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Esterase activity in the bovine sweat gland: genetic differences and the effect of temperature.

The esterase activity in the sweat glands of Brahman (B), Brahman crossbred (BX) and Shorthorn (S) steers was studied in animals exposed to low heat loads while grazing. The percentage of sweat glands containing esterase in the secretory cells of the fundus differed between genotypes and ranked in order of their heat tolerance, i.e., B greater than BX greater than S. Esterase activity in some of those secretory cells was reduced in B bulls by acute exposure to high air temperatures in a climate chamber. While the significance of the esterase-containing cells in the fundus of the bovine sweat gland is uncertain, the results suggest that they could represent the resting or relatively inactive stage of the secretory cells.

Animals↗

The nature of the inhibition of cholesterol esterase by delta 1-tetrahydrocannabinol.

An improved assay for cholesterol esterase based on the use of fatty acid radiolabelled cholesterol esters has been developed. The method was used to demonstrate the effects of delta 1-tetrahydrocannabinol on a crude Leydig cell esterase preparation and on crystalline pancreatic esterase. Both enzymes were inhibited and the Km values determined (6.6 mumol/1 for the Leydig cell esterase and 6.25 mumol/1 for the pancreatic enzyme). While the former exhibited a mixed type of inhibition, the latter clearly was competitive.

Animals↗

The enzymatic hydrolysis of a synthetic biomembrane: a new substrate for cholesterol and carboxyl esterases.

With the introduction of artificial implant devices, a new host of biomembrane-like structures have been introduced into the bio-media made up of the synthetic matrix, adsorbed proteins and lipids. Lysosomal hydrolases, e.g. cholesterol esterase (CE), are implicated during the tissue response near the tissue-implant interface. The enzymatic attack on a radiolabelled 'hybrid biomembrane', a polyester-urethane (PUU-CAP), was investigated using two esterases. Membrane stability was monitored by release of radiolabelled molecules. Although some radioactivity was released by buffer controls, upon the addition of CE, a burst of radiolabel release occurred which was due to an enzymatic reaction that could be saturated and inhibited by the specific esterase inhibitor, phenylmethylsulfonylfluoride. Carboxyl esterase (CXE) incubation with PUU-CAP caused less radiolabel release than CE which was similar to the latter's activity when common nitrophenyl ester substrates were used. When a factorial analysis was performed, it was found that side chain length for the common substrates was twice more important for CE, than CXE activity. This would suggest that CE activity is greater for substrates which have spacer segments between potential ester-carbonyl cleavage sites and the rigid ring structure.

Biocompatible Materials↗

Effect of C'1 esterase on vascular permeability in man: studies in normal and complement-deficient individuals and in patients with hereditary angioneurotic edema.

When purified human C'1 esterase is injected intradermally in man, increased vascular permeability results. This effect is not blocked by soybean trypsin inhibitor and is not abolished by pretreatment with the antihistamine, pyribenzamine, or by compound 48/80. Thus, the effect is not due to the release of endogenous histamine. The decreased permeability response of individuals with a specific hereditary deficiency of C'2 is evidence for the complement-dependent nature of this reaction. The apparently normal response to intradermal C'1 esterase developed by individuals with an acquired specific deficiency of C'3 suggests that the vasoactive substance may be derived from one of the early reacting complement components. Characteristic attacks of angioedema have been provoked by the intradermal injection of human C'1 esterase in two individuals with hereditary angioneurotic edema. Patients with hereditary angioneurotic edema are unresponsive to intradermal injections of C'1 esterase immediately after attacks.

Adult↗

Computer-assisted monocyte esterase assay by flow-cytophotometry.

