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Biomedical subjects

J Christophe

Publications and source records attributed to J Christophe.

At least 127 records · Page 7Linked to original sources

Identification of two pro-VIP forms in a human neuroblastoma cell line.

The immunoreactivity of VIP and PHI standards, immobilized on a nitrocellulose membrane, was first assayed with various detection procedures. For VIP, the double bridge peroxidase-antiperoxidase (PAP) method was the most sensitive procedure, giving a detection limit of 0.1-0.3 pmol per mm2 with the 4 rabbit anti-VIP antisera tested. By contrast, the detection limit of immobilized PHI was 100 times higher with the 4 rabbit anti-PHI/PHM antisera tested presumably because major antigenic sites were masked in the immobilized peptide. With this information at hand, the VIP and PHI immunoreactivity of human neuroblastoma NB-OK-1 cells was tested after extraction, SDS-PAGE, electrotransfer, and PAP immunodetection. Two faint immunoreactive bands corresponding to two pro-VIP forms with an Mr of, respectively, 19 kDa and 18 kDa, were detected in undifferentiated cells. These distinct bands increased progressively and markedly during differentiation in the presence of dibutyryl cyclic AMP. In addition, two intermediary VIP forms of lower Mr (11 kDa and 6 kDa) and 3 kDa VIP itself were also present after 2 days of differentiation. The 19 kDa and 18 kDa pro-VIP forms were detected with a sensitivity several times higher than that of VIP and their staining was specific for VIP epitopes. By contrast, when using 4 rabbit anti-PHI/PHM antisera, we observed essentially the strong unspecific staining of a 17 kDa polypeptide. VIP immunoreactivity was also visualized by immunocytochemistry in neuroblastoma cells cultured on glass coverslips and fixed in situ. Specific VIP staining using the PAP method was present in 10 percent of the cells in the undifferentiated state.(ABSTRACT TRUNCATED AT 250 WORDS)

Bucladesine↗

Comparative structural requirements of thirty GRF analogs for interaction with GRF- and VIP receptors and coupling to adenylate cyclase in rat adenopituitary, liver and pancreas.

The ability of 30 synthetic GRF(1-29)-NH2 analogs to stimulate adenylate cyclase activity was investigated in membranes from rat adenopituitary, rat liver and rat pancreas. In adenopituitary membranes, GRF and GRF analogs interacted with specific GRF receptors, whereas in liver and pancreatic membranes, they interacted with VIP receptors. The C-terminal moiety of GRF was responsible for GRF receptor recognition as the hybrid analog (His1, D-Ala2)-GRF(1-9), VIP(10-28) stimulated pituitary adenylate cyclase through the occupancy of VIP receptors only. When GRF or VIP receptors were occupied by GRF analogs, the N-terminal part of the ligand appeared critical for adenylate cyclase activation. This was established by testing 30 GRF analogs mono-, bi- or tri-substituted in positions 1 to 10. Major observations included: (a) the characterization of (N-Ac-Tyr1, D-Arg2)-GRF(1-29)-NH2 as an antagonist of GRF-stimulated pituitary adenylate cyclase; (b) the discovery of the (N-Ac-Tyr1, D-Phe2)-, (His1, D-Ala2, D-Ser3, NLeu27)-, and (His1, D-Ala2, D-Thr7, NLeu27)-derivatives of GRF(1-29)-NH2 as specific antagonists of VIP receptors in rat pancreatic membranes; (c) the importance of the free NH2 function of amino acid residue 1 for pancreatic adenylate cyclase activation, and (d) the decreased efficiency of iodinated (Tyr1)-GRF(1-29)-NH2 as opposed to the non iodinated form, in all systems tested.

Adenylyl Cyclases↗

Interaction of synthetic N- and C-terminal fragments of helodermin with rat liver VIP receptors.

Synthetic helodermin was more potent than natural helodermin (purified from the venom of Gila monster) in activating adenylate cyclase in rat liver membranes. Two possible reasons for this discrepancy were discussed. Comparing adenylate cyclase activation to the binding of 125I-natural helodermin and 125I-VIP in the presence of six synthetic helodermin fragments (1-27, 7-35, 13-35, 17-35, 18-35 and 22-35), we conclude that the effects of both synthetic and natural helodermin were mediated through an interaction with VIP receptors. The C-terminal (28-35) extension of these peptides favored VIP receptor recognition. Their N-terminal extremity was not necessary for binding and for ensuing adenylate cyclase activation, illustrating again the atypical coupling of VIP receptors with the effector enzymatic system, in rat liver membranes.

