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Biomedical subjects

D Chen

Publications and source records attributed to D Chen.

At least 577 records · Page 32Linked to original sources

Molecular cloning of two novel rab genes from human melanocytes.

We isolated the genes of two small GTP-binding proteins of the rab family from a human melanocyte cDNA library and from melanoma cells. One gene, rab30 codes for a novel rab protein of 203 amino acids with minimal homology to previously documented GTPases. The other, rab22b, appears to be an isoform of the human homologue of canine rab22. Both rab mRNAs displayed a nearly ubiquitous pattern of expression in the various tissues examined. Rab22b and rab30 were mapped to chromosomes 18 and 11, respectively.

Amino Acid Sequence↗

Gastrin-evoked secretion of pancreastatin and histamine from ECL cells and of acid from parietal cells in isolated, vascularly perfused rat stomach. Effects of isobutyl methylxanthin and alpha-fluoromethylhistidine.

The ECL cells in the rat stomach release pancreastatin and histamine in response to gastrin stimulation. The present study compares the release of pancreastatin and histamine from the ECL cells and the secretion of acid from the parietal cells in response to gastrin, and examines how a markedly reduced histamine content in the ECL cells will affect the gastrin-evoked release of pancreastatin and the secretion of gastrin acid. Totally isolated, vascularly perfused stomachs were prepared from fasted rats. Some of the rats had been pre-treated for 24 h with (alpha-fluoromethylhistidine (alpha-FMH), resulting in 80% depletion of oxyntic mucosal histamine (mainly ECL-cell histamine). The stomachs were perfused with rat gastrin-17, alpha-FMH, isobutyl methylxanthine (IBMX), or vehicle in various combinations for 8 h. The venous outflow was collected (30-min samples) for determination of histamine and pancreastatin-like immunoreactivity (LI) and the gastric luminal outflow was collected for determination of H+. Gastrin raised the outflow of pancreastatin-LI and histamine but did not raise the acid output unless IBMX was added. The outflow of pancreastatin-LI and histamine was greater after gastrin + IBMX (at least during the first 4-h period) than after gastrin alone. alpha-FMH reduced gastrin-evoked histamine outflow but did not affect gastrin-evoked pancreastatin-LI outflow. Also the acid output in response to gastrin + IBMX was much reduced by alpha-FMH. In conclusion, increased levels of intracellular cAMP enhanced the gastrin-evoked release of pancreastatin-LI and histamine from the ECL cells and made it possible for histamine, released from the ECL cells, to cause acid secretion from the parietal cells. ECL-cell histamine depletion reduced the gastrin-evoked acid secretion; it did not affect the gastrin-evoked release of pancreastatin-LI.

1-Methyl-3-isobutylxanthine↗

Insulin and epidermal growth factor receptors regulate distinct pools of Grb2-SOS in the control of Ras activation.

Insulin and epidermal growth factor (EGF) stimulate a rapid but transient increase in the amount of GTP bound to Ras that returns to the basal GDP-bound state within 10-30 min. Although insulin stimulation resulted in a dissociation of the Grb2.SOS complex, EGF did not affect the Grb2.SOS complex but instead induced dissociation of Grb2-SOS from tyrosine-phosphorylated Shc. The dissociation of Grb2-SOS from Shc was not due to dephosphorylation as Shc remained persistently tyrosine-phosphorylated during this time. Furthermore, there was no decrease in the extent of insulin receptor substrate 1, insulin receptor, or EGF receptor tyrosine phosphorylation. Surprisingly, however, despite the EGF-induced decrease in the amount of Grb2-SOS bound to Shc, the extent of Grb2 associated with Shc remained constant, and there was a concomitant increase in the amount of SOS associated with Grb2. In addition, after the insulin-stimulated dissociation of Grb2 from SOS, EGF treatment induced the reassociation of the Grb2.SOS complex. Quantitative immunoprecipitation demonstrated that only a small fraction of the total cellular pool of Grb2 was associated with SOS. Similarly, only a small fraction of SOS and Grb2 were co-immunoprecipitated with Shc. Together, these data suggest the presence of distinct Grb2-SOS pools that are independently utilized by insulin and EGF in their recruitment to tyrosine-phosphorylated Shc.

Adaptor Proteins, Signal Transducing↗

M13-102: a vector for facilitating construction and improving quality of M13 shotgun libraries.

