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P G Byfield

Publications and source records attributed to P G Byfield.

At least 19 recordsLinked to original sources

Possible evidence for endogenous production of a novel galanin-like peptide.

Galanin mRNA and peptide are not detectable in normal islets. We studied the effect of galanin antagonists on insulin secretion in the rat beta cell line, RIN5AH, and in perifused rat islets. In RIN cell membranes galanin and its antagonists showed high affinity for 125I-galanin binding sites [Kd: (galanin) 0.03+/-0.01; Ki for galanin antagonists: (C7) 0.12+/- 0.02, (M35) 0.21+/-0.04, and (M40) 0.22+/-0.03 nM, mean+/- SEM, n = 4]. Galanin (1 microM) inhibited glucose-induced insulin release in islets (control 21.2+/-1.5 vs. galanin 4.5+/-0.2 fmol/islet per min, P < 0.001, n = 6) and RIN5AH cells (control 0.26+/-0.01 vs. galanin 0.15+/-0.02 pmol/10(6) cells per h, P < 0.001, n = 9). In RIN5AH cells, all antagonists blocked the inhibitory effects of galanin and stimulated insulin release in the absence of galanin. C7 and M40 (1 microM) alone significantly stimulated glucose-induced insulin secretion. Purified porcine galanin antibody (GAb) enhanced glucose-induced insulin release from islets (control 100+/- 16.3% vs. GAb 806.1+/-10.4%, P < 0.001, n = 6), and RIN5AH cells (control 100+/-9.6% vs. GAb 149+/-6.8%, P < 0. 01, n = 6). Western blotting of dexamethasone-treated islet extracts using GAb showed a specific band of similar molecular weight to porcine galanin not detected using a rat specific galanin antibody. One possible explanation for these results is the presence of an endogenous galanin-like peptide.

Amino Acid Sequence↗

Specific adrenomedullin binding sites and hypotension in the rat systemic vascular bed.

The potent vasodilator peptide, adrenomedullin, has been shown to be present in plasma, suggesting a physiological role in cardiovascular control. Here we investigated the hypotensive action of adrenomedullin in vivo, using the anaesthetised rat as the bioassay model, and adrenomedullin binding sites using ligand binding assays on rat blood vessel membranes. Rat alpha CGRP and both human and rat adrenomedullins induced dose-dependent, powerful and long-lasting hypotensive effects. At peptide doses used in this study (0.02-2 nmol/kg), the efficacy of both human and rat adrenomedullins was lower than that of rat alpha CGRP. The CGRP1-receptor antagonist, human CGRP(8-37) (200 nmol/kg) was able to completely inhibit the hypotensive effect of rat alpha CGRP (0.2 nmol/kg) but not that of rat adrenomedullin (2 nmol/kg), implying that the adrenomedullin action is independent of CGRP1-receptors. Ligand binding assays confirmed the presence of both CGRP and adrenomedullin binding sites in rat blood vessels. The 125I-rat adrenomedullin binding site has a Kd = 0.32 +/- 0.12 nM (n = 4) for rat adrenomedullin but has a Ki > 10(-6) M for rat alpha CGRP. Chemical cross-linking and SDS-PAGE analysis revealed theadrenomedullin binding protein to have a M(r) of 83000 with a minor band of M(r) = 99000. The results suggest that the hypotensive effect of adrenomedullin may be mediated via specific adrenomedullin binding sites, in vivo.

Adrenomedullin↗

Studies on the order and site specificity of GalNAc transfer to MUC1 tandem repeats by UDP-GalNAc: polypeptide N-acetylgalactosaminyltransferase from milk or mammary carcinoma cells.

A synthetic peptide [TAP25, (T1aAPPAHGVT9S10APDT14RPAPGS20)T1bAPPA5b] corresponding to one repeat (T1a-S20) and five overlapping amino acids (T1b-A5b) of the MUC1 core protein served as an acceptor substrate for in vitro glycosylation. TAP25 was glycosylated using the detergent-solubilized UDP-GalNAc:polypeptide N-acetylgalactosaminyltransferases from the breast carcinoma cell line T47D, the colon carcinoma cell line HT29 and from human premature skim milk. The glycosylated peptides were isolated by ultrafiltration, purified by reverse-phase HPLC and further analysed by liquid secondary ion mass spectrometry (LSIMS). Three different glycosylation species, mono-, di- and triglycosylated peptides were identified. Automated Edman sequencing and LSIMS of proteolytic fragments independently revealed the sites of GalNAc incorporation and confirmed that the threonine residues Thr9 and Thr1b are the preferred sites of glycosylation independent of the enzyme source, while Thr14 remained non-glycosylated even with the enzyme preparation from milk. In addition, evidence was obtained that at least 20% of the glycosylated peptides exhibited GalNAc incorporation at Ser20. On the basis of kinetic studies a preferred sequence of GalNAc addition to the three acceptor sites has been concluded (Thr9-->Thr1b-->Ser20). Although Thr14 within the PDTRP motif of the tandem repeats remained non-glycosylated, the introduction of GalNAc into adjacent positions significantly decreased the immunoreactivity of antibodies SM-3, HMFG-1 and HMFG-2 defining overlapping epitopes of this motif. It is assumed that glycosylation at Thr9, Thr1b and Ser20 distorts the peptide conformation of the binding epitope.

