDP. That HML nonspecific esterases may be functionally involved in arylamine carcinogenes (i.e. as it may relate to immune function) and in the endogenous production of steroids from their naturally occurring esters emphasizes the importance of continuing their characterization.

2-Acetylaminofluorene↗

Specificity and induction of undecyl acetate esterase from Pseudomonas cepacia grown on 2-tridecanone.

Undecyl acetate esterase from Pseudomonas cepacia grown on 2-tridecanone was strongly inhibited by organophosphates and other esterase inhibitors. Also, p-chloromercuribenzoate at 1 x 10(-4) M showed a 70% inhibition of esterase activity. The enzyme hydrolyzed both aliphatic and aromatic acetate esters at substrate concentrations of 0.25 M. Under these conditions the highest reaction rate was toward undecyl acetate. No lipase or proteolytic activity was demonstrated. Undecyl acetate esterase was classified as a carboxylesterase (B-esterase). Cell-free activity studies on the production of undecyl acetate esterase grown on different carbon sources plus zymogram studies demonstrated that the enzyme was inducible when 2-tridecanone, 2-tridecanol, undecyl acetate and, to a lesser extent, 1-undecanol were growth substrates. Induction of undecyl acetate esterase during oxidation of 2-tridecanone supports the view that undecyl acetate is an intermediate in the degradation of the methyl ketone.

Acetates↗

Purification and characterization of the tween-hydrolyzing esterase of Mycobacterium smegmatis.

An esterase hydrolyzing Tween 80 (polyoxyethylene sorbitan monooleate) was purified from sonicated cell lysates of Mycobacterium smegmatis ATCC 14468 by DEAE-cellulose, Sephadex G-150, phenyl Sepharose, and diethyl-(2-hydroxypropyl) aminoethyl column chromatography and by subsequent preparative polyacrylamide gel electrophoresis. The molecular weight was estimated to be 36,000 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and 41,000 by gel filtration on a Sephadex G-150 column. The esterase contained a single polypeptide. The esterase was stable to heat treatment at 100 degrees C and to a wide range of pH. The temperature and pH optima for the hydrolysis of Tween 80 were 50 degrees C and 8.3, respectively. The esterase had a narrow substrate specificity; it exhibited a high activity only on compounds having both polyoxyethylene and fatty acyl moieties, such as Tweens. Monoacylglyceride was hydrolyzed more slowly by this esterase and this enzyme exhibited a nonspecific esterase activity on p-nitrophenyl acyl esters, especially those having short chain acyl moieties. The Km and Vmax were 19.2 mM and 1,670 mumol/min per mg of protein for Tween 20, 6.6 mM and 278 mumol/min per mg of protein for Tween 80, and 0.25 mM and 196 mumol/min per mg of protein for p-nitrophenyl acetate, respectively. Observations of the effects of various chemical modifications on the activity of the esterase indicated that tyrosine, histidine, arginine, and methionine (with tryptophan) residues may be active amino acids which play important roles in the expression of Tween 80-hydrolyzing activity of the enzyme.

Chelating Agents↗

Cloning, sequencing, and regulation of expression of an extracellular esterase gene from the plant pathogen Streptomyces scabies.

The gene that encodes the extracellular esterase produced by Streptomyces scabies has been cloned and sequenced. The gene was identified by hybridization to a synthetic oligonucleotide that corresponds to the amino-terminal amino acid sequence determined for the secreted form of the esterase. Nucleotide sequence analysis predicted a 345-amino-acid open reading frame, a putative ribosome-binding site, and 39 amino acids at the amino terminus of the sequence that is not found in the secreted protein. This 39-amino-acid sequence has many of the characteristics common to known signal peptides. End mapping the esterase transcript revealed a single 5' end of the mRNA located 51 nucleotides upstream from the start point for translation. Northern (RNA) hybridization analysis of the esterase message by using the cloned esterase gene as a probe indicated that the esterase mRNA is about 1,440 nucleotides in length and was detected only when the cells were grown in the presence of zinc. These results suggest that the level of esterase mRNA detected in the cells is regulated by zinc.

Base Sequence↗

Monocyte esterase deficiency in gastrointestinal cancer.

AIM: To substantiate the high incidence of monocyte esterase deficiency (MED) in gastrointestinal carcinoma already reported in a small group of patients; to compare the clinical findings in esterase deficient and esterase positive patients. METHODS: Peripheral blood smears (n = 22) or cytocentrifuge preparations (n = 52) of mononuclear cells from the peripheral blood of patients with gastrointestinal carcinoma were stained by the non-specific esterase stain (pH 5.8) using a batch technique. Samples containing > or = 85% esterase negative monocytes were identified at light microscopic examination. RESULTS: Seven of 74 patients were identified as having MED. This correlated exactly with the proportion (five of 46) found before, using an automated method, and was significantly higher than the 0.8% incidence in normal blood donors shown in that study. Comparison of the clinical details of the 12 MED patients with those of 105 esterase positive patients showed a significantly longer disease free survival in the MED cohort and increased occurrence of benign neoplasms--largely colorectal polyps--in this group also. Three patients had a borderline degree of deficiency and were excluded from comparisons, although they showed the same clinical tendencies as the MED group. CONCLUSIONS: There is a strong degree of association between monocyte esterase deficiency and gastrointestinal carcinoma. Further evidence must be sought to prove that the deficiency precedes the disease and therefore may predispose to it, or at least may identify subjects with such a predisposition. This could lead to early diagnosis and effective treatment of gastrointestinal carcinoma in a sizeable proportion of patients.

