PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “AMINOPEPTIDASES”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

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

At least 487 records · Page 27Linked to original sources

Aminopeptidases and proteolipids of intestinal brush border.

The presence of human blood group A determinants has been shown on the A+ rabbit intestinal brush border glycoproteins, particularly hydrolases. Sugar compositions of aminopeptidases N from A+ and A- rabbits were compatible with the presence in these molecules of eight N-linked glycans and of two O-linked glycans bearing the A determinants in A+ animals. The exact relative molecular masses of hydrophobic domain(s) of aminopeptidases N and A from pig and rabbit intestinal brush border have been determined by an isotopic dilution technique. The values obtained were compatible with the anchorage in the membrane of the monomeric rabbit enzymes, or of each subunit of the dimeric pig enzymes, by their N-terminal sequences, composed of 20-25 hydrophobic amino acids. This N-terminal hydrophobic sequence (14 residues) has been determined for rabbit aminopeptidase N. Short peptides containing approximately 60% hydrophobic amino acids have been extracted by chloroform-methanol from purified brush border and basolateral membranes of pig enterocytes. Their molecular properties were very similar to those of the aminopeptidase anchors released by trypsin treatment of detergent-extracted enzymes. However, several lines of evidence failed to support the assumption that these free hydrophobic peptides can be identified with anchors left inside the bilayer after proteolytic cleavage of surface hydrolases.

ABO Blood-Group System↗

Blood digestion in the mosquito, Anopheles stephensi Liston (Diptera: Culicidae): partial characterization and post-feeding activity of midgut aminopeptidases.

Aminopeptidase activity was partially characterized from midguts of Anopheles stephensi Liston which had been dissected 30 h after blood feeding. In crude midgut homogenate supernatants the aminopeptidases showed optimum activity at pH 8.0 and preferentially hydrolyzed alanine- and leucine-terminal amino acid substrates. Methionine, proline, lysine, and arginine terminal substrates were hydrolysed, but not glutamic acid. Activity was stimulated by Mg2+, EDTA, and low Ca2+ concentrations, while Mn2+, Tris, 1,10 phenanthroline, and higher Ca2+ concentrations were inhibitory. Supernatants from midguts homogenized in 1% Triton X-100 showed a two-fold increase in activity. Differential centrifugation of midgut homogenates demonstrated 45% of the total activity in a putative microvillar pellet and 32% in a soluble fraction. More than 92% of the total activity was solubilized after homogenization in Triton X-100. Activity in homogenate supernatants was restricted to one major peak (Mr = 552,000) with a higher molecular weight shoulder. Three distinct peaks of aminopeptidase activity were observed following Triton X-100 treatment: a minor high molecular weight peak (Mr = 552,000), and two major peaks at Mr = 123,000 and Mr = 32,000 respectively. The activity of aminopeptidase increased after a blood meal, in parallel to the post-feeding changes in trypsin activity, indicating its important role in secondary digestion of blood meal proteins.

Aminopeptidases↗

Detection and quantification of leucyl aminopeptidase after native electrophoresis using leucine-p-nitroanilide.

A general method for detecting leucyl aminopeptidase activity after native polyacrylamide gel electrophoresis (PAGE) in situ is described. The method is based on diazotization of p-nitroaniline, liberated in the polyacrylamide gel by leucyl aminopeptidase action on leucine-p-nitroanilide (LpNA) and subsequent coupling with a chromogen, 1-naphthylamine, until a pink azo dye product at the position of enzyme activity is obtained. A possible use of this technique for leucyl aminopeptidase detection and quantification is indicated. This method was found to be reproducible with the coefficient of variation below 15% for a 32-fold range, while the colored area of enzyme activity was in linear dependence to enzyme activity. Applications of this method with some other aminoacyl-p-nitroanilides and for detection of kidney bean leucyl aminopeptidase isoforms are demonstrated.

Anilides↗

Expression and different polarity of aminopeptidase N in normal human colonic mucosa and colonic tumors.

