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Biomedical subjects

M Panico

Publications and source records attributed to M Panico.

72 records · Page 4Linked to original sources

Investigation of the structure and function of the human erythrocyte glucose transporter by proteolytic dissection.

Tryptic and papain digestion have been employed to investigate the structure and function of the human erythrocyte glucose transporter. Trypsin cleaves the native protein into two large, membrane-embedded fragments and a number of small peptides that are released from the membrane. These fragments have been isolated and located within the transporter sequence by fast atom bombardment mass spectrometry and amino acid analysis. The results indicate that the segments of the sequence comprising residues 213-269 and 457-492 are cleaved from the cytoplasmic surface of the membrane by trypsin treatment. These findings are compatible with a model previously proposed for the arrangement of the polypeptide in the membrane (Mueckler, M., et al. (1985) Science 229, 941-945). Despite the loss of these 93 residues, the portion of the protein remaining embedded in the membrane is still able to bind cytochalasin B. This binding is inhibited by D-glucose, indicating that the membrane-embedded fragments retain the substrate-binding site. Fourier transform infrared spectroscopic analysis of the protein before and after proteolytic digestion shows that the intramembranous part of the protein is largely alpha-helical, although some beta-sheet structure appears also to be present. The spectroscopic findings also indicate that the extramembranous, cytoplasmic domain of the transporter, which is removed by trypsin, contains alpha-helical structure.

Amino Acid Sequence↗

Primary and secondary structure of antifreeze peptides from arctic and antarctic zoarcid fishes.

Antifreeze peptides were isolated from Rhigophila dearborni, an antarctic eel pout, and Lycodes polaris, an arctic eel pout (both from the family Zoarcidae). The primary structures of two peptides, one from each species, were determined using a combination of Edman degradation and mass spectrometric techniques. The two sequences show a high degree of homology with nearly 80% of the residues being identical. These peptides are also homologous to antifreeze peptides from a third eel pout which inhabits the north Atlantic Ocean. The CD spectra of all of these peptides are also very similar. Unlike the antifreeze peptides of cottid fishes, the structures of antifreeze peptides from zoarcid fishes appear to be highly conserved, despite the large geographic distances which separate the different species. The zoarcid peptides also appear to have structures very different from other fish antifreezes.

Amino Acid Sequence↗

Isolation, characterization, and pharmacological actions of peptide histidine valine 42, a novel prepro-vasoactive intestinal peptide-derived peptide.

The primary structure and biological activity of a novel prepro-vasoactive intestinal peptide (prepro-VIP)-derived peptide has been determined from an adrenal pheochromocytoma. The peptide was purified sufficiently for characterization by fast atom bombardment mapping after cation-exchange and reverse-phase fast protein liquid chromatography. The sequence of this novel peptide corresponds exactly to prepro-VIP-81-122 and has been designated peptide histidine valine 42 (PHV-42). Synthetic PHV-42 reduced both the force and frequency of spontaneous contractions of isolated rat uterus and was at least 12 times more potent than peptide histidine methionine (prepro-VIP-81-107), and over a hundred times more potent than noradrenaline. PHV-42 was also more potent than peptide histidine methionine in relaxing smooth muscle preparations of rat stomach and guinea pig trachea, but was approximately 4-fold less potent in reducing blood pressure than VIP. PHV-42 thus forms a separate subsystem in the VIP family of peptides and may be the most biologically active product of prepro-VIP in certain tissues such as the uterus and trachea.

Adrenal Gland Neoplasms↗

Formation of a covalent disulfide-linked antithrombin-albumin complex by an antithrombin variant, antithrombin "Northwick Park".

Antithrombin is a major proteinase inhibitor of the blood coagulation system. Its inherited deficiency or abnormality is often associated with thromboembolism. Antithrombin "Northwick Park," a functionally inactive variant antithrombin, has recently been shown by us (Lane, D.A., Flynn, A., Ireland, H., Erdjument, H., Samson, D., Howarth, D., and Thompson, E. (1987) Br. J. Haematol. 65,451-456) to be present in plasma, in part, as a high Mr (approximately 120,000) component which has a characteristic electrophoretic mobility in agarose gels in the absence of denaturing agents. In this communication, we present evidence that this Mr approximately 120,000 variant component is comprised of an antithrombin-albumin covalent disulfide-linked complex. This proposal is supported by results of: (a) fast atom bombardment mass spectrometry of the isolated reduced, S-carboxymethylated, trypsin-digested Mr approximately 120,000 complex; (b) sodium dodecyl sulfate-polyacrylamide gel electrophoresis of this complex and its reduced and S-carboxymethylated constituents; (c) immunoblotting of these polyacrylamide gels with antisera specific for antithrombin and albumin; (d) NH2-terminal sequence analysis of one of the isolated, S-carboxymethylated proteins that comprise the Mr approximately 120,000 complex; and (e) fast atom bombardment mass spectrometry of its tryptic peptides.