Adenylyl Cyclases↗

Effector mechanisms of peptides of the VIP family.

The present review is focused on the exocrine pancreas and liver where the only known effector mechanism of VIP is the activation of adenylate cyclase in plasma membranes. A two-state model of activation-deactivation of the enzyme visualizes the participation of VIP receptors and Ns, the guanyl nucleotide stimulatory protein of adenylate cyclase. In the rat pancreas, VIP and GRF receptors are indistinguishable and disulfide bridges influence their functional integrity. The antagonism of VIP and somatostatin perhaps requires, at the adenylate cyclase level, the contribution of Ni, the guanyl nucleotide inhibitory protein. The potentiation of VIP by various stimulants acting on Ca2+ movements may rely on later events, e.g., on a concerted activation of protein kinases. When comparing quantitatively peptide binding to receptors with adenylate cyclase activation, cyclic AMP levels and amylase secretion, a tool is at hand to tailor synthetic agonists and antagonists of VIP, with appropriate changes in the N-terminal moiety of the peptide (a good agonist allows efficient coupling of receptors to the adenylate cyclase system). Apart from stimulus-secretion coupling, VIP may influence protein synthesis in the rat pancreas, through the phosphorylation of ribosomal protein S6, and may alter the activity of the endoplasmic reticulum via the phosphorylation of Mr = 21 kDa and Mr = 25 kDa proteins. In rat liver membranes, high affinity VIP receptors are specifically labelled with 125I-helodermin and are coupled to adenylate cyclase (at variance with low affinity VIP receptors). These receptors are highly responsive to divalent cations and to guanyl nucleotides.

Adenylyl Cyclases↗

Comparative efficacy of seven synthetic glucagon analogs, modified in position 1, 2 and/or 12, on liver and heart adenylate cyclase from rat.

Crude fresh membranes from rat liver and membranes from rat heart obtained according to Snyder and Drummond were tested for adenylate cyclase activation by glucagon (Gn) and seven glucagon analogs including (Ala2)-, (Arg12)-, (Des-His1, Arg12), (Phe1, Arg12)-, (N-Ac-His1, Arg12)-, (1-Me-His1, Arg12)-, and (3-Me-His1, Arg12)-glucagon. (Des-His1, Arg12)-glucagon acted as a competitive antagonist in heart membranes and as a partial agonist in liver membranes. Results obtained with analogs where His1 was modified suggest that the size of the imidazole ring and the charge of its nitrogen 1, but not the charge of the free amino group of histidine, played a major role in biological activity. When comparing functional glucagon receptors in liver and heart membranes, it appears that the first receptors were more sensitive to the hormone and more efficiently coupled to adenylate cyclase.

Adenylyl Cyclases↗

Helodermin has a VIP-like effect upon canine blood flow.

The effect of helodermin on vascular physiology was studied in anesthetized dogs using a synthetic replicate of helodermin and helodermin related peptides. Intraarterial infusion of helodermin caused a dose-dependent increase in femoral blood flow. Helodermin was 16 times less potent than VIP and 5 times more potent than PHM (human PHI). The helodermin effect lasted significantly longer; the half-life of the helodermin effect was 6.5 times longer than VIP. Synthetic helodermin (Hd) N-terminal fragment Hd(1-27)NH2 retained substantial activity similar to the full helodermin molecule but the prolonged effect was lost. Hd(7-35) and Hd(22-35) were inactive in this system. Intravenous injection of synthetic helodermin produced prolonged systemic hypotension and tachycardia; and, similar to VIP, it increased the common carotid arterial blood flow while those of the superior mesenteric and femoral arteries were decreased. The results demonstrate the VIP-like vasodilating activity and cardiovascular effects of helodermin in anesthetized dogs.

Animals↗

Propylbenzilylcholine mustard is selective for rat heart muscarinic receptors having a low affinity for agonists.