Expression and cellular localization of brush-border enzymes (aminopeptidase N, dipeptidylpeptidase IV, lactase, maltase) in normal human colon, colonic polyps and malignant intestinal tumors were investigated with a panel of monoclonal antibodies reacting with either native or denatured proteins. The enzymes were detected on cryostat sections by indirect immunofluorescence staining, or affinity-purified and analyzed by gel electrophoresis and immunoblotting. Dipeptidylpeptidase IV, lactase and maltase were absent from all samples examined, while aminopeptidase N (APN) was detected at the basal membrane of the epithelial cells in most specimens of colon obtained from individuals free of intestinal tumors. In contrast, APN was frequently localized at the luminal membrane of the surface epithelium in large-intestinal mucosa distal to tumors, adenomas and hyperplastic polyps, and from members of hereditary colon cancer syndrome families. APN was also expressed in colonic tumors, where it was present in an apical cell membrane location in 3/23 adenomas and 14/35 adenocarcinomas examined. No correlation was found between tumor-cell invasiveness (classified by "Dukes" stage) and expression or cellular location of aminopeptidase N. Histologically, all positive tumors were moderately or well differentiated. These results suggest that aminopeptidase N is normally expressed in adult human colon, but epithelial cells in the large and small intestine differ in their ways of sorting this enzyme intracellularly and eventually inserting it into different aspects of their surface membrane, a process which may be altered at an early stage of carcinogenesis.

Aminopeptidases↗

Low fluences of ultraviolet irradiation stimulate HeLa cell surface aminopeptidase and candidate "TGF alpha ase" activity.

Several forms of perturbation result in the release of bioactive molecules into the microenvironment of injured cells to mediate the inflammatory or reparative reactions which restore normal tissue structure and function. Amongst other products, ultraviolet irradiation (UV) causes the release of the growth factor TGF alpha from a variety of epithelial cell sources, apparently by a post-translational mechanism. Here we have explored the hypothesis that UV results in the activation of cell surface proteases which may then be capable of excising mature TGF alpha from its plasma membrane-bound precursor. Using a recently described, sensitive assay of peptidase activity tailored to the substrate requirements for cleavage of the scissile bonds in proTGF alpha, we have found that nonlethal fluences of UV (< 12 Jm-2) to HeLa cell cultures are followed by large increases in cell surface proteolytic activities. Amongst these, endopeptidase activity produces a similar product profile from the nonapeptide substrate to that of human leukocyte elastase, an enzyme previously shown to be capable of releasing a bioactive, mature form of TGF alpha from its cell-bound precursor. However, in addition to this candidate "TGFase" activity, cell surface aminopeptidase activity was also very significantly increased. The increase in the two classes of peptidase function differed in the timing of their responses. Aminopeptidase activation occurred immediately following UV, peaking after some 15-20 h, whereas the increase in endopeptidase activity lagged 6 h behind, cresting after 20-24 h. No evidence for a role for aminopeptidase in the activation of the endopeptidase could be found. Also, there was no increase in the total proteolytic activity demonstratable in cell extracts following UV. Attempts to interrupt the UV peptidase activation by inhibiting protein synthesis with cycloheximide were unsuccessful; rather, the inhibitor itself caused an increase in both classes of peptidase activity during the first 20 h. Unlike the UV response, both the aminopeptidase and endopeptidase ectoactivities increased simultaneously within a few hours of introducing cycloheximide into the medium of unirradiated cultures. The cycloheximide induced activity peaked after 20 h. Interestingly, cycloheximide alone has previously been shown to potentiate TGF alpha release from a cell line producing its precursor constitutively. These data suggest that both UV and cycloheximide can initiate reactions in HeLa cells which result in ectopeptidase activation of a global nature. Since both agents result in rapid interruption of DNA synthesis, it is possible that this cell surface proteolytic response may be analogous to, or part of, the "mammalian genetic stress response".(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗

Aminopeptidase activity in albino rabbit extraocular tissues relative to the small intestine.

Aminopeptidase activity in the corneal epithelium and the conjunctiva of the albino rabbit eye was determined using L-leucine-, L-alanine-, and L-arginine-4-methoxy-beta-naphthylamide as substrates. This was compared with the aminopeptidase activity in the duodenum, jejunum, and ileum. The two ocular tissues were found to be 5-15% as active as the ileum in aminopeptidase activity. There was indirect evidence that the dominant aminopeptidase in the corneal epithelium is different from that in the conjunctiva, suggesting that further studies are warranted to investigate the possibility of delivering certain peptides systemically via the conjunctiva without simultaneously exposing the intraocular tissues to these peptides.

Aminopeptidases↗

Substrate specificity of aminopeptidase P from Escherichia coli: comparison with membrane-bound forms from rat and bovine lung.

