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Crystallization and preliminary X-ray studies of human erythrocyte acylpeptide hydrolase.

Crystals of acylpeptide hydrolase suitable for structure determination have been obtained. This enzyme removes the N-terminal formyl or acetyl group together with the first amino acid residue from N-terminal blocked peptides including bioactive peptides. One set of crystals, which diffract to 2.2 A, are in space group P2 with cell dimensions a = 118.6 A, b = 82.3 A, c = 182.1 A, beta = 91.6 degrees. The search for suitable heavy-atom derivatives is underway.

Amino Acid Sequence↗

Sensitive determination of N-terminal prolyl peptides by high-performance liquid chromatography with laser-induced fluorescence detection.

Short-chain peptides with an N-terminal proline (Pro-Gly, Pro-Ile, Pro-Gly-Gly, Pro-Leu-Gly-NH2, and Pro-Thr-Pro-Ser-NH2, etc.) were determined by HPLC with laser-induced fluorescence (LIF) detection. The peptides were quantitatively labelled with 4-(N,N-dimethylaminosulphonyl)-7-fluoro-2,1,3-benzoxadiazole (DBD-F) at 50 degrees C after 1 h in a 0.1 M borax (pH 9.3)-acetonitrile mixture. The rate of reaction decreases inversely with the molecular weight of the peptides. The mean value of fluorescent emission of the resulting DBD-peptides and DBD-peptide amides was 573 nm (excitation, 453 nm). The proline peptides, including bioactive peptides such as Pro-Leu-Gly-NH2 (release inhibitor of melanocyte-stimulating hormone), Pro-Thr-Pro-Ser-NH2 (IgA1 proteinase inhibitor) and Pro-Asp-Val-Asp-His-Val- Phe-Leu-Arg-Phe-NH2 [FMRF amide-like (Phe-Met-Arg-Phe-NH2) neuropeptide], were well separated by reversed-phase HPLC with water-acetonitrile containing 0.1% trifluoroacetic acid (TFA). The acetonitrile concentration in the mobile phase had a profound effect upon the retention times, and the capacity factors (k') were dependent on the hydrophobicity of the peptides. The structure of DBD-Pro-Leu-Gly-NH2 was identified by LC-atmospheric pressure chemical ionization MS. The chromatographic detection limits (S/N = 2) of the peptides with a 15-mW argon-ion laser at 488 nm were in the 6-28 fmol range. The detection limits were improved to 2-5 fmol with a microbore column. The detectability was two orders of magnitude higher than with a conventional fluorescence detector using xenon arc lamp.

Amino Acid Sequence↗

Dipeptidyl-peptidase IV secreted by Aspergillus fumigatus, a fungus pathogenic to humans.

A dipeptidyl-peptidase IV was purified from the culture medium of the human-pathogenic fungus Aspergillus fumigatus. The enzyme has an apparent molecular mass of 95 kDa and contained approximately 10 kDa of N-linked carbohydrate. This glycoprotein is antigenic and has all characteristics of the class IV dipeptidyl-peptidases: removal of Xaa-Pro and to a lesser extent Xaa-Ala dipeptides from the N termini of peptides, including bioactive peptides such as neuropeptide Y, [des-Arg1] bradykinin, and glucagon-like peptide 1, activity at neutral pH, and presence in the amino acid sequence of the Gly-X-Ser-X-Gly consensus motif of the serine-hydrolases and the putative catalytic triad (Ser613, Asp690, His725) of the dipeptidyl-peptidases. Moreover, the last 200 amino acids displayed 60 to 65% similarity with the other dipeptidyl-peptidases IV from rat, mouse, human, and yeast. However, unlike the other dipeptidyl-peptidases, the dipeptidyl-peptidase IV of A. fumigatus is a secreted enzyme with a cleavable signal peptide. Expression of a recombinant dipeptidyl-peptidase IV of A. fumigatus has been attained in the yeast Pichia pastoris.

Amino Acid Sequence↗

Identification of whey proteins in tradional Bulgarian yougurt.

Functional foods hold a great promise for future trends in human nutrition. Consumption of milk and milk products have a pronounced probiotic effects together with the expected modification of allergenic properties of milk due to the process of fermentation. The proteolytic system of lactic acid bacteria consists a cell wall bound proteinase and several intracellular peptidases, and can contribute to the liberation of bioactive peptides. Food-derived bioactive peptides are claimed to be health enhancing components which can be used for functional food. In our study we focused our attention on beta-lactoglobulin and alpha-lactalbumin in early stages of yogurt fermentation of traditional Bulgarian products. Biochemical techniques were used to measure the concentration of these two whey proteins during fermentation. At a result of the done study alteration in the concentration of beta-lactoglobulin and alpha-lactalbumin were detected. The studied proteolytic activity of the strains, used in the fermentation process confirmed the received results.

