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Biomedical subjects

S Wu

Publications and source records attributed to S Wu.

At least 55 records · Page 3Linked to original sources

Essential control of an endothelial cell ISOC by the spectrin membrane skeleton.

Mechanism(s) underlying activation of store-operated Ca2+ entry currents, ISOC, remain incompletely understood. F-actin configuration is an important determinant of channel function, although the nature of interaction between the cytoskeleton and ISOC channels is unknown. We examined whether the spectrin membrane skeleton couples Ca2+ store depletion to Ca2+ entry. Thapsigargin activated an endothelial cell ISOC (-45 pA at -80 mV) that reversed at +40 mV, was inwardly rectifying when Ca2+ was the charge carrier, and was inhibited by La3+ (50 microM). Disruption of the spectrin-protein 4.1 interaction at residues A207-V445 of betaSpIISigma1 decreased the thapsigargin-induced global cytosolic Ca2+ response by 50% and selectively abolished the endothelial cell ISOC, without altering activation of a nonselective current through cyclic nucleotide-gated channels. In contrast, disruption of the spectrin-actin interaction at residues A47-K186 of betaSpIISigma1 did not decrease the thapsigargin-induced global cytosolic Ca2+ response or inhibit ISOC. Results indicate that the spectrin-protein 4.1 interaction selectively controls ISOC, indicating that physical coupling between calcium release and calcium entry is reliant upon the spectrin membrane skeleton.

Animals↗

Quantitative determination of CGS 26214, a cholesterol lowering agent, in human plasma using negative electrospray ionization liquid chromatography-tandem mass spectrometry.

CGS 26214 is a synthetic cholesterol-lowering agent shown to be active in the rat, dog and monkey. The present work was conducted to develop a sensitive liquid chromatography-tandem mass spectrometry (LC-MS-MS) method for quantitative determination of the compound in human plasma following clinical doses of 10-100 microg per day. A number of analytical challenges were encountered during the development of the assay. The compound was an ester and susceptible to hydrolysis under experimental conditions. A lower limit of quantitation of 50 pg/ml was needed due to the low clinical doses. Positive electrospray ionization of CGS 26214 yielded insufficient sensitivity needed for the studies. Consequently, LC-MS-MS conditions were optimized for the negative ion mode of detection. The sample preparation steps proved to be critical in order to reduce the possibility of microbore column (50 mm x 1.0 mm I.D.) obstruction, chromatographic deterioration, and matrix mediated electrospray ion suppression. The present method addressed the above issues. The method was accurate and reproducible and was successfully applied to generate plasma concentration-time profiles for human subjects after low oral doses of the compound.

Anticholesteremic Agents↗

[Effects of estrogen level on the function of vascular endothelial cells and expression of vascular cells adhesion molecule].

OBJECTIVE: To observe the effect of estrogen level on the secreting function of vascular endothelial cells of female rats, and to study the regulation of content of estrogen receptor in VECs and the expression of vascular cells adhesion molecule-1 by estrogen level. METHODS: Radioimmunity was adopted to measure the content of endothelin and PGI2 in serum of female rats, and copper-niger reduction was chosen to measure the content of nitric oxide in serum. Radioligand binding and flow cytometry were used to measure the expression of estrogen receptor and vascular cells adhesion molecule-1 in female rat lung VECs respectively. RESULTS: (1) The content of nitric oxide (18 mumol/L +/- 8 mumol/L) and PGI2(8.5 pg/ml +/- 2.5 pg/ml) in blood decreased after castration and increased remarkably(31 mumol/L +/- 7 mumol/L, P < 0.05; 10.9 pg/ml +/- 3.4 pg/ml) after estrogen was supplemented. However, the content of endothelin changed conversely(170 pg/ml +/- 39 pg/ml, 100 pg/ml +/- 32 pg/ml, P < 0.05). (2) The content of ER in female rat lung VECs (6.7 +/- 0.5 fmol/10(6) cell) decreased remarkably after castration and increased after estrogen was supplemented(17.6 +/- 1.2 fmol/10(6) cell, P < 0.01). (3) The expression rate of VCAM-1 in VECs increased significantly after interleukin-1 beta acted on the cells(17.5% +/- 1.5%). 17-beta estradiol at the contents of 3 x 10(-8)-10(-6) mol/L all counteracted the increase in expression rate of VCAM-1 induced by interleukin-1 beta (15.4% +/- 1.42%, 12.4% +/- 0.34%, 8.7% +/- 0.27%, P < 0.01). CONCLUSION: The estrogen level influences the secreting of NO, PGI2 and ET of VECs, and influences the content of ER in VECs. 17-beta estradiol at 3 x 10(-8)-10(-6) mol/L counteracts the increase of VCAM-1 in VECs induced by interleukin-1 beta.

