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Biomedical subjects

F Zhang

Publications and source records attributed to F Zhang.

At least 361 records · Page 20Linked to original sources

Inhibition of double-stranded RNA-dependent protein kinase PKR by vaccinia virus E3: role of complex formation and the E3 N-terminal domain.

The human double-stranded RNA (dsRNA)-dependent protein kinase PKR inhibits protein synthesis by phosphorylating translation initiation factor 2alpha (eIF2alpha). Vaccinia virus E3L encodes a dsRNA binding protein that inhibits PKR in virus-infected cells, presumably by sequestering dsRNA activators. Expression of PKR in Saccharomyces cerevisiae inhibits protein synthesis by phosphorylation of eIF2alpha, dependent on its two dsRNA binding motifs (DRBMs). We found that expression of E3 in yeast overcomes the lethal effect of PKR in a manner requiring key residues (Lys-167 and Arg-168) needed for dsRNA binding by E3 in vitro. Unexpectedly, the N-terminal half of E3, and residue Trp-66 in particular, also is required for anti-PKR function. Because the E3 N-terminal region does not contribute to dsRNA binding in vitro, it appears that sequestering dsRNA is not the sole function of E3 needed for inhibition of PKR. This conclusion was supported by the fact that E3 activity was antagonized, not augmented, by overexpressing the catalytically defective PKR-K296R protein containing functional DRBMs. Coimmunoprecipitation experiments showed that a majority of PKR in yeast extracts was in a complex with E3, whose formation was completely dependent on the dsRNA binding activity of E3 and enhanced by the N-terminal half of E3. In yeast two-hybrid assays and in vitro protein binding experiments, segments of E3 and PKR containing their respective DRBMs interacted in a manner requiring E3 residues Lys-167 and Arg-168. We also detected interactions between PKR and the N-terminal half of E3 in the yeast two-hybrid and lambda repressor dimerization assays. In the latter case, the N-terminal half of E3 interacted with the kinase domain of PKR, dependent on E3 residue Trp-66. We propose that effective inhibition of PKR in yeast requires formation of an E3-PKR-dsRNA complex, in which the N-terminal half of E3 physically interacts with the protein kinase domain of PKR.

Cell Division↗

Autophosphorylation in the activation loop is required for full kinase activity in vivo of human and yeast eukaryotic initiation factor 2alpha kinases PKR and GCN2.

The human double-stranded RNA-dependent protein kinase (PKR) is an important component of the interferon response to virus infection. The activation of PKR is accompanied by autophosphorylation at multiple sites, including one in the N-terminal regulatory region (Thr-258) that is required for full kinase activity. Several protein kinases are activated by phosphorylation in the region between kinase subdomains VII and VIII, referred to as the activation loop. We show that Thr-446 and Thr-451 in the PKR activation loop are required in vivo and in vitro for high-level kinase activity. Mutation of either residue to Ala impaired translational control by PKR in yeast cells and COS1 cells and led to tumor formation in mice. These mutations also impaired autophosphorylation and eukaryotic initiation factor 2 subunit alpha (eIF2alpha) phosphorylation by PKR in vitro. Whereas the Ala-446 substitution substantially reduced PKR function, the mutant kinase containing Ala-451 was completely inactive. PKR specifically phosphorylated Thr-446 and Thr-451 in synthetic peptides in vitro, and mass spectrometry analysis of PKR phosphopeptides confirmed that Thr-446 is an autophosphorylation site in vivo. Substitution of Glu-490 in subdomain X of PKR partially restored kinase activity when combined with the Ala-451 mutation. This finding suggests that the interaction between subdomain X and the activation loop, described previously for MAP kinase, is a regulatory feature conserved in PKR. We found that the yeast eIF2alpha kinase GCN2 autophosphorylates at Thr-882 and Thr-887, located in the activation loop at exactly the same positions as Thr-446 and Thr-451 in PKR. Thr-887 was more critically required than was Thr-882 for GCN2 kinase activity, paralleling the relative importance of Thr-446 and Thr-451 in PKR. These results indicate striking similarities between GCN2 and PKR in the importance of autophosphorylation and the conserved Thr residues in the activation loop.

3T3 Cells↗

Tumor necrosis factor induces neuroendocrine differentiation in small cell lung cancer cell lines.

