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Biomedical subjects

R Poulsom

Publications and source records attributed to R Poulsom.

At least 19 recordsLinked to original sources

Making sense out of in situ PCR.

Given the limited sensitivity of existing in situ hybridization methods for detecting specific nucleic acid sequences, amplification in situ by means of the polymerase chain reaction (PCR) seems to be an attractive alternative. Recent studies using in situ PCR technology have not assessed the gain in signal strength that has been achieved, nor evaluated quantitatively the efficiency of amplification. An accompanying article in the current issue of the Journal examines the reproducibility and amplification efficiency of an RT-PCR in situ hybridization method that uses a sense probe, capable of detecting only amplified target sequences. The amplification procedure resulted in approximately 3-6-fold increased sensitivity that depended upon cell type and disease status.

Alleles

Metabolism of MPTP by cytochrome P4502D6 and the demonstration of 2D6 mRNA in human foetal and adult brain by in situ hybridization.

1. 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), a thermal breakdown product of synthetic 'street' heroin, is known to cause Parkinson's Disease-like symptoms in man. 2. The mechanism of action of this neurotoxin is thought to involve activation by the monoamine oxidase B system and subsequent toxicity by inhibition of neuronal mitochondrial respiration. The manifestation of toxicity will be a balance between the rate of activation of this compound versus its rate of inactivation through metabolism by enzymes such as the cytochrome P450-dependent monooxygenases. 3. In this report we demonstrate that MPTP N-demethylation, a detoxification pathway, is catalysed by cytochrome P450 CYP2D6 and up to 40% of the hepatic metabolism is mediated by this enzyme. 4. Perhaps more importantly we also demonstrate by in situ hybridization that CYP2D6 is localized in the pigmented neurons of the substantia nigra indicating that 2D6-mediated detoxification will occur in target cells. 5. These data present evidence that CYP2D6 will be a factor in susceptibility to MPTP neuronal toxicity and provide a biochemical rationale for the genetic observations linking a polymorphism at the CYP2D6 locus with susceptibility to Parkinson's.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine

Differential expression of oestrogen receptor and oestrogen inducible genes in gastric mucosa and cancer.

BACKGROUND: Evidence exists for a role for oestrogen in gastric cancer. The incidence of gastric cancer is much higher in men than in woman, and a similar sex difference is also seen in a rat experimental model of gastric cancer. AIMS: Evidence for a functional oestrogen receptor in normal gastric mucosa and cancer has been sought. METHODS: Oestrogen receptor and the oestrogen inducible genes pS2 and ERD5 were sought by northern blot analysis and in situ hybridisation and immunohistochemistry. Oestrogen receptor protein was studied by enzyme immunoassay. RESULTS: mRNA for oestrogen receptor was detected in cancer and normal gastric mucosa. Enzyme immunoassay for oestrogen receptor showed a mean of 1.8 fmol/mg protein in cancer and 13.7 fmol/mg in paired normal mucosa. The oestrogen inducible genes pS2 and ERD5 were also detected in both cancer and normal mucosa, with expression localised to epithelium. Expression of pS2 was lower in cancer compared with normal mucosa, whereas ERD5 expression was higher in cancer. CONCLUSIONS: Significant amounts of oestrogen receptor were expressed in gastric mucosa with a lower amount in cancer. Oestrogen inducible genes were also expressed differentially but were not found to correlate closely with oestrogen receptor. Oestrogen receptor functionality remains to be demonstrated in the stomach.

Blotting, Northern

Fibroblast growth factor receptor signalling has a role in lobuloalveolar development of the mammary gland.

We have used the mouse mammary tumor virus promoter to express two dominant negative (DN) fibroblast growth factor receptor (FGFR) isoforms in the mammary epithelium of transgenic mice. While expression of DN-FGFR1(IIIc) showed no discernible phenotype, a similar kinase negative form of FGFR2(IIIb) caused a marked impairment of lobuloalveolar development. The growth retardation was apparent by mid-pregnancy and persisted in the post-partum glands. Despite the substantial underdevelopment of the mammary gland there was a measurable lactational response, but it was insufficient to properly sustain the new-born pups. These findings demonstrate that fibroblast growth factor signalling is necessary for pregnancy dependent lobuloalveolar development of the mammary gland.

Animals

Expression of oestrogen receptor and oestrogen-inducible genes in pancreatic cancer.