A Wang model 2200 computer has been interfaced with the Bio/Physics Systems, Inc. model 6300 Cytograf and model 2100 Distribution Analyzer. Using a custom designed software program, in conjunction with an azo-dye technic for staining monocytes for nonspecific esterase activity, it has been possible to obtain rapid and reliable data concerning relative values for intracellular monocyte esterase activity. The method is based on measuring the axial light-loss voltage signal for each of one thousand stained monocytes. Individual stained monocytes were assigned to one of four groups (A, B, C, D), dependent upon the magnitude of the signal and were given different rating values (1, 2, 3, 4) according to their group designation. A "score" was derived for each blood sample by multiplying the percentage of cells (monocytes) in each group category by the appropriate factor and summing these values. The technic permits rapid objective assessment of intracellular nonspecific esterase activity in monocytes suspended in a mixed cell population. Both Gaussian and bi-modal patterns for monocyte esterase were observed. The latter suggests a dual monocyte population.

Computers↗

Organotypic cultures of diploid type II alveolar pneumonocytes: surfactant associated esterase activity.

Organotypic cultures, established from enzymatically dispersed day 19 fetal rat lung, are comprised primarily of cells which are morphologically similar to type II alveolar pneumonocytes, the cells involved in surfactant synthesis. To further characterize these cultures, the nonspecific esterase pool was examined to determine if these cultures contained certain nonspecific esterases previously shown to be enzyme markers for the surfactant system. The results of biochemical, electrophoretic and cytochemical studies indicate that these organotypic cultures contain the same nonspecific esterases already demonstrated in surface active fractions derived from rat and mouse lung homogenates and pulmonary lavage fluid. As in whole lung, the major site of esterase activity in the organotypic cultures is the type II cell lamellar body, the putative site of surfactant synthesis and storage. These findings support the concept that the organotypic cultures derived from fetal rat lung are comprised predominantly of type II cells which retain surfactant associated functions in vitro.

Animals↗

Morphometrical analysis of an ultrahistochemical demonstration of nonspecific esterases in hepatocytes of mice after fructose overload.

Changes in ultrastructural distribution patterns of nonspecific esterases (E.C. 3.1.19) are described quantitatively by means of morphometry. Esterases were demonstrated with O-acetyl-8-hydroxyquinoline (Q-O-2) and S-acetyl-8-mercaptoquinoline in livers of normally and exclusively fructose-fed mice. Conditions are discussed, under which the quantification of the ultrastructural products of enzyme histochemical reactions may be possible. Smooth endoplasmic reticulum and rough endoplasmic reticulum exhibit no alteration in enzyme distribution with both substrates since the enzyme-occupied proportion of each compartment remains the same despite an overall decrease of both compartments. Likewise an increase of O-acetyl-8-hydroxyquinoline-esterase at fat droplets corresponds to the increase in total surface of the fat. S-acetyl-8-mercaptoquinoline-positive fat surface however reveals an increase far beyond that of the total fat surface. The results support the hypothesis that a variety of esterases with different substrate spectra are present at the subcellular level in different cell compartments.

Animals↗

Nonspecific esterase activity expressed in Weibel-Palade bodies of cloned guinea pig aortic endothelial cells.

We studied the localization of nonspecific esterase activities in cloned guinea pig aortic endothelial cells using ultrastructural cytochemistry. Weibel-Palade bodies (WPB), which are known to contain von Willebrand protein, were positive for esterase, defining a heretofore unrecognized activity of these organelles. Esterase activity was also found localized to the external surface of the plasma membrane, to cytoplasmic lipid bodies, and to the outer (cytoplasm-facing) surface of certain membrane-bound cytoplasmic vacuoles. Localization of esterase activity to these four discrete sites probably reflects the presence of a number of endothelial cell enzymes capable of hydrolyzing alpha-naphthyl acetate or butyrate. The physiological substrate and biological function of these enzyme activities are not presently understood.

Animals↗

Alpha naphthyl acetate esterase activities in guinea pig Kurloff cells: a cytochemical and electrophoretic study.