A modified vector, M13-102, is described which utilizes the previously reported M13-100 direct selection strategy for shotgun cloning [Guilfoyle and Smith, Nucleic Acids Res. 22 (1994) 100-107]. In these vectors, direct selection replaces the need for phosphatase treatment of vector DNA and is achieved by insertional inactivation of M13 gene X. When not inactivated, the engineered overproduction of the M13 gene X product mediates phage replication repression. M13-102 contains two new additions: (1) a sequence enabling triple-helix-mediated affinity capture (TAC) for purification of linearized vector DNA, and (2) universal primer sequences for wider compatibility with commercial instruments that support fluorescence-based sequencing. Using a biotinylated homopyrimidine oligodeoxyribonucleotide as third-strand probe, TAC is performed on streptavidin-coated magnetic beads [Ji et al., Genetics Analysis: Techniques and Applications 11 (1994) 43-47], and serves as a rapid and efficient alternative to gel purification. To reduce tandem insertions, phosphatase treatment of insert DNA was easily invoked without sacrificing cloning efficiency. The combined capabilities of direct selection, TAC purification and phosphatase treatment of inserts should facilitate library construction and improve overall library quality.

Bacteriophage M13↗

Sensitization of human breast cancer cells to cyclophosphamide and ifosfamide by transfer of a liver cytochrome P450 gene.

The cancer chemotherapeutic agent cyclophosphamide (CPA) and its isomer ifosfamide (IFA) are alkylating agent prodrugs that require metabolism by liver cytochrome P450 (P450) enzymes for antitumor activity. The therapeutic effectiveness of these oxazaphosphorines is limited by the hematopoietic, renal, and cardiac toxicity that accompanies the systemic distribution of liver-derived activated drug metabolites. Transfer of a liver cytochrome P450 gene, CYP2B1, into human breast MCF-7 cancer cells is presently shown to greatly sensitize these cells to oxazaphosphorine toxicity as a consequence of the acquired capacity for intratumoral CPA and IFA activation. Thus, CPA and IFA were highly cytotoxic to MCF-7 cells following stable transfection of CYP2B1 but exhibited no toxicity to parental tumor cells or to a beta-galactosidase-expressing MCF-7 transfectant. This cytotoxicity could be appreciably blocked by the CYP2B1 inhibitor metyrapone. Cell cycle analysis revealed that CPA arrested the CYP2B1-expressing cells, but not CYP2B1-negative cells, at G(2)-M phase. A strong bystander cytotoxicity effect that does not require direct cell-cell contact was mediated by CYP2B1-expressing MCF-7 cells on non-CYP2B1 cells. Intratumoral CYP2B1 expression conferred a distinct therapeutic advantage when treating MCF-7 tumors grown in nude mice with CPA, as revealed by a 15-20-fold greater in vivo cytotoxicity, determined by tumor excision/colony formation assay, and by the substantially enhanced antitumor activity, monitored by tumor growth delay, for CYP2B1-e xpressing MCF-7 tumors as compared to CYP2B1-negative control tumors. These enhanced therapeutic effects were obtained without any apparent increase in host toxicity. To evaluate the extent to which a CPA/P450 gene therapy strategy may be generally applicable to other tumor cell types, a replication-defective recombinant adenovirus carrying the CYP2B1 gene driven by the cytomegalovirus (CMV) promotor ad.CMV-2B1 was constructed and used to infect a panel of human tumor cell lines. Ad.CMV-2B1 infection rendered each of the cell lines highly sensitive to CPA and IFA cytotoxicity, with substantial chemosensitization seen at multiplicities of infection as low as 10. The CPA/P450 prodrug activation system may thus serve as a useful paradigm for further development of novel cancer gene therapy strategies that utilize drug susceptibility genes to significantly potentiate the antitumor activity of conventional cancer chemotherapeutic agents.

Adenoviridae↗

Purification of single-stranded M13 DNA by cooperative triple-helix-mediated affinity capture.

A solid-phase triple-helix-mediated affinity capture method is described for the purification of single-stranded M13 DNA for use as template in fluorescence-based DNA sequencing reactions. In this method, a biotinylated polypyrimidine oligonucleotide "loop" bound to streptavidin-coated magnetic beads is used to selectively capture single-stranded M13 DNA from high-titer phage supernatant through the formation of a cooperative triple helix (CTH) complex between the oligonucleotide and a polypurine site previously cloned into the M13 vector. Capture is accomplished at acidic pH to encourage triple-helix formation, while elution is performed at alkaline pH with heating to destroy the CTH complex. The beads can be reused up to three times without probe replenishment. Yields of M13 ssDNA in excess of 1 microgram per milliliter of culture are obtained, sufficient for use as template in fluorescence-based DNA sequencing reactions.

