Search PubMed⌕ Search

Biomedical subjects

V Mutt

Publications and source records attributed to V Mutt.

At least 37 records · Page 2Linked to original sources

PEC-60 increases dopamine but not GABA release in the dorsolateral neostriatum of the halothane anaesthetized rat. An in vivo microdialysis study.

The effect of striatal perfusion with the intestinal peptide PEC-60 on endogenous dopamine (DA) and gamma-aminobutyric acid (GABA) release in the dorsolateral striatum and GABA release in the globus pallidus was monitored using in vivo microdialysis in the halothane anaesthetized rat. The results show that PEC-60 (100 nM) increases DA release in the dorsolateral striatum without influencing GABA release in the dorsolateral striatum or in the globus pallidus. In addition, PEC-60 failed to influence the extracellular striatal 3,4-dihydroxyphenylacetic acid (DOPAC) and homovanillic acid (HVA) levels. The PEC-60 induced increase in striatal DA was abolished by the addition of tetrodotoxin (1 microM) to the perfusion medium. These data suggest that PEC-60 plays a role in modulating striatal DA release but not DA metabolism and that this effect is primarily targeted on the presynaptic DA terminals of the nigrostriatal DA pathway rather than on the postsynaptic striatopallidal GABA projection neurons in the dorsolateral striatum.

3,4-Dihydroxyphenylacetic Acid↗

Solution structure and dynamics of PEC-60, a protein of the Kazal type inhibitor family, determined by nuclear magnetic resonance spectroscopy.

The three-dimensional solution structure of porcine PEC-60, a 60 amino acid residue protein of the Kazal type family of proteinase inhibitors, was determined by nuclear magnetic resonance (NMR) spectroscopy. The structure determination is based on nearly complete 1H, 13C and 15N resonance assignments including stereospecific 1H resonance assignments for 40 pairs of methylene protons and isopropyl methyl groups. The stereospecific resonance assignments of the beta-protons were supported by heteronuclear long-range correlation experiments recorded at natural 13C and 15N isotopic abundances. A group of 20 conformers were calculated using the experimentally derived NMR constraints with the program DIANA, and energy-minimized in a 4 A water shell using the program OPAL. The average of the root-mean-square deviations relative to the mean structure of the 20 conformers selected to represent the solution structure of PEC-60 is 0.55 A for the backbone atoms of residues 6 to 10 and 24 to 60. Disordered conformations are observed for the amino-terminal pentapeptide and the polypeptide segment containing residues 11 to 23. The NMR structure confirms the structural similarity of PEC-60 to the Kazal type family of proteinase inhibitors which had been previously suggested on the basis of amino acid homology. The well-defined part of PEC-60 contains a short three-stranded anti-parallel beta-sheet involving the residues 27 to 29, 33 to 35 and 53 to 56 with a beta-bulge at residue 55, a type I turn comprising residues 29 to 32, and an alpha-helix involving the residues 37 to 48. T1(13C) relaxation measurements of the alpha-carbons and linewidth measurements of the amide proton signals indicate substantially increased mobility on the pico- to nanosecond time-scale for the amino-terminal pentapeptide as well as within the loop comprising residues 11 to 23. The structure of PEC-60 is compared to the X-ray crystal structures of homologous Kazal type proteinase inhibitors and the dynamic properties of PEC-60 are discussed with respect to the observed lack of any substantial trypsin inhibiting activity.

Amino Acid Sequence↗

Activation of Na,K-ATPase by an endogenous peptide, PEC-60.

Several peptidic and non-peptidic factors can modulate Na,K-ATPase activity, among them mainly inhibitors of this enzyme, ouabain being the most effective. In a very few cases only, activation of Na,K-ATPase by endogenous factors has been recorded. We have investigated the effect on Na,K-ATPase of a novel regulatory peptide, PEC-60, recently isolated from porcine intestine. Various biological effects have been described for PEC-60 in different tissues, including brain. We have found that PEC-60 caused a dose-dependent activation of Na,K-ATPase from rat brain frontal cortex, whereas the carboxymethylated form of PEC-60 or other hormonal peptides had no effect. The maximal value of activity reaches up to 125% at close to micromolar concentrations of PEC-60 and the dependence can be described with a bell-shaped curve, indicating a complex mechanism for the interaction. The activation of the enzyme by PEC-60 is apparently related to Na(+)-dependent steps of the Na,K-ATPase system. The kinetic parameters for K(+)-phosphatase were unaffected. Moreover, the activating effect was enhanced by preincubation at low concentrations of ATP that transform the enzyme into the Na(+)-form. Due to the crucial physiological role of Na,K-ATPase, its activity has to be finely controlled and thus PEC-60 may be one of the endogenous factors that regulate this enzyme.

