Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “AMYLASE”

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 757 records · Page 42Linked to original sources

Variation in the number of genes coding for salivary amylase in the bank vole, clethrionomys glareola.

A Danish population of bank voles is polymorphic for three electrophoretically different salivary amylases; A, H and S, of which A is the most common. Both single-, double- and triple banded phenotypes were observed, and in several crosses two electrophoretic forms cosegregated. In addition to the qualitative variation, some individuals show consistent quantitative variation in the relative activities of their amylase bands. This variation has been qualified by spectrophotometrical measurements of the relative amounts of amylase protein in the various bands. --Seventy wild chromosomes were analyzed by determining the amounts of amylase they produced when heterozygous with a laboratory stock chromosome known to carry two closely linked amylase genes, both coding for a fourth electrophoretic variant, B. The amount of A-protein divided by half the amount of B-protein was used as an estimate of the number of A-genes on the tested chromosomes. The wild chromosomes fell into three clearly distinguishable classes: 9 clustered around a gene number estimate of one, 45 chromosomes yielded estimates around two genes, and the gene number estimate of the remaining 16 was close to three. The integer values of the gene number estimates and the cosegregation of electrophoretically different salivary amylases are consistent with the model that the population is polymorphic for chromosomes with either one, two, or three closely linked amylase genes. It is suggested that such gene number variation may be more common than generally recognized, and some other reported cases of quantitative enzyme variation, for instance that of human red cell acid phosphatase, are interpreted in terms of variation in the number of genes involved.

Amylases↗

Effects of dietary manganese deficiency on rat pancreatic amylase mRNA levels.

Manganese deficiency is associated with increased pancreatic amylase activity in rats. The present study investigated whether this increase in amylase activity is associated with increased pancreatic amylase messenger RNA (mRNA) levels. Weanling rats were fed a high carbohydrate diet containing either 40 micrograms Mn/g (control) or 0.5 microgram Mn/g (deficient) for 4 to 8 wk. Mn deficiency was confirmed by determining hepatic Mn content, which was significantly lower in Mn-deficient rats than in controls. Pancreatic RNA from both groups of rats was hybridized with 32P-labeled complementary DNAs for amylase and trypsinogen. Amylase mRNA levels were increased in rats fed Mn-deficient diets for both 4 wk (200%) and 8 wk (250%) when compared with respective control levels. In contrast, Mn deficiency was not associated with alterations in trypsinogen mRNA levels. Serum levels of insulin and corticosterone, hormones known to increase pancreatic amylase mRNA, were not affected by Mn deficiency. These observations suggest that Mn may participate in the regulation of amylase gene expression in a manner that is independent of insulin and corticosterone.

Administration, Oral↗

Immunohistochemical study of amylase in common epithelial tumors of the ovary.

Cellular localization of amylase in various ovarian tumors was studied by the immunoperoxidase method using an antibody to human pancreatic amylase. Amylase was present in eight of 34 serous carcinomas and eight of 27 endometrioid carcinomas. However, only in one poorly differentiated serous carcinoma and two well-differentiated endometrioid carcinomas were a large number of amylase-reactive cells found. Five benign and three borderline serous tumors contained no amylase. Also, amylase was not detected in any of 34 mucinous tumors or five malignant clear cell tumors. The results obtained suggest that amylase will be a useful tumor marker, when present, for follow-up of endometrioid and serous carcinomas of the ovary.

Adenocarcinoma↗

Immunohistochemical demonstration of amylase in endometrial carcinomas.

Cellular localization of amylase in 100 endometrial carcinomas was studied by the immunoperoxidase method using an antibody to human pancreatic amylase. Amylase activity was observed in 12 tumors, localizing in the cytoplasm of tumor cells. They were seven well-differentiated adenocarcinomas, one poorly differentiated adenocarcinoma, one papillary serous carcinoma, two mucinous carcinomas, and one adenocarcinoma with squamous differentiation. Of these, many amylase reactive cells were found in one well-differentiated adenocarcinoma, one papillary serous carcinoma, and one mucinous carcinoma. The remaining nine tumors contained a few to a moderate number of amylase reactive cells. Although serum levels of amylase were not examined in the present study, the results suggest that amylase may be a potential tumor marker for some endometrial carcinomas.

