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Potent inhibition of cerebral aminopeptidases by carbaphethiol, a parenterally active compound.

We designed phethiol (1-amino-1-benzyl-2-mercaptoethane) as a potent and selective inhibitor of Zn-containing aminopeptidases. This compound inhibited purified aminopeptidase M (EC.3.4.11.2) with a Ki of 5 nM but was at least 1000 times less potent against other metallopeptidases comprising angiotensin-converting enzyme EC 3.4.15.1), enkephalinase (EC 3.4.24.11), thermolysin (EC 3.4.24.4), or dipeptidylaminopeptidases. Phethiol alone significantly but partially protected endogenous (Met5) enkephalin released from depolarized brain slices, total protection being achieved when it was associated with an enkephalinase inhibitor. In order to obtain a parenterally-active inhibitor of cerebral aminopeptidases, the prodrug carbaphetiol, a readily hydrolyzable S-phenylcarbamoyl derivative of phethiol, was designed. Carbaphethiol (i.v.) elicited a rapid rise in mouse striatal level of Tyr-Gly-Gly, a characteristic extracellular metabolite of enkephalins. Carbapethiol alone and, even more, when associated with an enkephalinase inhibitor, exerted a potent naloxone-reversible antinociceptive activity. Carbaphethiol appears as the first parenterally-active inhibitor of cerebral aminopeptidases, potentially useful in neuropeptides degradation studies and as a pain-suppressing agent.

Aminopeptidases↗

Hypoalgesic action of bestatin analogues that inhibit central aminopeptidases, but not neutral endopeptidase.

Two analogues of the aminopeptidase inhibitor bestatin, Z 4212 (N-[(2S, 3R)-3-Amino-2-hydroxy-4-(4-methylsulphonyl-phenyl)-1-oxobutyl]-1- aminocyclopentanecarboxylic) and Z 1796 ((2S)-N-[(2S,3R)-3-Amino-2-hydroxy-4-(4-methylsulphonyl-phenyl)-1- oxobutyl]-L-leucine) were found to behave as hypoalgesics when intracerebroventricularly (i.c.v.) administered to mice in the hot-plate test. At high doses, Z 4212 was also found to reduce the pain threshold after intraventricular (i.v.) administration. Hypoalgesia induced by bestatin analogues was prevented by prior treatment with the opiate receptor blocker naloxone. Thiorphan, a potent inhibitor of NEP, was found to enhance the hypoalgesic effect of low doses of either Z 4212 or Z 1796. These results indicate that both the major opioid-degrading peptidases, i.e. aminopeptidases and neutral endopeptidase (NEP), are individually implicated in the hypoalgesia induced by peptidase inhibitors. In vitro studies showed that these new bestatin analogues readily inhibit aminopeptidases in membranes from mouse c. striatum whereas more than 1000 times the concentration was required for NEP to be blocked. Ex vivo experiments showed that, at variance with bestatin, the hypoalgesic action of Z 4212 or Z 1796 appeared to implicate central aminopeptidases but not NEP, so partially sparing the metabolism of other NEP substrates that might produce additional alterations (substance P and ANP). On the basis of the antitumour and immunomodulatory actions of bestatin, these new analogues might be potentially useful as mixed antitumour and hypoalgesic agents in malignancy.

Aminopeptidases↗

Metabolism of enkephalins in head membranes of the leech Theromyzon tessulatum by peptidases: isolation of an enkephalin-degrading aminopeptidase.