Animals↗

A porcine gut polypeptide identical to the pancreatic hormone PP (pancreatic polypeptide).

A peptide hormone has been isolated from porcine intestine. Its primary structure was found to consist of 36 amino acid residues in a sequence identical to that of the porcine pancreatic polypeptide, previously not isolated from intestines or a tissue other than pancreas. The gut polypeptide significantly suppresses glucose-induced insulin secretion in vitro. Using an immunohistochemical technique, we also identified cells in the porcine gastrointestinal tract that were immunoreactive with pancreatic polypeptide. The immunoreactivity disappeared after absorption with the isolated gut polypeptide or synthetic human pancreatic polypeptide.

Animals↗

Characterization of porcine intestinal cytochrome c oxidase subunit VIIc, purified by affinity chromatography.

Cytochrome c oxidase subunit VIIc was isolated from porcine intestine. Its amino acid sequence, starting at position 17 of the predicted precursor peptide, differs at eight positions from the human form, two positions from the bovine and at one from the mouse form. Although the peptide does not contain cysteine, it was bound specifically to thiopropyl-Sepharose 6B. The developed method makes it possible to obtain this protein in high purity and large quantities for studies of its putative modulatory role in the catalytic actions of the whole enzyme complex.

Amino Acid Sequence↗

A novel 77-residue peptide from porcine brain contains a leucine-zipper motif and is recognized by an antiserum to delta-sleep-inducing peptide.

In 1977 a nonapeptide, called delta-sleep-inducing peptide (DSIP) was characterized in rabbit cerebral venous blood plasma during thalamic stimulation to induce sleep. Evidence for the existence of DSIP in the central nervous system and in numerous peripheral organs of various mammalian species has been obtained using immunochemical techniques. Later findings have revealed the existence of large forms of DSIP-like immunoreactivity. We decided to investigate the molecular identity of such large forms of DSIP-like immunoreactivity by direct isolation. We have purified and characterized using amino acid analysis, sequencing, mass spectrometry and radioimmunoassay a 77-residue peptide, denoted DIP (DSIP-immunoreactive peptide), from an acid extract of porcine brain. DIP is recognized by an antiserum raised against synthetic rabbit DSIP. The amino acid sequence of DIP, however, is not related to that of DSIP, but it contains a putative leucine-zipper motif, a proline/glutamic-acid-rich domain, three potential phosphorylation sites and exhibits an acetylated N-terminus. The N-terminal but not the C-terminal part of the newly isolated peptide shares clear homology with the sequence of a protein induced by transforming growth factor beta 1 and other growth factors in mouse osteoblastic cells. DIP is also structurally similar to a baculoviral protein p10. The function of DIP remains unclear but its involvement in transcriptional regulation is probable.

Amino Acid Sequence↗

Isolation of three antibacterial peptides from pig intestine: gastric inhibitory polypeptide (7-42), diazepam-binding inhibitor (32-86) and a novel factor, peptide 3910.

Two antibacterial peptides, cecropin P1 and PR-39 (39-residue proline/arginine-rich peptide), from the upper part of pig small intestine have previously been isolated and characterized. We have now continued our search for antibacterial peptides in different side fractions generated during the isolation of intestinal hormones. Starting from one such fraction and monitoring activity against Bacillus megaterium, we isolated three homogeneous peptides by three consecutive chromatographic steps. Amino acid sequence analysis in combination with mass spectrometry identified two of the peptides as gastric inhibitory polypeptide (7-42) [GIP(7-42)] and diazepam-binding inhibitor (32-86) [DBI(32-86)], derived from factors already known. However, intact GIP and DBI have hardly any antibacterial activity by themselves. The third peptide constitutes a previously unknown structure, designated as peptide 3910 from its molecular mass. All three peptides showed good activity against B. megaterium. In addition, GIP (7-42) showed some activity against Streptococcus pyogenes and an Escherichia coli mutant with a defect in its outer membrane.

Amino Acid Sequence↗

Chemical assay for cyst(e)ine-rich peptides detects a novel intestinal peptide ZF-1, homologous to a single zinc-finger motif.

