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Y C Patel

Publications and source records attributed to Y C Patel.

At least 73 records · Page 4Linked to original sources

Cloning and expression of a human somatostatin-14-selective receptor variant (somatostatin receptor 4) located on chromosome 20.

Based on pharmacological, biochemical, and molecular criteria, multiple somatostatin receptor (SSTR) subtypes selective for somatostatin (SST)-14 and -28 have been postulated to exist in both the brain and periphery. We report here on the cloning and characterization of a human gene encoding a new member of the guanine nucleotide-binding protein-linked SSTR family, termed human (h)SSTR4. The 388-amino acid protein, with a predicted molecular mass of approximately 42 kDa, displays sequence similarity, particularly within putative transmembrane domains, with the recently cloned hSSTR1 (69%), hSSTR2 (56%), and hSSTR3 (58%). Membranes prepared from COS-7 cells transiently expressing the hSSTR4 gene bound 125I-[Leu8,D-Trp22,Tyr25]SST-28 in a saturable manner with high affinity (approximately 60 pM) and with a pharmacological profile and rank order of potency ([D-Trp8]SST-14 > SST-14 > SMS 201-995 > SST-28 > MK-678) indicative of a SST-14-selective receptor. Ki values for the inhibition of 125I-[Leu8,D-Trp22,Tyr25]SST-28 binding to the expressed receptor by these somatostatinergic peptides were 0.3, 1.1, 1.4, 2.2, and 6.5 nM, respectively. High affinity agonist binding to hSSTR4 was significantly reduced by GTP and pertussis toxin, indicating association of the expressed receptor with pertussis toxin-sensitive guanine nucleotide-binding proteins. Northern blot analysis revealed the presence of an SSTR4 mRNA species of approximately 4 kilobases in select regions of the monkey brain, including the hippocampus, hypothalamus, cortex, and striatum, with little or no receptor mRNA detected in either the olfactory tubercle, medulla, cerebellum, or amygdala. The SSTR4 gene maps to human chromosome 20. These findings document the existence of a novel human SSTR gene. Although the hSSTR4 displays an overall deduced amino acid homology of 86% with the recently reported rat homolog [Proc. Natl. Acad. Sci. USA 89:11151-11155 (1992)], the two gene products possess distinctive pharmacological profiles and affinities for the SST agonists SMS 201-995 and MK-678.

Amino Acid Sequence↗

Tissue-specific distribution of cross-linked somatostatin receptor proteins in the rat.

Pharmacological studies have suggested that the somatostatin (SS) receptor is heterogeneous and exhibits SS-14-and SS-28-selective subtypes. Whether such subtypes arise from molecular heterogeneity of the receptor protein has not been definitively established. Previous reports characterizing the molecular properties of the SS receptor by the cross-linking approach have yielded divergent size estimates ranging from 27 kDa to 200 kDa. In order to resolve this discrepancy, as well as to determine whether SS-14 and SS-28 interact with specific receptor proteins, we have cross-linked radioiodinated derivatives of [125I-Tyr11]SS-14 (T*-SS-14) and [Leu8,D-Trp22,125I-Tyr25]SS-28 (LTT*-SS-28) to membrane SS receptors in rat brain, pituitary, exocrine pancreas and adrenal cortex using a number of chemical and photoaffinity cross-linking agents. The labelled cross-linked receptor proteins were analysed by SDS/PAGE under reducing conditions followed by autoradiography. Our findings indicate that the pattern of specifically labelled cross-linked SS receptor proteins is sensitive to the concentration of chemical cross-linking agents such as disuccinimidyl suberate and dithiobis-(succinimidyl propionate). Labelled high-molecular-mass complexes of cross-linked receptor-ligand proteins were observed only when high concentrations of these cross-linkers were employed. Using optimized low concentrations of cross-linkers, however, two major labelled bands of 58 +/- 3 kDa and 27 +/- 2 kDa were detected. These two bands were identified as specifically labelled SS receptor proteins subsequent to cross-linking with a number of photoaffinity cross-linking agents as well. We demonstrate here that the 58 kDa protein is the major SS receptor protein in the rat pituitary, adrenal and exocrine pancreas, whereas the 27 kDa moiety represents the principal form in the brain. Additionally, the presence of a minor specifically labelled band of 32 kDa was detected uniquely in the brain, and a minor labelled protein of 42 kDa was observed in the pancreas. The labelling pattern obtained with LTT*-SS-28 was identical to that observed with T*-SS-14. Labelling of the 27 kDa band by either ligand was inhibited by SS-14 and SS-28 in a dose-dependent manner. Densitometric quantification showed that SS-14 exhibited greater than 2-fold greater potency than SS-28 for inhibiting the labelling of the 27 kDa species. These findings emphasize the need for careful interpretation of cross-linking data obtained for SS receptors, and provide evidence for molecular heterogeneity and for a tissue-specific distribution of the two principal SS receptor proteins.