Metabolism of leucine and methionine enkephalins by enzyme preparations from head parts of the leech Theromyzon tessulatum was investigated. Leech homogenate degraded enkephalins by cleavage of the Tyr1-Gly2 and Gly3-Phe4 bonds. The Tyr1-Gly2-Gly3 was detected as a major metabolite when amastatin (aminopeptidase inhibitor) was present to prevent Tyr1-Gly2 breakdown. Around 50% of enkephalin-degrading activity was isolated in a 20000 x g membrane fraction and was shown to be almost entirely due to an aminopeptidase activity. This enzyme, a homodimer of approx. 70 kDa, has been purified to homogeneity by a combined approach including gel permeation and anion exchange chromatographies followed by reversed-phase HPLC. This enkephalin-degrading aminopeptidase is a typical integral membrane 'zincin' metalloprotein with an apparent k(m) of 30 microM, a specific activity of 12 nmol GGFM min-1 mg protein-1 and a catalytic efficiency (kcat/k(m)) of 46 x 10(6) mol-1 min-1. This enzyme is specifically inhibited by amastatin (IC50 = 0.5 microM), but not by bestatin and actinonin. In leech membranes, the other degrading activities performed at the same time were due to a neuropeptide-endopeptidase (NEP)-like enzyme attack, inhibited by phosphoramidon (IC50 = 0.1 microM) and in the case of the Met-enkephalin by a combined action of an angiotensin-converting-like enzyme, inhibited by captopril (IC50 = 0.2 microM) and the NEP-like enzyme. These two enzymes were previously isolated from head membranes of T. tessulatum and possess towards Met-enkephalin a catalytic efficiency (kcat/k(m)) of, respectively, 12 x 10(6) mol-1 min-1 and 78 x 10(6) mol-1 min-1. These findings constitute the first report in leeches on the nature and the sites of attack of the membrane peptidases involved in the metabolism of enkephalins and also the first biochemical evidence for a novel member of the aminopeptidase family.

Aminopeptidases↗

Inhibition of aminopeptidases by N-aminoacyl-O-4-nitrobenzoyl hydroxamates.

10 N-aminoacyl-O-4-nitrobenzoyl hydroxamates were investigated as potential inhibitors of aminopeptidases. While the metal-depending enzymes aminopeptidase M, aminopeptidase P and leucine aminopeptidase were inhibited reversibly by the compounds, the thiol enzyme cathepsin H was inhibited efficiently in time-dependent reactions according to its substrate specificity. N-phenylalanyl-O-4-nitrobenzoyl hydroxamate was shown to be most effective, exhibiting a second-order-rate constant of inhibition of 31,766 M-1 s-1.

Amino Acid Sequence↗

Possible exposure of leucine aminopeptidase on the cell surface of rabbit blood neutrophils by digitonin treatment.

The sensitivity of leucine aminopeptidase to diazotized sulfanilic acid (DSA) was compared between neutrophils from blood and peritoneal exudates of rabbit. The leucine aminopeptidase activity of peritoneal neutrophils was inhibited about 40% by DSA, whereas that of blood neutrophils was not inhibited at all by the reagent. However, pretreatment of blood neutrophils with digitonin in the presence and in the absence of divalent cations rendered leucine aminopeptidase sensitive to DSA to the same extent as peritoneal neutrophils, without affecting the cell viability and lactate dehydrogenase activity. These findings seem to indicate that the leucine aminopeptidase of blood neutrophils, which is normally inaccessible to DSA, was exposed on the cell surface by digitonin treatment.

Animals↗

Aminopeptidases of the rat prostatic complex and seminal vesicles: secretion and effect of castration.

Aminopeptidases hydrolysing L-leucine-beta-naphthylamine (LeuNA), L-alanine-beta-naphthylamide (AlaNA) and L-arginine-beta-naphthylamide (ArgNA) were studied in tissue homogenates of various parts of the rat prostatic complex and seminal vesicles after castration as well as in their 'cellular' and 'secretory' compartments. The 'secretory' fluids were also fractionated by chromatofocusing to reveal the enzymes possibly secreted by the glands. After castration the ventral prostate showed a temporary increase of LeuNA and a continuous rise of AlaNA hydrolysis, while ArgNA hydrolysis remained unaltered. Its 'secretory' fluid contained high hydrolysis rates of the substrates and chromatofocusing revealed two activity peaks with pI values of 6.2 and 5.4. In the lateral prostate no activity changes were recorded after castration. The 'secretory' fluid contained low enzyme activities and the fractionation showed one enzyme activity with pI 5.4. The posterior prostate, coagulating glands and seminal vesicles showed high hydrolysis rates of ArgNA with a rapid decline after castration. The 'secretory' fluid of posterior prostate contained rather low activity levels and in chromatofocusing two activity peaks with pI values of 6.2 and 5.4 were found. The 'secretory' fluid of coagulating gland contained a strong hydrolysis of ArgNA and chromatofocusing gave two activities with pI values of 5.4 and 5.1. The latter seemed to hydrolyse only ArgNA. The viscous secretion of the seminal vesicles contained very low aminopeptidase activities and chromatofocusing also showed a poor result. It is concluded that the various parts of the rat prostatic complex differ in their aminopeptidase composition. Only part of these enzymes appears to be secretory and controlled by testosterone. The major contribution to the seminal plasma aminopeptidase activity seems to derive from the ventral prostate and the coagulating gland.