Cysteine is a relatively infrequent constituent of proteins, which in its thiol or half-cystine form contributes in a special manner to their three-dimensional structure. We show that in small cystine-containing peptides, the Cys content is always higher than the average in proteins in general. This observation makes it possible to search for new peptides by monitoring only their Cys content. We have developed a chemical assay for the detection of cyst(e)ine-rich peptides in tissue extracts. Using this assay we have isolated from porcine intestine a novel cysteine-rich peptide, which we denote ZF-1. ZF-1 is homologous to a single zinc-finger motif and has an acetylated N-terminus. This is the first demonstration of the existence of a processed single zinc-finger-like structure. The structural homology of ZF-1 to the zinc-finger motif, present in several metal-binding and DNA-binding proteins, suggests an important role of this peptide in metal transport and/or modulation of gene expression.

Amino Acid Sequence↗

Molecular cloning of PEC-60 and expression of its mRNA and peptide in the gastrointestinal tract and immune system.

The peptide PEC-60, structurally related to the pancreatic secretory trypsin inhibitor, inhibits glucose-induced insulin secretion. Here we report on the structure of a cDNA clone from pig duodenum encoding PEC-60. The cDNA encodes a 86-amino acid long precursor protein containing a 26-amino acid signal sequence, implying that the mature PEC-60 peptide is secreted from cells. Analysis of porcine duodenum demonstrated a high expression of a 0.6-kilobase long PEC-60 mRNA in this tissue, as well as the presence of strong PEC-60-like immunoreactivity in the cytoplasm of the majority of the goblet cells of the epithelium. High levels of PEC-60 mRNA were also found in the bone marrow and the peripheral blood and moderate levels in the spleen. A strong PEC-60-like immunoreactivity was localized in the monocytes of peripheral blood. Radioimmunoassay revealed high levels of pig PEC-60-like immunoreactivity in pig plasma suggesting that the PEC-60 peptide is efficiently released from cells. These findings imply that the gastrointestinal peptide PEC-60 is formed, stored, and secreted from monocytes present within the bone marrow and in the peripheral blood, indicating a role of the PEC-60 peptide in the immune system in addition to its function as a gastrointestinal peptide.

Amino Acid Sequence↗

Solubilization and partial purification of somatostatin-28 preferring receptors from hamster pancreatic beta cells.

Somatostatin-28 (SRIF-28) preferring receptors were solubilized from hamster beta cell insulinoma using the zwitterionic detergent 3-[(3-cholamidopropyl) dimethylammonio]-1-propanesulfonate. The binding of the iodinated [Leu8-D-TRP22-Tyr25]SRIF-28 analog (referred to as 125I[LWY] SRIF-28) to the solubilized fraction was time-dependent, saturable, and reversible. Scatchard analysis of equilibrium binding data indicated that the solubilized extract contained two classes of SRIF-28-binding sites: a high affinity site (Kd = 0.3 nM and Bmax = 1 pmol/mg protein) and a low affinity site (Kd = 13 nM and Bmax = 4.7 pmol/mg protein). The binding of 125I[LWY]SRIF-28 to solubilized SRIF-28 receptors was sensitive to the GTP analog guanosine-5'-O-thiotriphosphate, suggesting that receptors are functionally linked to a G-protein. By anion-exchange chromatography of the solubilized extract followed by chromatography on wheat germ agglutinin, a 46-fold purification of SRIF-28 receptors was obtained. At this stage of purification, only high affinity sites were found (Kd = 1 nM) and the GTP effect was not maintained. A specific protein of 37 kDa was identified by sodium dodecyl sulfate-polyacrylamide gel electrophoresis after photoaffinity labeling. We suggest that this protein is the putative SRIF-28 receptor or a subunit thereof.

Animals↗

Protecting effects of vasoactive intestinal polypeptide on lymphocytes against metal toxicity.

The hormonal neuropeptides calcitonin gene-related peptide (CGRP), cholecystokinin (CCK), neuropeptide Y (NPY) and vasoactive intestinal peptide (VIP), were investigated for a potential protective effect on thymocytes after a toxic dose of nickel sulfate, giving an inhibition of DNA synthesis. There was a statistically significant increase in the synthesis of DNA from the level caused by nickel sulfate, with VIP, 10(-4)-10(-5) mol/l, while the slightly stimulating effects obtained with CGRP, CCK and NPY, were statistically non-significant. This indicates that VIP, at least as pharmacological concentrations, might have protective effects on lymphocytes against metal toxicity.