The substrate specificity of recombinant E. coli aminopeptidase P (aminoacylprolylpeptide hydrolase) (EC 3.4.11.9) was studied using about 150 synthetic peptides. E. coli aminopeptidase P released the N-terminal amino acid from most peptides containing a penultimate proline, although the relative rates of hydrolysis varied over two orders of magnitude. Dipeptides (X-Pro) were hydrolyzed relatively slowly. Detailed kinetic analysis using peptides of different lengths suggested that the enzyme has at least four subsites for interaction with substrates, namely S1, S'1, S'2, and S'3. S1 and S'1 have high stereo-specificity Various Pro-X dipeptides where X is a hydrophobic amino acid were competitive inhibitors of the enzyme. The substrate specificity of E. coli aminopeptidase P was compared to that of purified bovine lung and rat lung membrane-bound aminopeptidase P. The mammalian enzymes had much more restricted substrate specificities. The differences appeared to be due primarily to differences in the S'2 subsite. The E. coli enzyme could accommodate bulky amino acid side chains in the S'2 subsite, whereas the mammalian membrane-bound enzymes could not.

Amino Acid Sequence↗

Methionine enkephalin is hydrolyzed by aminopeptidase N on CD4+ and CD8+ spleen T cells.

Exogenous methionine enkephalin incubated with CD4+ or CD8+ T cells purified from murine spleen is metabolized primarily, if not exclusively, by aminopeptidase N (aminopeptidase M, EC 3.4.11.2), a membrane-anchored ectopeptidase. The enzyme activity is identified by its substrate specificity, sensitivity to inhibition by amastatin, and immunoreactivity with antibody to rat kidney aminopeptidase N. Activation of CD4+ T cells results in a small increase per cell in aminopeptidase N activity.

Aminopeptidases↗

Cloning, chromosomal sublocalization of the human soluble aminopeptidase P gene (XPNPEP1) to 10q25.3 and conservation of the putative proton shuttle and metal ligand binding sites with XPNPEP2.

Human soluble ("cytosolic") aminopeptidase P (hsAmP) is an aminoacylprolyl hydrolase (EC 3.4.11.9) present in all tissues yet examined. hsAmP is related in terms of catalytic specificity to an ectoenzyme, membrane aminopeptidase P (hmAmP), which is largely limited in distribution to endothelia and brush border epithelia. Although both enzymes can degrade oligopeptides having N-terminal Xaa-Pro- moieties, hsAmP and hmAmP are of relatively low sequence homology. Recently, it has been shown that the two enzymes are not products of splice variants of the same gene. How hsAmP relates to hmAmP has clinical significance in that both can inactivate bradykinin, and AmP deficiency states have been described. The hmAmP gene (XPNPEP2) is disposed at chromosome Xq25, a disposition with clear meaning in terms of inheritance of hmAmP deficiencies. To further explore similarities and differences between hsAmP and hmAmP, the present study was begun to determine the chromosomal disposition of the hsAmP gene. Here we show that the gene is sublocalized on chromosome 10q25.3. We also show that hsAmP and hmAmP contain homologous blocks of sequence common to members of the "pita bread-fold" protein family, of which Escherichia coli methionine aminopeptidase is the prototype. The prototype is known to contain a proton shuttle and five divalent metal ligands, counterparts of which we identify in the homologous blocks of sequence in both hsAmP and hmAmP and compare to E. coli aminopeptidase.

Amino Acid Sequence↗

Dynamic measurements of intracellular aminopeptidase activity in hepatocytes using multiparameter digitized video fluorescent microscopy.

Digitized video fluorescent microscopy (DVFM) is a powerful technique for quantitating multiple processes in living cells. However, techniques for measuring protease activity by DVFM are not available. Our aim was to develop an approach for measuring aminopeptidase activity using DVFM. We conjugated glycine-7-amino-4-methylcoumarin-3-acetic acid (glycine-AMC-3-acetic acid) to dextran using a PEG bridge. Glycine-AMC-3-acetic acid-PEG-dextran was microinjected into cultured rat hepatocytes along with rhodamine-dextran. Glycine-AMC-3-acetic acid-PEG-dextran is nonfluorescent, but aminopeptidase hydrolysis of the glycine-AMC bond liberates the fluorescent AMC-3-acetic acid-PEG-dextran within the cell. Following microinjection, rhodamine-dextran fluorescence remained constant while AMC-3-acetic acid-PEG-dextran fluorescence increased in a linear fashion over time reflecting proteolytic cleavage of the glycine-AMC bond. AMC-3-acetic acid-PEG-dextran and rhodamine-dextran fluorescence were cytosolic as evidenced by diffuse fluorescence and colocalized. Because rhodamine-dextran fluorescence remained constant and the probes colocalized, the fluorescent ratio of AMC-3-acetic acid-PEG-dextran/rhodamine-dextran could be used to measure proteolysis. Basal rates of proteolysis were 9 +/- 3 ratio units/10 min. Comicroinjection of the aminopeptidase inhibitor, bestatin, along with the dextran probes abolished proteolysis. Addition of the calcium ionophore, 4-Br-A23187, increased proteolysis 12-fold to 107 +/- 14/10 min (P < 0.01). We have developed a novel, dynamic technique for measuring pH-sensitive, Ca(2+)-dependent aminopeptidase activity in living cells using DVFM. This approach may be used for the measurement of other peptidase activities by synthesizing peptidase-specific peptidyl-AMC-3-acetic acid-PEG-dextran conjugates.