Animals↗

Changes of the expression of 5-HT receptor subtype mRNAs in rat dorsal root ganglion by complete Freund's adjuvant-induced inflammation.

By using the reverse transcriptase polymerase chain reaction technique, the expression of 5-hydroxytryptamine (5-HT) receptor subtype mRNAs in the rat lumbar dorsal root ganglion (DRG) was investigated following unilateral injection of complete Freund's adjuvant (CFA) into the rat hind paw. The results showed that 5-HT(1A), 5-HT(1B), 5-HT(1D), 5-HT(1F), 5-HT(2A), 5-HT(3), 5-HT(4), 5-HT(5A) and 5-HT(7) receptor subtypes were present in the rat lumbar DRG. CFA injection resulted in a significant increase in mRNA level of 5-HT(1A), 5-HT(1B), 5-HT(1F), 5-HT(2A), 5-HT(3), 5-HT(4) and 5-HT(7) receptor subtypes and a marked induction of 5-HT(2C) subtype mRNA in the DRG. The present results suggest the important roles for these 5-HT receptor subtypes in generating peripheral nociceptive signaling and provide evidence to elucidate the mechanism of 5-HT in nociception.

Actins↗

Dynamic magnetic resonance imaging of regional contrast access as an additional prognostic factor in pediatric osteosarcoma.

BACKGROUND: The purpose of this article was to evaluate the utility of a pharmacokinetically modeled measure of regional contrast access, based on dynamic contrast-enhanced magnetic resonance imaging (MRI) studies after preoperative chemotherapy, as a predictor of disease free survival in osteosarcoma. METHODS: The kinetic parameters of a two-compartment pharmacokinetic model of MRI contrast agent accumulation were analyzed in relation to disease free survival in 31 patients who received protocol-based therapy for nonmetastatic osteosarcoma of the extremities. The modeled exchange rate of contrast between the plasma and the tumor extravascular extracellular fluid space served as a measure of regional contrast access. The prognostic impact of both the clinically accepted standard of histologic evaluation of tumor necrosis and the regional contrast access were analyzed with tumor size as an influential factor. RESULTS: Although the histologic grade of response was not a statistically significant prognostic factor in these patients (P = 0.884), regional contrast access after preoperative chemotherapy was significantly predictive of disease free survival (P = 0.035) in the Cox proportional hazards model. Lower regional access before surgery and smaller tumor size were associated with a better treatment outcome. Log-rank analyses of Kaplan-Meier curves indicated that the impact of regional access was most pronounced in patients with larger tumors (P = 0.052). Higher regional access at presentation also was associated significantly with greater decreases during therapy. CONCLUSIONS: Dynamic MRI estimates of regional contrast access after preoperative chemotherapy, when combined with tumor size, holds promise for the early identification of patients at risk of recurrence. The availability of such response predictors could facilitate the development of risk-adapted treatment approaches.

Adolescent↗

Phospholipase D1: a key factor for the exocytotic machinery in neuroendocrine cells.