Fermentation↗

Biologically active peptides in milk proteins.

Bioactive peptides have been identified as digestion products of several food proteins. All the bioactive sequences are hidden in an inactive state inside the polypeptide chain of the larger protein. Milk proteins are a rich source of biologically active peptides such as exorphins (casomorphins), phosphopeptides and immunopeptides. Such peptides are released during intestinal digestion of caseins and whey proteins. They may be involved in regulation of nutrient entry and influence the postprandial metabolism via stimulation of the secretion of hormones. Furthermore, they may exert a stimulating effect on the immune system. These findings offer new aspects for evaluating the nutritive value of food proteins. Moreover, bioactive peptides have already found interesting applications as dietary supplements and as pharmaceutical preparations.

Amino Acid Sequence↗

Neuropeptides and neuropeptide receptors in the Drosophila melanogaster genome.

Recent genetic analyses in worms, flies, and mammals illustrate the importance of bioactive peptides in controlling numerous complex behaviors, such as feeding and circadian locomotion. To pursue a comprehensive genetic analysis of bioactive peptide signaling, we have scanned the recently completed Drosophila genome sequence for G protein-coupled receptors sensitive to bioactive peptides (peptide GPCRs). Here we describe 44 genes that represent the vast majority, and perhaps all, of the peptide GPCRs encoded in the fly genome. We also scanned for genes encoding potential ligands and describe 22 bioactive peptide precursors. At least 32 Drosophila peptide receptors appear to have evolved from common ancestors of 15 monophyletic vertebrate GPCR subgroups (e.g., the ancestral gastrin/cholecystokinin receptor). Six pairs of receptors are paralogs, representing recent gene duplications. Together, these findings shed light on the evolutionary history of peptide GPCRs, and they provide a template for physiological and genetic analyses of peptide signaling in Drosophila.

Animals↗

Isolation and sequence determination of frog C-type natriuretic peptide.

A new bioactive peptide was isolated from frog brain using a bioassay for chick rectum relaxant activity. Amino acid sequence of this peptide was determined to be Gly-Tyr-Ser-Arg-Gly-Cys-Phe-Gly-Val-Lys-Leu-Asp-Arg-Ile-Gly-Ala-Phe-Ser- Gly- Leu-Gly-Cys, in which two cysteines were linked by a disulfide bond. The peptide was found to belong structurally to the natriuretic peptide family and to exert diuretic-natriuretic activity as well as hypotensive activity when injected into rats. The peptide showed a high homology to recently identified porcine C-type natriuretic peptide (CNP) and a pharmacological spectrum highly similar to porcine CNP. Thus, the peptide was designated frog C-type natriuretic peptide (frog CNP). Frog CNP may participate in the central control of body fluid homeostasis, since its tissue concentration is high in brain.

Amino Acid Sequence↗

Enterochromaffin cells of the digestive system: cellular source of guanylin, a guanylate cyclase-activating peptide.

Guanylin, a bioactive peptide, has recently been isolated from the intestine; this peptide activates intestinal guanylate cyclase (i.e., guanylate cyclase C) and thus is potentially involved in the regulation of water/electrolyte transport in the gastrointestinal mucosa. As yet, the cells involved in synthesis, storage, or secretion of guanylin have not been identified by immunocytochemistry. We raised antisera against guanylin and investigated the entire gastrointestinal tract of guinea pigs by light and electron microscopical immunocytochemistry. Extracts of various intestinal segments and plasma analyzed on a Western blot revealed a peptide band corresponding to the molecular mass of guanylin. Localization studies in the entire digestive tract showed that guanylin is exclusively confined to enterochromaffin (EC) cells. Remarkably, most EC cells contacted the gut lumen by cell processes that were highly immunoreactive for guanylin. In addition to the well known secretion in an endocrine fashion, EC cells by circumstantial evidence may release guanylin into the gut lumen to activate guanylate cyclase C that is immediately located on the brush border of adjacent enterocytes. The unique localization of guanylin in EC cells may indicate that these cells are involved in the regulation of fluid secretion in the gastrointestinal mucous membrane.

Animals↗

Structure of the precursor to an enzyme mediating COOH-terminal amidation in peptide biosynthesis.