BACKGROUND: Previous studies have not been able to demonstrate convincingly whether the human pancreas expresses oestrogen receptor and whether there is any benefit from antioestrogen therapy in advanced pancreatic cancer. METHODS: Oestrogen receptor expression was assessed in normal human pancreas and pancreatic cancer tissue by enzyme immunoassay, Northern blot analysis, in situ hybridization and immunohistochemistry. The expression of the oestrogen-inducible proteins, progesterone receptor, pS2 and ERD5 was also examined. RESULTS: A mean of 1.0 (range 0-2.4) fmol oestrogen receptor per mg protein was detected in normal pancreas and 0.5 (range 0-1.2) fmol mg-1 in pancreatic cancer. Messenger RNA for oestrogen receptor was detected in both normal and cancerous pancreas. In situ hybridization and immunohistochemistry, however, failed to localize oestrogen receptor expression. Mean (range) expression of progesterone receptor in normal and neoplastic pancreas was 1.9 (0.5-3.5) and 2.5 (0.3-9.3) fmol mg-1 respectively. pS2 and ERD5 were also expressed in normal tissue and pancreatic cancer, and expression was localized to ductular epithelium. CONCLUSION: The amount of oestrogen receptor detected in pancreatic tissue was small, and may account for previous difficulties in its detection. The extent to which it is functional in both the normal and malignant pancreas warrants further investigation.

Adult

Analysis of foetal expression sites of human type II DNA topoisomerase alpha and beta mRNAs by in situ hybridisation.

We present the first analysis of the sites of expression of DNA topoisomerase II alpha and II beta mRNAs in human foetal tissues by in situ hybridisation, using 35S-radiolabelled probes. This revealed differential localisation of topoisomerase II alpha and II beta mRNAs in a range of foetal organs, including foetal kidney (developing structures within the neogenic zone), brain (cortical layers), small intestine (crypt epithelium and muscle), liver (hepatocytes), lung (smooth muscle, and epithelium in the lining of primitive lung buds) and placenta (trophoblastic epithelium). The intensity of expression of topoisomerase II alpha mRNA appeared higher than that of topoisomerase II beta, although topoisomerase II beta mRNA was expressed in a broader range of cell types. The distinct patterns of expression of topoisomerase II alpha and beta mRNAs indicate differential regulation of these genes, suggesting that the two isoforms may play important but different roles in foetal development, with topoisomerase II alpha being expressed most strongly in zones of proliferation.

Antigens, Neoplasm

The gene encoding mouse intestinal trefoil factor: structural organization, partial sequence analysis and mapping to murine chromosome 17q.

Trefoil peptides, a growing family of secretory molecules, have been identified mainly in the gastrointestinal tract of humans, rodents and amphibians. In the present study, the nucleotide sequence of a large portion (81%) of the gene encoding murine intestinal trefoil factor (mITF) and its whole genomic organization were determined. The mITF gene contains three exons distributed over 5 kb of genomic DNA. The genomic sequence is highly conserved, as compared with that of the rat and human ITF, and contains several AP-1-binding sites, the consensus binding site for the transcription factor Sp1, and a sequence homologous to a heat-shock element. Fluorescence in situ hybridization was used to assign ITF to chromosome 17 of the murine genome, a region syntenic with the trefoil gene cluster on human chromosome 21q22.3.

Amino Acid Sequence

Transgenic mice that overexpress the human trefoil peptide pS2 have an increased resistance to intestinal damage.

pS2 is a member of the trefoil peptide family, all of which are overexpressed at sites of gastrointestinal injury. We hypothesized that they are important in stimulating mucosal repair. To test this idea, we have produced a transgenic mice strain that expresses human pS2 (hpS2) specifically within the jejunum and examined the effect of this overexpression on proliferation and susceptibility to indomethacin-induced damage. A transgenic mouse was produced by microinjecting fertilized oocytes with a 1.7-kb construct consisting of rat intestinal fatty acid binding protein promoter (positions -1178 to +28) linked to full-length (490 bp) hpS2 cDNA. Screening for positive animals was by Southern blot analysis. Distribution of hpS2 expression was determined by using Northern and Western blot analyses and immunohistochemical staining. Proliferation of the intestinal mucosa was determined by assessing the crypt cell production rate. Differences in susceptibility to intestinal damage were analyzed in animals that had received indomethacin (85 mg/kg s.c.) 0-30 h previously. Expression of hpS2 was limited to the enterocytes of the villi within the jejunum. In the nondamaged intestine, villus height and crypt cell production rate were similar in transgenic and negative (control) litter mates. However, there was a marked difference in the amount of damage caused by indomethacin in control and transgenic animals in the jejunum (30% reduction in villus height in controls vs. 12% reduction in transgenic animals, P < 0.01) but the damage sustained in the non-hpS2-expressing ileal region was similar in control and transgenic animals. These studies support the hypothesis that trefoil peptides are important in stimulating gastrointestinal repair.