Phospholipase D (PLD) has been proposed to mediate cytoskeletal remodeling and vesicular trafficking along the secretory pathway. We recently described the activation of an ADP ribosylation factor-regulated PLD at the plasma membrane of chromaffin cells undergoing secretagogue-stimulated exocytosis. We show here that the isoform involved is PLD1b, and, using a real-time assay for individual cells, that PLD activation and exocytosis are closely correlated. Moreover, overexpressed PLD1, but not PLD2, increases stimulated exocytosis in a phosphatidylinositol 4,5-bisphosphate-dependent manner, whereas catalytically inactive PLD1 inhibits it. These results provide the first direct evidence that PLD1 is an important component of the exocytotic machinery in neuroendocrine cells.

Actins↗

Cardiac effects of the extract and active components of radix stephaniae tetrandrae. II. Myocardial infarct, arrhythmias, coronary arterial flow and heart rate in the isolated perfused rat heart.

The primary purpose of the present study was to compare the cardioprotective effects of the extract from radix stephaniae tetrandrae (RST) and its individual compounds, tetrandrine (Tet) and fanchinoline (Fan). Secondly, we also compared the cardiac effects of the individual compounds and the RST extract with those of verapamil, a classical Ca2+ channel blocker. The Langendorff isolated perfused rat heart preparation was used. Regional ischaemia and reperfusion was employed to induce myocardial infarct and arrhythmia. Infarct, arrhythmia, heart rate and coronary artery flow were determined in hearts treated with vehicle, RST extract, Tet, Fan, or verapamil. It was found that RST extract, of which only 9% was Tet, and Tet alone produced equally potent ameliorating effects on arrhythmia and infarct induced by ischaemia and reperfusion without further inhibiting ischaemia-reduced heart rate and coronary artery flow. Fan had no effects on arrhythmia and infarct induced by ischaemia and reperfusion; but it induced S-T segment elevation and further reduced heart rate and coronary artery flow during ischaemia. Verapamil also ameliorated the effects of ischaemia and reperfusion on arrhythmia and infarct. It should be noted that 1 microM verapamil, that produced comparable effects on infarct and arrhythmia to the RST extract and Tet, further inhibited heart rate during ischaemia. The results indicate that the RST extract produces equally potent cardioprotective and anti-arrhythmic effects as Tet alone. Both RST extract and Tet may be better choices for the treatment of arrhythmia and infarct induced by myocardial ischaemia and reperfusion than the classical Ca2+ channel blocker, verapamil as they do not further reduce heart rate during ischaemia.

Alkaloids↗

Cardiac effects of the extract and active components of Radix stephaniae tetrandrae. I. Electrically-induced intracellular calcium transient and protein release during the calcium paradox.

The present study was designed to compare the cardiac actions of the extract and individual components, tetrandrine (Tet) and fangchinoline (Fan), of Radix stephaniae tetrandrae (RST). We measured the electrically induced [Ca2+]i transient in single rat ventricular myocytes and protein release following perfusion with a Ca2+ free solution (the Ca2+ paradox) from the isolated perfused rat heart, both of which are known to relate to Ca2+ influx. We found that Tet inhibited both electrically induced [Ca2+]i transient and protein release during the Ca2+ paradox, while Fan had no significant effects. The RST extract containing 9% Tet and 6% Fan by weight also affected the [Ca2+]i transient, and was only slightly, though significantly, less effective/potent than Tet alone. On the other hand, RST extract had a significantly greater inhibitory effect on protein release during the Ca2+ paradox than Tet alone. The observations suggest that the RST extract, which contains a mixture of components, may have more potent effects in the heart than its main active component.

Alkaloids↗

Phenylethanolamine N-methyltransferase (PNMT) gene and early-onset Alzheimer disease.