Aged↗

Lipase and esterase formation by psychrophilic and mesophilic Acinetobacter species.

Acinetobacter O16, a psychrophilic species, produced extracellular lipase (measured by hydrolysis of olive oil, tributyrin, or beta-naphthyl laurate) when grown on a complex medium (peptone plus yeast extract). Most lipase was produced during the logarithmic phase of growth. Very little cell-bound lipase was formed. These cells also produced an esterase (measured by the hydrolysis of beta-naphthyl acetate). At first, all esterase was cell bound; significant amounts appeared in the external medium late in growth. Breaking the cells did not increase cell-bound lipase activity. After breaking of the cells, most of the cell-bound lipase and esterase activity was solubilized, even after very high speed centrifugation. No appreciable amounts of these enzymes were released by osmotic shock. Lipase formation was greatly affected by nutrient conditions. Lowering either the yeast extract of the peptone content of the normal complex medium lowered or abolished lipase formation. Esterase activity was lowered to a lesser extent. Cells growing in synthetic amino acid plus vitamin medium or in acid-hydrolyzed casein produced substantial amounts of esterase but no cell-free or cell-bound lipase. However, if sodium taurocholate was added to these media, lipase was produced. Greatest production occurred if a mixture of di- and poly-peptides was also present. Taurocholate also stimulated lipase production in the normal complex medium. Adding Tween 80 or ethanol to the normal complex medium inhibited lipase production. Sodium acetate, oleic acid, olive oil, or Tween 20 added to synthetic media did not affect lipase production. The psychrophile grew more quickly at 30 degrees C than at 15 or 20 degrees C but produced more lipase at the lower temperatures. Esterase production was about the same at 20 and 30 degrees C. A mesophilic Acinetobacter species produced the same amount of lipase and esterase at 20 and 30 degrees C. The best production of lipase by the psychrophile occurred in standing cultures.

Acinetobacter↗

Role of serine esterase in A23187-mediated activation of phospholipase A2 in pulmonary endothelium.

To test the hypothesis that an endothelial cell membrane-associated serine esterase is involved in regulating phospholipase A2 (PLA2), we studied the effect of the calcium ionophore A23187 on intracellular PLA2 activity and arachidonic acid (AA) release in bovine pulmonary arterial endothelial cells. Exposure of these cells to A23187 causes a concentration-dependent increase in PLA2 activity and [14C]AA release. In addition to increasing PLA2 activity and AA release, A23187 enhances the activity of endothelial cell membrane-associated serine esterase that acts on the synthetic substrate N alpha-p-tosyl-L-arginine methyl ester. Serine esterase inhibitors, such as phenylmethylsulfonyl fluoride and diisopropyl fluorophosphate, prevent the A23187-mediated increase in serine esterase activity, PLA2 activity, and AA release. Pretreatment of the cells with actinomycin D or cycloheximide does not prevent the A23187-mediated increase in AA release, serine esterase activity, or PLA2 activity. The membrane-associated serine esterase activity directly correlates with membrane PLA2 activity. These results suggest that a membrane-associated serine esterase plays a pivotal role in regulating PLA2 activity after exposure to A23187.

Animals↗

Osteogenic periosteum esterase activity: a comparative morphological and cytochemical study of bone cells in situ on rat proximal tibiae and in smears.

Mononucleate phagocytes are presently thought to participate, along with osteoclasts, in bone resorption. Similar cells may also be precursors to osteoclasts. Esterase is a hydrolytic enzyme commonly found in most phagocytes and cells such as these have been shown to degrade bone matrix in vitro. Therefore, periosteal cells of remodeling proximal tibiae in rats were examined for esterase activity. Stain reactions were compared both in situ and in smears. Percentages of different cell types were obtained by counting cells in Wright-Giemsa-stained smears. Osteoclasts and mononucleate phagocyte-like cells made up approximately 20% of the isolated cells. Cells resembling preosteoblasts, mononucleate phagocytes, and osteoblasts stained for esterase activity with light to moderate intensity. Osteoclasts and mononucleate osteoclast-like cells were strongly esterase positive. The esterase was characterized as being type B by using nonorganophosphorus inhibitors of the various esterase types. The addition of esterase to the list of enzyme activities of cells in close proximity to osteoclasts lends further support to the hypothesis that mononucleate cells also participate in bone resorption.

Animals↗

Detoxification of organophosphates by A-esterases in human serum.