Aminopeptidases↗

Inactivation of phagocytosis-stimulating activity of tuftsin by polymorphonuclear neutrophils. A possible role of leucine aminopeptidase as an ecto-enzyme.

The subcellular localization of the tuftsin-inactivating activity was studied using guinea-pig polymorphonuclear neutrophils and the following results were obtained. 1. The tuftsin-inactivating activity was present in the membrane fraction but not in the cytosol and the granular fractions. 2. Intact neutrophils inactivated tuftsin rapidly. However, when neutrophils were modified chemically by a poorly permeant reagent, diazotized sulfanilic acid, the tuftsin-inactivating activity decreased significantly without any inhibition of marker enzymes of cytosol, microsome, granules and mitochondria, suggesting that the tuftsin-inactivating activity is located on the plasma membrane as an ecto-enzyme. 3. When neutrophils were modified by diazotized sulfanilic acid at different concentrations, the tuftsin-inactivating activity of neutrophils was inhibited in proportion to the degree of inhibition of the activity of leucine aminopeptidase, an ecto-enzyme. 4, Hydrolysis of L-leucyl-beta-naphthylamide, a synthetic substrate of leucine aminopeptidase, was inhibited competitively by tuftsin. 5. Treatment of neutrophils with serine protease inhibitors affected neither tuftsin-inactivating nor leucine aminopeptidase activity at all, indicating no involvement of serine proteases, which is said to be located on the cell surface membrane, in the tuftsin-inactivation activity of neutrophils. The possibility was deduced from the above results that leucine aminopeptidase may act as a tuftsin-inactivating enzyme.

Animals↗

Prednisolone enhances aminopeptidase turnover in adult rat small intestine.

In adult male rats, fed prednisolone (0.75 mg/kg/day) for 7 days, brush border aminopeptidase activity was increased (P less than 0.001) by 106% compared to pair-fed controls. [14C]Tyrosine was injected intraperitoneally 16 h and [3H]tyrosine 6 h before death. The 3H/14C ratio was 1.79 +/- 0.21 (S.D.) in purified microvillus membranes from treated rats compared to 1.30 +/- 0.16 (P less than 0.01) in controls. Polyacrylamide gel electrophoresis of brush border membranes under denaturing conditions showed that the increased double-isotope ratio in membranes from treated rats was mainly in the high molecular weight protein subunits (greater than 80 kDa). Detergent-solubilized aminopeptidase was purified after in vivo labeling by protein A-Sepharose-antiaminopeptidase affinity chromatography. The 3H/14C ratio in aminopeptidase was 2.42 +/- 0.15 (P less than 0.05) in treated rats compared to 1.63 +/- 0.13 in controls. Over the experimental period steady-state isotope reutilization and protein labeling was demonstrated and there was no isotope metabolism. Total microvillus membrane lipid content was unaffected by prednisolone. We conclude that prednisolone increases brush border aminopeptidase activity by increasing enzyme turnover. Other high molecular weight brush border proteins were similarly affected.

Aminopeptidases↗

A membrane-bound aminopeptidase isolated from monkey brain and its action on enkephalin.

A membrane-bound aminopeptidase which cleaves the tyrosine-glycine bond of enkephalin was purified about 1600-fold from monkey brain. This aminopeptidase hydrolyzed Leu-enkephalin with a Km value of 35 microM and also hydrolyzed basic, neutral and aromatic amino acid beta-naphthylamides. An apparently homogeneous enzyme consisted of a single polypeptide chain with a molecular weight of approx. 100 000. The optimum pH was in the neutral region. From the analysis of the reaction products, only aminopeptidase activity was detected. The enzyme was inactivated by metal chelators, but the activity could be restored by the addition of divalent cations, such as Co2+, Mg2+ and Zn2+. Puromycin, bestatin and amastatin, which are aminopeptidase inhibitors derived from microorganism, showed strong competitive inhibition of the enzyme, the most potent being amastatin, with a Ki value of 0.02 microM.