The activity of human phenylethanolamine N-methyltransferase (PNMT) is reduced in the neurons of those cells in many subcortical areas of the brain that are known to undergo neurodegeneration in Alzheimer disease (AD). Others have reported that PNMT is decreased in brains of persons with AD and that the decrease in enzymatic activity is due to a reduced amount of the enzyme protein. We have previously described two polymorphisms, G-353A and G-148A, in the promoter region of the gene coding for PNMT. These markers were tested for their association with the occurrence of sporadic AD. Genotyping of 131 necropsy confirmed AD cases, and 947 adult nondemented controls were completed. We observed a significant association between both of the PNMT gene polymorphisms and early-onset AD (EOAD) (P < or = 0.007), but not in late-onset AD (LOAD). These data suggest that genetic variation in the promoter of the PNMT gene is associated with increased susceptibility to the sporadic form of EOAD.

Adult↗

Conversion of brain apolipoprotein E to an insoluble form in a mouse model of Alzheimer disease.

A beta deposition in the APPV717F transgenic model of Alzheimer's pathology involves apolipoprotein E (apoE). We measured soluble and insoluble apoE in brain region extracts at an early and late stage of plaque development. The apoE levels in the insoluble fraction were greatly elevated in the hippocampus and cortex of aged transgenic animals but were unchanged in wild type or young APPV717F animals. Soluble apoE levels were unaltered. A beta levels were also measured and a positive correlation between apoE and A beta in the insoluble fraction was observed. ApoE transcription was increased approximately 3-fold in the hippocampus of 17-month-old APPV717F mice, suggesting a region-specific upregulation of apoE transcription in the brains of APPV717F mice to compensate for apoE sequestered with fibrillar A beta.

Alleles↗

The X-ray crystal structure of the Trichoderma reesei family 12 endoglucanase 3, Cel12A, at 1.9 A resolution.

We present the three-dimensional structure of Trichoderma reesei endoglucanase 3 (Cel12A), a small, 218 amino acid residue (24.5 kDa), neutral pI, glycoside hydrolase family 12 cellulase that lacks a cellulose-binding module. The structure has been determined using X-ray crystallography and refined to 1.9 A resolution. The asymmetric unit consists of six non-crystallographic symmetry-related molecules that were exploited to improve initial multiple isomorphous replacement phasing, and subsequent structure refinement. The enzyme contains one disulfide bridge and is glycosylated at Asp164 by a single N-acetyl glucosamine residue. The protein has the expected fold for a glycoside hydrolase clan-C family 12 enzyme. It contains two beta-sheets, of six and nine strands, packed on top of one another, and one alpha-helix. The concave surface of the nine-stranded beta-sheet forms a large substrate-binding groove in which the active-site residues are located. In the active site, we find a carboxylic acid trio, similar to that of glycoside hydrolase families 7 and 16. The strictly conserved Asp99 hydrogen bonds to the nucleophile, the invariant Glu116. The binding crevice is lined with both aromatic and polar amino acid side-chains which may play a role in substrate binding. The structure of the fungal family 12 enzyme presented here allows a complete structural characterization of the glycoside hydrolase-C clan.

Amino Acid Sequence↗

[Placental leptin correlates with intrauterine fetal growth and development].