Adrenal Cortex↗

Photoaffinity labeling of the somatostatin receptor: identification of molecular subtypes.

Pharmacological studies have suggested that the somatostatin (SS) receptor is heterogeneous and may exhibit subtypes selective for SS-14 and SS-28. Whether this heterogeneity can be explained by separate molecular forms of the receptor protein is unclear. In the present study, we have developed a novel photosensitive azido derivative of the octapeptide SS analog Tyr3 SMS (EE 581) and used it as a photoaffinity probe to characterize the molecular components of the SS receptor in five receptor positive tissues (normal rat brain, pituitary, pancreas, and adrenal cortex, and mouse AtT-20 pituitary tumor cells). [125I]EE-581 labeled specific high affinity binding sites in all these tissues (Kd range 1.3-1.67 nM). Photoaffinity labeled membrane SS receptors were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis followed by autoradiography. Three specifically labeled SS receptor proteins of 80 kilodaltons (kDa), 58 kDa, and 32 kDa were identified and exhibited a tissue-specific distribution. The 58 kDa species was the exclusive form in pancreas, adrenal cortex, and AtT-20 cells and the dominant form in brain. The 32 kDa receptor protein was expressed as a minor form (ratio of 58 kDa:32 kDa 3:1), exclusively in brain. The 80 kDa receptor was found only in the pituitary where it occurred as the sole SS receptor species. Competition experiments showed that the 58 kDa and 32 kDa receptor proteins in brain reacted with SS-14 greater than SS-28; in contrast, the 58 kDa protein in AtT-20 cells bound SS-28 greater than SS-14 suggesting the existence of distinct subtypes of the 58 kDa receptor in these two tissues. These data represent the first systematic evaluation of the molecular forms of SS receptor proteins by photoaffinity labeling in different target tissues and provide direct evidence for molecular heterogeneity and SS-14/SS-28 selectivity; a major 58 kDa protein present in most tissues, an additional 32 kDa protein uniquely expressed in brain, and an 80 kDa protein exclusive to the normal pituitary.

Adrenal Glands↗

Quinolinic acid stimulates somatostatin gene expression in cultured rat cortical neurons.

Striatal atrophy in Huntington's disease (HD) is characterized by selective preservation of a subclass of neurons colocalizing NADPH-diaphorase (NADPH-d), somatostatin (SS), and neuropeptide Y (NPY), which have been reported to show three- to fivefold increases in SS-like immunoreactivity (SSLI) and NPY content. Since HD brain is capable of producing excessive quantities of the excitotoxin quinolinic acid (Quin), an N-methyl-D-aspartate (NMDA) receptor agonist, and since experimental Quin lesions show neuronal loss with sparing of NADPH-d/SS/NPY neurons, it has been suggested that Quin may be important in the pathogenesis of HD. In the present study we determined whether Quin stimulates SS gene function in cultured cortical cells known to be rich in NADPH-d/SS/NPY neurons. Cultures of dispersed fetal rat cortical cells were exposed to Quin (1 and 10 mM) with or without (-)-2-amino-5-phosphonovaleric acid (APV; 0.5 mM), an NMDA receptor antagonist, NMDA (0.2 and 0.5 mM), and glutamate (Glu; 0.5 mM). Medium and cellular SSLI was determined by radioimmunoassay and SS mRNA by Northern analysis with a cRNA probe. Quin induced significant (p less than 0.01) 1.6- and 2.5-4 fold increases in SSLI and SS mRNA accumulation, respectively, which were abolished by APV. Release of SSLI into the culture medium was stimulated two- to fivefold by Quin over a 2- to 20-h period. The increase in SS mRNA produced by Quin was time and dose dependent. A similar dose-dependent increase in SS mRNA comparable with that observed with Quin was induced by NMDA.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Regulation of islet somatostatin secretion and gene expression: selective effects of adenosine 3',5'-monophosphate and phorbol esters in normal islets of Langerhans and in a somatostatin-producing rat islet clonal cell line 1027 B2.

