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Biomedical subjects

V Mutt

Publications and source records attributed to V Mutt.

At least 145 records · Page 8Linked to original sources

[Effect of vasoactive intestinal peptide (VIP) on prolactin secretion in man].

The effect of Vasoactive Intestinal Peptide (VIP) on plasma prolactin has been tested in two human subjects. When perfused at low doses (few micrograms per minute), VIP increased the prolactin levels in both sexes, the response being more important in Woman (3.5-fold over basal) than in Man (2-fold). VIP may be a physiological regulator of prolactin release in humans. This peptide may be a specific tool for the clinical investigation of the prolactin function.

Adult↗

A qualitative comparison of canine plasma gastroenteropancreatic hormone response to bombesin and the porcine gastrin-releasing peptide (GRP).

The effect on plasma gastroenteropancreatic hormone levels on infusing the porcine gastrin-releasing peptide and bombesin into dogs demonstrated no qualitative difference in the spectrum of activity of the two peptides. Sustained elevation in plasma immunoreactive gastrin, pancreatic polypeptide, enteroglucagon, gastric inhibitory polypeptide, pancreatic glucagon and transient elevations in plasma insulin were seen during infusions of both peptides. The similar spectrum of activities and the structural homology between the two peptides suggests that the porcine gastrin releasing peptide is the porcine counterpart of the amphibian peptide bombesin.

Animals↗

Bioactive enteroglucagon (oxyntomodulin): present knowledge on its chemical structure and its biological activities.

A bioactive form of enteroglucagon has been isolated from porcine jejuno-ileum according to its glucagon-like effect in liver. Enzymatic digestion followed by HPLC, dansylation and partial sequence analysis strongly suggests that this peptide contains the glucagon molecule (1--29) elongated at the C-terminal end by the octapeptide Lys-Arg-Asn-Lys-Asn-Ile-Ala-COOH and possibly modified in the N-terminal region. A specific action of bioactive enteroglucagon, increase in cAMP, has been found in the acid-secreting fundic part of the rat stomach. The term "oxyntomodulin" is therefore proposed to describe this peptide.

Amino Acid Sequence↗

Additional observations on cholecystokinin and the vasoactive intestinal polypeptide.

During the isolation of cholecystokinin from natural sources, as well as during its bioassay, inactivation by oxidation can cause problems. We have attempted to reactivate oxidized CCK by reduction at room temperature with N-methylmercaptoacetamide, recently stated to be the reducing agent of choice for the reduction of methionine sulfoxide to methionine [22]. We have not yet been unequivocally successful in these attempts, but the results seem promising. In the case of oxidized VIP and of oxidized tetragastrin, reduction with N-methylmercaptoacetamide does seem to result in reconversion of the peptides to their preoxidation states, as evidenced by thin layer chromatography on silica gel. We have, together with A. Holmgren and A. Ehrnberg, made observations suggesting the presence in rate liver cytosol of an enzyme which catalyzes the reductive reactivation of oxidized CCK with reduced thioredoxin as the immediate hydrogen donor. In collaboration with A. Light, Purdue University, we have found that enterokinase cleaves 39-CCK and 33-CCk with release of 8-CCK and the tetrapeptide immediately preceding it in the peptide chain. The conversion of 39-CCK to 33-CCK by the action of dipeptidyl amino-peptidase I has been confirmed.

Animals↗

Isolation and characterization of the intestinal peptide porcine PHI (PHI-27), a new member of the glucagon--secretin family.

A new peptide, designated PHI (PHI-27), has been discovered and isolated from porcine upper intestinal tissue by using a chemical method for finding peptide hormones and other active peptides. The method is based on chemical detection of peptides having the cOOH-terminal alpha-amide structure, which is an unusual chemical feature of some peptide hormones and active peptides. Porcine PHI was found in the intestinal extract by the presence of its COOH-terminal isoleucine amide structure. It consists of 27 amino acid residues and has the following amino acid sequence: His-Ala-Asp-Gly-Val-Phe-Thr-Ser-Asp-Phe-Ser-Arg-Leu-Leu-Gly-Gln-Leu-Ser-Ala-Lys -Lys-Tyr-Leu-Glu-Ser-Leu-Ile-NH2. The remarkable sequence homology of PHI to the vasoactive intestinal peptide, secretin, glucagon, and gastric inhibitory polypeptide indicates that this peptide is a member of the glucagon-secretin family. Several biological activities of PHI, similar to those of vasoactive intestinal peptide and secretin, have been reported.

