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Biomedical subjects

Q Yang

Publications and source records attributed to Q Yang.

At least 433 records · Page 24Linked to original sources

[Antifebrile and anti-inflammatory effects of radix Cynanchi atrati].

The water extract of Radix Cynanchi Atrati used as intraperitoneal injection has been proved to have an obvious antifebrile++ effect on rat fever caused by 15% yeast suspension hypodermic injection as well as a significant anti-inflammatory effect. But the antiferbrile effect of its ethanol extract is not clear.

Animals↗

A novel cyclic GMP stimulated phosphodiesterase from rat brain.

A cDNA clone for cyclic GMP Stimulated Phosphodiesterase (cGSPDE; PDE2) was isolated from a rat brain cDNA library. The cDNA has an open reading frame which encodes a protein of 928 amino acids of which 829 are identical with the reported bovine adrenal gland cGSPDE cDNA (Sonnenburg, W.K., Mullaney, P.J., and Beavo, J.A. (1991) J. Biol. Chem. 266, 17655-17661). Although the overall homology of these two cDNAs is high, they are distinctly different in their 5' ends, with the N-terminal 37 amino acids of the rat brain protein showing no homology with the N-terminal end of the bovine adrenal protein. Hydrophilicity plots show that in contrast to the bovine adrenal cGSPDE, the N-terminal end of the rat brain cGSPDE is highly hydrophobic. Isolation and analysis of a genomic clone for cGSPDE from a rat genomic library shows the presence of an exon/intron junction at the Gln39 codon. The cGSPDE cDNA we have isolated and that of Sonnenburg et al. represent alternatively spliced mRNA products from the same gene, with the brain isoform designed to be targeted to membranes.

3',5'-Cyclic-GMP Phosphodiesterases↗

MHC class I gene(s) in the D/L region but not the TNF-alpha gene determines development of toxoplasmic encephalitis in mice.

Previous studies revealed that mice with the b or k allele at the H-2D region are susceptible to toxoplasmic encephalitis (TE); those with the d allele are resistant. To determine whether the b or d allele is dominant, F1 hybrids between susceptible C57BL/6 (H-2b) and resistant BALB/c (H-2d) mice were infected with T. gondii. TE was not observed in the F1 hybrids, indicating that the d allele is dominant for protection against development of TE. Mice with a mutation in the D/L region were used to determine whether the D gene or the L gene of MHC class I Ags of the H-2D region is most critical for resistance against development of TE. B10.D2-H2dm1 (dm1) mice that have the mutant D/L hybrid gene formed by fusion of the 5' part of the Dd gene and the 3' part of the Ld gene developed TE in contrast to their background B10.D2 mice. BALB/c-H-2dm2 (dm2) mice, which have a complete deletion of the Ld gene, had significantly more T. gondii cysts in their brains than did dm1 mice and developed large areas of necrosis in their brains that were not observed in dm1 mice. These results indicate that a gene(s) in the D/L region determines whether TE will occur and that the Ld gene plays a critical role in the resistance against development of TE. Polymorphisms in the TNF-alpha gene (located in the H-2D region) have been reported to correlate with resistance against the development of TE. When development of TE was studied in BALB/c and dm2 mice that have the same TNF-alpha gene, only dm2 mice developed TE. This indicates that the TNF-alpha gene is not a determining factor for the development of TE. Transcripts for TNF-alpha were detected in brains of infected dm2 mice but not in BALB/c mice. Injection of neutralizing Abs against TNF-alpha resulted in worsening of the TE in infected dm2 mice but did not induce TE in infected BALB/c mice. Thus, TNF-alpha appears to be produced in the brain after TE has developed and is responsible for preventing the progression of TE.

Animals↗

Sequence organization of the Acanthamoeba rRNA intergenic spacer: identification of transcriptional enhancers.

The primary sequence of the entire 2330 bp intergenic spacer of the A.castellanii ribosomal RNA gene was determined. Repeated sequence elements averaging 140 bp were identified and found to bind a protein required for optimum initiation at the core promoter. These repeated elements were shown to stimulate rRNA transcription by RNA polymerase I in vitro. The repeats inhibited transcription when placed in trans, and stimulated transcription when in cis, in either orientation, but only when upstream of the core promoter. Thus, these repeated elements have characteristics similar to polymerase I enhancers found in higher eukaryotes. The number of rRNA repeats in Acanthamoeba cells was determined to be 24 per haploid genome, the lowest number so far identified in any eukaryote. However, because Acanthamoeba is polyploid, each cell contains approximately 600 rRNA genes.