To investigate cAMP-dependent regulation of somatostatin secretion and gene expression in the islets of Langerhans, we have correlated the effects of forskolin, theophylline, and (Bu)2cAMP (dbcAMP) on the secretion of somatostatin-like immunoreactivity (SLI), cAMP generation, and somatosatin mRNA (S-mRNA) accumulation by cultured rat islet cells and a rat somatostatin-producing islet tumor cell line (1027 B2). Additionally, we have compared these effects with those of phorbol esters. Forskolin induced large acute increases in cAMP levels in islet cells, whereas theophylline produced modest sustained elevations in cAMP. During 4-h exposure to islets cells, forskolin, theophylline, and dbcAMP produced time- and dose-related increases of up to 14-fold in SLI release and up to 5-fold in S-mRNA levels. The rate of increase in S-mRNA paralleled secretion and occurred with the following order of potency: forskolin greater than dbcAMP greater than theophylline. The analog 1,9-dideoxyforskolin, which is unable to activate adenylyl cyclase, produced a small increase in SLI release without affecting S-mRNA. The effects of short term increases in islet cAMP levels and SLI release on long term changes in S-mRNA accumulation were investigated in a 48-h study with forskolin. Pretreatment of islet cells for 30 min with forskolin evoked large acute increases in cAMP levels and SLI release. S-mRNA rose in a biphasic pattern, with an acute increase at 30 min followed by a secondary increase at 12-48 h. In 1027B2 cells, forskolin and theophylline generated large increases in cAMP levels. Despite this, the two agents as well as dbcAMP produced only slight (20-35%) stimulation of SLI release and S-mRNA accumulation. Phorbol 12-myristate 13-acetate and phorbol 12,13-dibutyrate evoked dose-dependent stimulation of SLI secretion of up to 4-fold from islet cells without altering S-mRNA. Both secretion and S-mRNA were unresponsive to phorbol esters in 1027 B2 cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenoma, Islet Cell↗

Pharmacokinetics of alfentanil and clinical responses during cardiac surgery.

This study assessed the pharmacokinetic and pharmacodynamic behaviour of alfentanil during and after coronary artery bypass grafting (CABG). Twenty-eight patients with good ventricular function having CABG were divided into three groups and premedicated with morphine 0.1 mg.kg-1 IM, scopolamine 0.005 mg.kg-1 IM and diazepam 0.1 mg.kg-1 PO. Group I patients received an infusion of 250 micrograms.kg-1 of alfentanil over one hour coincidental with a second infusion at 2.5 micrograms.kg-1.min-1 which was continued to the end of surgery. Patients in group II received 300 micrograms.kg-1 and 3.0 micrograms.kg-1.min-1 and patients in group III 350 micrograms.kg-1 and 3.5 micrograms.kg-1.min-1. The tracheas of all patients were intubated after receiving alfentanil 96 micrograms.kg-1 and pancuronium 0.15 micrograms.kg-1. Haemodynamic responses to intubation and surgical stimuli (greater than or equal to 20 per cent increase in heart rate and/or systolic blood pressure from control) were treated with isoflurane, one to two per cent inspired, until abolished. Blood samples were taken during and after surgery for plasma alfentanil concentrations which were determined by radioimmunoassay. After surgery the times to awakening and extubation, and alfentanil elimination half-life (t1/2B = 0.693/-k) were determined for each patient. Haemodynamic responses occurred in 20 patients. There were no significant differences in any variable among the groups. The times to awakening and extubation for all patients were 3.2 +/- 0.6 and 8.8 +/- 1.2 hr (mean +/- SEM) respectively. The elimination half-life for all patients was 5.1 +/- 1.0 hr (mean +/- SEM).(ABSTRACT TRUNCATED AT 250 WORDS)

Alfentanil↗

Mechanism of action of somatostatin: an overview of receptor function and studies of the molecular characterization and purification of somatostatin receptor proteins.