Adenocarcinoma↗

Role of glucocorticosteroids in the regulation of pancreatic amylase synthesis.

Both adrenalectomy and chemically induced diabetes mellitus cause a marked decrease of pancreatic amylase activity in rats, but it is unknown whether these effects are the result of a direct or indirect mechanism. The synthesis of various pancreatic enzymes has been studied in isolated pancreatic acini from sham-operated, castrated, and adrenalectomized animals as well as in animals that have been both adrenalectomized and castrated. Protein synthesis was measured by pulse labeling of acini with [35S]methionine followed by either trichloroacetic acid precipitation of total protein and counting or by SDS-PAGE and autoradiography, and additionally by in vitro translation of extracted pancreatic RNA using rabbit reticulocytes. Adrenalectomy resulted in a 70% reduction of amylase activity per milligram of acinar protein as a result of a decrease in amylase synthesis. This reduction in amylase synthesis is a consequence of a decrease in the amount of mRNA coding for amylase. After adrenalectomy, plasma concentrations of the following were reduced compared to controls: corticosterone to 0.45%, insulin to 11%, and glucose to approximately 66%. Addition of glucose to the drinking water caused an increase in insulin and plasma glucose, but this was not followed by an increase in amylase activity. We postulate that corticosterone directly regulates amylase synthesis in the rat pancreas.

Adrenalectomy↗

Gastrin-releasing peptide stimulation of amylase release from rat pancreatic lobules involves intrapancreatic neurons.

Gastrin releasing peptide (GRP) immunoreactivity has been localized to nerve fibers innervating pancreatic acini and identified in nerve cell bodies within intrapancreatic ganglia. The role of intrapancreatic neurotransmission in GRP- and neuromedin C (NmC)-stimulated amylase release was investigated using rat pancreatic lobules in vitro. Lobule responsiveness to neuronal depolarization was demonstrated by amylase release upon exposure to 55 mM potassium (207 +/- 7% of control) or veratridine (294 +/- 12%). Both GRP and NmC produced dose-dependent increases in lobular amylase release, with ED50 values of 1.1 nM and 0.13 nM, respectively. Amylase release in response to submaximal concentrations of GRP were significantly inhibited by tetrodotoxin (78 +/- 5% of control) or hexamethonium (71 +/- 5% of control). GRP-stimulated amylase release was decreased to 71 +/- 5% of control by atropine coincubation. NmC-stimulated amylase release was not affected by tetrodotoxin, hexamethonium, or atropine. GRP (10(-10) to 10(-6) M) produced dose-dependent increments in [3H]acetylcholine release from pancreatic lobules. GRP stimulates amylase release from rat pancreatic lobules by a neurally mediated mechanism in addition to direct action on acinar membrane receptors.

Acetylcholine↗

Different implications of Ca2+i and and Ca2+e in CCK/gastrin-induced amylase secretion in AR4-2J cells.

The importance of Ca2+ in the regulation of secretion is well-known. However, recent experiments suggest that a rise in intracellular Ca2+ (Ca2+i) does not necessarily trigger secretion in pancreatic acinar cells. In AR4-2J cells the role of the Ca2+ mobilization induced by cholecystokinin/gastrin (CCK/G), which is dependent of the intracellular calcium store and the calcium influx operating through voltage-dependent calcium channels, has never been directly demonstrated. Therefore, we attempted to determine whether Ca2+i and/or extracellular Ca2+ (Ca2+e) mobilized by CCK/G plays a role in the amylase secretion of these cells. We measured the [Ca2+]i by spectrofluorometry and amylase release in different experimental procedures modulating the two pools of calcium. Ionomycin increased both [Ca2+]i and amylase related. In Ca(2+)-depleted cells or in the presence of thapsigargin the transient rise in Ca2+i and the amylase secretion induced by CCK/G were suppressed. A 50 mM K+ solution or Bay K 8644, which activated the Ca2+ influx, did not induce any variation of the basal amylase secretion. Moreover, amylase secretion induced by CCK/G did not change significantly in Ca(2+)-free medium or in the presence of nifedipine. These results indicate that in AR4-2J cells, amylase secretion is dependent of the large increase in Ca2+i induced by CCK/G and independent of the Ca2+ influx through voltage-dependent calcium channels dihydropyridine sensitive.