OBJECTIVE: To study the role of placental leptin in intrauterine cord leptin production and its relationship with neonatal anthropometry. METHODS: Forty women and their babies were enrolled and approved by Xinhua Hospital (Shanghai, China) and Jiangbei Hospital (Nanjing, China) in this study. Placental tissue was assayed for leptin mRNA by reverse transcription/polymerase chain reaction (RT/PCR), and assayed for ob gene protein, leptin, by Western-Blot and immunohistochemistry. Blood was taken from the umbilical cord of the babies at delivery. Serum leptin was measured by radio-immunoassay. Neonatal anthropometric measurements were recorded within 48 hours after delivery. Linear regression analysis was used to explore the relationship between placental leptin, cord leptin and neonatal anthropometric measures. RESULTS: Ob gene was expressed in placental tissue at comparable or greater levels than that in adipose tissue. Comparison of the relative levels of leptin to beta-actin mRNA by multiplex RT/PCR revealed that the placenta of the small for gestational age (SGA) neonates expressed leptin mRNA at significantly lower levels 0.61 +/- 0.15 than that of the appropriate for gestational age (AGA) neonates 0.83 +/- 0.20 (P = 0.0034), while the placenta of the large for gestational age (LGA) neonates expressed leptin mRNA at significantly higher levels 1.00 +/- 0.23 than that of the AGA neonates (P = 0.043). Immunohistochemical techniques showed the immunostaining pattern in the cytoplasm of trophoblastic cells. Western-blot showed that the placenta of the SGA neonates expressed leptin at significantly lower levels 0.26 +/- 0.05 ng/mg than that of the AGA neonates 0.34 +/- 0.09 ng/mg (P = 0.007 6), while the placenta of the LGA neonates expressed leptin at significantly higher levels 0.43 +/- 0.10 ng/mg than that of the AGA neonates (P = 0.021). Linear regression analysis showed placental ob gene transcription and leptin translation correlated significantly with cord leptin (r = 0.39 and 0.43), and neonatal Ponderal Index (r = 0.66 and 0.69). CONCLUSIONS: Placenta provides a source of leptin for the growing fetus, and this placental leptin might be a growth factor in intrauterine fetal development.

Blotting, Western↗

Inhibition of colon cancer metastasis by a 3'- end antisense urokinase receptor mRNA in a nude mouse model.

The role of urokinase-type plasminogen activator receptor (uPAR) in human colon cancer metastasis has not been tested using an antisense approach. In our study, the HCT116 cells, with high metastatic potential were transfected with expression vectors containing a 3' or 5' uPAR cDNA fragment in an antisense (AS) orientation. Transfection of 4 clones was confirmed by DNA hybridization analysis. Receptor-bound endogenous uPA activities of the clones were reduced to 16-68% of controls. The extracellular matrix degradation by the 4 clones was decreased to 33-76%. Two of the clones, 3'-AS7 and 5'-AS, were evaluated in an in vivo assay system of experimental metastasis using athymic mice. Pulmonary metastases were found in 63-78% mice injected with the parent HCT116 or control cells. In mice injected intravenously with the antisense transfected clones, 3'-AS7 and 5'-AS, however, pulmonary metastases were found in only 19% and 9% respectively (p < 0.05). These results provide direct evidence that both 3' and 5'-AS uPAR can inhibit colon cancer invasion and metastasis and may offer the prospect of defining specific targets for gene therapy.

Animals↗

Characterization and tissue expression of a novel human gene npdc1.

We report the molecular characterization of a novel human homologue of mouse npdc1 (neural proliferation, differentiation and control, 1) gene, designated human npdc1 (hnpdc1). hnpdc1 was identified by large-scale sequencing of fetal liver cDNA libraries and the full-length cDNA was obtained by PCR amplification. The hnpdc1 gene, which contains nine exons, was mapped to human chromosome 15. It encodes a polypeptide of 325 amino acids, which shows high homology (77% identity) to the mouse NPDC1. Sequence analysis has shown that hNPDC1 protein contains a putative signal peptide of 34 amino acids, a transmembrane segment, and a typical bipartite nuclear localization signal. Northern blot and dot blot hybridization indicates that, just like mnpdc1, hnpdc1 mRNA is strongly expressed in adult brain (especially in hippocampus, frontal lobe and temporal lobe) and about 1.82-fold higher in adult brain than that in fetal brain. Unlike mnpdc1, however, hnpdc1 contains two transcripts instead of only one (1.5 kb), and has high expression levels in prostate, pituitary gland, and mammary glands. These results support that hNPDC1 plays a role in the control of neural cell proliferation and differentiation, and suggest that it may be involved in the development of several secretion glands.

Amino Acid Sequence↗

Cadmium response of the hairy root culture of the endangered species Adenophora lobophylla.

