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Biomedical subjects

F Guo

Publications and source records attributed to F Guo.

At least 19 recordsLinked to original sources

Characterization of three PDI-like genes in Physcomitrella patens and construction of knock-out mutants.

Plant genomes typically contain several sequences homologous to protein disulfide isomerase (PDI). PDI was first identified as an abundant enzyme in the endoplasmic reticulum, where it catalyzes the formation, reduction, and isomerization of disulfide bonds during protein folding. PDI-like proteins have also been implicated in a variety of other functions, such as the regulation of cell adhesion, and may act as elicitors of the autoimmune response in mammals. A PDI-like protein (RB60) was recently shown to be imported into chloroplasts in the unicellular green alga Chlamydomonas reinhardtii and a higher plant, Pisum sativum, where it associates with thylakoid membranes. This suggests that the different PDI-like proteins in plant and animals may have diverse biological roles. To begin to elucidate the roles of PDI-like proteins, we have cloned, characterized, and generated knock-out mutants for three PDI-like genes that have high, medium, and low levels of expression, respectively, in the moss Physcomitrella patens. Phylogenetic analysis indicates that the three PDI-like proteins cluster with RB60 and four proteins from Arabidopsis thaliana. They are typified by an N-terminal domain rich in negatively charged residues. The knock-out mutants, which are the first knock-outs available for PDI-like proteins in a multicellular organism, were found to be viable, indicating that the function of each single gene is dispensable, and suggesting that they may be functionally complementary.

Amino Acid Sequence↗

Glypican-1 is overexpressed in human breast cancer and modulates the mitogenic effects of multiple heparin-binding growth factors in breast cancer cells.

Glypicans are a family of glycosylphosphatidylinositol-anchored cell surface heparan sulfate proteoglycans implicated in the control of cellular growth and differentiation. Here we show that glypican-1 is strongly expressed in human breast cancers, whereas expression of glypican-1 is low in normal breast tissues. In contrast, the expression of glypican-3 and -4 is only slightly increased in breast cancers by comparison with normal breast tissues, and glypican-2 and -5 are below the level of detection by Northern blotting in both normal and cancer samples. Treatment of MDA-MB-231 and MDA-MB-468 breast cancer cells with phosphoinositide-specific phospholipase-C abrogated the mitogenic response to two heparin-binding growth factors, heparin-binding epidermal growth factor-like growth factor and fibroblast growth factor 2. Stable transfection of these cells with a glypican-1 antisense construct markedly decreased glypican-1 protein levels and the mitogenic response to the same heparin-binding growth factors, as well as that to heregulin alpha, heregulin beta, and hepatocyte growth factor. Syndecan-1 was also expressed at high levels in both breast cancer tissues and breast cancer cells when compared with normal breast tissues. There was a good correlation between glypican-1 and syndecan-1 expression in the tumors. However, clones expressing the glypican-1 antisense construct did not exhibit decreased syndecan-1 levels, indicating that loss of responsiveness to heparin-binding growth factors in these clones was not due to altered syndecan-1 expression. Furthermore, 8 of 10 tumors with stage 2 or 3 disease exhibited high levels of glypican-1 by Northern blot analysis. In contrast, low levels of glypican-1 mRNA were evident in 1 of 10 tumors with stage 2 or 3 disease and in 9 of 10 tumors with stage 1 disease. Taken together, these data suggest that glypican-1 may play a pivotal role in the ability of breast cancer cells to exhibit a mitogenic response to multiple heparin-binding growth factors and may contribute to disease progression in this malignancy.

Adult↗

Catalytic acid-base groups in yeast pyruvate decarboxylase. 1. Site-directed mutagenesis and steady-state kinetic studies on the enzyme with the D28A, H114F, H115F, and E477Q substitutions.

