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S Legon

Publications and source records attributed to S Legon.

At least 37 records · Page 2Linked to original sources

A new calcitonin-receptor-like sequence in rat pulmonary blood vessels.

1. Two rat clones have been isolated which are similar to known calcitonin-receptor sequences. One of these does not have the distribution expected of a calcitonin receptor. It is widely distributed, with extremely high levels of expression in the lung, where it is associated with the blood vessels. 2. This rat sequence may represent the receptor for calcitonin-gene-related peptide or islet amyloid polypeptide. Both have binding activity in the lung and are potent vasodilators. The gene represented by this sequence may therefore play an important role in the maintenance of vascular tone.

Amino Acid Sequence↗

Human and rat intestinal plasma membrane calcium pump isoforms.

The intestinal basolateral membrane Ca(2+)-transporting adenosinetriphosphatase is the energy-dependent step in the absorption of dietary Ca2+ by the vitamin D-dependent transcellular pathway. Multiple plasma membrane Ca(2+)-pump isoforms are produced from four genes (PMCA1 to 4) and alternative mRNA splicing. We have studied which isoforms are detectable in adult human and rat gastrointestinal tissues by polymerase chain reaction (PCR) amplification, sequencing, and blotting. PMCA1 was the predominant gene product amplified from human small intestinal mucosa, although a minor additional variant lacking the exon at splice site B was detected, which resembled that described for PMCA4. Of the variants described at site C, only the shortest transcript of PMCA1 was amplified; both previously described forms of PMCA4 were found, particularly in colon where PMCA4 predominated. From rat intestinal cDNA, mixed primer PCR amplified PMCA1 and a novel sequence, the rat PMCA4 homologue, which was expressed in many tissues including small intestinal muscle and colon. However, PMCA1 was overwhelmingly predominant in the mucosa of the small intestine, being most abundant in duodenum. These results suggest the involvement of the Ca(2+)-pump isoform PMCA1b in intestinal Ca2+ absorption.

Amino Acid Sequence↗

Effect of Helicobacter pylori on gastric somatostatin in duodenal ulcer disease.

Infection of the gastric antrum by Helicobacter pylori is associated with recurrent duodenal ulcer disease but the mechanism of ulcerogenesis is unclear. Since pathways inhibiting gastric secretion are defective in patients with duodenal ulcers, we investigated whether H pylori interferes with the normal gastric inhibition that is mediated by somatostatin. We studied 28 patients with active duodenal ulcers in whom H pylori was eradicated successfully. In 18 patients, we measured the density of antral somatostatin-immunoreactive cells and in a further 10 subjects, the amount of somatostatin mRNA before and after eradication of H pylori was determined. After eradication, the median density of somatostatin-immunoreactive cells increased significantly from 9 (range 3-47) to 19 (6-57) cells per mm muscularis mucosa (p = 0.025). The median somatostatin mRNA/rRNA ratio increased from 50 (25-160) to 95 (40-180) (p = 0.01). The number of gastrin cells and quantity of gastrin mRNA did not change significantly. Our results suggest that in duodenal ulcer disease, gastric secretory function is disinhibited through the suppression of mucosal somatostatin.

Adult↗

Molecular cloning and chromosomal assignment of human calbindin-D9k.

Human calbindin-D9k, the vitamin D-dependent calcium binding protein, has been cloned and sequenced following initial amplification of intestinal cDNA sequences by the polymerase chain reaction using mixed oligonucleotide primers. The derived amino acid sequence of 79 residues has a calculated molecular weight of 9015 and is 89% homologous with the bovine and porcine sequences. Probing DNA from human-rodent somatic cell hybrids mapped human calbindin-D9k to chromosome Xp. A single abundant mRNA transcript was detectable in proximal small intestine but not in kidney, uterus or placenta.

Amino Acid Sequence↗

Plasma membrane calcium pump expression in human placenta and small intestine.

To identify the forms of the plasma membrane calcium pump present in tissues that transport calcium, cDNA from human placenta and proximal small intestine was amplified by the polymerase chain reaction using a pair of mixed primers based on all the known human and rat plasma membrane calcium pump sequences. Clones were identified from the two human forms HPMCA1 and HPMCA4, but no new sequences were found in either tissue. RNA blots probed with HPMCA1 showed two bands in both tissues; probing with HPMCA4 gave a single, larger species. In placenta, HPMCA4 was the more abundant form and similar expression was found in full-term and second-trimester placentas. In contrast, in the small intestine, HPMCA1 was more abundant, suggesting that calcium absorption is not associated with any one specific isoform in calcium transporting cells.

Amino Acid Sequence↗

Vasoactive intestinal polypeptide gene expression in the developing human gastrointestinal tract.