Aminopeptidases↗

The development of two fluorimetric assays for the determination of pyroglutamyl aminopeptidase type-II activity.

Two fluorimetric assays for the determination of pyroglutamyl aminopeptidase type-II activity have been developed. The assays are based on hydrolysis of the quenched-fluorimetric substrate <Glu-His-Pro-7-amino-4-methylcoumarin. Following the removal of the N-terminal <Glu by pyroglutamyl aminopeptidase type-II, liberation of 7-amino-4-methylcoumarin from the metabolite His-Pro-7-amino-4-methylcoumarin is catalyzed by one of two methods: (i) the addition of partially purified bovine serum dipeptidyl aminopeptidase type-IV or (ii) by incubating the reaction mixture for up to 2 h at 80 degrees C, thus promoting the nonenzymatic cyclization of His-Pro-7-amino-4-methylcoumarin to cyclo His-Pro and free 7-amino-4-methylcoumarin. Pyroglutamyl aminopeptidase type-II from bovine brain is used to establish appropriate assay conditions. These fluorimetric assays offer expeditious alternatives to the existing radiolabeled thyrotropin-releasing hormone assays for the determination of PAPII activity.

Aminopeptidases↗

Rapid detection of Listeria monocytogenes by a PCR assay specific for an aminopeptidase.

Specific and rapid detection of Listeria monocytogenes is very important with regard to food safety since all other species of Listeria appear to be non-pathogenic to humans. Conventional microbiological detection methods are very time consuming. The polymerase chain reaction (PCR) is one of the most promising techniques for rapid detection of micro-organisms in food products. We have developed a PCR assay, specific for L. monocytogenes, based on the gene encoding an aminopeptidase, which previously has not been described for this species. The L. monocytogenes aminopeptidase shares strong sequence similarity with aminopeptidase C from Streptococcus thermophilous, Lactobacillus lactis, Lactobacillus helveticus, and with a cysteine proteinase from Saccharomyces cerevisiae. Polymerase chain reaction primers were synthesized based on the DNA sequence of the aminopeptidase gene. A 90 bp product was apparent with all L. monocytogenes strains tested but not with other species of Listeria or other bacterial genera. The PCR assay, which is performed directly from whole bacterial cells, does not involve DNA purification and can be conducted in 4 h. It provided positive identification of L. monocytogenes in mixed culture.

Aminopeptidases↗

Immunocytochemical localization of aminopeptidase N on the cell surface of isolated porcine thyroid follicles.

The ultrastructural location of aminopeptidase N on the cell surface of isolated porcine thyroid follicle cells was studied with immunocytochemistry using antibodies against intestinal aminopeptidase N and protein A-colloidal gold. Gold particles, indicating immunoreactivity, were selectively attached to the apical cell surface. Occasionally, there was a sparse labelling of the basal cell surface. In follicles kept at 4 degrees C most gold particles at the apical cell surface appeared as clusters, with each gold particle situated at a constant distance of about 20 nm from the membrane surface. The gold particles were concentrated on the membranes of microvilli, in comparison to the smooth (intermicrovillar) portions of the apical plasma membrane. In follicles incubated at 37 degrees C for 5-180 min gold particles were slowly internalized by predominantly smooth-surfaced micropinocytic vesicles and subsequently appeared in colloid droplets and lysosomes. Gold particles were not observed in Golgi cisternae. TSH did not appear to influence the rate of internalization. TSH-induced pseudopods were unlabeled. Our electron-microscopic observations confirm previous immunofluorescence-microscopic evidence that aminopeptidase N is selectively expressed in the apical plasma membrane domain in the thyroid follicle cell. Furthermore, aminopeptidase N appears to be distributed in microdomains within the apical plasma membrane. Earlier indications of molecular differences between the pseudopod membrane and the apical plasma membrane proper are further emphasized.

Aminopeptidases↗

Aminopeptidase P from bovine lung: solubilization, properties, and potential role in bradykinin degradation.