Amylases↗

Effect of somatostatin on cholecystokinin-induced amylase release in rat pancreatic acini.

The effect of somatostatin on cholecystokinin-induced amylase release was investigated in isolated rat pancreatic acini. Acini were isolated by enzymatic digestion and incubated in a HEPES buffered Ringer's solution with testing reagents for 30 minutes at 37 degrees C. The activity of released amylase, cAMP, and inositol phosphate formation were measured. Intracellular calcium concentration ([Ca2+]i) was also checked. Somatostatin 14 and octreotide, a somatostatin analog, inhibited CCK-stimulated amylase release in a concentration-dependent manner. The inhibitory effect of octreotide on CCK-induced amylase release was not shown when the acini were treated with 8-Br-cAMP, irrespective of the presence of IBMX. Forskolin potentiated CCK-induced amylase release and this effect was blocked by octreotide treatment; although CCK-8 (3 x 10(-11) M) failed to stimulate cAMP formation, octreotide significantly inhibited basal cAMP formation in the acini. The increase of [Ca2+]i in response to CCK was inhibited by octreotide. However, CCK-induced inositol phosphate formation was not changed by 10(-9) M octreotide. Octreotide had no effect on CCK-stimulated tyrosine phosphorylation, and tyrosine phosphatase inhibitors (NaF and Na2WO4) did not influence the effect of octreotide on CCK-induced amylase release. From these results, we conclude that octreotide inhibits CCK-induced amylase release by inhibiting basal cAMP formation and decreasing the [Ca2+]i stimulated by CCK.

1-Methyl-3-isobutylxanthine↗

The alpha-amylase gene amyH of the moderate halophile Halomonas meridiana: cloning and molecular characterization.

Two types of Tn1732-induced mutants defective in extracellular amylase activity were isolated from the moderate halophile Halomonas meridiana DSM 5425. Type I mutants displayed amylase activity in the periplasm, and were unable to use any of the carbon sources tested, including starch and its hydrolysis product maltose. The type II mutant was affected in the gene responsible for the synthesis of the extracellular alpha-amylase. This gene (amyH) was isolated by functional complementation of mutant II and sequenced. The deduced protein (AmyH) showed a high degree of homology to a proposed family of alpha-amylases consisting of enzymes from Alteromonas (Pseudoalteromonas) haloplanktis, Thermomonospora curvata, streptomycetes, insects and mammals. AmyH contained the four highly conserved regions in amylases, as well as a high content of acidic amino acids. The amyH gene was functional in the moderate halophile Halomonas elongata and, when cloned in a multicopy vector, in Escherichia coli. AmyH is believed to be the first extracellular-amylase-encoding gene isolated from a moderate halophile, a group of extremophiles of great biotechnological potential. In addition, H. meridiana and H. elongata were able to secrete the thermostable alpha-amylase from Bacillus licheniformis, indicating that members of the genus Halomonas are good candidates for use as cell factories to produce heterologous extracellular enzymes.

Amino Acid Sequence↗

Gibberellin-regulated expression of a myb gene in barley aleurone cells: evidence for Myb transactivation of a high-pI alpha-amylase gene promoter.