Many bioactive peptides terminate with an amino acid alpha-amide at their COOH terminus. The enzyme responsible for this essential posttranslational modification is known as peptidyl-glycine alpha-amidating monooxygenase or PAM. We identified cDNAs encoding the enzyme by using antibodies to screen a bovine intermediate pituitary lambda gt11 expression library. Antibodies to a beta-galactosidase/PAM fusion protein removed PAM activity from bovine pituitary homogenates. The 108,207 dalton protein predicted by the complete cDNA is approximately twice the size of purified PAM. An NH2-terminal signal sequence and short propeptide precede the NH2 terminus of purified PAM. The sequences of several PAM cyanogen bromide peptides were localized in the NH2-terminal half of the predicted protein. The cDNA encodes an additional 430 amino acid intragranular domain followed by a putative membrane spanning domain and a hydrophilic cytoplasmic domain. The forms of PAM purified from bovine neurointermediate pituitary may be generated by endoproteolytic cleavage at a subset of the 10 pairs of basic amino acids in the precursor. High levels of PAM mRNA were found in bovine pituitary and cerebral cortex. In corticotropic tumor cells, levels of PAM mRNA and pro-ACTH/endorphin mRNA were regulated in parallel by glucocorticoids and CRF.

Amides↗

Isocratic high-performance liquid chromatography-photodiode-array detection method for determination of lysine- and arginine-vasopressins and oxytocin in biological samples.

A simple, isocratic, sensitive (1 ng), and specific high-performance liquid chromatographic (HPLC) method based on photodiode-array detection (PAD) is described for simultaneous quantitation of the bioactive peptides, lysine vasopressin (LVP), arginine vasopressin (AVP) and oxytocin (OXY). Acidified pig plasma and left ventricular (LV) tissue samples were first extracted with Sep-Pak C18 columns, and the bioactive peptides were eluted with methanol, then dried at 37 degrees C and reconstituted with HPLC mobile phase. The bioactive peptides were separated by HPLC on a Dynamax 3009-A C8 column with a mobile phase of 0.1% trichloroacetic acid-50 mM heptanesulfonic acid-30mM triethylamine-20% acetonitrile in water, pH 2.5 and identified with a Waters 990-PAD system (spectrum index plots in the range 200-400 nm). Standards of LVP, AVP and OXY and their mixtures showed a linear increase in the range 5 to 100 ng and were eluted at 6.1, 6.9 and 4.6 min, respectively. Spectrum analysis showed a distinct absorption peak at 280 nm, corresponding to peptide bonds. The reproducibility of the method coefficient of variation for standards is 6.9, 5.8 and 4.7% for LVP, AVP and OXY, respectively. In plasma and tissue it is much higher: 12.9% (LV tissue) and 18.6% (plasma) for LVP. Pig plasma contains negligible amounts of AVP and OXY; LVP is much higher (0.28 +/- 0.19 ng/ml). In pig tissue, LVP predominates (6.95 ng/g wet weight) compared to AVP (1.45) and OXY (1.50). Spectral analysis is necessary to identify the bioactive peptide peaks among interfering substances and to increase the sensitivity four-fold. The method described here is useful for the simultaneous determination of LVP, AVP and OXY in the nanogram range and can be extended to picogram levels by employing PAD spectral analysis techniques.

Animals↗

Retro-inverso prosaptide peptides retain bioactivity, are stable In vivo, and are blood-brain barrier permeable.

Prosaptide (trademark of Myelos Corporation, San Diego, CA) peptides are based on the 14-amino-acid neurotrophic sequence of human prosaposin and, like the parent protein, have potent neurotrophic and neuroprotective properties. We previously examined the in vivo stability of a series of bioactive Prosaptide peptides and designed peptides with increased enzymatic stability in the central and peripheral nervous systems. In this article, we examined the stability, biological activity, and permeability of the blood-brain barrier to retro-inverso Prosaptide peptidomimetics. Retro-inversion both reverses the primary sequence and replaces L-amino acids with D-amino acids. We examined the bioactivity of five peptidomimetics, Prosaptides D1-D5. Prosaptide D1, a peptide containing all D-amino acids with the primary sequence intact, was inactive. However, four retro-inverso peptidomimetics, Prosaptides D2-D5 retained bioactivity in neurite outgrowth and [(35)S]GTPgammaS binding assays. We focused on Prosaptide D4 as a prototypical retro-inverso Prosaptide peptidomimetic for further study. (125)I-Prosaptide D4 remained intact in brain or serum for 60 min after i.v. administration and was transported across the blood-brain barrier with a unidirectional influx constant of 2.5 x 10(-4) ml. g(-1). min(-1). We conclude that retro-inverso Prosaptide peptidomimetics are excellent candidates for development as therapeutics for central nervous system neurodegeneration.