We studied tumor necrosis factor (TNF)-alpha as a candidate cytokine to promote neuroendocrine cell differentiation in a nitrosamine-hyperoxia hamster lung injury model. Differential screening identified expression of the genes modulated by TNF-alpha preceding neuroendocrine cell differentiation. Undifferentiated small cell lung carcinoma (SCLC) cell lines NCI-H82 and NCI-H526 were treated with TNF-alpha for up to 2 wk. Both cell lines demonstrated rapid induction of gastrin-releasing peptide (GRP) mRNA; H82 cells also expressed aromatic-L-amino acid decarboxylase mRNA within 5 min after TNF-alpha was added. Nuclear translocation of nuclear factor-kappaB immunostaining occurred with TNF-alpha treatment, suggesting nuclear factor-kappaB involvement in the induction of GRP and/or aromatic-L-amino acid decarboxylase gene expression. We also demonstrated dense core neurosecretory granules and immunostaining for proGRP and neural cell adhesion molecule in H82 cells after 7-14 days of TNF-alpha treatment. We conclude that TNF-alpha can induce phenotypic features of neuroendocrine cell differentiation in SCLC cell lines. Similar effects of TNF-alpha in vivo may contribute to the neuroendocrine cell differentiation/hyperplasia associated with many chronic inflammatory pulmonary diseases.

Animals↗

Cerebellar vascular and synaptic responses in normal mice and in transgenics with Purkinje cell dysfunction.

We used transgenic mice with Purkinje cell dysfunction (PO3 line) to study the role of these neurons in the increase in cerebellar blood flow (BFcrb) produced by stimulation of the cerebellar parallel fibers (PF). Mice (age 8-10 wk) were anesthetized (halothane) and artificially ventilated. Arterial pressure and end-tidal CO2 were monitored continuously. Arterial blood gases were measured. The PF were stimulated electrically (100 microA, 30 Hz; 40 s), and the increases in BFcrb were monitored by a laser-Doppler flow probe. First, we characterized the increases in BFcrb and the field potentials produced by PF stimulation in normal mice. PF stimulation evoked the typical field potentials and increased BFcrb by 60 +/- 4% (100 microA, 30 Hz; n = 10). The increases in BFcrb were attenuated by the broad-spectrum glutamate receptor antagonist kynurenate (-84 +/- 3%; P < 0.05 analysis of variance; n = 5), by the DL-alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid receptor antagonist 2,3-dihydroxy-6-nitro-7-sulfamoyl-benzo(f)quinoxaline (-62 +/- 6%; P < 0.05; n = 5), and by the nitric oxide synthase inhibitor N omega-nitro-L-arginine (-46 +/- 7%; P < 0.05; n = 5). In PO3 transgenic mice, the increases in BFcrb produced by PF stimulation were reduced (P < 0.001) at every stimulus intensity and frequency tested (residual increase at 100 microA, 30 Hz: 19 +/- 2%; n = 6). The field potentials evoked by PF stimulation also were abnormal in that they lacked the late negative wave (n = 6), a finding consistent with lack of depolarization of Purkinje cells. The residual flow response in the transgenics was abolished by N omega-nitro-L-arginine (n = 5; P > 0.05). Ultrastructural studies showed that the density of PF-Purkinje cell synapses is reduced in PO3 mice, whereas the morphology of molecular layer interneurons (stellate cells) is normal. The findings suggest that Purkinje cells are responsible for a sizable component of the flow response whereas molecular layer interneurons mediate the remainder of the response. The study provides evidence that mouse mutants with spontaneous or genetically engineered cerebellar abnormalities could be useful to study the cellular and molecular correlates of functional hyperemia in the central nervous system.

Action Potentials↗

Superoxide-dependent cerebrovascular effects of homocysteine.