The roles of four of the active center groups with potential acid-base properties in the region of pH optimum of pyruvate decarboxylase from Saccharomyces cerevisiae have been studied with the substitutions Asp28Ala, His114Phe, His115Phe, and Glu477Gln, introduced by site-directed mutagenesis methods. The steady-state kinetic constants were determined in the pH range of activity for the enzyme. The substitutions result in large changes in k(cat) and k(cat)/S(0.5) (and related terms), indicating that all four groups have a role in transition state stabilization. Furthermore, these results also imply that all four are involved in some manner in stabilizing the rate-limiting transition state(s) both at low substrate (steps starting with substrate binding and culminating in decarboxylation) and at high substrate concentration (steps beginning with decarboxylation and culminating in product release). With the exception of some modest effects, the shapes of neither the bell-shaped k(cat)/S(0.5)-pH (and related functions) plots nor the k(cat)-pH plots are changed by the substitutions. Yet, the fractional activity still remaining after substitutions virtually rules out any of the four residues as being directly responsible for initiating the catalytic process by ionizing the C2H. There is no effect on the C2 H/D exchange rate exhibited by the D28A and E477Q substitutions. These results strongly imply that the base-induced deprotonation at C2 is carried out by the only remaining base, the iminopyrimidine tautomer of the coenzyme, via intramolecular proton abstraction. The first product is released as CO(2) rather than HCO(3)(-) by both wild-type and E477Q and D28A variants, ruling out several mechanistic alternatives.

Alanine↗

High-performance liquid chromatographic assays for a second-generation novel oral iron chelator (APCP363) and their application to pharmacokinetic studies in rats.

Sensitive and specific HPLC assays for APCP363 in biological matrices (rat plasma, urine and feces) were developed. The recovery of APCP363 ranged from 81.2 to 99.9% in plasma, from 82.1 to 92.8% in urine, and from 65 to 68% in feces. Standard deviations were below 10% for all analyses. The limits of quantitation were 0.1, 10 and 30 microg/ml in plasma, urine and feces, respectively. The HPLC assays, which are the first reports for APCP363 analysis in biological matrices, have been successfully applied to preliminary pharmacokinetic studies in rats. The stool assay is the first non-radiolabeled method for hydroxypyridinones in feces.

Animals↗

Design and properties of trans-acting HDV ribozymes with extended substrate recognition regions.

We constructed a new type of trans-acting HDV ribozyme which is based on the antigenomic RNA sequence and has an additional binding site to form an extra stem (P5) of 7 base-pairs introduced in the J1/2 region between P1 and P2 stems. A substrate RNA containing the two binding sequences was specifically cleaved while no selectivity was observed in the case of the wild-type ribozyme with only one binding site. Mutation to produce two mismatch base-pairs in the central part of the P5 stem abolished the specific cleavage.

Base Sequence↗

Homologous upregulation of sst2 somatostatin receptor expression in the rat arcuate nucleus in vivo.

In vitro studies using various cell systems have provided conflicting results regarding homologous regulation of somatostatin (SRIH) receptors, and information on whether SRIH regulates the expression of its own receptors in vivo is lacking. In the present study we examined, by in situ hybridization, the effects of pretreatment with the sst2-preferring SRIH analog, octreotide, in vivo, on mRNA levels of two SRIH receptor subtypes, sst1 and sst2, in rat brain and pituitary. (125)I-[DTrp(8)]-SRIH binding was also measured in these regions. Three hours after the iv injection of 50 microg octreotide to conscious adult male rats, there was a 46% increase (p < 0.01) in the labeling density of sst2 mRNA-expressing cells in the hypothalamic arcuate nucleus compared to normal saline-pretreated controls, but not in any of the other brain regions examined. Computer-assisted image analysis revealed that 3 h exposure to octreotide significantly (p < 0.01) augmented both the number and labeling density of sst2 mRNA-expressing cells in the arcuate nucleus, compared to those in saline-treated controls. By contrast, within the anterior pituitary gland, in vivo exposure to octreotide did not affect the expression of sst2 mRNA. No changes in sst1 mRNA-expressing cells were observed after octreotide treatment in any of the regions measured, indicating that the observed effects were homologous, i.e. specific of the receptor subtype stimulated. Octreotide pretreatment was also without effect on the density of (125)I-[DTrp(8)]-SRIH binding in either the arcuate nucleus or pituitary. These results demonstrate, for the first time, that SRIH preexposure in vivo upregulates the expression of a subtype of its own receptors, sst2, within the central nervous system. They further suggest that pretreatment with SRIH in vivo does not cause sst2 receptor desensitization in arcuate nucleus and pituitary. Such homologous regulatory mechanisms may play an important role in the neuroendocrine control of growth hormone (GH) secretion by the arcuate nucleus.