Acanthamoeba↗

Vasoactive intestinal peptide-receptor imaging for the localization of intestinal adenocarcinomas and endocrine tumors.

BACKGROUND: Intestinal adenocarcinomas and various endocrine tumors express large numbers of high-affinity receptors for vasoactive intestinal peptide (VIP). We have evaluated the usefulness of scanning with VIP labeled with iodine-123 for tumor localization in patients with gastrointestinal tumors. METHODS: Radioiodinated VIP was purified by high-pressure liquid chromatography and administered as a single intravenous bolus injection (300 pmol [1 microgram]). Scanning with radiolabeled VIP was compared with computed tomography and scanning with somatostatin analogues in 79 patients with colorectal cancer, pancreatic carcinoma, gastric cancer, carcinoid tumor, or insulinoma. RESULTS: Visualization of gastrointestinal tumors and metastases was obtained with radiolabeled VIP. Binding of the labeled peptide by primary tumors and metastases was visible shortly after the injection and was still demonstrable at 24 hours. In patients with colorectal adenocarcinomas, primary or recurrent tumors were visualized in 10 of 10, liver metastases in 15 of 18, lung metastases in 2 of 3, and lymph-node metastases in 4 of 4. Primary pancreatic adenocarcinomas were visualized by imaging in 10 of 12 patients, and liver metastases were seen in 7 of 7. Primary or recurrent gastric adenocarcinomas were visualized in 5 of 5 patients, and liver metastases were seen in 2 of 2 patients. VIP scans were positive in 9 of 10 patients with carcinoid tumors and in 4 of 4 patients with insulinomas. Some tumors with positive VIP scans were also visualized with somatostatin analogues (4 of 17 colorectal adenocarcinomas, 8 of 9 carcinoids, and 2 of 2 insulinomas). In vitro binding studies confirmed the presence of VIP receptors on gastrointestinal tumors. CONCLUSIONS: Scanning with radiolabeled VIP can visualize intestinal tumors and metastases that express receptors for VIP.

Adenocarcinoma↗

Expression of DEP-1, a receptor-like protein-tyrosine-phosphatase, is enhanced with increasing cell density.

cDNA encoding a receptor-like protein-tyrosine-phosphatase (PTP) termed DEP-1 was isolated from a HeLa cell library. The cDNA predicts an enzyme consisting of an extracellular segment containing eight fibronectin type III repeats, a single transmembrane segment, and a single intracellular PTP domain. Following expression of DEP-1 cDNA in COS cells a glycoprotein of 180 kDa was detected and PTP activity was demonstrated in immunocomplexes with a C-terminal peptide antiserum. Endogenous DEP-1 was detected in WI-38 human embryonic lung fibroblasts by immunoblotting and immunocomplex PTP assays. Immunoblot analysis of DEP-1 expression in WI-38 cells revealed dramatically increased levels and activity of the PTP in dense cultures relative to sparse cultures. Also, DEP-1 activity, detected in PTP assays of immunocomplexes, was increased in dense cell cultures. In contrast, the expression levels of PTP-1B did not change with cell density. This enhancement of DEP-1 expression with increasing cell density was also observed in another fibroblast cell line, AG1518. The increase in DEP-1 occurs gradually with increasing cell contact and is initiated before saturation cell density is reached. These observations suggest that DEP-1 may contribute to the mechanism of contact inhibition of cell growth.

Amino Acid Sequence↗

Cross-competition between vasoactive intestinal peptide and somatostatin for binding to tumor cell membrane receptors.