We generated hairy root cultures from two closely related species, Adenophora lobophylla and A. potaninii (Campanulaeae) and carried out a comparative study on their cadmium (Cd) response. A. lobophylla is an endangered species while A. potaninii is widely distributed in the same habitat. Upon exposure to Cd concentrations higher than 50 µM, more extensive growth inhibition and higher Cd accumulation were detected in the hairy root of A. lobophylla. Cd treatment affected the protein content in both the species. Phytochelatins (PCs) have been isolated and characterized from the hairy roots for both species. They shared structure similarities but showed different accumulation kinetics. The content of reduced glutathione (GSH) and cysteine (Cys) differs in both the species and they show different changes upon Cd challenge. The results suggested that these two species might employ different strategy for Cd detoxification. A. lobophylla is capable of synthesizing high level of PCs while a Cd exclusion system and a tighter homeostasis mechanism(s) to maintain the cellular GSH level could have been evolved in A. potanini in additon to its capability of synthesizing PCs.

Journal Article↗

Characterization of cytokine, growth factor receptor, costimulatory and adhesion molecule expression patterns of bone marrow blasts in relapsed childhood B cell precursor all.

Relapse of childhood acute lymphoblastic leukaemia (ALL) comprises a leading challenge of investigation. Characterization of leukaemic cells regarding their potency to express growth factors and surface molecules can provide insight into their aberrant biology. Thus, we analyzed bone marrow blasts from 10 children with relapsed B cell precursor ALL. The gene and protein expression of essential haematopoietic growth factors (IL-2, IL-4, IL-7, IL-10, IL-15, IFN-gamma, G-CSFR), their corresponding receptors as well as the expression pattern of adhesion molecules (ICAM-1, CD58) and costimulatory proteins (CD40, CD40L, B7.1, B7.2, CD28, MHC-I and II) was analyzed by RT-PCR and flow cytometry. Constitutive gene expression was found for IL-7, IL-10, IL-15 and IFN-gamma and their corresponding receptors. Flow-cytometric analysis showed that IL-10R, IL-7Ralpha, IL-4Ralpha and the gamma(c)chain are constitutively expressed, and that some cells bear the G-CSFR. IL-10 and IL-15 protein-producing leukaemic cells were easily detectable. The neoplastic cells mainly lack B7.1, and ICAM-1 is mostly decreased. Furthermore, high CD40, and, surprisingly, CD40L expression could be found. These studies show that ALL cells are likely to be sensitive to many growth factors and some factors are produced by the neoplastic cell itself. The secretion of IL-10 by leukaemic cells, and the absence or downregulation of conventional adhesion and costimulatory molecules might represent an effective mechanism of escape of immune surveillance in relapsed ALL.

Adolescent↗

BS69, an adenovirus E1A-associated protein, inhibits the transcriptional activity of c-Myb.

The carboxyl terminus of c-Myb contains a negative regulatory domain that is absent in the v-Myb oncoprotein, but conserved among all the known Myb proteins of animals. This domain inhibits transcriptional activation by c-Myb in animal cells, but not in budding yeast, suggesting that additional protein(s) present in animal cells but not yeast are required for this negative regulatory function. A yeast two-hybrid screen identified BS69, an adenovirus E1A-associated protein, as interacting with the carboxy-terminal region of c-Myb. BS69 contains regions of similarity to the PHD finger, the bromodomain, and the MYND domain, all of which are found in other proteins present in high molecular weight complexes that regulate transcription and/or modify chromatin structure. Further study showed that BS69 inhibited the transcriptional activity of c-Myb, that this inhibition was specific, that it mapped to the carboxyl termini of the two proteins and that it was dose-dependent. A direct interaction between these two proteins was observed in vitro. Furthermore, the 289R E1A protein could inhibit the BS69-mediated decrease in transcriptional activation by c-Myb. By analogy with the inhibition of the Rb/E2F regulatory axis by E1A, we propose that a BS69/Myb regulatory circuit may also be a target of disruption during oncogenesis. Oncogene (2001) 20, 125 - 132.

Adenovirus E1A Proteins↗