Animals↗

[Dynamic pressure-volume curve predicts the optimal positive end-expiratory pressure in patients with acute respiratory distress syndrome].

OBJECTIVE: To predict the best positive end-expiratory pressure (PEEP) in acute respiratory distress syndrome (ARDS) patients with dynamic lung pressure-volume (P-V) curve. METHODS: Dynamic and static lung P-V curves were determined in 8 patients with ARDS. The pressure of lower inflection point from dynamic lung P-V curve (Pinfd) was compared with the pressure of lower inflection point from static lung P-V curve (Pinfs). The effect of PEEP on hemodynamics, lung mechanics and gas exchange was observed. RESULTS: When PEEP increased from Pinfd -6 cm H2O to Pinfd +6 cm H2O, partial pressure of arterial oxygen, saturation of arterial oxygen, peak inspiratory pressure and mean airway pressure increased significantly (P < 0.05). Dynamic compliance was improved markedly with PEEP at Pinfd -4 cm H2O when compared with PEEP at Pinfd +6 cm H2O. Cardiac index reduced at Pinf +6 cm H2O. Oxygen delivery was increased at Pinfd -4 cm H2O. When Pinfs and Pinfd were (11.0 +/- 3.2) cm H2O and (12.8 +/- 3.2) cm H2O, they were well correlated (r = 0.99, P < 0.05) and the regression equation was Pinfd = 1.66 + 1.01 x Pinfs. According to the regression equation, it was evident that Pinfd -4 cm H2O equaled to Pinfs -2 cm H2O. CONCLUSION: When ARDS patients are treated with mechanical ventilation, Pinfd -4 cm H2O and Pinfs -2 cm H2O may yield the best PEEP and show maximal oxygen delivery.

Acute Disease↗

[Effect of inverse ratio ventilation on hemodynamics and oxygen metabolism in sheep with acute respiratory distress syndrome].

OBJECTIVE: To observe the effect of inverse ratio ventilation (IRV) on hemodynamics and oxygen metabolism in sheep with acute respiratory distress syndrome (ARDS). METHODS: Twelve ARDS sheep induced by LPS were admitted to this study, and received mechanical ventilation with volume controlled (VC) and pressure controlled ventilation (PC) (conventional ratio and inverse ratio) at the same level of total positive end expiratory pressure (PEEPt), data of hemodynamics and oxygen metabolism were collected at 30 min after the onset of each mode. RESULTS: With PC, peak airway pressure was lower than that with VC, but mean airway pressure was higher with IRV. At the same level of PEEPt, there was no difference in hemodynamics and oxygen metabolism between VC and VC-IRV, same as PC and PC-IRV. But compared with VC, arterial oxygen pressure and arterial oxygen saturation with PC-IRV were lower significantly (P < 0.05). CONCLUSION: PEEPt was a very important factor to improve oxygenation, short-term IRV was not better than VC or PC.

Acute Disease↗

[In vitro effect of lovastatin on NB4 promyelocytic leukemia cells].

OBJECTIVE: To explore the effect of lovastatin(LOV) on cell growth, apoptosis and differentiation of NB4 cells and elucidate some of the possible mechanism. METHODS: Cell proliferation and viability were analyzed by MTT assay and trypan blue exclusion assay, cell differentiation by NBT reduction. Cell morphological examination, DNA electrophoresis, flow cytometry, TUNEL in situ hybridization and semi-quantitative RT-PCR were performed to determine cell apoptosis. H,K,N-ras gene expression was investigated by RT-PCR and p21Ras protein expression by flow cytometry. RESULTS: 1. LOV inhibited the proliferation of NB4 cells with a lC50 of 12.59 mumol/L. 2. LOV induced apoptosis of NB4 cells, affected the cell cycle progression and arrested NB4 cells in G1/S phase. Bcl-2 mRNA was down-regulated by LOV in a time-dependent manner. 3. LOV could not induce the differentiation of NB4. 4. LOV did not increase the expression of H,K,N-ras mRNA, but decrease p21Ras protein expression on the cellular membrane. CONCLUSION: LOV can inhibit proliferation, induce apoptosis and interfere with cell cycle progression, but not induce differentiation of NB4. Inhibition of p21Ras protein isoprenylation is considered to be the major mechanism of LOV affecting NB4 cells.

Antineoplastic Agents↗

[Low flow technique to perform static pressure-volume curve during mechanical ventilation].