Recent evidence indicates that elevated plasma levels of homocysteine are a risk factor for ischemic cerebrovascular diseases. However, little is known about cerebrovascular effects of homocysteine. Homocysteine could impair cerebrovascular function by metal-catalyzed production of activated oxygen species. We studied whether homocysteine, in the presence of Cu2+, alters reactivity of cerebral circulation and, if so, whether this effect depends on O-2 generation. In halothane-anesthetized rats the parietal cortex was exposed and superfused with Ringer solution. Cerebrocortical blood flow (CBF) was monitored by a laser-Doppler probe. With Ringer solution superfusion, CBF increased with hypercapnia (+134 +/- 7%; PCO2 = 50-60 mmHg) and topical application of 10 microM ACh (+35 +/- 3%), the NO donor S-nitroso-N-acetylpenicillamine (SNAP, 500 microM; +66 +/- 6%), or 1 mM papaverine (+100 +/- 6%; n = 5). Superfusion with 40 microM Cu2+ alone did not perturb resting CBF or responses to hypercapnia, ACh, SNAP, or papaverine (P > 0.05, n = 5). However, superfusion of homocysteine-Cu2+ reduced resting CBF (-28 +/- 4%) and attenuated (P < 0.05) responses to hypercapnia (-31 +/- 9%), ACh (-73 +/- 6%), or SNAP (-48 +/- 4%), but not papaverine. The effect was observed only at 1 mM homocysteine. Cerebrovascular effects of homocysteine-Cu2+ were prevented by coadministration of superoxide dismutase (SOD; 1,000 U/ml; n = 5). SOD alone did not affect resting CBF or CBF reactivity (n = 5). The observation that homocysteine-Cu2+ attenuates the response to hypercapnia, ACh, and SNAP, but not the NO-independent vasodilator papaverine, suggests that homocysteine-Cu2+ selectively impairs NO-related cerebrovascular responses. The fact that SOD prevents such impairment indicates that the effect of homocysteine is O-2 dependent. The data support the conclusion that O-2, generated by the reaction of homocysteine with Cu2+, inhibits NO-related cerebrovascular responses by scavenging NO, perhaps through peroxynitrite formation. O-2-mediated scavenging of NO might be one of the mechanisms by which hyperhomocysteinemia predisposes to cerebrovascular diseases.

Acetylcholine↗

Reference typing report for complement receptor 1 (CR1).

A total of 100 Chinese blood donors (50 from Shen-Zhen and 50 from Taiwan) were studied by the participants in addition to 9 reference samples. A new nomenclature for the CR1 structural alleles was recommended by the participants which would use a numbering system, e.g. CR1*1. The structural allele frequencies in the Chinese were: CR1*1 (190 kD) 0.96, CR1*2 (220 kD) 0.03, CR1*3 (160 kD) 0.01 and CR1*4 (250 kD) 0.00. The HindIII expression polymorphism was also studied and the high expressing allele had a gene frequency of 0.71 while the low expressor gene frequency was 0.28. Erythrocyte copy numbers were quantified and compared between laboratories with good correlation (R = 0.55-0.88). The mean (+/- SD) erythrocyte copy number was 463 (+/- 229) in the Taiwan donors and 446 (+/- 207) in the Mainland Chinese.

Alleles↗

Flexibility of the thyroiditogenic T cell repertoire for murine autoimmune thyroiditis in CD8-deficient (beta2m -/-) and T cell receptor Vbeta(c) congenic mice.

In murine experimental autoimmune thyroiditis (EAT), previous studies have revealed a highly adaptable thyroiditogenic T cell repertoire which involves both CD4+ and CD8+ T cells in the susceptible H2k strain. To further test this flexibility, congenic B10.K mice lacking CD8+ T cells (B2m -/-) or harboring 70% T cell receptor (TCR) Vbeta gene deletions (Vbeta(c)) were immunized with mouse thyroglobulin (MTg) and evaluated for EAT 28 days later. All B2m -/- mice developed moderate antibodies to MTg, and thyroidal inflammation was comparable to B10.K mice, averaging 35-40%. Spleen cells (SC) from MTg-immunized mice were then injected into syngeneic recipients after stimulation in vitro with MTg or with conserved, thyroxine (T4)- or thyronine (T0)- containing 12mer peptides, hT4(5), hT0(2553), or hT4(2553), derived from the primary hormonogenic sites at position 5 or 2553 of human Tg. As previously shown in another H2k strain (CBA/J), all three peptides activated MTg-primed SC to transfer EAT in B10.K mice. hT4(5) and hT4(2553) were further tested in B10.K-Vbeta(c) and beta2m- B10.K mice. Both peptides expanded thyroiditogenic T cells in either strain, resulting in severe thyroiditis in syngeneic recipients. That EAT can develop in the absence of CD8+ T cells or in the presence of a severely restricted TCR repertoire underscores the remarkable flexibility of the thyroiditogenic T cell profile in the susceptible k haplotype.