Aminopeptidases↗

"Leucine aminopeptidase" (neutral arylamidase) in sheep sera: improved resolution with gradient gel electrophoresis.

Electrophoretic resolution of the heterogeneity of sheep serum "leucine aminopeptidase" is greatly improved by the use of gradients of acrylamide polymer, together with enzyme localisation involving L-alanyl beta-naphthylamide and cobaltous ion. The improved resolution contradicts an earlier claim of the existence of only two patterns of individual variation in the heterogeneity of sheep serum "leucine aminopeptidase", with one pattern completely dominant to the other. While the sheep enzyme is unusual among mammalian serum "leucine aminopeptidases" in its complex heterogeneity, it does conform to the typical mammalian pattern of codominant individual variation. The complexity of sheep serum "leucine aminopeptidase" is useful in the study of sheep evolution.

Animals↗

Endopeptidase-24.11 is striosomally ordered in pig brain and, in contrast to aminopeptidase N and peptidyl dipeptidase A ('angiotensin converting enzyme'), is a marker for a set of striatal efferent fibres.

Endopeptidase-24.11 (sometimes referred to as 'enkephalinase') is a key cell-surface enzyme in the metabolism of neuropeptides. A previous immunohistochemical study mapped the enzyme in pig brain and indicated a striosomal ordering of the enzyme within the striatum. This point has now been confirmed by staining adjacent sections for acetylcholinesterase (by histochemistry) and endopeptidase-24.11 (by an immunoperoxidase method). While there were some general similarities in the mapping of these two hydrolases, e.g. in the caudate-putamen, globus pallidus, olfactory tubercle, substantia nigra and striatonigral tract, there were differences in intensity and in the microscopic distribution, e.g. as in striosomes for which acetylcholinesterase was diminished. Two other membrane peptidases, peptidyl dipeptidase A ('angiotensin converting enzyme') and aminopeptidase N, were also mapped by the same immunohistochemical method. Peptidyl dipeptidase A had some similarities with endopeptidase-24.11, e.g. in its concentration within the striatal nuclei, but clear differences were also apparent, in particular the absence of staining of the former in the globus pallidus and olfactory tubercle. Immunostaining for aminopeptidase N, in contrast to the other peptidases, was observed as a diffuse staining throughout the gray matter. At the microscopic level, two important differences were that staining for aminopeptidase N and peptidyl dipeptidase A was very intense throughout the vasculature of the brain and that striatal efferent bundles of unmyelinated fibres staining positively for endopeptidase-24.11 were depleted of the other two peptidases. All three peptidases were identified in the pia mater. Thus, endopeptidase-24.11, unlike peptidyl dipeptidase A and aminopeptidase N, is a marker for a set of striatal efferent fibres in pig brain.

Aminopeptidases↗

Use of aminopeptidase M as a hypotensive agent in spontaneously hypertensive rats.

The present investigation determined that a commercially available aminopeptidase M (AmM, Sigma Chemical) can be utilized to lower blood pressure in normotensive and hypertensive rats. In vitro analyses indicated that the predominant peptidase present in this preparation was AmM; however, it also contained some aminopeptidase A (AmA) and less DAP IV. Although no DAP IV-mediated metabolism of angiotensin II (AII) or angiotensin III (AIII) was measured, both AmM and AmA metabolized AII and AIII. Upon further examination, it appeared that AII could be converted to AIII by either AmM or AmA; however, Arg was cleaved from the N-Terminal of AIII predominantly by AmM. The aminopeptidase inhibitors actinonin (AC), amastatin (AM), and bestatin (BE) effectively blocked the AmM-induced hydrolysis of the Asp-Arg bond of AII, and the Arg-Val bond of AIII. The activity of AmA was inhibited by AM but was relatively resistant to inhibition by AC and BE. Next, exogenous aminopeptidase replacement was employed in the anesthetized spontaneously hypertensive rat (SHR) in an attempt to temporarily correct a hypothesized brain deficiency of receptor-associated peptidases and lower blood pressure. Third-ventricle infusion of AmM produced significant drops in blood pressure and heart rate in both SHRs and Wistar-Kyoto normotensive controls. Pretreatment with AC or BE was particularly effective at interfering with the subsequent AmM-induced hypotensive effect, while AM was less effective. The central mechanisms underlying these effects are in need of further investigation; however, they are at least partially dependent upon the brain angiotensin system.