Amino Acid Sequence↗

Pyroglutamyl-phenylalanyl-proline amide attenuates thyrotropin-releasing hormone-stimulated insulin secretion in perifused rat islets and insulin-secreting clonal beta-cell lines.

TRH immunoreactivity has been detected in the pancreas of man and rat and localized to the islets of Langerhans. We studied the effect of synthetic TRH and the related tripeptide pyroglutamyl-phenylalanyl-proline amide (EFP) on isolated perifused rat islets and the glucose-responsive clonal cell lines HIT-T15 and RIN5AH. TRH at 10 nM potentiated [0.5 +/- 0.1 (control) vs. 0.8 +/- 0.1 (TRH) pmol/10(6) cells per 120 min; mean +/- SEM; n = 6; P < 0.001; n = 15], whereas EFP from 1 nM upwards suppressed glucose-stimulated insulin secretion [0.8 +/- 0.1 (control) vs. 0.5 +/- 0.1 (EFP) pmol/10(6) cells per 120 min; P < 0.001; n = 12) in the cell lines. Further, EFP reversed TRH-stimulated insulin release. Similar responses were observed in perifused isolated rat islets at the tested dose of 1 microM. Gel permeation chromatography of rat adult and neonatal whole pancreas, isolated islets, and HIT cell extracts demonstrated the elution of total TRH-like immunoreactivity (t-TRH-LI) in the same position as synthetic TRH. Cation exchange analysis of the t-TRH-LI from rat adult pancreas and HIT cell extracts showed that neutral TRH-like peptides corresponding to synthetic EFP were also present. Reverse-phase fast protein liquid chromatographic analysis of t-TRH-LI in the unbound fraction of these extracts subjected to anion exchange columns, also demonstrated peaks corresponding to synthetic EFP. We conclude that TRH potentiates, whereas EFP inhibits, glucose-stimulated insulin release in isolated perifused islets and the cell lines. In addition, EFP reversed the stimulatory effect of TRH. The presence of EFP-LI in rat adult and neonatal pancreas and HIT cell extracts suggests it may contribute in the modulation of pancreatic endocrine function.

Amino Acid Sequence↗

Surface plasmon resonance studies of the interaction between factor VII and tissue factor. Demonstration of defective tissue factor binding in a variant FVII molecule (FVII-R79Q).

The blood coagulation cascade is initiated when vessel injury allows factor VII (FVII) to form a complex with tissue factor (TF). Complete deficiency of FVII causes a lethal bleeding diathesis, but individuals with moderately reduced FVII levels are often asymptomatic. Some of these individuals have circulating partially functional FVII, as a result of point missense mutations in critical parts of the molecule. One such mutation has been reported at position 79 in the first epidermal growth factor-like (EGF) domain of FVII, where an arginine residue has been replaced by glutamine. There is controversy as to whether or not this mutation reduces the affinity of the FVII/TF interaction compared to wild-type FVII. To address this problem, we have expressed recombinant FVII-R79Q and subjected it to detailed biochemical analysis. One-stage FVII:C assays show the variant FVII to have reduced activity with respect to the wild type. Rates of autoactivation and activation by FXa to the two-chain molecule were identical for wild-type and variant FVII. The Vmax for FX activation was lower for the mutant as measured using an amidolytic assay for FX activity. In contrast, the Km for FX was lower for the variant than the wild-type molecule. Peptidyl substrate hydrolysis was virtually identical for both variant and normal FVIIa in the presence and absence of TF. The variant has reduced affinity for TF as measured by surface plasmon resonance. FVII-R79Q has an association rate constant (kassoc) one-fifth of that of normal FVII, but a similar kdiss, resulting in a decrease in the affinity of the enzyme for its cofactor.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Amylin tonally regulates arginine-stimulated insulin secretion in rats.