Adoptive Transfer↗

Radix Salviae miltiorrhizae protects rat hippocampal neuron in culture from anoxic damage.

Radix Salviae Miltiorrhizae (RSM), a well-known traditional Chinese medicinal herb, has been used to improve blood circulation and resolve blood stasis. We have previously found that RSM has neuroprotective effect on ischemia and/or ischemia-reperfusion rats. The purpose of this study was to obtain further information on the mechanism of the RSM-induced neuroprotection and to examine the neuroprotective effect on neurons exposed to anoxia. The effect of RSM on anoxic damage in cultured hippocampal neurons of neonatal rat was investigated by using morphological changes and heat shock protein 70 kD (HSP70) expression as indicators. RSM given 0.5 h before 2 h-anoxia followed by 48 hours reoxygenation could significantly increase survival rate of hippocampal neurons and number of HSP70 positive cells. The results suggest that RSM has a direct neuroprotective effects on anoxic damage in hippocampal neurons.

Animals↗

Influence of percentage of osseointegration on stress distribution around dental implants.

OBJECTIVE: Stress around implants may lead to bone resorption and loss of the implant. The present study examined the influence of percentage of osseointegration at the implant-bone interface on the transmission of occlusal forces for endosseous dental implants. METHODS: The three-dimensional finite element method used in the study was built from data obtained from slices of dental computed tomography scans. The study modeled a 3.75 x 10-mm cylindric implant placed in an edentulous mandible. Varying the elastic parameters assigned to the implant-bone interface, a load of 35 N was applied at the occlusal surface of the restoration at the vertical axis of the implant. Maximum principal stress, minimum principal stress and Von Mises stress were calculated. RESULTS AND CONCLUSIONS: The most extreme stresses in the bone were always located around the neck of the implant. Those stresses in the implant-tissue interface decreased in inverse proportion to the increase in percentage of osseointegration. These results indicate the value of osseointegration in the aspect of mechanics.

Alveolar Process↗

[The second phase clinical observation of anti-radiation effect by superoxide dismutase].

Multiple center randomized controlled double blind clinical trait was conducted to evaluate the anti-radiotherapy effect by SOD (produced by Hunan Biochemical Work) in 159 patients. Injection of 4000U SOD immediately after receiving radiotherapy significantly reduced the occurrence rate of skin, oral mucosal, pelvic visceral and systematic adverse reaction, only the reduction of leukopenia did not reach the statistical significant level. No adverse effect of SOD injection was observed. The results suggest that SOD is a safe and effective agent to attenuate the radiotherapy reactions.

Adolescent↗

[Universal presence of HBVx gene and its close association with hotspot mutation of p53 gene in hepatocellular carcinoma of prevalent area in China].

OBJECTIVE: Hepatitis B virus (HBV) is a major etiological agent of hepatocellular carcinoma (HCC). The x gene of HBV genome (HBVx) is considered as its oncogene. In order to assess the extent of its involvement in hepatocarcinogenesis, both HBsAg sero-positive and mainly sero-negative HCC were searched for the presence, expression and mutation status of the x gene of HBV, as well as its association with 249 codon hot spot mutation of p53 gene. METHODS: Using PCR, RT-PCR, PCR-RFLP and DNA sequencing, studies were more focused on 25 HBsAg sero-negative, pathologically diagnosed HCC patients operated during 1991 to 1996 mainly in Qidong and also in Beijing. RESULTS: The x gene sequence of HBV was found by PCR without exception in all 25 seronegative HCC DNA (100% 25/25) and also in all 19 seropositive counterparts. The RNA messages of HBVx gene were found in all 8 HCC patients randomly selected from the seronegative group. Sequence analysis of the HBVx gene showed the presence of missense mutation in the 130 and 131 codon in 4 of 6 samples studied. Using PCR-RFLP, missense mutation of the 249 codon was identified in 57% (12/21) of all HBsAg negative cases from Qidong. No such mutations were found in the 4 Beijing counterparts. CONCLUSION: HBVx gene sequence was universally present in HBsAg negative HCC samples of Qidog studied, indicating the important role of HBVx gene in hepatocarcinogenesis of the high incidence area. The close association of the hotspot mutation of p53 gene in Qidong HCC with the presence of HBVx gene sequence suggests that such mutation is the molecular footprint of the combined effect of aflatoxin B1 exposure and HBVx gene product.