Functional analysis of a barley high-pI alpha-amylase gene promoter has identified a gibberellin (GA) response complex in the region between -174 and -108. The sequence of the central element, TAACAAA, is very similar to the c-Myb and v-Myb consensus binding site. We investigated the possibility that a GA-regulated Myb transactivates alpha-amylase gene expression in barley aleurone cells. A cDNA clone, GAmyb, which encodes a novel Myb, was isolated from a barley aleurone cDNA library. RNA blot analysis revealed that GAmyb expression in isolated barley aleurone layers is up-regulated by GA. The kinetics of GAmyb expression indicates that it is an early event in GA-regulated gene expression and precedes alpha-amylase gene expression. Cycloheximide blocked alpha-amylase gene expression but failed to block GAmyb gene expression, indicating that protein synthesis is not required for GAmyb gene expression. Gel mobility shift experiments with recombinant GAMyb showed that GAMyb binds specifically to the TAACAAA box in vitro. We demonstrated in transient expression experiments that GAMyb activates transcription of a high-pI alpha-amylase promoter fused to a beta-glucuronidase reporter gene in the absence of GA. Our results indicate that the GAMyb is the sole GA-regulated transcription factor required for transcriptional activation of the high-pI alpha-amylase promoter. We therefore postulate that GAMyb is a part of the GA-response pathway leading to alpha-amylase gene expression in aleurone cells.

Amino Acid Sequence↗

Structural and mechanistic studies of chloride induced activation of human pancreatic alpha-amylase.

The mechanism of allosteric activation of alpha-amylase by chloride has been studied through structural and kinetic experiments focusing on the chloride-dependent N298S variant of human pancreatic alpha-amylase (HPA) and a chloride-independent TAKA-amylase. Kinetic analysis of the HPA variant clearly demonstrates the pronounced activating effect of chloride ion binding on reaction rates and its effect on the pH-dependence of catalysis. Structural alterations observed in the N298S variant upon chloride ion binding suggest that the chloride ion plays a variety of roles that serve to promote catalysis. One of these is having a strong influence on the positioning of the acid/base catalyst residue E233. Absence of chloride ion results in multiple conformations for this residue and unexpected enzymatic products. Chloride ion and N298 also appear to stabilize a helical region of polypeptide chain from which projects the flexible substrate binding loop unique to chloride-dependent alpha-amylases. This structural feature also serves to properly orient the catalytically essential residue D300. Comparative analyses show that the chloride-independent alpha-amylases compensate for the absence of bound chloride by substituting a hydrophobic core, altering the manner in which substrate interactions are made and shifting the placement of N298. These evolutionary differences presumably arise in response to alternative operating environments or the advantage gained in a particular product profile. Attempts to engineer chloride-dependence into the chloride-independent TAKA-amylase point out the complexity of this system, and the fact that a multitude of factors play a role in binding chloride ion in the chloride-dependent alpha-amylases.

Acarbose↗

Biochemical and genetic analysis of a maltopentaose-producing amylase from an alkaliphilic gram-positive bacterium.

Two amylases have been purified from the culture fluid of an alkaliphilic bacterium. Amylase A-60 consists of a single type of polypeptide chain of 60 kDa and exhibits an alpha-amylase-type of starch cleavage. Amylase A-180 is approximately 180 kDa in size, represents the largest exoenzyme so far identified in prokaryotes and in the initial enzyme reaction cleaves starch exclusively to maltopentaose. A-60 and A-180 are immunologically unrelated enzymes. The structural gene for amylase A-180 has been cloned and its nucleotide sequence was determined. An open reading frame was identified for a putative protein of 182 kDa whose amino-terminal sequence, deduced from the nucleotide sequence, was identical in 23 out of 25 positions to that determined for the protein. The amino-terminus of the mature protein, at the gene level, is preceded by a sequence segment showing all the characteristics of a signal peptide from Gram-positive bacteria. Analysis of the deduced amino acid sequence revealed that the 70-kDa N-terminal part is similar to classical alpha-amylases. The C-terminal part contains three repeated sequence blocks of 99 amino acid residues each which are also present in two bacterial beta-amylases. It appears, therefore, that A-180 has arisen by gene fusion events.