Antithrombin III↗

The effects of structural modifications on the insulin-releasing activity of beta-cell-tropin.

The minimal effective concentration of the pituitary insulin secretagogue beta-cell-tropin (beta-CT) on the in vitro perfused pancreas was established and the effects of various modifications of the peptide on its potency were tested: iodination with 127I and acetylation reduced the insulin-releasing activity of beta-cell-tropin, and the C-terminal fragments beta-CT-(2-18), beta-CT-(3-18) and beta-CT-(6-18) were all less potent than the intact molecule; beta-CT-(1-6) was not active and did not inhibit beta-CT-induced insulin release.

Acetylation↗

Investigation of the structure/activity relationship of human calcitonin gene-related peptide (CGRP).

The biological activities of calcitonin gene-related peptide (CGRP) enzymic digest fragments, chemically modified products and beta-CGRP have been compared to that of intact alpha-CGRP on rat isolated paired atria. Tryptic and chymotryptic digests both produced inactive fragments. Acetylation of the N-terminal amino acid (Alanine) or either of Lys 24 or Lys 35, resulted in reduced, but measurable, biological activity. Destruction of the disulphide bridge between Cys 2 and Cys 7 abolished biological activity. Substitution of several amino acids, Asp 3, Val 22 and Asn 25, with Asn, Met and Ser respectively (beta-CGRP), produced a peptide with similar biological activity to alpha-CGRP.

Amino Acids↗

Characterization of peptides cleaved by plasmin from the C-terminal polymerization domain of human fibrinogen.

The C-terminal region of the fibrinogen gamma chain is known to participate in several functional interactions including fibrin polymerization. This part of the molecule is retained on the gamma chain of fragment D (FgD) when fibrinogen is digested by plasmin in the presence of calcium to produce the fragment D-fragment E (FgD X FgE) complex but is lost if FgD is prepared in the absence of calcium. In an attempt to characterize the C-terminal polymerization domain we have used three techniques to examine this further degradation of FgD following the addition of EDTA and plasmin. Analysis of the digestion by sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed a progressive cleavage of the gamma chain to two small remnants. The polymerization-inhibitory activity of the whole digest was studied using acid-solubilized fibrin. A progressive loss of inhibitory activity was associated with gamma chain shortening, reaching greater than a 120-fold reduction at the end of digestion. The cleavage of peptides was followed by reverse-phase high performance liquid chromatography and the release of a characteristic peptide triplet was associated with gamma chain cleavage. Manual sequencing, amino acid analysis, and fast atom bombardment mass spectrometry established the three peptides as gamma 303-356, 357-373, and 374-405. These peptides have sequences in common with those peptides recently reported by other investigators to be potent polymerization inhibitors. However, when a mixture of the three peptides was added in a 200-fold molar excess to polymerizing fibrin, no inhibitory activity could be demonstrated. It is concluded that the C-terminal polymerization domain of fibrinogen may be an extended region which includes the sequence gamma 303-405, when this is contiguous with the remainder of the gamma chain.

Amino Acid Sequence↗

Sequence and structure of a human glucose transporter.

The amino acid sequence of the glucose transport protein from human HepG2 hepatoma cells was deduced from analysis of a complementary DNA clone. Structural analysis of the purified human erythrocyte glucose transporter by fast atom bombardment mapping and gas phase Edman degradation confirmed the identity of the clone and demonstrated that the HepG2 and erythrocyte transporters are highly homologous and may be identical. The protein lacks a cleavable amino-terminal signal sequence. Analysis of the primary structure suggests the presence of 12 membrane-spanning domains. Several of these may form amphipathic alpha helices and contain abundant hydroxyl and amide side chains that could participate in glucose binding or line a transmembrane pore through which the sugar moves. The amino terminus, carboxyl terminus, and a highly hydrophilic domain in the center of the protein are all predicted to lie on the cytoplasmic face. Messenger RNA species homologous to HepG2 glucose transporter messenger RNA were detected in K562 leukemic cells, HT29 colon adenocarcinoma cells, and human kidney tissue.

Amino Acid Sequence↗

Glutamyl-taurine is the predominant synaptic taurine peptide.

Several taurine-containing peptides have been identified from trichloracetic acid extracts of synaptosomes and their subcellular vesicles prepared from calf brain. These peptides contain aspartic and glutamic acids, serine and taurine, and are often present in an N-acetylated form. The peptides were isolated as single spots by TLC. Glutamyl-taurine was found to be the predominant structure when analyzed by fast atom bombardment (FAB) mass spectrometry.