We established the presence of nonspecific esterases in the Kurloff cell (KC) by cytochemical methods at both light and electron microscope levels. Acid alpha-naphthyl acetate esterase (ANAE) activities were localized on the external face of the plasma membrane and on the external surface of the membrane surrounding the Kurloff body. Different cytosoluble KC extracts were obtained from purified splenic KC suspensions. About 18 isoenzymes were observed by isoelectric focusing, whereas after polyacrylamide gradient gel electrophoresis in native conditions almost all activity was observed on a few broad bands with very high apparent molecular weights, suggesting their oligomeric arrangement. After a first aqueous extraction step which released only a few isoenzymes, the remaining pellet was subjected to Triton X-100. This released almost all the isoenzymes observed after direct Triton X-100 extraction. These data suggest that almost all the KC esterases are membrane-bound enzymes, in agreement with the subcellular enzyme distribution. Different substrates were also used to characterize the different specificities of the KC isoesterases. Weak activity was detected with alpha-naphthyl butyrate by light cytochemistry, which essentially corresponded, on zymograms, to the membrane-bound esterase activity.

Animals↗

Inhibition of pancreatic cholesterol esterase reduces cholesterol absorption in the hamster.

BACKGROUND: Pancreatic cholesterol esterase has three proposed functions in the intestine: 1) to control the bioavailability of cholesterol from dietary cholesterol esters; 2) to contribute to incorporation of cholesterol into mixed micelles; and 3) to aid in transport of free cholesterol to the enterocyte. Inhibitors of cholesterol esterase are anticipated to limit the absorption of dietary cholesterol. RESULTS: The selective and potent cholesterol esterase inhibitor 6-chloro-3-(1-ethyl-2-cyclohexyl)-2-pyrone (figure 1, structure 1) was administered to hamsters fed a high cholesterol diet supplemented with radiolabeled cholesterol ester. Hamsters were gavage fed 3H-labeled cholesteryl oleate along with inhibitor 1, 0-200 micromoles. Twenty-four hours later, hepatic and serum radioactive cholesterol levels were determined. The ED50 of inhibitor 1 for prevention of the uptake of labeled cholesterol derived from hydrolysis of labeled cholesteryl oleate was 100 micromoles. The toxicity of inhibitor 1 was investigated in a 30 day feeding trial. Inhibitor 1, 100 micromoles or 200 micromoles per day, was added to chow supplemented with 1% cholesterol and 0.5% cholic acid. Clinical chemistry urinalysis and tissue histopathology were obtained. No toxicity differences were noted between control and inhibitor supplemented groups. CONCLUSIONS: Inhibitors of cholesterol esterase may be useful therapeutics for limiting cholesterol absorption.

Animals↗

Mussel MAP, a major gonad-duct esterase-like protein, is released into sea water as a dual constituent of the seminal fluid and the spermatozoon.

Our interest in the comparative analysis of male reproductive-tract esterases in different animal groups has led us to undertake a detailed study of the Mytilus galloprovincialis male-associated polypeptide (MAP) throughout the mussel gonad-duct tract and at spawning. The results of this work indicate that MAP is a major protein in M. galloprovincialis semen, with dual presence in both sperm cells and cell-free seminal fluid. Shortly after spawning, the released sperm mass is subdivided in diffused cloudy-like and thread-shaped 'clots', in which a soluble-phase MAP may persist as long as the clots keep their compact form. Additional experiments involving the incubation of spawned spermatozoa at increasing Triton X-100 concentrations demonstrated that MAP is also strongly associated with sperm cells. These results were further validated by immunofluorescent staining, which revealed that MAP is localized in the mid-piece region of spawned spermatozoa. This unexpected finding raises the possibility that MAP may play a role in sperm fertility in bivalves. Using whole-mount histology and micromanipulation techniques, we studied the structural patterning of the mantle gonad-duct network and assessed the sampling of luminal contents from the ducts. Of particular interest is the observation that MAP content in the luminal fluid increases from the lumen of the spermatogenic tubules to that of the collecting gonad ducts, where MAP is detected at a very high concentration. These high levels may lead to a significant presence of MAP in semen and consequently to a prolonged survival of sperm spawned at sea. In addition, data related to the potential structural similarity between mussel MAP and esterase S of the Drosophila virilis ejaculatory bulb are presented and discussed. Finally, we show that the 64kDa protein of human semen reveals positive cross-reactivity with antibodies directed against Mytilus MAP and Drosophila esterase S. Taken together, the results reveal mussel MAP as the only esterase-like protein described so far whose distribution in the gonad and semen can be specifically associated with maturation, transport, emission and survival of spermatozoa outside.