Expression of vasoactive intestinal polypeptide has been shown, by immunocytochemistry and biochemical assay, to follow the craniocaudal neural colonization of the mammalian gut. The aim of this study was to use in situ hybridization to see if it could provide more information on vasoactive intestinal polypeptide gene expression in the developing human gut. Immunocytochemistry of vasoactive intestinal polypeptide and, to visualize the total innervation, protein gene product 9.5 was also applied. By 8 weeks of gestation, protein gene product 9.5-immunoreactive neurons had colonized the gut lengthwise (17% of intestinal muscle area) but not transversely. Vasoactive intestinal polypeptide immunoreactivity was first detected at 9 weeks of gestation in a few nerve fibers of the upper gut, the origin of which could not be determined. Vasoactive intestinal polypeptide-immunoreactive ganglion cells were not seen until 18 weeks of gestation, whereas in situ hybridization showed messenger RNA in ganglion cells of the upper gut at 9 weeks. An adultlike pattern of peptide gene products (e.g., 2.5% and 3.1% of intestinal mucosal or muscle area, respectively) was detected by 20 weeks' gestation. The finding that the vasoactive intestinal polypeptide gene is expressed first in the upper human gut is consistent with craniocaudal neuronal colonization and maturation.

Adult↗

Characterization of complementary DNA encoding the rat neuromedin U precursor.

Neuromedin U (NmU), a peptide originally isolated from porcine spinal cord, is known for its ability to stimulate uterine smooth muscle contraction and to cause selective vasoconstriction. It was subsequently isolated from a number of species. Among the species studied, the five amino acids at the C-terminus of the peptide are totally conserved, suggesting that this region is of major importance. We have cloned and sequenced the cDNA encoding the rat NmU precursor protein using the anchor polymerase chain reaction technique. Sequence analysis revealed that NmU is synthesized as a 174-amino acid precursor. Like the precursors of most other small regulatory peptides, it has a hydrophobic signal peptide and a number of paired dibasic amino acids, which may serve as signals for enzymatic cleavage, to release NmU and a series of other peptides. These predicted flanking peptides of NmU show no significant homology with entries in the protein databases searched, and the cDNA likewise shows no homology with entries in the GenBank database. Northern blot analysis using total RNA extracted from different rat tissues shows high levels of NmU mRNA in the ileum, thyroid, and anterior pituitary. Southern blot analysis of rat genomic DNA demonstrates that NmU is a single copy gene.

Amino Acid Sequence↗

Extra-pancreatic expression of the rat islet amyloid polypeptide (amylin) gene.

Messenger RNA for rat islet amyloid polypeptide (IAPP) has been identified not only in the pancreas but also, in lesser amounts, in preparations from the stomach and dorsal root ganglia. In the stomach, insulin mRNA was not detectable, ruling out possible contamination by pancreatic tissue. Because IAPP and calcitonin gene-related peptide (CGRP) are related and CGRP is present in both stomach and dorsal root ganglia, it was possible that 'IAPP' signals were in fact due to cross-hybridization with CGRP mRNA. A second IAPP probe was constructed which does not cross-react. This probe also detected mRNA in both tissues, confirming the expression of IAPP in both tissues. The regional distribution of IAPP mRNA in the stomach did not parallel that of gastrin mRNA. IAPP mRNA was present in the antrum, centrum and pylorus and, like gastrin, the highest amounts were in the pylorus. However, the ratio between the pylorus and centrum was 3.6:1 for IAPP and 156:1 for gastrin. The effects of dietary manipulation were determined; a period of 48 h of starvation reduced pancreatic IAPP mRNA by approximately 60%, whereas in the stomach there was no significant reduction. If the action of IAPP was hormonal, pancreas and stomach would not be acting in concert. A paracrine role for gastric IAPP therefore seems more likely.

Amyloid↗

Characterization of rat gastric inhibitory peptide cDNA.

Gastric inhibitory peptide (GIP) is a 42 amino acid gastrointestinal peptide which inhibits gastric acid secretion and stimulates pancreatic insulin secretion in the presence of glucose. Here we report the sequence of the cDNA encoding the rat GIP precursor. PreproGIP was 144 amino acids in length and comprised the GIP peptide itself, N- and C-terminal flanking peptides of 22 and 59 amino acids respectively and a typical hydrophobic signal peptide. The sequence indicated that GIP is released from its precursor by cleavage at single arginine residues. The C-terminal flanking peptide may have an important function since it was well conserved and contained a region of 16 amino acids with only a single, conservative replacement. Rat GIP mRNA was found in the duodenum and jejunum. Levels of GIP mRNA in the duodenum were increased twofold after a period of 2 days of starvation. There was no detectable expression of the GIP gene in other parts of the gastrointestinal tract or in other endocrine tissues. However, in pancreatic mRNA preparations, a larger mRNA was detected after low stringency hybridization. This could represent a further member of this gene family.