To determine whether somatostatin receptor subtypes arise from molecular heterogeneity of the receptor protein, we have cross-linked the putative receptor in normal rat tissues and in AtT-20 and GH3 cells, both chemically with SS-14, SS-28 and Tyr3 SMS ligands, as well as by photoaffinity labeling with an azido derivative of Tyr3 SMS (EE 581). Three prominent somatostatin receptor proteins of 58-kDa, 32-kDa, and 27-kDa size have been identified. These proteins exhibit a tissue-specific distribution, ligand selectivity, and relative preference for SS-14 and SS-28 binding, and thus qualify as somatostatin receptor subtypes. Using EE 581 as a photoaffinity probe, the 58-kDa and 32-kDa proteins have been purified to homogeneity from brain and AtT-20 cells by successive SDS-PAGE. The 58-kDa form has been trypsinized and amino acid sequence data obtained from four tryptic fragments. With the help of synthetic oligonucleotides derived from these sequences, work is currently in progress to clone the 58-kDa protein to elucidate its complete sequence, its expression, and its functional relationship to the somatostatin receptor and its pharmacological subtypes.

Amino Acid Sequence↗

Peptides derived by processing of rat prosomatostatin near the amino-terminus: characterization, tissue distribution, and release.

Mammalian prosomatostatin (pro-S) undergoes extensive processing at the C-terminal segment where the somatostatin-like biological activities (S-14 and S-28) reside. The recent discovery of pro-S-(1-10) (antrin) as a prominent mature product in the stomach suggests that pro-S may also be processed at the N-terminus. In the present study we have developed an antibody directed against the N-terminal segment of pro-S-(1-10) capable of detecting peptides extended at the C-terminus of pro-S-(1-10) to characterize N-terminal processing of rat pro-S. Specifically, we have 1) examined the relative abundance of pro-S-(1-10)-like immunoactivity [pro-S-(1-10)] in different somatostatin tissues as an index of tissue-specific N-terminal processing, 2) compared the concentrations of pro-S N- and C-terminal immunoreactive peptides, 3) used HPLC and region-specific RIAs directed against both the N- and C-terminal segments of pro-S to identify and characterize novel N-terminal peptides, 4) studied the tissue distribution and release of the N-terminal peptides; and 5) characterized and quantified a 7-kDa molecule equivalent to pro-S without the C-terminal S-28 sequence. Acetic acid (1 M)-pepstatin extracts of hypothalamus, cerebral cortex, antrum, jejunal mucosa, and pancreas were fractionated by reverse phase and gel permeation HPLCs. Whole tissue extracts as well as the column effluent were monitored by region-specific RIAs using antibodies against pro-S-(1-10), S-28-(1-12), and S-14. Other than the pancreas, all S-producing tissues were rich in pro-S-(1-10) LI. Its concentration was 1- to 4-fold lower than those of S-14 LI and S-28-(1-12) LI. Tissue pro-S-(1-10) LI was heterogeneous, consisting of at least eight molecular forms with respective mol wt of 1,000 (1 kDa), 1,500 (1.5 kDa), 2,500 (2.5 kDa), 3,500 (3.5 kDa), 4,500 (4.5 kDa), 7,000 (7 kDa), 8,000 (8 kDa), and 10,000 (10 kDa). Based on the simultaneous presence or absence of C-terminal immunoreactivity, the 10-kDa form corresponded to pro-S, 8 kDa to pro-S-(1-76), and 7 kDa to pro-S without the S-28 sequence. The predominant N-terminal forms corresponded to 1 kDa [pro-S-(1-10)] and 7 kDa. The 1-, 1.5-, 2.5-, and 7-kDa forms were identified as secretion products in portal blood or in medium from cultured 1027 B2 islet somatostatin cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Binding and internalization of somatostatin, insulin, and glucagon by cultured rat islet cells.