Animals↗

The myotropic and plasma-calcium modulating effects of calcitonin gene-related peptide (CGRP).

Human and rat calcitonin gene-related peptides cause a dose-related contraction of guinea pig ileum, which is antagonised by an anti-histamine, mepyramine, and an anticholinergic compound, hyoscine. Both peptides also cause a positive inotropic and a positive chronotropic effect in the rat isolated auricle and these responses are antagonised by propranolol, a B adrenoceptor blocker. Further, the peptides lower plasma calcium levels in both rats and rabbits in a dose-related manner resembling calcitonin; in the rabbit, but not in the rat, the initial calcium lowering effect is succeeded by hypercalcaemia at higher doses, while in the chick, only the parathyroid hormone-like calcium-raising effect is seen.

Animals↗

Amino acid sequence and post-translational modification of human interleukin 2.

Human interleukin 2 was separated into multiple molecular forms by selective immunoaffinity chromatography and chromatofocusing. For the most part, this heterogeneity was attributed to variations in glycosylation of the threonine residue in position 3 of the polypeptide chain. The various molecular forms of interleukin 2 had nearly identical specific activities in the in vitro proliferation assay, indicating that the glycosylation had no significant effect on this response. The entire primary sequence of interleukin 2, including the location of the intramolecular disulfide bridge, was determined by a combination of peptide mapping and protein sequencing. This information should aid in the determination of the active site(s) of the molecule.

Amino Acid Sequence↗

FAB-mapping of recombinant-DNA protein products.

A new method is described for screening and establishing the primary structure of proteins. The procedure is both rapid and sensitive and allows study of the C-terminus of the protein with equal facility to the N-terminus. This new strategy which is illustrated here for the polypeptide hormone Insulin, has obvious applications in recombinant DNA biotechnology research, in post-translational modification and site-directed mutagenesis studies, or any other aspect of modern protein chemistry requiring accurate definition of primary structure.

Amino Acid Sequence↗

Posttranslational modification of human T-cell growth factor.

Amino-terminal sequence analysis of human T-cell growth factor indicated that the amino acid in position 3 of the polypeptide chain was modified. Examination of the N-terminal octapeptide using the amino acid analyzer and mass spectrometry demonstrated that position 3 was a threonine which was linked to N-acetyl-D-galactosamine. This site of glycosylation is of practical significance since it appears to play a role in the selectivity of a monoclonal antibody for the factor.

Amino Acid Sequence↗

Isolation and characterization of human calcitonin gene-related peptide.

The rat calcitonin gene has recently been shown to encode a novel peptide (rat calcitonin gene-related peptide, rCGRP) thought to be produced in nervous tissue after tissue-specific RNA processing. This peptide has so far been identified only in rat tissue, by immunocytochemistry and immunoassay. We now report the isolation of a related (89% homology) peptide from human tissue (hCGRP) which we have sequenced using a novel mass spectrometric approach, fast atom bombardment (FAB) mapping. The human peptide differs significantly from the predicted rCGRP structure in four positions in the amino acid sequence (three effecting charge changes), and the presence of a disulphide bridge and an amide, surmised in the rat work, is proven in the hCGRP molecule. hCGRP was present in plasma from 10 patients with medullary thyroid carcinoma (MTC) and in 6 MTC tumours removed at surgery, suggesting the tissue distribution may differ from that in the rat where the peptide is reported to be absent from thyroid tissue. hCGRP is shown to have biological activity and it is possible that its presence in MTC plasma may be responsible for some of the symptoms in this disease.

Amino Acid Sequence↗

Thymopentin loaded microsphere preparation by w/o/w emulsion technique: in vitro/ex vivo evaluation.

Poly-D,L-lactide (PDLLA) and polylactide-co-glycolide (PLGA) microspheres containing thymopentin have been prepared by a water-in-oil-in-water-emulsion/solvent evaporation technique. The goal is to stabilize the active compound thymopentin, and to prolong its therapeutic activity, by embedding the drug in a polymeric matrix. The microspheres obtained have been characterized for their morphology and drug content. In-vitro dissolution tests have been performed on the microspheres. Results show that the type of polymer employed (PDLLA or PLGA) does not seem to affect microsphere morphology, while in-vitro dissolution profiles are greatly influenced by the composition of polymer matrix. Ex-vivo evaluation of PLGA microspheres performed on mouse thymocites shows that biological activity of Thymopentin is maintained after loading into PLGA microspheres.

Adjuvants, Immunologic↗