Amino Acid Sequence↗

Topographical localisation of endothelin mRNA and peptide immunoreactivity in neurones of the human brain.

The distribution of endothelin mRNA and immunoreactivity in the human brain was investigated using the technique of in situ hybridization and immunocytochemistry. Cryostat sections from 22 cases of neurologically normal adult human brain, collected 3-7 h post-mortem were hybridized with 35S-labelled complementary (c)RNA probes prepared from the 3' non-coding region of endothelin-1 cDNA, and the chromosomal genes encoding endothelin-2 and -3. In situ hybridization with all three cRNA probes revealed labelled neuronal cell bodies in laminae III-VI of the parietal, temporal and frontal cortices. Labelled cells were also seen, scattered throughout the para- and periventricular, supraoptic and lateral hypothalamic nuclei, the caudate nucleus, amygdala, hippocampus, basal nucleus of Meynert, substantia nigra, raphe nuclei, Purkinje cell layer of the cerebellum and in the dorsal motor nuclei of the vagus of the medulla oblongata. The distribution of neurones immunoreactive to endothelin was similar to that of endothelin mRNA, although fewer immunoreactive cells throughout the brain, were noted. Immunoreactive fibres were present mainly in the cortex and hypothalamus, and to a lesser extent in the brain stem. Combined in situ hybridization and immunocytochemistry on the same section revealed the presence of endothelin-1 mRNA and immunoreactivity in the same cortical neuronal cell. Colocalisation studies in the cortex revealed endothelin-1 mRNA and immunoreactivity in a number of cells which also expressed neuropeptide Y mRNA and immunoreactivity. In the hypothalamus and basal nucleus of Meynert endothelin immunoreactivity was colocalised to a subset of neurophysin- and galanin-immunoreactive cell bodies respectively. Endothelin mRNA and immunoreactivity was also seen in some blood vessel endothelial cells. The findings of endothelin mRNAs and immunoreactivity in heterogenous neuronal populations further emphasises the potential role of endothelin as a neuropeptide, probably having diverse actions in the nervous system of man.

Adult↗

Distribution of endothelin-like immunoreactivity and mRNA in the developing and adult human lung.

Localization and characterization of endothelin-producing cells in the developing (fetal and postnatal) and adult human lung was investigated using the technics of immunocytochemistry and in situ hybridization. Immunoreactivity for endothelin was seen mainly in pulmonary endocrine cells of developing human lung. Immunoreactivity was also seen in the airway epithelium in fewer cases (about 50%) of human adults. In situ hybridization with 35S- or 32P-labeled RNA probes complementary to endothelin-1, -2, and -3, showed that endothelin mRNAs were expressed in a number of cells that were in similar sites to endocrine cells. Immunocytochemistry and in situ hybridization employed on pairs of reverse-face serial sections showed the presence of endothelin immunoreactivity and mRNAs in the same endocrine cell. Correlative studies revealed that endothelin is co-localized with general endocrine markers (synaptophysin, chromogranin, protein gene product 9.5) and regulatory peptides (e.g., gastrin-releasing peptide). The density (cells/mm2) of endocrine cells containing immunoreactivity or mRNAs was highest during fetal life and started to decline before birth, and was minimal in adults. Endothelin-like immunoreactivity and mRNAs were also expressed in endothelial cells. From these results, it is concluded that endothelin is synthesized in endocrine cells of human lung and the change of developmental expression of this peptide suggests it may play a part in growth regulation in addition to its putative vasoconstrictor role in human lung.

Adult↗

Depletion of islet amyloid polypeptide in the spontaneously diabetic (BB) Wistar rat.

Islet amyloid polypeptide (IAPP) in the pancreas of the spontaneously diabetic (BB) Wistar rat was examined by radioimmunoassay, and IAPP mRNA levels were determined by Northern blotting. IAPP-like immunoreactivity in the diabetic rat pancreas was found to be significantly depleted compared with control (non-diabetic) BB rats (85.9 +/- 5 pmol/g in control rats, n = 8, vs 8.97 +/- 0.9 pmol/g in diabetic rats, n = 5; mean +/- S.E.M.). A similar change in insulin concentrations was found, although insulin was present in approximately 100-fold greater amounts than IAPP. Chromatography of the IAPP immunoreactivity revealed a single molecular form, corresponding to synthetic IAPP. Northern blot analysis of pancreatic RNA (n = 4) revealed that IAPP mRNA in the diabetic group was depleted to 22% of the signal intensity in the control group. Insulin mRNA was dramatically reduced to only 4% of the control group and, in contrast, somatostatin was relatively unaffected, with the diabetic group retaining 86% of signal compared with the controls. This animal model of insulin-dependent diabetes results from severe autoimmune destruction of the beta cell. The extremely low levels of both insulin and its messenger RNA are in agreement with this. These results demonstrate that this pathological state is also associated with a loss of IAPP from the pancreas. Insulin-dependent diabetes is associated with a range of metabolic disturbances. It is possible that the concomitant depletion of IAPP may be a contributory factor in exacerbating the condition.