Amino Acid Sequence↗

A comparison of the effects of angiotensin-converting enzyme inhibitors with bradykinin, angiotensin II and their specific antagonists on concanavalin A-induced proliferation of mouse T-lymphocytes.

The effects of the angiotensin-converting enzyme (ACE) inhibitors captopril, enalaprilat and enalapril, and the bioactive peptides angiotensin II (Ang II), [Sar1,Ile8]angiotensin II ([Sar1,Ile8]Ang II), bradykinin and D-Arg[Hyp3,D-Phe7]bradykinin) on mitogen-induced proliferation of T-lymphocytes were evaluated in C57 mouse spleen cells. Captopril (CP) dose-dependently enhanced concanavalin A (Con A)-induced proliferation of T-lymphocytes, with the effective stimulatory concentration range between 0.02-10 mM. The mitogen-induced proliferative response was inhibited at high concentrations (> 10 mM) of CP which affected the number of viable cells. Enalapril dose-dependently inhibited Con A-induced T-lymphocyte proliferation at 0.44-20 mM. This was comparable to the ACE inhibitory peptide, which had a similar range. Enalaprilat, the active parent diacid of enalapril, also showed a weaker inhibitory effect on the Con A-induced proliferative response (4-20 mM). The bioactive peptides had little effect, except at a relatively high concentration. Angiotensin II (Ang II) at 0.05 mM inhibited the Con A-induced proliferative response while [Sar1,Ile8]Ang II, a specific antagonist of Ang II, had no effect. Both bradykinin and its specific antagonist, D-Arg[Hyp3,D-Phe7]bradykinin, had no effect on Con A-induced T-lymphocyte proliferation. The ACE inhibitors and bioactive peptides had little or no cytotoxic effects, except when present at or more than 5 mM. In conclusion, the effects of ACE inhibitors such as captopril and enalapril on Con A-induced T-lymphocyte proliferation were confirmed after a pilot study recently reported. These effects, especially with the stimulatory effect of CP, are unrelated to their ability to inhibit angiotensin-converting enzyme and perturbation of the bioactive peptides such as angiotensin II and bradykinin.

Amino Acid Sequence↗

Effect of simulated gastrointestinal digestion on the antihypertensive properties of ACE-inhibitory peptides derived from ovalbumin.

Food-derived bioactive peptides with ACE-inhibitory properties are receiving special attention due to their beneficial effects in the treatment of hypertension. In this work we evaluate the impact of a simulated gastrointestinal digestion on the stability and activity of two bioactive peptides that derive from ovalbumin by enzymatic hydrolysis, YAEERYPIL and RADHPFL. These peptides possess in vitro ACE-inhibitory activity and antihypertensive activity in spontaneously hypertensive rats (SHR). The results showed that YAEERYPIL and RADHPFL were susceptible to proteolytic degradation after incubation with pepsin and a pancreatic extract. In addition, their ACE-inhibitory activity in vitro decreased after the simulated digestion. The antihypertensive activity on SHR of the end products of the gastrointestinal hydrolysis, YAEER, YPI, and RADHP, was evaluated. The fragments YPI and RADHP significantly decreased blood pressure, 2 h after administration, at doses of 2 mg/kg, but they probably did not exert their antihypertensive effect through an ACE-inhibitory mechanism. It is likely that RADHP is also the active end product of the gastrointestinal digestion of the antihypertensive peptides FRADHPFL (ovokinin) and RADHPF (ovokinin 2-7).

Amino Acid Sequence↗

Recent developments in 99Tcm-labelled peptide-based radiopharmaceuticals: an overview.

Nature has designed peptides to stimulate, inhibit or regulate many body functions. The development of radiolabelled peptide-based radiopharmaceuticals for imaging a variety of tumours, infection/inflammation and thrombus has seen a new era in nuclear medicine. Recently, a number of 99Tcm-labelled bioactive peptides have proven to be useful diagnostic imaging agents. Due to their small size, peptide molecules exhibit favourable pharmacokinetic characteristics, such as rapid uptake by target tissue and rapid blood clearance, which potentially allows images to be acquired earlier following the administration of a 99Tcm-labelled peptide radiopharmaceutical. The challenge is to label bioactive peptides with 99Tcm with high specific activity without impairing the biological properties of the peptides. Molecular engineering techniques now permit synthesis of a wide range of biologically active peptides that carry chelating groups in their structure without affecting their receptor binding properties, thus permitting a high specific activity product. This review presents recent developments in 99Tcm-labelled small peptides and their potential applications in the imaging of various types of diseases. In addition, the different techniques for radiolabelling small bioactive peptides, the pharmacokinetic properties of peptides, and their potential as diagnostic imaging agents are also addressed.