To assess the effect of naturally-present amylin in the control of insulin release we infused a novel amylin antagonist, its 8-37 fragment, or amylin in anaesthetized rats for 60 min, and 30 min after the start arginine was infused for 14 min. Amylin8-37 decreased the blood glucose concentration by 18% whereas the plasma insulin concentration was 90% higher following arginine treatment. In contrast amylin infusion raised both glucose and insulin concentrations. These results suggest that while amylin added at high dose can induce peripheral insulin resistance, naturally present amylin tonally controls insulin secretion.

Amyloid↗

Synthesis and characterization of wild-type and variant gamma-carboxyglutamic acid-containing domains of factor VII.

Synthetic peptides corresponding to portions of the wild-type and variant sequences of the human factor VII gamma-carboxyglutamic acid (Gla)-containing domain have been prepared by direct peptide synthesis using the Fmoc-based protection strategy. Peptides were purified by ion-exchange and reversed-phase chromatography and characterized as the correct products. A peptide comprising residues 1-49 (GP 1-49) inhibited the activation of factor X (FX) by soluble tissue factor (sTF) and recombinant activated factor VII (rFVIIa). In the absence of phospholipid, no inhibition by this peptide was observed. GP 1-49 did not inhibit the hydrolysis of a peptidyl substrate by rFVIIa in the presence of either sTF or relipidated TF apoprotein in the presence or absence of phospholipid. A similar peptide (residues 1-38, GP 1-38) that did not contain the aromatic stack region was also inhibitory. Two variant peptides, one identical to GP 1-49 but lacking the N-terminal alanine residue (GP 2-49) and one identical to GP 1-38 but with an arginine to alanine substitution at position 9 (GP 1-38 R9A), showed substantially reduced inhibitory activity. Kinetic analysis of the inhibition of Xa generation by GP 1-49 revealed a noncompetitive mode of inhibition, probably via a substrate-depletion mechanism. GP 1-49 does not inhibit by preventing FX binding to phospholipid surfaces. This indicates that the N-terminal residues of the FVII Gla domain are important for the structural integrity of the peptide, and implicates the Gla domain per se in a direct interaction with phospholipid-bound FX.

1-Carboxyglutamic Acid↗

Structural requirements for the interaction between tissue factor and factor VII: characterization of chymotrypsin-derived tissue factor polypeptides.

Tissue Factor (TF) is the cellular receptor for coagulation Factor VII/VIIa (FVII/VIIa). TF binds to FVIIa and promotes the rapid activation of the zymogen substrates Factors IX and X (FIX and FX) to the respective serine proteinases. In order to probe structure-function relationships in TF, we have subjected the truncated membrane-bound variant, TF 1-243, to proteolytic digestion in SDS-containing gels. Three major polypeptide fragments were generated by proteolysis of TF 1-243 with chymotrypsin, producing cleavages C-terminal to residues 34, 76 and 103. All three polypeptides, TF 35-243, 77-243 and 104-243, bound biotinylated human FVII in a highly specific ligand blot assay. High-performance electrophoretic chromatography was used to isolated chymotrypsin-derived fragments of TF. These purified fragments bound FVII in ligand blots, and two of the three polypeptides exhibited much reduced, but significant, procoagulant activity in a chromogenic assay for the generation of Factor Xa in the presence of FVIIa and Ca2+. The smallest chymotrypsin-derived TF polypeptide, TF 104-243, showed reduced binding of FVII in ligand blot analyses, inhibited the activity of the full-length molecule, but had no procoagulant activity. These data suggest that a part of the binding site for FVII is contained within the TF sequence 104-243. The sequence TF 1-34 either contains a part of the FVII-binding domain or its removal leads to dysfunctional folding, disrupting binding sites elsewhere in the molecule.

Amino Acid Sequence↗

Influence of islet amyloid polypeptide and the 8-37 fragment of islet amyloid polypeptide on insulin release from perifused rat islets.