Aminopeptidases↗

Regional distribution of soluble and membrane-bound aminopeptidase activities in rat brain.

Soluble and membrane-bound aminopeptidase activities in 11 regions of the rat brain were assayed using L-Leucine-2-naphthylamide as a substrate. In addition, two metabolic enzymatic activities were compared: lactate dehydrogenase and aspartate aminotransferase. All enzymatic activities showed significant regional differences when the data were analyzed statistically. Soluble aminopeptidase and aspartate aminotransferase activities were significantly lower in cortical than in subcortical areas. Membrane-bound aminopeptidase activity levels were higher in cortical areas. Lactate dehydrogenase activities did not differ between cortical areas and the rest of the zones studied. However, although no wide regional differences were found for the other enzymatic activities, membrane-bound aminopeptidase varied markedly across brain regions: a fivefold difference was observed between zones such as parietotemporal cortex and medulla. The differential distribution of this enzymatic activity is consistent with the hypothesis that it could be responsible for the enzymatic inactivation of some neuroactive peptides.

Aminopeptidases↗

Aminopeptidase and cathepsin A activity in vitreous humor in relation to causes of death.

Brain autolysis happens rapidly, especially when environmental temperatures are high, and poses serious limitations for evaluating damage using morphologic methods. In the present study we have measured total proteins, cathepsin A and aminopeptidase activity in the vitreous humor in relation to cause of death and survival time. We have studied vitreous humor samples from 106 cadavers autopsied in the I.A.F. of Granada. The samples were classified according to causes of death as follows: myocardial infarction; hanging; other mechanical asphyxias; multiple trauma; craniocerebral trauma; other violent death; pulmonary functions; and other natural deaths. Total protein was measured by Lowry's method, and cathepsin A and aminopeptidase activity by the Bowen and Davison (1973) and Greenberg (1962) methods, respectively. Results are expressed in IU/l and in mIU/mg of protein. We found higher values of aminopeptidase and cathepsin A activity in groups with severe brain damage (craniocerebral trauma, multiple trauma, etc.) and lower values in groups of natural deaths. We believe, therefore, that aminopeptidase activity in vitreous humor may be a useful parameter for evaluating brain damage.

Aminopeptidases↗

In vitro UVB irradiation of bovine crystalline lens causes cell damage and reduction in leucine aminopeptidase activity in lens epithelium.

Past studies in our laboratory have shown that low levels of UVB can cause changes in the optical properties of organ cultured ocular lenses, while other research has shown that in vitro UV radiation causes decreases in leucine aminopeptidase activity in homogenates of crystalline lens material. Therefore we have investigated whether there is a relationship between such decreases in enzyme activity and changes in lens optics and structure. Organ cultured bovine lenses were irradiated with low doses of UVB, and lens optics, histology and leucine aminopeptidase activity (leucine beta-naphthylamide hydrolysis at pH 7.5) were assessed daily. Lenses irradiated with 0.1 J cm-2 UVB showed a decrease of about 30% in leucine aminopeptidase activity 1 h after irradiation, while changes in lens optics were not observed until at least 24 h after irradiation. Histological examination of the lens anterior epithelium revealed changes in epithelial cells ranging from pyknotic nuclei to large areas of cell fragmentation. The results of this study suggest that a decrease in soluble aminopeptidase activity in lens epithelial cells may be a direct result of the epithelial cell damage rather than an effect of UVB on the enzyme per se.

Animals↗

Protease (PrA and PrB) and prolyl and arginyl aminopeptidase activities from Debaryomyces hansenii as a function of growth phase and nutrient sources.