OBJECTIVE: To describe a fast, simple method to acquire static pressure-volume (P-V) curve of the respiratory system and to compare it with airway occlusion technique. METHODS: ARDS sheep model was induced by intravenously infusing 3-6 micrograms/kg LPS, static P-V curves were determined by low flow technique and airway occlusion technique. Static compliance (Cst), lower inflection point (Pinfd and Pinfb) and airway pressure were compared between the two methods. RESULTS: Pinf were (8.91 +/- 0.82) cm H2O and (8.59 +/- 0.78) cm H2O determined by low flow technique and airway occlusion technique respectively, the correlation between which was good (r = 0.93, P < 0.05). Cst determined by low flow technique was similar to that determined by airway occlusion technique [(19 +/- 7) L/cm H2O vs (20 +/- 7) L/cm H2O, P > 0.05]. The time needed to acquire a static P-V curve by low flow technique was 3-4 minutes versus 30-35 minutes by airway occlusion technique. CONCLUSION: Accuracy and reliability of low flow technique are sufficient for clinical use, it is much less time consuming than the airway occlusion technique.

Animals↗

[Uncommon fluorescent properties of nano-structured terbium (III)-phthalic acid complex in polyvinylpyrrolidone].

Nano-sized terbium(III)-phthalic acid complex was prepared in polyvinylpyrrolidone. It's fluorescent spectrum has been investigated, compared to that of common terbium(III)-phthalic acid complex and terbium(III)-polyvinylpyrrolidone complex. The results show that fluorescent characterizations of Nano-sized terbium(III)-phthalic acid complex is obviously different from that of common terbium(III)-phthalic acid complex and terbium(III)-polyvinylpyrrolidone. The relative intensity and half-height width of main emission peaks are obviously varied, two splitting peaks are displayed.

Chelating Agents↗

Type 1 vasoactive intestinal peptide receptor expression in PC3/AR cells is evidence of prostate epithelial differentiation.

BACKGROUND: Type 1 vasoactive intestinal peptide receptor (VIP1R) is expressed in many secretory epithelial cells. We investigated VIP1R expression as a marker of prostate secretory epithelial differentiation in normal and malignant prostate tissues and in PC-3 human prostate cancer cells either lacking or expressing a functional androgen receptor. METHODS: VIP1R mRNA in rat prostate was assessed by in situ hybridization. VIP1R mRNA in human prostate tissue was identified by Northern blot hybridization. VIP1R mRNA expression in human prostate cancer cell lines in the presence or absence of androgen was determined by semiquantitative reverse transcription-polymerase chain reaction (RT-PCR). Human prostate cell lines were treated with VIP, and changes in intracellular cAMP were measured by radioimmunoassay. RESULTS: VIP1R mRNA was expressed only in epithelial cells in normal rat prostate. VIP1R mRNA was present in both normal and malignant human prostate. Well-differentiated LNCaP cells expressed functional VIP receptors, while poorly differentiated PC-3 cells did not. PC-3 cells stably expressing the androgen receptor (PC3/AR) did express functional VIP receptors, but VIP1R mRNA levels were not androgen-regulated. CONCLUSIONS: VIP1R expression indicates epithelial differentiation in normal and malignant prostate. PC3/AR cells and LNCaP cells, both of which express VIP1R and prostate-specific antigen (PSA), are the only prostate cancer cell lines known to express these two markers of prostate epithelial differentiation.

Animals↗

Bovine calcined bone for the repair of radial defect in a rabbit model.

In order to investigate the bovine calcined bone's ability of repairing segmental bone defect and seek a new artificial bone substitute material, the bovine calcined bone (450 degrees C, 32 h) was implanted into the 10-mm middle radial defect of rabbits with tricalcium phosphate ceramics as the control. By using the methods of histology, radiology and biomechanics their osteogenic ability were measured. It was found that the bovine calcined bone's ability of repairing bone defect was better than that of tricalcium phosphate ceramics. The histological Nilsson's scores at 3rd, 5th, 9th week after operation were significantly increased (P < 0.01). At 12th week after operation the bending strength of radius in experimental group was much higher than that of control group and turned normal. It was suggested that bovine calcined bone is an ideal artificial bone substitute material with good ability of repairing segmental bone defect and some degree of mechanical strength.