IAPP, or amylin, is a 37-amino acid peptide that is co-secreted with insulin from the pancreatic beta-cells. We have determined the effects of IAPP and the antagonist 8-37 fragment of IAPP on the secretion of insulin from isolated rat islets studied in a perifusion system. Insulin secretion was stimulated by 8 mM glucose and 0.2 microM carbachol. IAPP at 10(-7) M reduced insulin release by 32% from 7.1 (95% Cl 5.8-8.6) to 4.8 (3.0-7.5) fmol.min-1 x islet-1 (P = 0.046, n = 7). IAPP at 1.5 x 10(-6) M reduced insulin release by 62% from 6.5 (3.4-12.3) to 2.5 (1.4-4.4) fmol.min-1 x islet-1 (P = 0.001, n = 6). IAPP at 10(-5) M decreased insulin release by 70% (P < 0.001, n = 6). When IAPP (8-37) at 10(-5) M was added to IAPP at 1.5 x 10(-6) M, there was only a 22% reduction of insulin release (P = 0.06, n = 6) compared with control chambers with no peptide added. This reduction was less (P = 0.002) than observed with IAPP (1.5 x 10(-6) M) alone. IAPP (8-37) at 4 x 10(-5) M in the absence of exogenously added IAPP increased insulin secretion by 48% (P = 0.01, n = 6), but IAPP (8-37) at 10(-5) M did not alter insulin secretion. These findings demonstrate that IAPP decreases insulin secretion from islet beta-cells, an effect that can be antagonized by the 8-37 fragment of IAPP.(ABSTRACT TRUNCATED AT 250 WORDS)

Amyloid↗

Heterogeneity of circulating TSH-receptor antibodies in thyroid disease demonstrated directly by chromatography.

The heterogeneity of circulating TSH-receptor antibodies (TRAb) has been demonstrated directly by affinity chromatography on the dye Remazol Yellow-GGL. The technique resolved these antibodies into discrete peaks within the general serum immunoglobulin background. Peaks were detected initially by a binding (radioreceptor) assay and then characterized by their ability to stimulate the uptake of iodine-125 into FRTL-5 cells. Thirteen subjects with high serum levels of TRAb were studied. The two hypothyroid patients each produced a single peak of TRAb activity with no ability to stimulate uptake of iodine-125 into cultured cells. The remaining 11 patients had Graves' disease; their sera produced a range of elution profiles after chromatography with TRAb activity resolved into as many as five peaks. Considerable differences were seen in the relative abilities of the resolved TRAb components to bind to receptors and to stimulate cellular uptake of iodine-125 both between and within individual samples. No two patients produced components which chromatographed in the same position on the gradients employed for elution from the dye.

Antibodies, Heterophile↗

IgG heavy-chain subclass restriction of thyrotropin-binding inhibitory immunoglobulins in Graves' disease.

The IgG subclass composition of antibodies is an important determinant of their function. Thyrotropin receptor antibodies cause the hyperthyroidism of Graves' disease but their subclass distribution has been incompletely investigated. We have therefore purified IgG subclasses from Graves' sera by passage over affinity columns designed to deplete all but a single subclass, and then assayed those pure subclass fractions for their ability to displace radiolabelled thyrotropin from its solubilized receptor as a measure of thyrotropin receptor antibody activity. Sufficient activity was recovered for analysis in nine of 10 Graves' patients, in five of whom activity was almost completely (97-100%) restricted to the IgG1 subclass; in the remaining four patients the response was predominantly IgG1 and IgG4 with marked under-representation of the IgG2 subclass. This contrasts with the unrestricted subclass response, in the same fractions, for autoantibodies against thyroglobulin and microsomes. These results suggest that there may be a primary defect at the B-cell level in Graves' disease.

Autoantibodies↗

The role of thyroid hormone autoantibodies in serum transport.

Eleven sera known to contain thyroid hormone autoantibodies were analysed by reverse-flow electrophoresis for the equilibrium distribution of thyroid hormones between these autoantibodies and the three normal binding proteins found in serum. The binding properties of the autoantibodies determined in vitro did not necessarily predict their contribution to transport in serum of T1 and T3. Some could both bind in vitro and transport in serum. Others were able to bind both hormones but transported only one. However, some autoantibodies could be specific, binding and transporting one hormone only. In some sera, the autoantibody was the dominant transport protein having drawn hormone from thyroxine-binding globulin which is normally the most important. The autoantibodies were not saturated even in euthyroid individuals, indicating that they bind hormone reversibly and are a part of an equilibrium system.

Autoantibodies↗

Thyrotrophin (TSH)-binding proteins in bacteria and their cross-reaction with autoantibodies against the human TSH receptor.