Amino Acid Sequence↗

Amylase in thyroid tissues from normal and various thyroid diseases. Biochemical and immunohistochemical study.

Amylase activity was measured in thyroid tissues of various thyroid diseases and was analysed electrophoretically. Normal thyroid tissues contained significant amounts of amylase (mean +/- SD; 2.71 +/- 1.15 IU/g of tissue), and their amylase isozyme was composed of a majority of salivary type isoamylase and other peculiar isoamylase. The statistical decrease of amylase activities in tissues of Graves' disease under hyperthyroidism, thyroid carcinoma, and most of thyroid adenomas were found (Graves' disease; 1.04 +/- 0.41, carcinoma; 1.49 +/- 1.10, adenoma (except five cases with high activity); 0.88 +/- 0.49 IU/g tissue). Five of 18 cases of adenoma showed strikingly higher amylase activity in their tissues. Electrophoretical patterns of amylase isoenzymes in these five adenoma tissue were different from those of normal thyroid tissues. The cellular localization of amylase in the normal thyroid tissues and the adenoma tissues was also demonstrated immunohistochemically.

Adenoma↗

Should serum pancreatic lipase replace serum amylase as a biomarker of acute pancreatitis?

BACKGROUND: Serum pancreatic lipase may improve the diagnosis of pancreatitis compared to serum amylase. Both enzymes have been measured simultaneously at our hospital allowing for a comparison of their diagnostic accuracy. METHODS: Seventeen thousand five hundred and thirty-one measurements of either serum amylase and or serum pancreatic lipase were made on 10 931 patients treated at a metropolitan teaching hospital between January 2001 and May 2003. Of these, 8937 were initially treated in the Emergency Department. These results were collected in a database, which was linked by the patients' medical record number to the radiology and medical records. Patients with either an elevated lipase value or a discharge diagnosis of acute pancreatitis had their radiological diagnosis reviewed along with their biochemistry and histology record. The diagnosis of acute pancreatitis was made if there was radiological evidence of peripancreatic inflammation. RESULTS: One thousand eight hundred and twenty-five patients had either elevated serum amylase and or serum pancreatic lipase. The medical records coded for pancreatitis in a further 55 whose enzymes were not elevated. Three hundred and twenty of these had radiological evidence of acute pancreatitis. Receiver operator characteristic analysis of the initial sample from patients received in the Emergency Department showed improved diagnostic accuracy for serum pancreatic lipase (area under the curve (AUC) 0.948) compared with serum amylase (AUC, 0.906, P < 0.05). A clinically useful cut-off point would be at the diagnostic threshold; 208 U/L (normal <190 U/L) for serum pancreatic lipase and 114 U/L (normal 27-100 U/L) for serum amylase where the sensitivity was 90.3 cf., 76.8% and the specificity was 93 cf., 92.6%. 18.8% of the acute pancreatitis patients did not have elevated serum amylase while only 2.9% did not have elevated serum pancreatic lipase on the first emergency department measurement. CONCLUSION: It is concluded that serum pancreatic lipase is a more accurate biomarker of acute pancreatitis than serum amylase.

Acute Disease↗

Studies on serum amylase in normal man and in acute pancreatitis.

Amylase isoenzymes in serum, urine, saliva, jejunal juice, and pancreatic tissue were separated by isoelectric focusing. Isoamylase patterns obtained indicated that the majority of amylase activity in normal serum is of salivary gland origin. Pancreatic amylase is characteristically predominant in acute pancreatitis. The increased renal clearance of amylase in acute pancreatitis may be partly due to the increased proportion of the smaller molecular weight pancreatic amylase. However, a demonstrated increase in the renal clearance of salivary amylase in acute pancreatitis suggests a renal cause also. Autopsy pancreas samples devoid of TAME (p-tosyl arginine methyl ester) esterase activity (e.g. trypsin and plasma enzymes such as thrombin and plasmin) had isoenzyme patterns different to those samples with free proteolytic activity. Incubation of TAME esterase free pancreas with trypsin caused conversion of the former isoamylase pattern to one with the predominant isoenzymes focusing coincident with the predominant peak in serum from acute pancreatitis, jejunal aspirate, and TAME esterase positive autopsy pancreas. Such conversion suggests that pancreatic amylase is synthesized in a form different from that found in the intestinal lumen and serum.