Amino Acid Sequence↗

Hydrolysis of lipid droplets in acid cholesteryl-esterase-deficient fibroblasts.

The mechanisms of hydrolysis and accumulation of cholesteryl oleate-lipid droplets prepared in vitro were studied in acid cholesteryl-esterase-deficient fibroblasts (GM00863, GM03111). Acid cholesteryl esterase activity was reduced in both GM00863 and GM03111 (8.9% and 17.4% of the normal level, respectively), while neutral cholesteryl esterase activity was highly stimulated in GM03111. The hydrolysis of [14C]-cholesteryl oleate-lipid droplets in GM00863 was almost as efficient as in normal cells, while that in GM03111 was highly stimulated. When viewed by polarized microscopy the lipid droplets which had accumulated in the mutant cells showed anisotropic liquid crystalline structures. As in normal cells, some of these lipid droplets were observed by transmission electron microscopy as membrane-free lipid inclusion bodies in the cytoplasm. These results suggest that lipid droplets internalized into phagolysosomes of these mutant cells transferred to the cytoplasm, and were hydrolyzed there probably by neutral cholesteryl esterase.

Cells, Cultured↗

A study of esterase--its application to biotransformation of midecamycin derivatives.

Esterases of intestinal mucosa and liver from human and rat were used to study the biotransformation of midecamycin derivatives. In the in vitro experiment with rat esterases, the 4"-acyl derivatives were more easily hydrolyzed than the 9-acyl derivatives. Among the 9-acyl esters, the highest hydrolytic activity was observed with butyrate. In the in vivo experiment, when the rats were administered with the derivatives of 4"-depropionylmidecamycin (M1) orally, comparatively more 9-acyl metabolites were excreted in the urine, but the amount of the 4"-acyl metabolites was very small. In the in vitro experiment with human esterases, the 9-acyl esters were hydrolyzed more easily than the 4"-acyl esters. Among the 9-acyl esters of M1, the highest hydrolytic activity was observed with butyrate. When the 9-acyl esters were administered to humans, the n-butyl ester was hydrolyzed faster than the acetyl ester. When the 9,4"-diacetyl ester was administered to humans, comparatively more 4"-acyl metabolites were excreted in the urine. These results suggest that the experiment with the use of these esterases is useful to estimate the biotransformation of midecamycin derivatives.

Animals↗

Characterization of a thermostable esterase activity from the moderate thermophile Bacillus licheniformis.

A new esterase activity from Bacillus licheniformis was characterized from an Escherichia coli recombinant strain. The protein was a single polypeptide chain with a molecular mass of 81 kDa. The optimum pH for esterase activity was 8-8.5 and it was stable in the range 7-8.5. The optimum temperature for activity was 45 degrees C and the half-life was 1 h at 64 degrees C. Maximum activity was observed on p-nitrophenyl caproate with little activity toward long-chain fatty acid esters. The enzyme had a KM of 0.52 mM for p-nitrophenyl caproate hydrolysis at pH 8 and 37 degrees C. The enzyme activity was not affected by either metal ions or sulfydryl reagents. Surprisingly, the enzyme was only slightly inhibited by PMSF. These characteristics classified the new enzyme as a thermostable esterase that shared similarities with lipases. The esterase might be useful for biotechnological applications such as ester synthesis.

Bacillus↗

Primary structure and catalytic properties of a cold-active esterase from a psychrotroph, Acinetobacter sp. strain No. 6. isolated from Siberian soil.