Animals

The gene encoding human intestinal trefoil factor (TFF3) is located on chromosome 21q22.3 clustered with other members of the trefoil peptide family.

The gene coding for human intestinal trefoil factor (hITF), a recently described cellular motogen produced by gastrointestinal goblet cells and epithelia elsewhere, is a member of the rapidly growing trefoil peptide family. In a rodent-human somatic cell hybrid panel, the hITF (HGMW-approved symbol TFF3) genomic locus segregated with human chromosome 21q. Fluorescence in situ hybridization with a 2.1-kb genomic probe of the hITF gene mapped this locus more precisely to the q22.3 region. Triple fluorescence in situ hybridization, together with physical mapping of human genomic DNA using pulsed-field gel electrophoresis, revealed that the hITF gene is tightly linked to those encoding the other known human trefoil peptides, namely the breast cancer estrogen-inducable gene pS2 (BCEI) and human spasmolytic polypeptide (hSP/SML1). This gene family could become a useful marker for the genetic and physical mapping of chromosome 21 and for a better definition of the region involved in the clinical phenotype of several genetic diseases.

Chromosome Mapping

Trefoil peptides.

There is a growing body of evidence supporting the hypothesis that members of the trefoil peptide family are involved actively in maintaining the integrity of the gastrointestinal mucosa and facilitating its repair. To date, three trefoil peptides are known in man: pS2, ITF and SP. Each is a secretory peptide expressed in specific compartments throughout the gut, in patterns that appear generally to be conserved between mammalian species. Ulceration, whether due to common pathological processes or experimentally induced, results in altered local expression of trefoil peptides. In diverse chronic ulcerative conditions in man, glandular structures develop within the mucosa, derived from the UACL. These UACL glands express three trefoil peptides, EGF and lysozyme, all potentially able to contribute to the healing process. In fact local goblet and endocrine cell types may also be recruited to secrete pS2 into the local environment. In experimental ulcers, in rate stomach or intestinal resection margins, there is also accentuation of trefoil peptide expression at the margins and in the poorly differentiated mucous cells extending out presumably in attempts to restore epithelial integrity. Several trefoil peptides have been expressed as 'recombinant' proteins in bacterial, baculoviral or yeast systems, and these procedures have allowed some of the biological properties of these peptides to be determined. In vitro, rITF, hITF and hSP are motogens, able to promote migration of epithelial cells. In vivo, rITF and hSP are able to prevent much of the gastric damage effect by a single dose of indomethacin, when given systemically. There is synergy between EGF and rITF both in vitro and in vivo, which may allow the development of new peptide therapies for ulceration that will maximize repair and minimize cell proliferation.

Amino Acid Sequence

Expression of trefoil peptides in the gastric mucosa of transgenic mice overexpressing transforming growth factor-alpha.

Overexpression of transforming growth factor-alpha (TGF-alpha) in the gastric mucosa of metallothionein-TGF alpha (MT-TGF alpha) transgenic mice leads to a marked alteration in the ontogeny of the fundic cellular lineages. Induction of the transgene leads to the over-production of mucous cells with a concomitant diminution in the development of parietal cell and chief cell lineages. We have sought to define more precisely the mucous cell lineages involved in the mucous cell hyperplasia in MT-TGF alpha mice by investigating the expression of trefoil peptides in MT-TGF alpha mice. MT-TGF alpha mice and their non-transgenic littermates were treated with cadmium sulfate beginning at 13 days of age. Animals were then sacrificed at intervals over the following 2 weeks and gastric mucosa was examined for expression of trefoil peptides and TGF alpha by immunohistochemistry and in situ hybridization. No TGF alpha mRNA expression could be demonstrated by in situ hybridization in non-transgenic mice. In MT-TGF alpha mice, in situ grains for TGF alpha mRNA were detected at the base of fundic glands in 13 day old animals, whereas the expression was observed more widely in the mucosa of older animals (28 days). TGF alpha immunoreactivity was observed in foveolar mucous cells and residual parietal cells in MT-TGF alpha mice at all ages. By in situ hybridization, pS2 mRNA was detected in the surface mucous cells in normal gastric mucosa. In MT-TGF alpha mice, pS2 mRNA was found throughout the expanded foveolar region. By in situ hybridization, spasmolytic peptide (SP) expression was observed in the region of the progenitor zone in both groups of mice. By immunohistochemistry, SP expression was noted in a broad band of mucous neck cells deep to the progenitor zone. No gastric expression of intestinal trefoil factor (ITF) was noted in either group of mice. The results demonstrate that the expansion of the foveolar mucous cell compartment in MT-TGF alpha mice is due to the hyperplasia of normal surface cells expressing their particular mucin-associated trefoil peptide, pS2.