The pathways by which islet B, A, and D cells bind and internalize homologous (self) and heterologous (other) islet hormones were compared. [125I-Tyr]Somatostatin-14 (S-14), 125I-insulin, and 125I-glucagon were incubated with monolayer cultures of neonatal rat islet cells. Tissues were processed for quantitative electron microscopic autoradiography by the probability circle method coupled to morphometry. For all three radioligands and all three cell types surface labeling was rapidly followed by internalization of the radioligands into endocytotic vesicles. The further intracellular movement of the ligand occurred in a time- and temperature-related manner and depended on whether it was homologous or heterologous for the cell in question. Thus [125I-Tyr]S-14 in B and A cells, 125I-insulin in A and D cells, and 125I-glucagon in B and D cells were rapidly transferred from endocytotic vesicles to lysosomal structures. By contrast, [125I-Tyr]S-14 in D cells, 125I-insulin in B cells, and 125I-glucagon in A cells showed poor progression from endocytotic vesicles to downstream vesicular structures. We conclude that (a) each of the three radioligands is internalized by islet cells in a time- and temperature-dependent manner; (b) after initial internalization the further intracellular progression of the endocytosed radioligand occurs freely in cells heterologous for the radioligand but poorly in cells homologous for the radioligand; and (c) binding and endocytosis can be uncoupled from lysosomal degradation of ligand.

Animals↗

Evidence for multiple protein constituents of the somatostatin receptor in pituitary tumor cells: affinity cross-linking and molecular characterization.

Previous studies have shown that somatostatin receptors on AtT-20 and GH3 pituitary tumor cells show relative preference for binding somatostatin-28 (S-28) and somatostatin-14 (S-14), respectively. Here we have attempted to determine whether this selectivity can be explained by molecular heterogeneity of the receptor. Cells were incubated with [125I-Tyr11]S-14, [125I-Leu8-D-Trp22,Tyr25]S-28, and [125I-Tyr3]SMS, and the bound ligand was chemically cross-linked with bis-[2-succinimido-oxycarbonyloxy)ethyl]sulfone, disuccinimidyl suberate, or dithiobis (succinimidyl propionate). The solubilized cross-linked material was analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, followed by autoradiography. [125I-Tyr11]S-14 labeled three specific receptor proteins of 57K, 42K, and 27K mol wt in AtT-20 cells. The relative proportions of the protein bands were unaltered by the use of whole cells or cell membranes or by the inclusion of dithiothreitol or antiproteolytic agents. With both [125I-Tyr11]S-14 and [125I-LTT]S-28, the 57K protein constituted the major labeled component, representing 70-75% of the total cross-linked proteins. Labeling of the three protein species by [125I-Tyr11]S-14 and [125I-LTT]S-28 was inhibited by both S-14 and S-28 in a dose-dependent manner. S-28 was 10-20 times more potent than S-14 for inhibiting the labeling by both ligands of the principal receptor species of 57K. By contrast, when a radioiodinated derivative of the octapeptide analog octreotide ([125I-Tyr3]SMS) was used as ligand, the 27K protein was preferentially labeled, whereas the 57K and 42K bands were detected only as minor components. Labeling of GH3 cells with [125I-Tyr11]S-14 and [125I-LTT]S-28 revealed three cross-linked proteins of 57K, 42K, and 27K mol wt similar to those observed in AtT-20 cells. However, in this cell line the 27K protein, not the 57K species, was the dominant component identified with these two ligands, comprising 40-50% of the total cross-linked proteins. These results suggest that there are three somatostatin receptor proteins of 57K, 42K, and 27K in pituitary cells. In AtT-20 cells, the 57K protein constitutes the major receptor protein labeled by [125I-Tyr11]S-14 and [125I-LTT]S-28, whereas the 27K protein is the major species labeled by [125I-Tyr3]SMS. The 27K, not the 57K, moiety is the principal receptor form in GH3 cells. Such ligand- and tissue-selective binding by the somatostatin receptor provides strong evidence for receptor molecular heterogeneity.

Animals↗

Tissue-specific alterations in somatostatin mRNA accumulation in streptozocin-induced diabetes.

In streptozocin-induced diabetes in rats, there is a marked increase in the content and release of immunoreactive somatostatin (SLI) from the pancreas and upper gut. To elucidate whether these SLI changes are associated with alterations in somatostatin gene transcription, we measured somatostatin mRNA (SmRNA) accumulation in these and other SLI-producing tissues. Pancreas, stomach, jejunum, hypothalamus, and cerebral cortex were removed from control rats, 6-wk-diabetic rats, and diabetic rats treated with insulin for 6 wk. Total RNA was isolated by centrifugation through CsCl and fractionated on agarose gels. A sensitive radiodensitometric hybridization assay was used to determine SmRNA levels in absolute amounts by in vitro synthesized sense-strand RNA as a quantitative standard and antisense cRNA as a specific probe. SLI was determined by radioimmunoassay. SmRNA exhibited size heterogeneity between the different control and diabetic tissues. A 2- to 3-fold increase in total SmRNA was found in pancreas and stomach of the diabetic rats that suppressed toward normal with insulin treatment. These two tissues also exhibited significant 1.6- to 2.6-fold increases in SLI, respectively. The remaining tissues showed no diabetes-related changes in SLI or SmRNA. We conclude that in insulinopenic diabetes, tissue SLI and SmRNA accumulation undergo parallel changes; are increased in pancreas and upper gut, reflecting augmented somatostatin synthesis; are reciprocally related to insulin acting directly or indirectly on somatostatin-producing cells; and are unchanged in the lower gut and brain, suggesting tissue-specific regulation of somatostatin gene transcription in diabetes.