Bacteriophage M13↗

Effects of synthetic peptido-leukotrienes on bone resorption in vitro.

Peptido-leukotrienes are short-lived organic molecules known to have potent biological effects as mediators of inflammation, hypersensitivity and respiratory disorders. However, little is known concerning their effects on bone cells. We have shown previously that stromal cells isolated from a human giant cell tumor secrete 5-HETE (5-hydroxyeicosatetraenoic acid) and the peptido-leukotrienes, also known as the cysteinyl leukotrienes LTC4, LTD4, and LTE4. These eicosanoids were shown to stimulate the multinucleated giant cells obtained from these tumors to form resorption lacunae on sperm whale dentine. Here, we show that the peptido-leukotrienes also stimulate isolated avian osteoclast-like cells to form resorption lacunae and to increase their content of tartrate-resistant acid phosphatase. LTD4 increased 45Ca release from murine calvarial bone organ cultures, but not from fetal rat long bone cultures. Isolated avian osteoclast-like cells were chosen to perform receptor binding studies, as this population is the most homogeneous source of osteoclasts available. After the precursors had fused to form multinucleated cells, receptor binding assays were performed. Scatchard analysis of saturation binding data showed a single class of binding sites, with a dissociation constant (Kd) of 0.53 nM and a receptor density of 5,200 receptors per cell. Competition binding studies showed receptor specificity using a specific LTD4 receptor antagonist ZM 198,615. These data show that the peptido-leukotrienes activate highly enriched populations of isolated avian osteoclast-like cells, and also that specific LTD4 receptors are present in this cell population.

Animals↗

Cytokine gene transcription of human colonic intraepithelial lymphocytes costimulated with epithelial cells bearing HLA-DR and its inhibition by 5-aminosalicylic acid.

The objectives of this study were to activate human colonic intraepithelial lymphocytes at the transcriptional level with HLA-DR+ human colonic epithelial cell line (HT29) in synergy with CD3 monoclonal antibody and to investigate the molecular mechanism for the therapeutic effects of 5-aminosalicylic acid. Lymphocytes were isolated by a mechanical method from resected colon of 22 cases and then cocultured on 10 ng/ml CD3mAb immobilized plates with HT29 which had been induced to express MHC class II molecules by interferon gamma. Flow cytometry analysis suggested that the lymphocyte population had a CD4/CD8 ratio similar to that observed in intact tissue sections and that there was no HT29 contamination of the lymphocytes isolated again from cocultured cells. The activation of intraepithelial lymphocytes showed the gene transcription of interferon gamma and tumor necrosis factor alpha, as measured by means of the reverse-transcriptase polymerase chain reaction, and this activation was antagonized by 5-aminosalicylic acid. Thus, epithelial cells bearing HLA-DR are capable of enhancing CD3-induced activation of human colonic intraepithelial lymphocytes and subject to inhibition by 5-aminosalicylic acid, the active moiety of salicylates used in inflammatory bowel disease.

Actins↗

Study of spontaneous combustion coals by GC and GC-MS.

Organic geochemical characteristics of 3 Chinese spontaneous combustion coals have been carried out by means of GC and GC-MS analysis. It has been observed that more compounds with low to medium carbon number, such as terpenoids and others can be found in spontaneous combustion coals than in normal samples.

Journal Article↗

Ultrastructure of enterochromaffin-like cells in rat stomach: effects of alpha-fluoromethylhistidine-evoked histamine depletion and hypergastrinemia.