Amino Acid Sequence↗

Actions of a newly isolated intestinal peptide PHI on pancreatic acini.

In dispersed acini from guinea pig pancreas, PHI, a peptide recently isolated from porcine intestine and found to contain 27 amino acids, inhibited binding of 125I-vasoactive intestinal peptide (125I-VIP), increased cellular cAMP, and stimulated amylase secretion. The increase in amylase secretion caused by a maximally effective concentration of PHI in combination with 8-bromo-cAMP, VIP, or secretin was the same as that caused by PHI alone. In contrast, the increase in amylase secretion caused by PHI plus bombesin, carbachol, or the C-terminal octapeptide of cholecystokinin was significantly greater than the sum of the increase caused by each secretagogue acting alone. From the abilities of PHI to inhibit binding of 125I-VIP, to increase cellular cAMP, and to increase amylase secretion, the apparent affinity of PHI for the VIP-preferring receptors on pancreatic acinar cells is approximately 25 times less than that of VIP but 10 times greater than that of secretin. From the ability of PHI to increase cellular cAMP, the apparent affinity of PHI for the secretin-preferring receptors on pancreatic acinar cells is approximately 300 times less than that of secretin but equal to that of VIP.

Amylases↗

Sorbin, a peptide contained in porcine upper small intestine which induces the absorption of water and sodium in the rat duodenum.

A fraction increasing water and sodium absorption in rat duodenum was detected in the material obtained at an early stage of purification of the hitherto isolated duodenal hormones. In Wistar rats, duodenal loops were made in situ and filled with a solution containing 0.138 mM NaCl, with 14C PEG and 22Na as markers; the final content was collected after 1 h and the movements of water and Na measured. In contrast to secretin, cholecystokinin, and somatostatin, which induced duodenal secretion, and with pentagastrin, which induced duodenal absorption and stimulated acid secretion, this fraction induced duodenal absorption f Na and water without stimulating acid secretion. The fraction was obtained by chromatography of a concentrate of intestinal peptides in 0.2 M acetic acid on Sephadex G25 (fine), and its active component was found to be methanol-soluble at pH4 and insoluble at pH7.5. It was eluted from carboxymethylcellulose 22 with 0.04 M ammonium bicarbonate and gel filtration of Sephadex G50 *fine), resulting in a tenfold increase in activity. Incubation with chymotrypsin suppressed the biological activity, indicating a peptidic nature. The substance displayed biological and radioimmunological properties distinct from those of the gastrointestinal hormones. Particularly, no cross-reactivity was found with gastrin, prolactin, and angiotensin, which are known to increase intestinal absorption. It therefore seems possible that the activity described is due to a peptide that has as yet not been isolated. The name 'sorbin' is proposed for this active principle.

Animals↗

Further purification of gastrozymin and spectrum of activities.

Gastrozymin differed from secretin in several chromatographic and solubility characteristics. However, it showed a spectrum of activities which resembled those of secretin, including stimulation of pepsin, hepatic bile secretion, and pancreatic bicarbonate secretion. This study revealed differences in the quantitative ratios of these activities when induced by secretin or gastrozymin. In particular, if the ratio of the stimulation of pepsin secretion to that of pancreatic juice bicarbonate was 1:1 for secretin, it was 4:1 for gastrozymin. Further purification will show whether all these effects are induced by one molecule or by several peptides. It will also determine whether there is a structural relationship between gastrozymin and secretin or its precursor(s).

Animals↗

Isolation of two novel candidate hormones using a chemical method for finding naturally occurring polypeptides.

Naturally occurring peptides with biological actions have in most cases been detected by observing their biological activities in crude extracts and their isolation has been followed using bioassays. As a complement to the classical biological detection systems, we have proposed a chemical detection system based on fragmentation of peptides in tissue extracts followed by identification of certain of these peptide fragments having distinct chemical features. One such chemical feature is the C-terminal amide structure which is characteristic of many biologically active peptides. We have devised a chemical assay method for peptides having such a structure and have found several previously unknown peptide amides in procine upper small intestinal tissues. We report here the isolation and characterization of two of them, designated PHI and PYY. PHI is related to secretin, vasoactive intestinal polypeptide (VIP, glucagon and gastric inhibitory polypeptide (GIP); PYY is related to the pancreatic polypeptide and to neurotensin. Both peptides exhibit biological activities and appear to be present not only in the intestine but also in brain.

Amides↗