Animals

H-RYK, an unusual receptor kinase: isolation and analysis of expression in ovarian cancer.

BACKGROUND: Protein tyrosine kinases play an important role in cellular metabolism as key components of signal transduction pathways. They are involved in cellular growth, differentiation, and development. Receptor tyrosine kinases (EGF receptor and c-erbB2) have been shown to be important in the pathogenesis of cancer. In ovarian cancer, overexpression of c-erbB2, a type I receptor, has been correlated with an adverse effect on survival of patients. MATERIAL AND METHODS: An unusual receptor tyrosine kinase, H-RYK, has been isolated from a complimentary DNA library of SKOV-3, an epithelial ovarian cancer cell line, using a polymerase chain reaction-mediated approach. RESULTS: The primary structure of the predicted amino acid sequence of the protein shows a novel NH2-terminal region. The catalytic region shows homology to other tyrosine kinases, the closest homology being with v-sea (39%). A significant alteration in the catalytic domain is that the highly conserved "DFG" triplet in subdomain VII is altered to "DNA." The gene was mapped to chromosome 3q22. A single transcript of 3.0 kb is expressed in heart, brain, lung, placenta, liver, muscle, kidney, and pancreas by Northern analysis with maximal expression in skeletal muscle. In situ hybridization analysis on human tissues demonstrated localization of message in the epithelial and stromal compartment of tissues such as brain, lung, colon, kidney, and breast. There was minimal to absent expression of H-RYK on surface epithelium of ovaries. In benign (3) and borderline tumors of the ovary (5), there was expression in the stromal compartment. However, in malignant tumors (24) there was increased expression predominantly confined to the epithelium. Polyclonal antisera raised against synthetic peptides recognize a 100-kD protein in ovarian cancer cells and other cell lines. In contrast to other receptor tyrosine kinases, the receptor did not phosphorylate in an in vitro kinase assay. CONCLUSIONS: The expression of this unusual receptor tyrosine kinase in epithelial ovarian cancer suggests that it may be involved in tumor progression, which needs further investigation.

Adenocarcinoma

Distribution and expression of pancreatic secretory trypsin inhibitor and its possible role in epithelial restitution.

Pancreatic secretory trypsin inhibitor (PSTI) is a potent serine protease inhibitor that prevents excessive digestion of the gastrointestinal mucus but may also directly affect epithelial function. We therefore examined the distribution of PSTI in the human adult and fetus using immunohistochemistry and in situ hybridization and examined its effects on cell proliferation and migration in vitro. PSTI peptide and mRNA were found in the exocrine pancreas, mucus-producing cells of the normal gastrointestinal tract, acinar component of the normal breast, and surface epithelial cells at the edge of benign gastric ulcers. Peptide, but not message, was identified in the renal proximal tubule, probably reflecting reabsorption of filtered peptide. Purified human PSTI did not affect proliferation of the human colonic cell line HT-29 but caused a threefold increase in the rate of migration in an in vitro wounding model of restitution. This effect was inhibited by co-administering a PSTI-neutralizing antibody, a transforming growth factor-beta-neutralizing antibody, or an epidermal growth factor receptor-blocking antibody. As PSTI is widely distributed in several human organ systems and stimulates cell migration in vitro, we conclude that PSTI is likely to have additional roles to that of preserving the gastrointestinal mucous layer from excessive digestion.

Adult

Downregulation of E-cadherin in the reparative epithelium of the human gastrointestinal tract.

E-cadherin, an epithelial adhesion molecule, is critical for the maintenance of cell polarity and differentiation. We studied the distribution of E-cadherin in normal gut and in enteric ulceration to test the hypothesis that the motility of regenerative epithelium over ulcers is associated with a decrease in E-cadherin expression. Sections of normal stomach, small intestine, and colon were examined for E-cadherin distribution using the antibody HECD-1 and compared with the pattern seen in peptic ulceration and Crohn's disease. A subset was examined by in situ hybridization using 35S radiolabeled E-cadherin riboprobes. A wounding system employing the HT-29 cell line was used as an in vitro model of early healing. In the normal gut uniform strong basolateral staining was seen. Areas of ulceration showed a patchy reduction in membrane localized E-cadherin in regenerating epithelium, even though E-cadherin mRNA was demonstrable in this population. In wounded confluent HT29 layers, migrating cells also showed reduced E-cadherin immunostaining. These data support the notion that the motility of restitutive epithelial cells may relate to altered patterns of E-cadherin and that this may play an important role in the reconstitution of epithelial integrity after mucosal injury.