Vasoactive intestinal peptide (VIP) is a 28-amino acid peptide with a wide range of biological activities. Recent data suggest that functional VIP receptors are expressed on various tumor cells. Somatostatin (SST) and its long-acting analogue octreotide (OCT) are potent inhibitors of tumor cell growth and secretion. In the present study, the interactions between VIP and SST/OCT on primary tumors (insulinomas, n = 3; VIPomas, n = 2; intestinal adenocarcinomas, n = 5; neuroblastomas, n = 5; papillary thyroid cancers, n = 7; carcinoids, n = 5; ductal breast cancers, n = 8; small cell lung cancers, n = 3; ACTH-producing hypophyseal adenomas, n = 5; pheochromocytomas, n = 5) as well as on tumor cell lines (A431, HT29, PANC1, COLO320, HMC1, and KU812 cells) were analyzed by use of 123I-labeled VIP and 123I-labeled Tyr-3-OCT. Cross-competition between VIP and SST/OCT for binding to tumor cells was observed. The rank-order of potency for displacement of 123I-labeled VIP binding to intact A431 cells was VIP [concentration causing half-maximal inhibition (IC50) = 2.9 +/- 1.9 (SD) nM] > OCT (IC50 = 9.3 +/- 1.7 nM) = SST > substance P = secretin (IC50 = 1 microM). Binding of 123I-labeled Tyr-3-OCT to A431 cells, in turn, was inhibited by OCT = Tyr-3-OCT (IC50 = 1.5 +/- 0.3 nM) = SST > VIP (IC50 = 4.9 +/- 1.1 nM). This rank-order of potency was also obtained for primary tumors and tumor cell lines. Furthermore, SST and OCT inhibited VIP-induced [3H]thymidine incorporation, cyclic AMP formation, and tyrosine kinase activity with IC50 values < 10 nM. Together, these data provide evidence for functional interactions between SST and VIP on various tumor cells. These interactions may involve peptide cross-competition at cellular binding sites and may have implications for the biology and pathophysiology of respective cells and disease states.

Adenosine Triphosphate↗

Steric immobilization of liposomes in chromatographic gel beads and incorporation of integral membrane proteins into their lipid bilayers.

Interactions between water-soluble substances and immobilized liposomes or proteoliposomes can be analyzed by chromatographic procedures. Methods were therefore developed to sterically immobilize large amounts of liposomes in gel beads. First, freeze-thawing of moist Sephacryl S-1000 beads mixed with egg yolk phospholipid liposomes of 200-300 mM lipid concentration immobilized liposomes representing 60-90 mumol lipid with an internal volume of 60-150 microliters per milliliter gel bed. The same procedure with freeze-dried beads immobilized liposomes representing more lipid but with lower internal volumes. Other lipid mixtures could also be used. Second, mixtures of Sephacryl S-1000 beads and liposomes were freeze-dried and rehydrated. Large amounts of liposomes became immobilized even with dilute liposome suspensions. Third, a mixture of diethylether-dried Sephacryl S-1000 beads and an emulsion of an aqueous solution in diethylether with lipids was subjected to reverse-phase evaporation. Liposomes of high specific internal volume became immobilized. Integral human red cell membrane proteins could be incorporated into the liposomal lipid bilayers. Upon mixing octyl glucoside-solubilized proteins with moist beads containing immobilized liposomes, up to 0.4 mg protein became incorporated per milliliter gel bed (yield 34%). Proteins could also be incorporated during immobilization by reverse-phase evaporation. Detergents could be removed efficiently from immobilized (proteo)liposomes in a gel bed.

Cholic Acid↗

Histamine immunohistochemistry is superior to the conventional heparin-based routine staining methodology for investigations of human skin mast cells.

Conventional studies of mast cells are limited by methodological restrictions such as a selective fixative-dependent routine staining blockage. This is thought to depend on the biochemical differences of the mast cell granule contents suggesting a cellular heterogeneity. Investigations of human mast cells, using routine methods, also suffer from the problem of a low signal-to-noise ratio. In the present study, normal human skin was used to compare an immunohistochemical method for histamine with two recommended mast-cell fixatives and a new commercial fixative in combination with three routine stains. Mast cells were found throughout the dermis with all the routine stains used. However, immunohistochemistry gave profoundly better results. Small structures, such as thin cytoplasmatic extensions and single granules, were readily detectable. Double-staining (immunohistochemistry followed by routine staining) revealed differences in staining capacity. All immunoreactive cells were not stained by routine stains and sometimes the opposite was also seen. This supports earlier reported evidence of heterogeneity, not only between skin and intestinal mast cells but also among skin mast cells themselves. Furthermore, by focusing on histamine, instead of heparin, we probably overcame the problems of the selective fixative-dependent routine staining blockage. Finally, the immunofluorescence technique provides a high signal-to-noise ratio and is an excellent method for making high-quality microphotographs of human mast cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Female↗

Comparison of iodine-123 low-density lipoprotein (LDL) and indium-111 LDL binding to mononuclear cells of healthy normolipaemic controls and patients with heterozygous familial hypercholesterolaemia.