The effects of nutrient sources and growth phase of Debaryomyces hansenii on the protease (PrA and PrB) and aminopeptidase (prolyl-[PAP] and arginyl-[AAP] aminopeptidases) activities were investigated. These activities were also monitored during growth on a whole sarcoplasmic muscle protein extract (WSPE) and on an equivalent medium but free of compounds under 10 kDa (SPE>10 kDa). The levels of specific protease and aminopeptidase activities were higher when cells were grown in urea and dipeptides than when grown in either ammonium or free amino acids as nitrogen sources. The level of each aminopeptidase (PAP or AAP) activity was preferentially induced by its own substrate (ProLeu or LysAla), suggesting a role in the utilization of exogenous peptides. Higher specific activities for all proteolytic enzymes were detected when using acetate as carbon source. The time course experiments carried out on urea or sarcoplasmic protein-containing media revealed an increase in all activities during transition and advanced stages of stationary phase of growth. In muscle protein extracts, the absence of low molecular mass nutrients (SPE>10 kDa) initially induced the production of PrA, PrB, and AAP activities, possibly involved in the breakdown of muscle oligopeptides.

Aminopeptidases↗

Identification and characterisation of a leucine aminopeptidase from the hard tick Haemaphysalis longicornis.

Aminopeptidases responsible for blood digestion have yet to be identified in haematophagous ticks. We report here the cloning and molecular characterisation of a cDNA encoding leucine aminopeptidase, a member of the M17 cytosolic aminopeptidase family, from the hard tick Haemaphysalis longicornis (HlLAP). Endogenous HlLAP was detected in the soluble fraction of adult tick extracts by immunoblotting. Immunohistochemical studies demonstrated that endogenous HlLAP expression mainly took place in the cytosol of midgut epithelial cells. Furthermore, expression of HlLAP was induced by a blood-feeding process. A functional recombinant HlLAP expressed in Escherichia coli efficiently hydrolyses synthetic substrates for aminopeptidase, a leucyl (with the Km value 0.19 +/- 0.011 mM and Vmax value 157.2 +/- 3.17 nmol/min/mgprotein) and a methionyl substrate (with the Km value 0.12+/-0.0052 mM and Vmax value 171.9 +/- 2.31 nmol/min/mgprotein). Enzyme activity was found to be optimum at pH 8 and 35 degrees C. The recombinant HlLAP enzyme activity was strongly dependent on metal divalent cations, Mn2+, and was inhibited by bestatin. These results indicate that HlLAP play an important role for host's blood digestion process.

Amino Acid Sequence↗

Expression and localization of aminopeptidase N, neutral endopeptidase, and dipeptidyl peptidase IV in the human placenta and fetal membranes.

OBJECTIVE: Our purpose was to determine the distribution of membrane-bound cell surface peptidases, namely aminopeptidase N, neutral endopeptidase, and dipeptidyl peptidase IV in the human placenta and fetal membranes. STUDY DESIGN: Frozen tissue sections of the first-trimester chorionic villi, term placentas, and term fetal membranes were stained by indirect immunofluorescence with specific monoclonal antibodies. RESULTS: In the first trimester chorionic villi cytotrophoblasts expressed both neutral endopeptidase and dipeptidyl peptidase IV, but syncytiotrophoblasts expressed only neutral endopeptidase. Stromal cells in the chorionic villi expressed the three peptidases at various intensities. In the term placentas villous syncytiotrophoblasts expressed neutral endopeptidase weakly, and the villous stromal cells expressed large amounts of both aminopeptidase N and dipeptidyl peptidase IV but neutral endopeptidase weakly or faintly. In the term fetal membranes amniotic epithelial cells and chorion laeve expressed both neutral endopeptidase and dipeptidyl peptidase IV. Decidual cells in the decidua parietalis moderately or highly expressed aminopeptidase N. CONCLUSION: Three peptidases, aminopeptidase N, neutral endopeptidase, and dipeptidyl peptidase IV, are expressed by different cell populations in the human placenta and fetal membranes, suggesting their respective and important roles at the maternofetal interface.

Aminopeptidases↗