A screen of a range of bacteria normally found in gut flora identified eight with the ability to bind TSH specifically. These included the previously reported Yersinia enterocolitica, Gram-positive, Gram-negative, pathogenic and commensal organisms. Eleven preparations of TSH-receptor autoantibodies strongly able to displace 125I-labelled TSH from the mammalian TSH receptor differed in their ability to displace the tracer from binding to bacterial extracts. None could displace the tracer from E. coli 06-1, four displaced 125I-labelled TSH from E. coli V21/1 and five displaced the tracer from Y. enterocolitica. Of those immunoglobulin preparations which did react with the bacterial protein, their apparent potency compared with that of TSH in displacing tracer from bacterial binders was an order of magnitude greater than with the mammalian receptor. This is consistent with the autoantibodies having a relatively better fit with the bacterial antigen than with the receptor when compared with TSH. The bacterial-binding activity and mammalian receptor-binding activities in each of two samples co-chromatographed on a Remazol yellow GGL-Sepharose affinity column strongly indicated that the same immunoglobulin species reacts with both antigens. These results are consistent with the proposal that a bacterial protein is the primary immunogen for the TSH-receptor antibodies in at least some patients with Graves' disease.

Animals↗

Selective autoimmune response to the chicken-specific structures of thyroglobulin in Obese strain chickens.

The characteristics of thyroglobulin (Tg) autoantibodies in Obese strain (OS) chickens with thyroiditis have been defined and compared with those of polyclonal antibodies to chicken Tg produced by immunizing normal chickens and a rabbit, and with mouse monoclonal antibodies (MoAb) to chicken Tg. Chicken Tg autoantibodies (aAb), when tested against Tg from 24 species all showed specificity for chicken Tg which ranged from absolute to limited although in most instances cross-reactions with Tgs of other species were either absent or at a low level. Antibodies to chicken Tg produced by immunization showed a similar limited range of cross-reactions. Four of five chTg-MoAbs were specific for chicken Tg and the fifth was almost so. In competitive experiments, the polyclonal rabbit antibody could fully inhibit binding of all chicken Tg-aAb to chicken Tg but not vice versa. It was inferred that polyclonal rabbit Tg antiserum includes antibodies to all the epitopes seen by chicken Tg-aAb and many more besides. In similar experiments with four chicken Tg-MoAbs, the binding of one chicken Tg-aAb was unaffected, and three other patterns of inhibitions were defined. The binding to chicken Tg of a fifth chicken Tg-MoAb was enhanced rather than inhibited by chicken Tg-aAb. Some but not all chicken Tg-aAb preparations could differentiate between Tgs containing different amounts of thyroxine. We conclude that the autoantibodies to Tg in OS chickens are directed in the main against determinants unique to the species. Not all the species-specific determinants are involved in the autoimmune response but the number of epitopes involved is at least four. In these respects the immune response to Tg in OS chickens resembles that in autoimmune thyroid disease in humans. The conformation of chicken Tg may be affected by combination with antibody or by the content of thyroid hormone.

Animals↗

Thyroxine-binding globulin deficiency re-examined.

Seven sera, previously categorised as completely deficient in thyroxine-binding globulin (TBG) by an immunoelectrophoretic technique, were re-examined with a sensitive ELISA method. Only one of the sera was confirmed completely deficient by ELISA. The remaining six contained 0.08-0.19 mg/l. The protein was immunologically identical with 'normal' TBG, could bind to thyroxine and had the correct mobility in reverse-flow electrophoresis. Complete TBG deficiency may therefore be rare.

Dose-Response Relationship, Drug↗

Critical role of iodination for T cell recognition of thyroglobulin in experimental murine thyroid autoimmunity.

We have used two clonotypically distinct thyroglobulin (Tg)-specific, I-Ak restricted monoclonal T cell populations to investigate the role of thyroid peroxidase-catalyzed iodination in Tg recognition by autoreactive T cells. The results showed that these T cells could recognize Tg only it it was sufficiently iodinated. Unlike normal mouse Tg, noniodinated mouse Tg was unable to induce significant thyroid lesions but could trigger the production of Tg autoantibodies. In these experiments, the importance of T cell recognition of iodination-related epitopes was emphasized by the inability of serum antibodies to distinguish Tg on the basis of iodine content, whether they were induced with normal or noniodinated Tg. Therefore, thyroid peroxidase-dependent modification of Tg would appear to be central to its recognition by autoreactive T cells and hence its capacity to induce autoimmune thyroid lesions.

Amitrole↗

Novel separation method for serum immunoglobulins. Application to thyroid related antibodies.

A dye-based affinity chromatographic system using Remazol yellow GGL-Sepharose is described for the fractionation of serum immunoglobulins. Immunoglobulins are sequentially eluted from the gel columns using gradients of pH and salt with greater than 88% recovery. Specific immunoglobulin activities were identified as discrete peaks and antibodies raised against the same antigen were separated. Biological properties of antibodies were retained following chromatography. The method is applicable to both human and animal immunoglobulins.

Animals↗