Histamine-producing enterochromaffin-like (ECL) cells are numerous in the oxyntic mucosa of the rat stomach. They respond to gastrin by secretory activation, hypertrophy and hyperplasia. They contain cytoplasmic granules (median profile diameter 120 nm), secretory vesicles (180 nm) and microvesicles (70 nm). alpha-Fluoromethylhistidine (alpha-FMH) depletes histamine from the ECL cells by inhibiting the histamine-forming enzyme histidine decarboxylase. Long-term hypergastrinemia, evoked by omeprazole, increases the ECL-cell histamine concentration. The way in which chronic histamine depletion affects omeprazole-induced ECL-cell hypertrophy, and the ways in which granules and vesicles in the ECL cells respond to alpha-FMH and/or omeprazole have been studied. Rats were treated with alpha-FMH (3 mg/kg per h subcutaneously), omeprazole (400 micromol/kg per day orally), alpha-FMH+omeprazole, or vehicle for 6 weeks. ECL cell profiles in electron micrographs were analysed panimetrically. The results show that the omeprazole-evoked hypertrophy of the ECL cells is not affected by depletion of ECL-cell histamine, thereby supporting the view that ECL-cell histamine is not important for full expression of the gastrin-evoked trophic effects on the ECL cells. The loss of ECL-cell histamine following treatment with alpha-FMH and with alpha-FMH+omeprazole is associated with a greatly reduced size of the secretory vesicle compartment. The granules, on the other hand, are unaffected by alpha-FMH and alpha-FMH+omeprazole. Omeprazole treatment leads to the appearance of numerous vacuoles (with profile diameter greater than 500 nm); such vacuoles are not observed in the ECL cells of rats treated with alpha-FMH or alpha-FMH+omeprazole. The omeprazole-induced increase in ECL-cell histamine is associated with an increase in the compartment composed of secretory vesicles and vacuoles. The findings support the hypothesis that secretory vesicles (and vacuoles) represent a major storage site of ECL-cell histamine.

Animals↗

Time course of hypertrophic and ultrastructural responses of rat stomach enterochromaffin-like cells to sustained hypergastrinemia.

Previously, we have investigated the effects of short-term (minutes to hours) and long-term (weeks to months) stimulation with gastrin on the histamine-producing enterochromaffin-like (ECL) cells in the oxyntic mucosa of rat stomach. The present study examines the response of the ECL cells of freely fed rats to sustained hypergastrinemia over a time span of a few hours to four weeks. Sustained hypergastrinemia was induced by the continuous subcutaneous infusion of human Leu15-gastrin-17. The histidine decarboxylase (HDC) activity and histamine concentration in the oxyntic mucosa were monitored throughout the study. ECL cell profiles in electron micrographs were analysed planimetrically. The HDC activity displayed a 4-fold increase within the first two days. Subsequently, it remained at a plateau. The histamine concentration increased 2- to 3-fold in response to gastrin. The rise in histamine was slower than the rise in HDC activity. At no time point was there a reduced concentration of histamine. The ECL cells increased in size after 4 days of hypergastrinemia, reaching a maximum cell profile area after 2 weeks and remaining enlarged for the duration of the study. The secretory vesicles were reduced in number after 1 day, returning gradually to the pre-stimulation value thereafter; their volume density remained reduced during the 6-day observation period. Vacuoles started to appear after 1 day of hypergastrinemia and their number and volume density increased, reaching a maximum after 4 days. The number and volume density of the microvesicles increased and plateaued after 2 days of hypergastrinemia. The number of granules per cell profile was unaffected but their volume density was greatly reduced after 4 days of hypergastrinemia (reflecting the ECL cell hypertrophy). The present findings establish the time course of activation of the ECL cells in response to sustained hypergastrinemia over a time span of a few hours to four weeks; a new "steady state" situation at a high level of activity has been established after about a week.

Animals↗

Effect of alpha-fluoromethylhistidine-evoked histamine depletion on ultrastructure of endocrine cells in acid-producing mucosa of stomach in mouse, rat and hamster.

The oxyntic mucosa of the mammalian stomach is rich in endocrine cells, such as ECL cells, A-like cells, somatostatin cells, D1/P cells and, in some species, enterochromaffin cells. The various endocrine cell types can be distinguished on the basis of their characteristic cytoplasmic granules and vesicles. The ECL cells contain numerous large secretory vesicles and relatively few, small electron-dense granules and small clear microvesicles. We have suggested that in the rat the ECL cells contain most of the gastric histamine with the secretory vesicles as the major histamine storage site in these cells. alpha-Fluoromethylhistidine is an irreversible inhibitor of histidine decarboxylase, the histamine-forming enzyme. We have previously shown that this enzyme inhibitor depletes histamine from the ECL cells in the rat and reduces the number of secretory vesicles in the cytoplasm. In the present study, we have examined whether alpha-fluoromethylhistidine affects the ECL cells in other species and whether it affects other types of endocrine cells in the oxyntic mucosa of the rat. Mice, rats and hamsters were treated with the inhibitor (3 mg/kg per h) via minipumps subcutaneously for 24 h. This treatment lowered the oxyntic mucosal histamine concentration by 65-90% and the number and volume density of the secretory vesicles by 85-95% in the ECL cells of the three species examined. In contrast, the number and volume density of granules and microvesicles were not greatly affected. No evidence was found for an effect of alpha-fluoromethylhistidine on A-like cells, somatostatin cells or D1/P cells of the rat stomach, suggesting that, unlike the ECL cells, they do not contain histamine.