Propylbenzilylcholine mustard (PrBCM), an irreversible muscarinic antagonist, inactivated receptors with a low affinity for agonists faster than those with a high affinity in rat heart membranes. This result was obtained using either: (a) a low ionic strength buffer (allowing heterogeneity among antagonist binding sites, (b) the same buffer enriched with GTP, or (c) a high ionic strength buffer (where antagonists showed similar binding characteristics to all receptors). These data suggest either that PrBCM is a 'selective' antagonist which detects conformational differences between low and high affinity receptors, or that the agonist affinity of cardiac muscarinic receptors is determined, in part, by the relative concentrations of receptor and GTP binding protein.

Albumins↗

Receptors involved in helodermin action on rat pancreatic acini.

Helodermin is a new peptide isolated from the venom of Heloderma suspectum. Its effects on rat pancreatic acini were compared with those of secretin and vasoactive intestinal peptide (VIP). Four classes of receptors with decreasing affinity for secretin (S1, S2, S3, and S4) were first delineated. Occupancy of S1 and S2 by secretin was responsible for a biphasic adenosine 3',5'-cyclic monophosphate (cAMP) response. S3 was VIP preferring so that the VIP-induced increase in cAMP could be inhibited by VIP-(10-28). S2 and S3 allowed cAMP elevation, protein phosphorylation, weak secretory effects, and potentiation of cholecystokinin octapeptide (CCK-8) when occupied by secretin and VIP, respectively. A more efficient exocytosis was observed with secretin interacting with low-affinity receptors S4. Helodermin increased cAMP levels 14-fold, this increase being inhibited by VIP-(10-28). Low concentrations of helodermin stimulated amylase secretion twofold and potentiated secretion by CCK-8. High concentrations of helodermin stimulated secretion another 2.6-fold. Helodermin bound to the four secretin receptors with a weak selectivity. At low concentration, helodermin stimulated cAMP elevation, protein phosphorylation, amylase release, and potentiation of CCK-8 through S3, whereas at high concentration it stimulated secretion via S4.

1-Methyl-3-isobutylxanthine↗

Specific labelling of high-affinity vasoactive intestinal peptide receptors in rat liver membranes by a growth hormone-releasing factor analog.

(125I-His1, D-Ala2, Nleu27)-growth hormone-releasing factor (GRF) (1-29)-NH2, initially developed as a possible radioligand for identifying GRF receptors in the anterior pituitary, was found to bind to rat hepatic membranes. The tracer was stable, bound rapidly and reversibly, and its dissociation was accelerated by GTP. Radioligand binding was enhanced by the divalent cations Mg2+, Ca2+ and Mn2+ and inhibited by the chelating agent EDTA. Vasoactive intestinal peptide (VIP), PHI, secretin, GRF(1-29)-NH2, (His1, D-Ala2, Nleu27)-GRF(1-29)-NH2, and (D-Ala2, Nleu27)-GRF(1-29)-NH2 dose-dependently inhibited tracer binding. The order of potency of the unlabelled peptides tested suggested that (125I-His1, D-Ala2, Nleu27)-GRF(1-29)-NH2 specifically identified a high-affinity subclass of VIP receptors in rat liver membranes.

Animals↗

Decreased stimulation of adenylate cyclase by growth hormone-releasing factor in the anterior pituitary of old rats.

Adenylate cyclase activity was studied in anterior pituitary homogenates from young adult (6 months) and old (20 and 24 months) male rats. Basal, NaF-, GTP-, 5'-guanylimidodiphosphate (Gpp(NH)p)- and forskolin-stimulated activities were similar in the three groups, implying that the stimulatory guanyl nucleotide regulatory binding site (NS) and the catalytical unit were unaffected by aging. Vasoactive intestinal peptide (VIP)-stimulated adenylate cyclase activity was also identical in the three groups. The efficacy (i.e., the maximum effect) of growth hormone-releasing factor [GRF(1-29)-NH2] on adenylate activity was reduced by 45-49% in old and senescent rats with no change in peptide potency (i.e., the concentration required for half-maximal enzyme stimulation). These results suggest that aging induced a selective loss of functional GRF receptors but influenced neither the coupling between receptors, NS and the catalytic unit nor the efficacy of the catalytic unit per se.