Acute Disease↗

Alpha-amylase kinetic test in bodily single and mixed stains.

Recently, in Italy, a murder and a putative sexual violence was accomplished on a child. A bodily fluids mixture on the child's underwear between the victim (female) and the suspect (male) was ascertained by short tandem repeat (STR) DNA typing and, due to the absence of seminal fluid, saliva from the suspect and urine from the child was hypothesized. In order to investigate the possibility of specifically and rapidly detecting saliva stains both alone and mixed with other bodily fluids, we used a quantitative spectrophotometric technique, named Amylase test, for the detection of alpha-amylases. We determined alpha-amylase activity and reaction kinetic curves in several samples collected from the child's underwear. In order to confirm our intuition, we first tested saliva, perspiration, and urine, singularly and in mixtures; second, several forensic stains including saliva, perspiration, urine stains, saliva/perspiration, and saliva/urine mixture stains were tested. Evaluating alpha-amylase activity values and time-course curves' behavior of alpha-amylase reactions we were able to recognize successfully, in all cases, the presence of saliva and to distinguish it specifically from other bodily fluids containing alpha-amylase. A further confirmation of our result was provided by STR DNA typing on several areas of the underwear: a clear correlation between alpha-amylases activity and male DNA was detected on all the samples evaluated.

Child↗

Salivary amylase in crevicular fluid.

Extrasulcular substances such as saliva, supragingival plaque and salivary sediment may be contaminants in gingival crevicular fluid (GCF) collected with Periopaper. This report provides data obtained with salivary amylase as a marker for these substances in GCF. Amylase was a common constituent of GCF collected from sites with clinical health and with clinical signs of periodontitis. Rinsing the mouth with water reduced, but did not eliminate amylase in GCF. More frequent (p < 0.01) and greater (p < 0.001) contamination of GCF with amylase occurred in samples from periodontitis than from healthy subjects. The volume of saliva required to give the amylase in the GCF was calculated. This volume exceeded the GCF volume in 21% of samples collected without a water rinse. Thus, oral constituents other than saliva likely contribute to GCF amylase. Small quantities of plaque and salivary sediment (9.6 +/- 5.9, 3.4 +/- 2.0 micrograms protein) provided amylase from a saliva volume equal to the GCF volume in health (0.23 microliters). The above and other data presented here show that extrasulcular substances likely are frequent constituents of GCF collected with Periopaper. Reporting GCF constituents as quantities/sample appears least subject to error from the contamination by extrasulcular substances.

Amylases↗

Alpha-amylase activity in supragingival dental plaque in humans.

Supragingival plaque samples were examined for alpha-amylase activity before and after cultivation. Amylase activity was determined by disappearance of 14C-labeled starch in a phosphate buffer, pH 6.9. In all plaque samples alpha-amylase activity was observed. On an average 75% of this activity was soluble, while the rest was bound to various plaque components. Known inhibitors of human alpha-amylase inhibited the enzyme activity in the plaque samples almost totally. The electrophoretic patterns of alpha-amylases in the plaque and human saliva samples were identical. Bacteria cultivated from the plaque samples showed no or low alpha-amylase activity. The results indicated that most of alpha-amylase activity in supragingival plaque samples are of salivary origin. The greater part of the enzyme activity is extracellular in the plaque, may be located at the plaque surface, and only a minor part is bound to the cells or to the insoluble components in the plaque.

Bacteria↗