Cells, Cultured↗

Amino acid sequence of PR-39. Isolation from pig intestine of a new member of the family of proline-arginine-rich antibacterial peptides.

We recently isolated from pig intestine and characterized a 31-residue antibacterial peptide named cecropin-P1 with activity against Escherichia coli and several other Gram-negative bacteria. The isolation involved a number of batch-wise steps followed by several chromatography steps. The continued investigation of these antibacterial peptides has now yielded another antibacterial peptide with high activity against both E. coli and Bacillus megaterium. Amino acid analysis showed a very high content of proline (49 mol%) and arginine (26 mol%), an intermediate level of phenylalanine and low levels of leucine, tyrosine, isoleucine, and glycine. The primary structure was determined by a combination of Edman degradation, plasma desorption mass spectrometry and C-terminal sequence analysis by carboxypeptidase Y degradation using capillary zone electrophoresis for detection of liberated residues. The calculated molecular mass was 4719.7 Da, which is in excellent agreement with 4719 Da obtained by plasma desorption mass spectrometry. The peptide was named PR-39 (proline-arginine-rich with a size of 39 residues). The lethal concentration of the peptide was determined against six Gram-negative and four Gram-positive strains of bacteria.

Amino Acid Sequence↗

Isolation and characterisation of porcine sorbin.

Sorbin has been isolated from extracts of porcine upper intestine, and the biological activity in absorbing water and electrolytes utilized to monitor the purification procedure. Pure sorbin was obtained in a yield of about 1 mg/Mg boiled intestine. The protein chain has 153 amino acid residues and the primary structure was determined by analyses of CNBr-cleaved fragments and four enzymatic digests. The protein has a free N-terminal Met and an amidated C-terminal Ala. No structural similarity was observed with other known proteins in data bases, but several segments have special properties and the C-terminal half is rich in Pro and Arg.

Absorption↗

Chemical detection of natural peptides by specific structures. Isolation of chicken galanin by monitoring for its N-terminal dipeptide, and determination of the amino acid sequence.

We have isolated galanin from chicken intestine by monitoring for the N-terminal glycyltryptophan, which constitutes a conserved part characteristic of the peptide. This monitoring method complements that previously used for C-terminal amide detection and proves chemical monitoring of specific structures to be useful. The isolation allowed determination of the structure, which was found to be unidentical to any of the known galanins. However, N-terminal pentadecapeptide parts are identical, showing this segment to be of special importance. In addition to common substitutions at positions 16, 18, 23, 26 and 29, chicken galanin has phenylalanine at position 28, where all known mammalian galanins have leucine.

Amino Acid Sequence↗

The preparation of biotinyl-epsilon-aminocaproylated forms of the vasoactive intestinal polypeptide (VIP) as probes for the VIP receptor.

Vasoactive intestinal polypeptide (VIP) was biotinyl-epsilon-aminocaproylated using sulfosuccinimidyl-6-(biotinamido) hexanoate thereby producing a series of products that were separated by high performance liquid chromatography (HPLC). Seven VIP-derivatives were isolated and the number and location of biotinyl-epsilon-aminocaproylation was determined by a combination of enzymatic degradation and plasma desorption mass spectrometry (PDMS). Receptor binding experiments with the VIP biotinyl-epsilon-aminocaproylated derivatives revealed IC50 values for the monobiotinyl-epsilon-aminocaproylated peptides that were 1.3-3.2 times higher than for natural VIP. All isolated biotinyl-epsilon-aminocaproylated derivatives possess VIP-like bioactivity as shown by an assay measuring pancreatic juice secretion in cat, VIP biotinyl-epsilon-aminocaproylated in position lysine being almost equipotent with natural VIP.

Amino Acid Sequence↗

Immunohistochemical localization of porcine diazepam-binding inhibitor (DBI) to rat endocrine pancreas.

The occurrence of diazepam-binding inhibitor (DBI), isolated and characterized from porcine upper intestine, was examined in the pancreas of Sprague-Dawley albino rats using indirect immunofluorescence. The polypeptide was found in the endocrine Langerhans islets and, utilizing double-labelling controls, it was shown to be present within the peripherally located glucagon-containing cells. Regulation of islet hormone production may therefore be under DBI control.

Animals↗