Adenylyl Cyclases↗

In vitro effects of gallamine on dissociation kinetics of (3H)N-methylscopolamine and (3H)pirenzepine from rat brain muscarinic receptors.

Gallamine inhibited the binding of both (3H)N-Methylscopolamine ((3H)NMS) and (3H)Pirenzepine ((3H)PZ) in the hippocampus, striatum and cortex of rat brain. Competition curves between gallamine and (3H)PZ suggested that gallamine recognized an homogeneous class of receptors (Hill coefficient close to 1) whereas competition curves, using (3H)NMS as tracer, were compatible with two classes of gallamine receptors (Hill coefficient below 0.7). The latter phenomenon could be explained, at least partially, by the inhibitory effect exerted by gallamine on the k off of (3H)NMS. This effect was already observed at a 10 microM gallamine concentration and reached 100% at 1 mM (a gallamine concentration reducing the k off of (3H)PZ by 30% only). The nature of the radioligand rather than the relative abundance of M1 - M2 receptors was probably responsible for this discrepancy. Gallamine inhibited the (3H)NMS dissociation rate from brain M1 and M2 receptors (i.e. receptors with high and intermediate affinity for pirenzepine) with a lower potency than from cardiac M2 receptors (i.e. receptors with low affinity for pirenzepine).

Animals↗

Kinetic studies of [3H]-N-methylscopolamine binding to muscarinic receptors in the rat central nervous system: evidence for the existence of three classes of binding sites.

We compared the binding of [N-methyl-3H]scopolamine methyl chloride [( 3H]NMS) and pirenzepine to muscarinic receptors in four regions of the rat central nervous system (cortex, hippocampus, striatum, and cerebellum) and in rat heart. Equilibrium binding studies suggested the existence of three classes of receptors: A, receptors with high affinity for pirenzepine and [3H] NMS (in cortex, hippocampus, and striatum); B, receptors with intermediate affinity for pirenzepine and high affinity for [3H]NMS (in the same brain regions); and C, receptors with low affinity for pirenzepine and [3H]NMS (in cerebellum and heart). Dissociation kinetic studies indicated that the receptor types A, B, and C had different koff values allowing, therefore, a separate study of their binding properties. We observed that: [3H]NMS recognized muscarinic receptors A, B, and C with the following order of potency: B greater than A much greater than C; and pirenzepine recognized these receptors with a different order of potency: A much greater than B greater than C. Thus, dissociation kinetics provide a useful tool to identify muscarinic receptor types.

Animals↗

Rapid electrotransfer of proteins from polyacrylamide gel to nitrocellulose membrane using surface-conductive glass as anode.

A new type of inexpensive horizontal apparatus for the electrophoretic transfer of proteins from a gel to an immobilization membrane has been developed. In this system, gel and membrane were directly pressed between two flat electrodes. A surface-conductive glass was used as anode and a stainless-steel plate as cathode. Proteins could be transferred from polyacrylamide gel to nitrocellulose sheet, with a yield of at least 90% in 60-90 min, without overheating, using a voltage gradient of 30-40 V/cm. Moderate volumes of separate anodic (with 20% methanol) and cathodic (with 0.1% sodium dodecyl sulfate) buffers were suited for optimal transfer of proteins with relative molecular mass (Mr) in the 14,000-94,000 range.

Animals↗

Effects of temperature and ethanol on agonist and antagonist binding to rat heart muscarinic receptors in the absence and presence of GTP.

The effect of temperature on the binding of four agonists and three antagonists to rat heart muscarinic receptors was studied in the absence and presence of GTP. The binding of agonists to two states (or classes) of receptors, in the absence of GTP, led to enthalpy and entropy changes that decreased sharply above 25 degrees C, suggesting that agonists induced 'isomerization' reactions (large conformational changes and/or receptor-effector association). Both temperature increase and ethanol decreased hydrophobic interactions, thereby hindering binding and/or agonist-induced 'isomerization' reactions. Addition of GTP to the incubation medium also appeared to reverse (or prevent) 'isomerization' reactions. For agonist binding to the low-affinity state, in the presence of GTP, and for antagonist binding, the thermodynamic parameters observed could be readily explained by simple receptor-ligand associations; large entropy increases and small enthalpy increases, provoked by hydrophobic and ionic interactions, were partly neutralized by entropy and enthalpy decreases, due to hydrogen bonds and van der Waals interactions. The muscarinic antagonists used (atropine, n-methylscopolamine and dexetimide), being more hydrophobic molecules than the agonists tested (carbamylcholine, oxotremorine and pilocarpine), induced larger entropy changes or more negative enthalpy changes.