Animals↗

Diversification of yeast proteins as an approach for the development of sustainable food systems.

Despite growing trend in sustainable protein sources, yeast proteins have mainly been explored as a source of bioactive peptides using a monospecies and general protein approach. The contribution of highly abundant protein fractions in the yeast proteome to peptide formation remains insufficiently investigated, limiting a comprehensive understanding of yeast proteins as optimized peptide sources. The current review presents a systematic analysis of yeast proteins as emerging protein sources and evaluates the suitability of high-abundance proteins as bioactive peptide precursors by in silico techniques. Moreover, brewery by-product and single-cell yeast protein approaches are compared in terms of composition and techno-functionality whereas peptide formation mechanisms (in situ and ex situ) and regulatory aspects for food applications are also addressed. Cytoplasmic metabolic proteins, particularly glycolytic enzymes (GAPDH), are identified as highly abundant fractions of the yeast proteome. Proteins associated with cell and organelle membranes also contribute substantially based on cellular localization. These findings imply that such proteins may act as key precursors of yeast-derived bioactive peptides. In silico hydrolysis with Alcalase suggests a tendency toward the generation of short-chain peptides (3-11/14 aa), which may support biological activity. Moreover, peptide profiles appear to vary across yeast species, highlighting the role of species diversity in peptide generation. While single-cell yeast protein allows more controlled production than brewery by-products, nucleic acid content in both may limit applications. Overall, yeast proteins appear to be metabolically adaptable and species-diverse sources for various biological peptides.

Saccharomyces cerevisiae↗

In vitro effect of bioactive natriuretic peptides on perfusion pressure in placentas from normal and pre-eclamptic pregnancies.

The number of placental vascular guanylate-coupled receptors. corresponding to bioactive natriuretic peptide receptors is greater in preeclampsia. but there are no clear data about atrial natriuretic peptide (ANP) concentration in preeclampsia. The influence of various doses of ANP and urodilatin (URO) on placental perfusion pressure in preeclampsia was investigated by perfusing 16 human placentas in vitro. The placental vessels were submaximally preconstricted by continuous infusion of N-omega-nitro-L-arginine (NOLA). Perfusion pressure was measured continuously. Over 180 min various doses of alphaANP or URO were administrated (25, 50, 100, 200 nmol/l, 2 min increments). The effects of pretreatment with the guanylate cyclase inhibitor, LY 83583 was also examined. We found that ANP and URO attenuated NOLA-induced vasoconstriction, that URO given in higher doses produced stronger vasocilation than ANP, and that the mean decrease of perfusion pressure was higher in preeclampsia. The possibility of a non cGMP-mediated pathway of ANP and URO action should be considered.

Atrial Natriuretic Factor↗

MDR1 P-glycoprotein transports endogenous opioid peptides.

MDR1 P-glycoprotein is generally regarded as an efflux pump for amphipathic toxic compounds. The question remains, however, whether certain endogenous compounds are also substrates for this transporter. Certain peptides have been shown to interact with MDR1 Pgp as well and we have therefore investigated whether endogenous bioactive peptides are substrates. We demonstrate here that the synthetic mu-opioid peptide DAMGO is a good substrate for MDR1 Pgp. In view of its low interaction with the membrane it is an attractive ligand for measurement of MDR1 Pgp-mediated transport activity in membrane vesicles. Various linear peptides with amidated C-termini were found to inhibit MDR1 Pgp-mediated DAMGO transport. This group includes endogenous opioid peptides such as adrenorphin and endomorphin 1 and 2, as well as the neurokinin, Substance P. The latter bioactive peptides have a relatively high affinity for the transporter. Transport of endomorphin 1 and 2 could be directly demonstrated by the uptake of the radiolabeled opioid peptides in membrane vesicles from MDR1-transfected cells with a K(m) of 15 and 12 microM, respectively. This opens the possibility that MDR1 Pgp is involved in the elimination and/or tissue distribution of these bioactive peptides.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Topochemical exploration of potent compounds using retro-enantiomer libraries of cyclic pentapeptides.

Cyclic pentapeptides have been adopted as conformationally restricted peptide templates to dispose pharmacophores of bioactive peptides. In our recent study, use of two orthogonal cyclic pentapeptide libraries involving conformation-based and sequence-based libraries containing critical residues of a bioactive peptide led to the discovery of potent downsized peptides that possess activity comparable to that of the parent peptide. The present study demonstrates that a third library consisting of retro-enantiomers (retro-inverso peptides) that possess not only all residues with the opposite configuration to those in the corresponding original peptide but also amino acid sequences with reversed arrangement, is important as an alternative library for rationally finding active compounds.

Amino Acid Sequence↗