Amyloid↗

The influence of thyroid hormone status on the hypothalamo-hypophyseal growth hormone axis.

Growth hormone (GH) synthesis is known to be impaired by either abnormally high or low levels of thyroid hormone. To determine the effects of these conditions on the central regulation of GH secretion, we have examined their effects on the hypothalamic regulatory peptides GH-releasing hormone (GH-RH) and somatostatin (SRIF). In thyroidectomized rat hypothalamus, a dramatic increase in GH-RH mRNA occurred in parallel with a decrease in peptide content. The significance of this phenomenon is uncertain and might possibly reflect some posttranscriptional derangement of GH-RH synthesis or an increased rate of GH-RH synthesis and release. In the hyperthyroid group, GH-RH showed significant decreases in both peptide and mRNA levels that might possibly reflect a decrease in GH-RH synthesis and secretion. No change was observed in SRIF peptide or mRNA levels in either thyroidectomized or T4-treated animals. As expected, GH mRNA levels in the anterior pituitary were dramatically decreased by thyroidectomy and unaffected by T4 treatment. In addition, in thyroidectomized pituitaries, the mature GH mRNA was observed to alter its structure, increasing in size by approximately 100 nucleotides. This increase in size was found to result from an increase in poly(A) tail length, the significance of which is as yet unclear.

Animals↗

Altered calcitonin gene in a young patient with osteoporosis.

To assess whether calcitonin is important in maintaining the integrity of bone the calcitonin gene of a young male patient with osteoporosis and no detectable plasma concentrations of calcitonin was studied. Genomic Southern blots with various restriction enzymes showed no large abnormalities in his calcitonin gene. Genomic clones representing his calcitonin gene were then analysed. His gene encoded normal precursor polypeptides for calcitonin and calcitonin gene related peptide; the only abnormality identified was a single base insertion in the intron separating exons IV and V of the gene. The affected sequence is homologous with an intron sequence from beta globin that is implicated in splicing and forming a crucial intermediate structure during the maturation of messenger RNA. The change observed may be responsible for the patient's calcitonin deficiency and consequently for his condition, suggesting that calcitonin is important in preventing bone loss.

Base Sequence↗

Detection of human probombesin mRNA in neuroendocrine (small cell) carcinoma of the lung. In situ hybridization with cRNA probe.

The production of human bombesin (gastrin-releasing peptide), a peptide with mitogenic action, is a recognized feature of neuroendocrine (small cell) carcinoma of the lung. However, immunostaining of bombesin is not always possible in these tumors, probably because of poor storage mechanisms or rapid release of hormone. Molecular biological analysis of the gene encoding human bombesin has revealed the DNA sequence of human pro-bombesin. We have used in situ hybridization to study the expression of the human bombesin gene at the cellular level in small cell carcinoma of the lung. Probombesin cDNA was subcloned in pSP64 vector, linearized with Bam HI and transcribed in the presence of phosphorus 32(32P)-cytosine triphosphate (CTP) and SP6 polymerase. The cRNA probe was applied to tissue sections (from six cases of small cell carcinoma of the lung, freshly fixed in 4% paraformaldehyde), cell culture preparations (two different cell lines of small cell carcinoma), and cytologic specimens (smears of cells from three different cases of small cell carcinoma). Hybridization of probombesin mRNA was detected in tumor cells in all samples. Specificity of the signal was determined by control experiments, including the use of a probe which has a sequence identical to probombesin mRNA. Our results provide evidence for the expression of the bombesin gene in small cell carcinoma of the lung at a cellular level and show that probombesin mRNA is highly expressed in these tumors.

Bombesin↗

Altered islet amyloid polypeptide (amylin) gene expression in rat models of diabetes.

The response of the islet amyloid polypeptide gene to chronic dexamethasone treatment in adult rats was investigated. After 12 daily injections, rats were severely underweight and fasting blood glucose levels were elevated. When pancreatic mRNA was analysed, a 16-fold elevation in islet amyloid polypeptide mRNA was observed with only a four-fold increase in insulin mRNA levels. Pancreatic islet amyloid polypeptide and insulin mRNA levels were also determined 12 days after streptozotocin treatment. In these rats, which were not severely diabetic, the reduction in islet amyloid polypeptide mRNA levels was sixfold less than the reduction in insulin mRNA levels. In both these models of diabetes the ratio of islet amyloid polypeptide to insulin mRNA levels was raised. This would not be expected if the physiological role of islet amyloid polypeptide is as a simple hyperglycaemic agent opposing insulin action or release.

Amyloid↗