Cadherins

Molecular cloning and tissue expression of FAT, the human homologue of the Drosophila fat gene that is located on chromosome 4q34-q35 and encodes a putative adhesion molecule.

FAT, a new member of the human cadherin super-family, has been isolated from the T-leukemia cell line J6. The predicted protein closely resembles the Drosophila tumor suppressor fat, which is essential for controlling cell proliferation during Drosophila development. The gene has the potential to encode a large transmembrane protein of nearly 4600 residues with 34 tandem cadherin repeats, five EGF-like repeats, and a laminin A-G domain. The cytoplasmic sequence contains two domains with distant homology to the cadherin catenin-binding region. Northern blotting analysis of J6 mRNA demonstrated full-length, approximately 15-kb, FAT message in addition to several 5'-truncated transcripts. In addition to its presence in J6 cells, in situ hybridization revealed FAT mRNA expression in epithelia and in some mesenchymal compartments. Furthermore, higher levels of expression were observed in fetal, as opposed to adult, tissue, suggesting that its expression may be developmentally regulated in these tissues. FAT shows homologies with a number of proteins important in developmental decisions and cell:cell communication and is the first fat-like protein reported in vertebrates. The gene encoding FAT was located by in situ hybridization on chromosome 4q34-q35. We propose that this family of molecules is likely to be important in mammalian developmental processes and cell communication.

Amino Acid Sequence

Expression of the Met/hepatocyte growth factor receptor in human pancreatic cancer.

The c-MET oncogene encodes the receptor for hepatocyte growth factor (HGF) scatter factor, a multifunctional cytokine able to mediate morphogenesis as well as invasive growth of epithelial cells. The c-MET-encoded receptor is detectable only at low levels in the normal human exocrine pancreas, but it is up-regulated in the majority of pancreatic ductal adenocarcinomas. The c-MET-encoded HGF receptor is also overexpressed in a proportion of the panel of 31 human pancreatic cancer cell lines examined, which have a range of different growth properties and degrees of differentiation. In most cases the HGF receptor found in the malignant cells has features of the normal receptor. When added to pancreatic cancer cell lines, HGF triggers receptor phosphorylation and stimulates cells to move and proliferate. In overexpressing cell lines, the Met/HGF receptor is phosphorylated in the absence of endogenously produced or exogenously added ligand. These data suggest that the Met/HGF receptor may be involved in the growth and behavior of pancreatic cancer and may contribute to the ductal phenotype of these tumors.

Base Sequence

Experimental ulceration leads to sequential expression of spasmolytic polypeptide, intestinal trefoil factor, epidermal growth factor and transforming growth factor alpha mRNAs in rat stomach.

A model of gastric ulceration in the rat has been used to determine the expression of four messenger RNAs (mRNAs) encoding peptides considered to play active parts in the healing response. The trefoil peptides, rat spasmolytic polypeptide (rSP) and rat intestinal trefoil factor (rITF), along with epidermal growth factor (EGF) and transforming growth factor alpha (TGF alpha) were the molecules studied. Ulceration was caused under anaesthesia by brief application of a liquid nitrogen-filled cryoprobe to the gastric serosal surface and RNA expression was monitored over the next 10 days. Each mRNA was quantified by ribonuclease protection assay, and mRNAs encoding rSP and rITF were localized within tissue sections by hybridization in situ with 35S antisense riboprobes. Ulceration induced the very rapid expression of first rSP and then rITF mRNA, whereas the mRNAs encoding EGF and TGF alpha increased at later times, with maxima recorded at 3 and 6 days, respectively. Hybridization in situ detected extensive rSP mRNA expression in the regenerative epithelia. The pronounced, but temporally different patterns of mRNA induction after ulceration suggest that the trefoil peptides may fulfil different and more immediate roles than the more 'traditional' healing proteins EGF and TGF alpha.

Animals

Level of expression of E-cadherin mRNA in colorectal cancer correlates with clinical outcome.

A series of colorectal carcinomas (n = 49) resected from patients with known clinical outcomes were analysed for E-cadherin expression using in situ hybridisation to measure mRNA. Patients surviving 5 years or longer (n = 31) exhibited significantly higher levels of E-cadherin mRNA than those surviving less than 5 years (n = 18, P = 0.003). These preliminary results from this small sample suggest that E-cadherin expression may be a useful prognostic marker in colorectal cancer patients.

Cadherins