The binding of radiolabelled lipoproteins, iodine-123-labelled low-density lipoprotein (LDL) and indium-111-labelled LDL, to peripheral blood mononuclear cells (MNCs) was compared in normolipaemic subjects and in patients with heterozygous familial hypercholesterolaemia (FH). 123I-LDL and 111In-LDL binding to MNCs exhibited high-affinity, highly specific, time- and temperature-dependent binding reaching saturation at concentrations above 50 nM. The number of LDL binding sites (Bmax) was significantly (P < 0.01) lower in FH patients (P < 0.001; 123I-LDL: Bmax 279 +/- 44 ng protein/10(8) MNCs; 111In-LDL: Bmax 309 +/- 43 ng protein/10(8) MNCs) as compared with controls (123I-LDL: Bmax 2874 +/- 246 ng protein/10(8) MNCs; 111In-LDL: Bmax 3145 +/- 339 ng protein/10(8) MNCs). The corresponding dissociation constants (Kd) were 16 +/- 8 nM for 123I-LDL and 12 +/- 6 nM for 111In-LDL in healthy volunteers (123In-LDL vs 111In-LDL, P < 0.05). In FH patients, the Kd values were 20 +/- 8 nM for 123I-LDL and 16 +/- 6 nM for 111In-LDL (P < 0.05 vs controls for both 123I-LDL and 111In-LDL). 111In-LDL binding to MNCs was inhibited (IC50) by 30 +/- 8 nM in healthy controls and 38 +/- 12 nM in FH patients (P < 0.05). 123In-LDL binding to MNCs was inhibited (IC50) by 34 +/- 8 nM in healthy controls and 46 +/- 10 nM in FH patients (P < 0.05). Taken together, these results suggest a reduced number of LDL receptors expressed on MNCs from FH patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Binding Sites↗

Changes in neurofilament protein NF-L and NF-H immunoreactivity following kainic acid-induced seizures.

Postlesion plasticity of neuronal processes might contribute to secondary spontaneous seizures after kainic acid administration. In this study, neurofilament (NF) proteins were examined following intraperitoneal injection of kainic acid, and special reference was given to temporal changes in quantity and quality of the NF light (NF-L) and heavy (NF-H) subunits. A pronounced decrease in phosphorylation-related immunoreactivity of NF-H occurred as early as 1 day after the injection in the amygdala/pyriform cortex, hippocampus, striatum, and dorsal cerebral cortex. A shift of NF-H from the phosphorylated to nonphosphorylated form was evident in immunoblots, suggesting dephosphorylation contributed to the decrease. Decreases in NF-L and phosphorylated NF-H contents in the limbic structure at 3 days were correlated with the increasing kainic acid doses from 2.5 to 10 mg/kg. The degradation pattern in immunoblots with antibodies against NF-L indicated that the decrease in NF-L was probably due to calcium-activated proteolysis. NF-L and phosphorylated NF-H contents secondarily increased from 9 days onward, with approximately 20% above the control level of phosphorylated NF-H immunoreactivity at 27 days in the amygdala/pyriform cortex and ventral hippocampus. Immunohistochemical examination of the hippocampus revealed that an increase of NF staining in the mossy fiber system may contribute to the NF recovery in this region. Furthermore, the temporal changes of NF-L and phosphorylated NF-H contents were positively correlated with those of the neuronal cell adhesion molecule, a neuritic growth cone marker, substantiating postlesion regenerative reactions of NF proteins. Functional consequences of the NF plasticity remain to be identified.

Animals↗

Detection of DNA point mutations with DNA mismatch repair enzymes.

We have developed a simple and reliable procedure to screen gene mutations using DNA mismatch repair (MR) specific mut Y enzyme of Escherichia coli and thymidine DNA glycosylase from HeLa cells. The mut Y enzyme cleaves A of G/A mismatches in DNA duplex and thymidine glycosylase cleaves T at G/T mismatches. Previously, we showed the determination of G:C-->T:A mutations in the N-ras gene in two human tumor samples with mut Y G/A MR enzyme. As low as 1-2% mutant DNAs in a sample of mutant and wild-type DNA can be detected with a synthetic DNA to create G/A mispairing for the assay. In this paper, we simplify the assay, include G/T MR thymidine glycosylase from HeLa cells and evaluate the application for screening DNA point mutations of p53 and ras genes. In this method, DNA fragments amplified from normal and mutated genes by polymerase chain reaction (PCR) were mixed and annealed to create DNA mismatches for cleavage by mismatch repair enzymes. The cleaved products and the substrates were separated by gel electrophoresis and detected by autoradiography. In theory, the enzymes that cut G/A or G/T mispairs will detect the mutations of G:C-->A:T, A:T-->G:C, G:C-->T:A and T:A-->G:C. Several human tumor samples were examined for p53 or K-ras mutations with G/A and G/T mismatch repair enzymes. The reliability of mutation detection was evaluated by comparing the results with reported mutations or confirmed by DNA sequencing of the same PCR-amplified DNA fragments. Our data showed that, following mismatch repair enzyme cleavage, all mutated DNA samples yielded cleaved products with sizes as expected. In addition, our assay is able to characterize the nature of mutation by 5' end-labeling of 32P on mutant or wild-type DNA fragments. The low background, reliability and the determination of the sites of mutations as well as the types of DNA base changes indicate the advantages of the method over other techniques in testing DNA mutants.