Animals↗

Immunoreactive helodermin-like peptides in rat: a new class of mammalian neuropeptides related to secretin and VIP.

Helodermin is a peptide from the venom of the lizard Heloderma suspectum (Gila Monster) showing a high degree of sequence similarity with VIP, PHI and secretin in its N-terminal moiety. The present data support the presence of peptide(s) closely related to helodermin in the brain, gut and salivary glands of rat. In our radioimmunoassays, we routinely used one of the three specific antisera obtained from rabbits that were immunized against lizard helodermin coupled to bovine serum albumin with carbodiimide. Heat- and acid-stable immunoreactive helodermin-like material was more abundant in striatum, hippocampus and anterior pituitary than in cerebral cortex and hypothalamus. High levels of helodermin-like material were also present in salivary glands, duodenum and jejunum. When submitted to gel permeation chromatography on a TSK-G 2000 SW column, the apparent molecular radius of most of the immunoreactive material ranged from 6 to 12 KDa.

Animals↗

Solubilization from rat pancreatic plasma membranes of a cholecystokinin (CCK) agonist-receptor complex interacting with guanine nucleotide regulatory proteins coexisting in the same macromolecular system.

Using the non-denaturing detergent 3-[(3-cholamidopropyl)dimethylammonio]-2-hydroxy-1-propane sulfonate (Chaps), cholecystokinin (CCK) receptors were solubilized from rat pancreatic membranes as a reversible complex with the CCK 31-39 nonapeptide 125I-labelled by the Bolton and Hunter reagent. Bound ligand dissociation from this soluble complex was similar to that from the membranous receptors of origin and the marked increase in the rate of dissociation induced by GTP was preserved in the soluble state, indicating that the solubilized CCK receptors remained functionally coupled with the guanine nucleotide regulatory site modulating the affinity for CCK. In fact, two guanine nucleotide regulatory proteins, Ns and Ni, coexisted in the soluble complex as established by identifying the 42-kDa subunit of Ns and the 40-kDa subunit of Ni, after ADP-ribosylation by cholera toxin and Bordetella pertussis toxin, respectively.

Animals↗

Immunonephelometric quantitation of the apolipoprotein C-III in human plasma.

A quantitative assay, based on endpoint immunonephelometry, was developed for human apolipoprotein C-III (Apo C-III) in plasma and lipoprotein fractions. The standard curve was constructed either with purified Apo C-III2 as a primary standard or with plasma as a secondary standard. It was linear between 50 and 400 ng Apo C-III per sample, corresponding to 1 microliter undiluted plasma. The intra- and interassay coefficients of variation (CV values) were 2.2 and 6.3%, respectively. The Apo C-III immunoreactivity was not influenced by detergents, denaturants nor by delipidation. The use of a non-ionic detergent (Apovax, 0.1 g/l) avoided the need for organic solvent extraction for plasma containing up to 4 g of triglycerides/l by reducing the sample turbidity. As measured in 126 normolipidemic subjects, the plasma Apo C-III concentration was 0.118 +/- 0.028 g/l (mean +/- SD). Apo C-III concentrations were only slightly elevated in patients with Fredrickson type IIa hyperlipoproteinaemia. The Apo C-III levels were nearly 3 times higher in type I, IIb, III and IV patients, while subjects with type V hyperlipaemia had about a 5-fold increase in Apo C-III compared to the healthy. The plasma Apo C-III values were strongly correlated with the plasma triglyceride concentrations (r = 0.80, n = 201). The Apo C-III distribution among the various lipoprotein fractions showed a higher proportion of Apo C-III in VLDL in hypertriglyceridaemic subjects compared to normolipaemic subjects.

Apolipoprotein C-III↗