We cloned a gene coding for a cold-active esterase from a genomic library of Acinetobacter sp. strain No. 6, a psychrotroph isolated from Siberian soil. The gene, aest, encoded a protein of 301 amino acid residues, the deduced sequence of which had less than 17% identity to sequences of known esterases and lipases. However, the esterase seemed to belong to the alpha/beta hydrolase superfamily, because it contained a sequence, Gly-Xaa-Ser-Xaa-Gly (with Xaa an arbitrary amino acid residue), found in most serine hydrolases of this superfamily. Sequence comparison earlier suggested a weak phylogenetic relationship of gene product AEST to the EST group of the esterase-lipase family, which has been found only in eukaryotes. The aest gene was expressed in Escherichia coli BL21(DE3) cells under the control of the T7 promoter, and the expression product was purified to homogeneity and characterized. It catalyzed the hydrolysis of esters with short-chain acyl groups and had lower activation energy and lower thermostability than do mesophilic enzymes, as expected from the cold-adapted nature of this enzyme.

Acinetobacter↗

Cholesterol esterase bound to intestinal brush border membranes does not accelerate incorporation of micellar cholesterol into absorptive cells.

We confirmed that cholesterol esterase accelerated the incorporation of unesterified cholesterol solubilized in bile salt micelles into differentiated Caco-2 cells under various experimental conditions. Rat pancreatic juice and bovine cholesterol esterase increased the incorporation of micellar cholesterol into rat intestinal brush border membranes. The incorporation of micellar cholesterol was not changed in the brush border membranes enriched in and depleted of cholesterol esterase. The results suggest that the accelerated incorporation of micellar cholesterol by cholesterol esterase into absorptive cells is not mediated by the enzyme bound to the brush border membranes.

Adenocarcinoma↗

In vitro activation of a soluble cholesterol esterase from bovine adrenals by a cAMP-dependent protein kinase.

Properties and partial purification of the bovine adrenal cholesterol esterase from the 100000 X g supernatant fraction were investigated. Variations of the enzyme activity with time-dependent (enzymatic) and time-dependent (non enzymatic) effects have been demonstrated. Mg2 has been proved to inhibit the enzyme activity by a non-enzymatic effect in 50mM Tris/HCl buffer, pH 7.4. A time-dependent inactivation of the cholesterol esterase has been observed in the same buffer. The enzyme could be protected from this enzymatic inactivation by its substrate, cholesterol oleate. cAMP, ATP and Mg2 cuase a time-dependent stimulation of the enzyme in 50mM Tris/HCl buffer, pH 7.4. This result suggests that corticotropin activates the soluble cholesterol esterase from bovine adrenals via cAMP-dependent protein kinase. This view is strengthened by the incorporation of 32P radioactivity from [gamma-32P] ATP into the protein fraction of the 100,000 X g supernatant. The protein-bound 32P radioactivity could be co-purified with the enzyme activity during the partial purification of the soluble cholesterol esterase.

Adrenal Glands↗

Diagnostic assays based on esterase-mediated resistance mechanisms in western corn rootworms (Coleoptera: Chrysomelidae).

Resistance to methyl-parathion among Nebraska western corn rootworm, Diabrotica virgifera virgifera LeConte, populations is associated with increased hydrolytic metabolism of an organophosphate insecticide substrate. An electrophoretic method to identify resistant individuals based on the staining intensity of esterase isozymes on nondenaturing polyacrylamide gels was developed. Three groups of esterases (I, II, and III) were visible on the gels, but only group II esterase isozymes were intensified in resistant populations. A total of 26 and 31 field populations of western corn rootworms from Nebraska (in 1998 and 1999, respectively) were assessed with nondenaturing polyacrylamide gel electrophoresis (PAGE) assays and diagnostic concentration bioassays. Significant correlations were observed between the two diagnostic assays. Group II esterase isozymes provide a reliable biochemical marker for detection of methyl-parathion resistance in individual western corn rootworms and a tool for monitoring the frequency of resistant individuals in field populations.

Animals↗