Base Sequence↗

Antibody against interleukin-6 reduces inflammation and numbers of cysts in brains of mice with toxoplasmic encephalitis.

Treatment of toxoplasmic encephalitis in C57BL/6 mice with monoclonal antibody (MAb) against interleukin-6 (IL-6) resulted in a remarkable decrease in the number of foci of acute inflammation in their brains caused by proliferation of tachyzoites. In brains of mice treated with isotype control MAb and those treated with anti-IL-6 MAb, tachyzoites were observed only in foci of acute inflammation. Immunoperoxidase staining revealed a greatly diminished frequency of tachyzoites in brains of mice treated with anti-IL-6 MAb. Of interest, treatment with MAb against IL-6 was also associated with reduced numbers of Toxoplasma gondii cysts in the brains and with higher serum levels of gamma interferon than in control mice. Paradoxically, the mice treated with anti-IL-6 MAb had higher serum levels of IL-6 as measured by an enzyme-linked immunosorbent assay than controls. These results revealed the importance of IL-6 in the immunopathogenesis of murine toxoplasmic encephalitis.

Animals↗

Characterization of cell lines that inducibly express the adeno-associated virus Rep proteins.

The replication (rep) gene of adeno-associated virus (AAV) is involved in AAV DNA replication, gene regulation, and inhibition of cellular transformation induced by various oncogenes. To study the rep gene's antiproliferative effects, we have developed cell lines which express the replication proteins under the control of an inducible mouse metallothionein transcription promoter. The Rep78 protein produced in these cell lines binds to the AAV terminal repeat sequences in vitro and supports AAV DNA replication and trans activation of the AAV p40 transcription promoter in vivo. These cell lines are capable of assembling infectious viruses containing a mutant rep gene or a vector bearing a heterologous gene. Growth rate and colony formation efficiency assays indicated that rep gene expression substantially altered cellular proliferation. Long-term induction of the cell lines followed by removal of the inducing agent suggested that constitutive expression of the Rep proteins does not necessarily result in cell death and that the cells can recover from the cytostatic effects. Flow cytometry analysis indicated that the presence of the Rep proteins increased the population of cells in the S phase of the cell cycle. Thus the rep gene's antiproliferative effects may be realized by interference with cellular DNA replication.

Cell Division↗

Myocyte nuclear factor, a novel winged-helix transcription factor under both developmental and neural regulation in striated myocytes.

A sequence motif (CCAC box) within an upstream enhancer region of the human myoglobin gene is essential for transcriptional activity in both cardiac and skeletal muscle. A cDNA clone, myocyte nuclear factor (MNF), was isolated from a murine expression library on the basis of sequence-specific binding to the myoglobin CCAC box motif and was found to encode a novel member of the winged-helix or HNF-3/fork head family of transcription factors. Probes based on this sequence identify two mRNA species that are upregulated during myocyte differentiation, and antibodies raised against recombinant MNF identify proteins of approximately 90, 68, and 65 kDa whose expression is regulated following differentiation of myogenic cells in culture. In addition, the 90-kDa form of MNF is phosphorylated and is upregulated in intact muscles subjected to chronic motor nerve stimulation, a potent stimulus to myoglobin gene regulation. Amino acid residues 280 to 389 of MNF demonstrate 35 to 89% sequence identity to the winged-helix domain from other known members of this family, but MNF is otherwise divergent. A proline-rich amino-terminal region (residues 1 to 206) of MNF functions as a transcriptional activation domain. These studies provide the first evidence that members of the winged-helix family of transcription factors have a role in myogenic differentiation and in remodeling processes of adult muscles that occur in response to physiological stimuli.

Amino Acid Sequence↗