Aminopeptidase P was solubilized from bovine lung by sodium deoxycholate extraction of salt-washed, delipidated lung acetone powders. Hydrolysis of the standard aminopeptidase P substrate, Gly-Pro-Hyp, as well as cleavage of Arg-Pro-Pro and the Arg1-Pro2 bond of bradykinin, co-eluted from a Mono Q anion exchange column and demonstrated identical inhibitory profiles suggesting that all activities were functions of the same enzyme. The metal chelator, 1,10-phenanthroline, completely inhibited activity suggesting that aminopeptidase P is a metallopeptidase. 2-Mercaptoethanol was both a potent and specific inhibitor of the enzyme (at 4 mM). A variety of other peptidase inhibitors showed either no effect or failed to completely inhibit even at high concentrations. The inhibitory profile and substrate specificity differ considerably from previous reports claiming to study the properties of this enzyme. Evidence is provided that aminopeptidase P may have an important role in the pulmonary degradation of the potent vasoactive peptide, bradykinin.

Aminopeptidases↗

Developmental changes in the distribution of rat brain pyroglutamate aminopeptidase, a possible determinant of endogenous cyclo(His-Pro) concentrations.

The distribution of cyclo(His-Pro), thyrotropin-releasing hormone (TRH) and Pyroglutamate aminopeptidase activity in adult and developing rat brains were studied. A comparison of the subcellular distribution of Pyroglutamate aminopeptidase activity in hypothalamic and cerebral cortical extracts from adult rats exhibited remarkable differences. In hypothalamus, the enzyme activity was mainly associated with the soluble fraction whereas in cortex it was predominantly associated with the particulate fractions. During postnatal development, the brain concentrations of cyclo(His-Pro) and Pyroglutamate aminopeptidase activities declined with age. These data suggest that Pyroglutamate aminopeptidase activity, but not TRH, plays an active role in determining the levels of endogenous cyclo(His-Pro) concentrations in brain.

Aging↗

Superoxol and aminopeptidase tests for identification of pathogenic Neisseria species and Moraxella (Branhamella) catarrhalis.

The superoxol test, and prolyl aminopeptidase and gammaglutamyl aminopeptidase tests were evaluated for the detection of pathogenic Neisseria spp. using 317 strains of Neisseria-ceae. The superoxol test was positive for all 116 gonococci and 62 Moraxella (Branhamella) catarrhalis strains, but also for three strains of Neisseria meningitidis, one strain of Neisseria lactamica and eight saprophytic neisseriae. When using strains grown on Thayer-Martin medium, the positive and negative predictive values of the superoxol test for the identification of Neisseria gonorrhoeae were 96.7% and 100% respectively. Meningococci were the only neisseriae growing on Thayer-Martin medium that showed gamma-glutamyl aminopeptidase activity. The prolyl aminopeptidase test showed low specificity.

Aminopeptidases↗

An intracellular aminopeptidase from Streptomyces rimosus that prefers basic amino acids.

An aminopeptidase from the mycelia of Streptomyces rimosus was isolated in an electrophoretically homogeneous form. It was shown to be a monomeric, acidic protein (pI = 4.4, mol. wt. approx. 83,000), with optimal activity at pH 7.1-7.8 and at 35-41 degrees C. The enzyme was fully inhibited by 0.1 mM EDTA or 1 mM o-phenanthroline; the activity was restored upon addition of 0.05 mM Co2+, Zn2+, or Ni2+. Amastatin, bestatin, and puromycin also inhibited the enzyme. The aminopeptidase hydrolyzed amino-acid-2-naphthylamides and various di- to heptapeptides. The highest catalytic coefficients (23 and 19 microM-1 s-1) were obtained with Arg- and Lys-2-naphthylamide, followed by Leu-, Phe- and Met-derivatives with one order of magnitude lower catalytic coefficients. Basic or bulky hydrophobic amino acids at the P1 and/or P1' position of peptide substrates were preferred. Acidic amino acids and proline were not accepted. The affinity of the enzyme increased with the length of peptide. According to these properties, S. rimosus intracellular aminopeptidase is distinct from the extracellular leucine aminopeptidase of the same organism and can be classified as an Arg(Lys)-preferring metalloaminopeptidase.

Amino Acid Sequence↗

A spectrophotometric method for the determination of aminopeptidase activity with leucine dehydrogenase.

L-Leucine dehydrogenase purified from Bacillus megaterium and Bacillus sphearicus was used for the determination of serum aminopeptidase activity with L-leucinamide as a substrate. L-Leucine produced by aminopeptidase was determined by measurement of the increase in absorbance at 340 nm caused by the formation of NADH. This method is useful for the kinetic studies of the aminopeptidase and the enzyme assay of a large number of samples. The serum aminopeptidase can be characterized to give some valuable information in clinical diagnosis by comparison of the results obtained by the present method with those by the conventional method with L-leucyl-p-nitroanilide as a substrate.

Amino Acid Oxidoreductases↗