Acids↗

Sickle red blood cells stimulate endothelial cell production of eicosanoids and diacylglycerol.

The effects of sickle red cell-endothelial cell interaction on endothelial cell arachidonic: acid (AA) mobilization, eicosanoid release, and diacylglycerol (DAG) production were evaluated by using bovine aortic endothelial cells. We have shown that coincubation of washed red blood cells (RBCs) from patients with sickle cell disease with endothelial cells stimulate AA release (90% increase as compared with buffer controls, n = 8, p < 0.002). Released AA was mobilized from membrane phosphatidylcholine and phosphatidylserine and was converted to eicosanoids via the cyclooxygenase and lipoxygenase pathways in increased amounts in the presence of sickle erythrocytes. The production of prostacyclin and 15-hydroxyeicosatetraenoic acid (15-HETE) were increased by 78% (p < 0.01) and 103% (p < 0.025), respectively, as shown by both chromatographic and immunoassay procedures. Sickle erythrocytes also stimulated the hydrolysis of endothelial cell phosphoinositides, including phosphatidylinositol-mono-phosphate (p < 0.03) and phosphatidylinositol-bis-phosphate (p < 0.006). This response was accompanied by a significant increase in the production of DAG (50% increase as compared with buffer control, n = 8, p < 0.025). In contrast, coincubation of washed erythrocytes from normal healthy donors with endothelial cells had no significant effect on endothelial cell phospholipid turnover. When the sickle RBC-induced biochemical changes in endothelial cells were contrasted with those observed with normal RBCs, the ability of sickle RBCs to induce AA mobilization and the production of mono-HETEs and DAG was markedly increased (p = 0.05 to p < 0.025). Because 15-HETE is a pro-adhesinogenic eicosanoid and DAG is an endogamous activator of protein kinase C, an enzyme involved in modulating cell surface adhesive properties, both 15-HETE and DAG could potentially play a role in the vascular pathophysiology of sickle cell disease.

Anemia, Sickle Cell↗

Nitric oxide synthase activity in the molluscan CNS.

Putative nitric oxide synthase (NOS) activity was assayed in molluscan CNS through histochemical localization of NADPH-diaphorase and through measurement of L-arginine/L-citrulline conversion. Several hundreds of NADPH-dependent diaphorase-positive neurons stained consistently darkly in the nervous system of the predatory opisthobranch Pleurobranchaea californica, whereas stained neurons were relatively sparse and/or light in the other opisthobranchs (Philine, Aplysia, Tritonia, Flabellina, Cadina, Armina, Coriphella, and Doriopsilla sp.) and cephalopods (Sepia and Rossia sp.). L-Arginine/L-citrulline conversion was beta-NADPH dependent, insensitive to removal of Ca2+, inhibited by the calmodulin blocker trifluoperazine, and inhibited by the competitive NOS inhibitor N-nitro-L-arginine methyl ester (L-NAME) but not D-NAME. Inhibitors of arginase [L-valine and (+)-S-2-amino-5-iodoacetamidopentanoic acid)] did not affect L-citrulline production in the CNS. NOS activity was largely associated with the particulate fraction and appeared to be a novel, constitutive Ca(2+)-independent isoform. Enzymatic conversion of L-arginine/L-citrulline in Pleurobranchaea and Aplysia CNS was 4.0 and 9.8%, respectively, of that of rat cerebellum, L-Citrulline formation in gill and muscle of Pleurobranchaea was not significant. The localization of relatively high NOS activity in neuron somata in the CNS of Pleurobranchaea is markedly different from the other opisthobranchs, all of which are grazers. Potentially, this is related to the animal's opportunistic predatory lifestyle.

Animals↗