Animals↗

Coexistence of polycystic ovary syndrome and pelvic endometriosis.

Pelvic endometriosis was observed in 15 of 91 women (16.5%) with laparoscopically confirmed polycystic ovary syndrome. There were no significant clinical differences among those with and those without endometriosis. The groups were of similar age, parity, and ponderal indices and had similar incidences of oligomenorrhea, hirsutism, and infertility; the serum concentrations of LH, FSH, LH/FSH, prolactin, testosterone, and dehydroepiandrosterone sulfate were also similar in each group. However, women with polycystic ovaries and endometriosis presented more frequently with regular menses (40 versus 14.5%; P = .05) and less frequently with secondary amenorrhea (0 versus 38.2%; P = .05) and galactorrhea (0 versus 9.2%; P = .05) than the women with polycystic ovaries alone. Endometriosis appears to be a coincidental finding in polycystic ovary syndrome, and its development does not modify significantly the clinical picture or biochemical profiles of these patients. However, menstrual patterns seem to be affected.

Adult↗

Peptides derived from cleavage of prosomatostatin at carboxyl- and amino-terminal segments. Characterization of tissue and secreted forms in the rat.

Tissue and secreted forms of rat prosomatostatin and its cleavage products were characterized immunochemically using high performance liquid chromatography and sequence-specific radioimmunoassays directed against somatostatin-14 (S-14), S-28-(1-12), and S-28-(1-14). Acetic or hydrochloric acid extracts of hypothalamus, pancreas, stomach, and jejunum contained seven molecular forms of Mr = 10,400 (corresponding to prosomatostatin (pro-S], Mr = 6,800 (7-kDa peptide, consisting of an NH2-terminally truncated form of pro-S), Mr = 7,600 (8-kDa peptide, corresponding to pro-S-(1-76), i.e. pro-S minus the COOH-terminal -Arg-Lys-S-14), Mr = 5,600 (5-kDa peptide, corresponding to pro-S-(33-76)) and three peptides co-chromatographing with synthetic S-14, S-28, and S-28-(1-12). Acid/ethanol extracts of these tissues contained pro-S, 8-kDa peptide, S-28, S-14, and S-28-(1-12) forms, but not the 7- and 5-kDa species. Pepstatin inhibited 7- and 5-kDa peptide formation in acetic acid extracts of tissues. The secreted forms consisted of the same five forms present in acid/ethanol or acetic acid plus pepstatin tissue extracts. The 7- and 5-kDa peptides were not secreted and appeared to be derived artifactually, presumably through the action of renin- and cathepsin D-like acid proteases. Accurate quantitation of the 8-kDa peptide by acid/ethanol extraction revealed a variable tissue distribution. Since the presence of the 8-kDa form provides evidence for direct processing of pro-S----S-14 + 8-kDa peptide, the present data suggest that pro-S----S-14 conversion is important for S-14 synthesis in the hypothalamus and pancreas, tissues rich in the 8-kDa form, but not in the stomach and jejunal mucosa, which contain low concentrations of this peptide.

Amino Acid Sequence↗

Measurement and characterization of somatostatin-14-like immunoreactivity in human urine.