1. In vitro detoxification of the organophosphate (OP) insecticides paraoxon, chlorpyrifos-oxon and malaoxon has been investigated in human serum. 2. Specific A-esterase activity to each OP substrate was measured in the serum of 100 individuals using established spectrophotometric methods for paraoxonase and chlorpyrifos-oxonase and a novel assay for malaoxonase activity. 3. Dose-effect inhibition of serum cholinesterase by the three OPs was measured in pooled human serum. Inhibition of calcium dependent A-esterases by addition of EDTA resulted in increased inhibition of cholinesterase at a given OP concentration. 4. Data from both the direct spectrophotometric measurement of A-esterase activity and inhibition of serum cholinesterase in the presence and absence of A-esterase activity indicated that human serum A-esterase catalysed detoxification of chlorpyrifos-oxon> paraoxon> malaoxon. Our data also confirms the wide variation in potency to inhibit cholinesterase between the three OPs. 5. Malaoxonase activity in human serum does not appear to be polymorphic, however, there is large inter-individual variation as has been previously found for other A-esterases. 6. This study has demonstrated two approaches to investigate the inter-individual variation towards specific OPs and the relative ability of human serum A-esterase to detoxify specific OP compounds.

Aryldialkylphosphatase↗

Variation in general esterase activity within a population of Haematobia irritans (Diptera: Muscidae).

Control of the horn fly, Hematobia irritans (L.), is generally dependent on chemical insecticides. However, the biology and behavior of the horn fly favors rapid development of insecticide resistance. To prolong the effectiveness of the insecticide option, information is required regarding the mechanisms of insecticide resistance. Metabolic hydrolysis of insecticides by esterases is a detoxification mechanism in many insect species. Measurement of general esterase activity within populations of horn flies may provide a diagnostic tool for resistance management. In this study we evaluated the amount of variation in general esterase activity within female and male horn fly samples from a population that had not been exposed to insecticides for 8 yr. We found considerable variation in general esterase activity within samples of each sex, with females demonstrating the greater variation. The observed variation is thought to be the result of age-structure dynamics within the population. The amount of inherent variation makes it difficult to detect small mean differences between populations, thus limiting the utility of general esterase assays. Thus, effective diagnosis of esterase-mediated resistance mechanisms can only be achieved by the identification of specific detoxification esterases and the design of assays, either biochemical or molecular, for their detection and measurement.

Aging↗

Histochemical determination of stereoselectivity of esterases in normal pancreas and pancreatic tubular adenocarcinoma of hamsters.

Esterases in normal hamster pancreas and pancreatic tubular adenocarcinoma of ductal origin induced by N-nitrosobis(2-oxopropyl)amine were stained in cryostat sections with mixtures of a diazonium salt (fast blue RR) and with each of the enantiomers of alpha-naphthyl N-methoxycarbonylalaninate, N-methoxycarbonylvalinate, and N-acetylprolinate. Azo coupling of alpha-naphthol formed by enzymatic hydrolysis with the diazonium salt gives an azo dye that indicates the presence and amount of the enzyme activity in situ. Comparison between the color intensities obtained with each of the enantiomers of a chiral alpha-naphthyl ester shows the stereoselectivity, or enantiomeric preference, of the enzyme. Esterases in acinar cells of the normal pancreas showed slight stereoselectivity for N-methoxycarbonylalaninate, while esterases in fat cells scattered throughout the exocrine pancreas showed high stereoselectivity for (R)-N-acetylprolinate. These esterase activities were not found in the tumor, but another prominent esterase activity with high stereoselectivity for (S)-N-methoxycarbonylvalinate was found. Similar results were obtained by staining after polyacrylamide gel electrophoresis showing that the bands of esterases in the adenocarcinoma stained only with the S enantiomer of the N-methoxycarbonylvalinate. The present method is a valuable tool for designing anticancer prodrugs that are activated by tumor-specific esterases.

Adenocarcinoma↗

Esterases in marine dinoflagellates and resistance to the organophosphate insecticide parathion.

Esterases are involved in the susceptibility or resistance of organisms to organophosphate pesticides. We have examined the action of parathion on the marine dinoflagellates Crypthecodinium cohnii and Prorocentrum micans by looking at their esterases. One-dimensional gel electrophoresis, immunoblotting and cytochemistry plus image analysis were used to characterize the nature and distribution of the enzymes. Esterases were found in both species, but there appeared to be no particular intracellular localization. The esterase activity of the heterotrophic species Crypthecodinium cohnii was 30-fold greater than that of the autotrophic Prorocentrum micans and had an antigenic site in common with mosquito esterase. The resistance of Crypthecodinium cohnii to parathion was specific and reversible. Less parathion entered the parathion-resistant Crypthecodinium cohnii cells than the untreated control cells. Parathion-resistant cell extracts of Crypthecodinium cohnii analyzed after immunoblotting also contained an additional band of esterase activity. These results confirm the importance of esterases in toxicological studies of organophosphate insecticides, especially those of marine dinoflagellates.

Animals↗