Animals↗

Antisense IRAK-1 oligonucleotide blocks activation of NF-kappa B and AP-1 induced by IL-18.

Interleukin-18 (IL-18) is a novel proinflammatory cytokine. Most of the immune and inflammatory genes induced by IL-18 are nuclear factor-kappaB (NF-kappaB)- and activator protein-1 (AP-1)-regulated. Interleukin-1 receptor-associated kinase-1 (IRAK-1) has recently been shown to be involved in IL-18-stimulated activation of NF-kappaB and AP-1. The purpose of this study is to investigate the effects of preventing IRAK-1 expression by antisense IRAK-1 oligodeoxynucleotide (ODN) on IL-18-stimulated activation of NF-kappaB and AP-1. Semiquantitative reverse transcription-PCR (RT-PCR) and western blot analysis revealed that antisense IRAK-1 ODN inhibited IRAK-1 mRNA and protein expression (P<0.01). As a result, antisense IRAK-1 ODN attenuated IL-18-induced activation of NF-kappaB and AP-1 as measured by sandwich ELISA in a concentration (1-8 microg ml(-1))- and time (5-24 h)-dependent fashion. These data suggest that antisense IRAK-1 ODN may share a role in the design of antiinflammatory therapeutics.

Enzyme Activation↗

Pressurized fluid extraction for quantitative recovery of chloroacetanilide and nitrogen heterocyclic herbicides in soil.

Pressurized fluid extraction (PFE) is a new sample extraction method operated at elevated temperatures and pressures with liquid solvents. The use of PFE was investigated for the extraction of four Hawaiian clayey soils fortified with the selected chloroacetanilide and nitrogen heterocyclic herbicides Alachlor, Bromacil, Hexazinone, Metribuzin, and Tebuthiuron. The effects of operation temperature, pressure, flush volume, and static cycles on PFE performance were studied. Water was the most effective modifier of PFE for quantitative recoveries of the five herbicides in soils. The simple extraction method required pretreatment of the soil with 37.6% water and subsequent two-static-cycle extraction with a total of 32 mL of acetone at 1500 psi and 100 degrees C. Average recoveries of Alachlor, Bromacil, Hexazinone, Metribuzin, and Tebuthiuron ranged from 93 to 103% by the water-assisted PFE, compared with only 68-83% recoveries of the corresponding chemicals when no water was used. The extraction time and total organic solvent consumption were reduced from 18 h and 300 mL by Soxhlet to 22 min or less and 80 mL or less of organic solvent by PFE.

Acetamides↗

IRAK-2 and PI 3-kinase synergistically activate NF-kappaB and AP-1.

Antisense interleukin-1 (IL-1) receptor associated kinase-2 (IRAK-2) oligonucleotide (ODN) and antisense p110 PI 3-kinase ODN blocked IRAK-2 and p110 PI 3-kinase expression, respectively. As a result, antisense IRAK-2 ODN or antisense p110 PI 3-kinase ODN inhibited IL-1-induced NF-kappaB and AP-1 activation in HepG2 cells. The inhibition of NF-kappaB activation by antisense IRAK-2 ODN or antisense p110 PI 3-kinase ODN and the inhibition of AP-1 activation by antisense IRAK-2 ODN were incomplete, whereas AP-1 activation could be inhibited by antisense p110 PI 3-kinase ODN completely. These results indicate that IRAK-2 is necessary but insufficient to activate NF-kappaB and AP-1 completely and that although PI 3-kinase is not sufficient for NF-kappaB full activation, it is sufficient to activate AP-1 completely. The effects of IRAK-2 or PI 3-kinase on NF-kappaB and AP-1 activation were confirmed by the results that overexpression of IRAK-2 failed to fully activate NF-kappaB and AP-1 and that overexpression of p110 PI 3-kinase is insufficient for NF-kappaB full activation but sufficient for AP-1 activation. Cotransfection experiments showed that the combination of antisense IRAK-2 ODN and antisense p110 PI 3-kinase ODN resulted in additive inhibition of NF-kappaB as well as AP-1 activation. On the other hand, coexpression of IRAK-2 with p110 PI 3-kinase led to a synergistic activation of NF-kappaB and AP-1. These data suggest that IRAK-2 and PI 3-kinase cooperate to activate NF-kappaB and AP-1.

Animals↗