Timed urine collections were obtained from normal men and women for a study of somatostatin in urine. Somatostatin-14-like immunoreactivity (S-14 LI) was extracted from urine by adsorption to C-18 silica cartridges, and the extracts were analyzed by RIA directly or after gel and high pressure liquid chromatography (HPLC). S-14 LI was consistently detected in all urine samples. The mean S-14 LI content in 24-h collections in men [10.96 +/- 0.91 (+/- SE) pmol/24 h; n = 10; total volume, 1.96 +/- 0.09 L] was not significantly different from that in women (9.09 +/- 0.85 pmol/24 h; n = 10; total volume, 1.87 +/- 0.09 L). Gel chromatography of 24-h urine collections revealed three major peaks of S-14 LI coeluting with S-14, S-28, and a 12,000 mol wt species corresponding to prosomatostatin. HPLC analysis confirmed the presence of S-14, S-28, and the 12,000 mol wt form and additionally revealed a major fourth peak of 3,000 mol wt, closely related to S-28. Immunoreactivity corresponding to [Des,Ala1]S-14 (S-13) was identified by HPLC coelution with synthetic S-13 and reactivity in a centrally, but not N-terminally directed, S-14 RIA. The relative proportions of the different HPLC peaks varied considerably during the 24-h period. S-14 and S-28 were excreted preferentially during the day, whereas the 12,000 and 3,000 mol wt forms were excreted preferentially at night. The ingestion of a mixed meal evoked parallel increases in plasma S-14 LI and urinary S-14 LI excretion in six normal subjects. We conclude that the principal circulating forms of S-14 LI (S-14, S-28, S-13, and pro-S) are present in urine and that the measurement of urinary S-14 LI could provide a reliable index of integrated plasma S-14 LI concentrations.

Adult↗

Selective binding of somatostatin-14 and somatostatin-28 to islet cells revealed by quantitative electron microscopic autoradiography.

Quantitative electron microscopic autoradiography was used for comparing the binding of labeled somatostatin-14 (S-14) and somatostatin-28 (S-28 section) to islet cells. Monolayer cultures of rat islet cells were incubated with [125I-Tyr11]S-14 (S-14 section) or [125I-Leu8, D-Trp22, Tyr25]S-28 (S-28 section) in the presence or absence of excess unlabeled peptides. Autoradiographic grains (ARG) associated with individual islet cells were identified and expressed as the mean number per B, A, and D cells. Specific ARG associated with S-14 were found over B and A cells. S-28 section-related specific ARG were concentrated over B, A, as well as D cells. The highest density of S-14 section labeling occurred over A cells, which under conditions of maximum labeling (37 degrees C for 60 min) contained five times as many ARG as did B cells. By contrast, under the same incubation conditions, the labeling density with S-28 section was maximal over B cells, which contained four and five times as many grains as A and D cells, respectively. These observations show preferential association of S-14 section with the A cell and S-28 section with the B cel provide strong evidence for the existence of separate binding sites for S-14 section and S-28 section on A and B cells, respectively, which presumably mediate the previously reported glucagon selective inhibitory effect of S-14 and the insulin-selective action of S-28.

Animals↗

Somatostatin-14-like antigenic sites in fixed islet D-cells are unaltered by cysteamine: a quantitative electron microscopic immunocytochemical evaluation.

Exposure of somatostatin cells to cysteamine (CSH) produces a marked reduction in somatostatin-14-like immunoreactivity (S-14 LI) in cell extracts. In the present study we have evaluated the effects of CSH on S-14-like sites in fixed islet D-cells using immunofluorescence and quantitative electron microscopic immunocytochemistry. Monolayer cultures of rat islet cells exposed to CSH (10 mM) for 1 h and subsequently extracted in 1 M acetic acid exhibited a severe reduction in S-14 LI from 6.6 +/- 0.48 to 0.7 +/- 0.06 ng/dish. CSH-induced reduction in S-14 LI persisted when cells were fixed in Zamboni's solution for 16 h and subsequently extracted and assayed. By immunofluorescence, however, the relative numbers of somatostatin-positive cells as well as the fluorescent intensity were identical in control and CSH-treated cells. CSH did not produce any identifiable abnormality in the ultrastructural appearance of D-cells. Protein A-gold labeling of the islet cells showed a uniform distribution of gold particles in both control and CSH-treated cultures. The density of gold particles over D-cell secretory granules from CSH-exposed cultures (36.6 +/- 3.5 particles/micron2) was not different from that in control D-cell granules (42.2 +/- 5.9 particles/micron2). These data clearly indicate that despite a profound reduction by CSH of S-14 LI in tissue extracts, there is no detectable decrease in the same antigenic sites in tissue sections when assessed immunocytochemically.

Animals↗