Adult↗

U-74389G suppresses lipid peroxidation and apoptosis following focal cerebral ischemia and reperfusion in rats.

OBJECTIVE: To study the antioxidant and antiapoptotic effects of U-74389G on ischemic brain in rats. METHODS: Right focal cerebral ischemia and reperfusion was induced by suturing in 103 male SD rats weighing 280-310 g. To determine LPO in the cortex and striatum, we randomly divided 78 rats into 5 groups: group 1, sham-operative group (6 rats); group 2, control (18); group 3, U-74389G administration before ischemia (18); group 4, U-74389G administration before reperfusion; group 5, CS-4 vehicle as negative control. Groups 2-5 were further divided into 3 subgroups according to the duration of reperfusion. Another 25 rats were similarly grouped (5) to detect apoptosis with TUNEL stain. RESULTS: The concentrations of MDA in groups 3 and 4 were reduced and the activities of SOD and concentrations of GSH were partially restored as compared with the control group. These effects were more significant in group 3 than in group 4. Otherwise, CS-4 can not provide protective effects. The number of apoptotic cells in groups 3 (P < 0.01) and 4 (P < 0.05) was significantly reduced as compared with the control group. CONCLUSIONS: U-74389G has antioxidant and antiapoptotic effects on ischemic brain in rats. The administration of U-74389G before the onset of ischemia was more useful than that before the onset of reperfusion.

Animals↗

[Expression of telomere and telomerase in human primary gastric carcinoma].

OBJECTIVE: To investigate the expression of telomere restriction fragments (TRF) and telomerase activity in human primary gastric carcinoma tissues and their role in tumor transformation and progression. METHODS: The lengths of TRF and activity of telomerase were observed in 17 early gastric carcinoma tissues and 89 advanced gastric carcinoma tissues, using hybridization of nucleic acids directly in agarose gels and telomere repeat amplification protocol (TRAP) assays, corresponding normal gastric mucosa were used as controls. RESULTS: The TRF lengths and telomerase activity in gastric cancer tissues were significantly shorter or higher than those in non-tumor mucosa, and the expression of telomerase activity in abnormal TRF tumor tissues was significantly higher than that in normal TRF tumour tissues. Alterations of TRF and telomerase activity in advanced tumour tissues were higher than those in early tumor tissues. Moreover, significant differences in TRF length were observed between well differentiated and poorly differentiated adenocarcinomas. CONCLUSION: Abnormal TRF status and telomerase reactivation may correlate well with malignant progression of gastric cancer. Telomerase activity and TRF lengths may thus serve as an important additional marker for tumor diagnosis.

Adenocarcinoma↗

[Quantitative determination of extracellular glutathione and cysteine in gerbil brain by microdialysis and high performance liquid chromatography with electrochemical detection].

A method for the determination of glutathione and cysteine in microdialysate by HPLC with electrochemical detector has been described. The column used was Hypersil ODS, 5 microns, 200 mm x 4.6 mm i.d. and mobile phase was 50% 0.2 mol/L KCl, 10.6% 0.2 mol/L HCl, 39.4% methanol and 0.1 mmol/L EDTA (pH 2.0) with a flow rate of 1 mL/min. The microdialysis probe (membrane: pc, length: 10 mm, diameter: 0.5 mm/CMA) was inserted into the right striatum of gerbil at the following coordinates: 1.5 mm anterior and 1.5 mm lateral to bregma, and 3.5 mm below dura. Electrochemical pretreatment of a glassy carbon electrode used as a working electrode in an electrochemical detector has been found to enhance the analytical capability of detector for the determination of glutathione and cysteine. The quantitative determination was made with an electrochemical detector at 0.9 V and by external standard method. The method gave good recoveries and reproducibilities. The average recoveries of two analytes were 91.4% and 87.3% respectively. Extracellular fluid glutathione and cysteine concentrations in the striatum of gerbil brain were determined by the microdialysis and chromatography described in this study. The contents of Cys and GSH in microdialysate of gerbil striatum were 65.54 +/- 12.96 nmol/L and 68.59 +/- 13.23 nmol/L. The results were comparable with those reported in previous works.

Animals↗

[Determination of enrofloxacin and it's main metabolite in animal plasma by reversed-phase ion-pair high performance liquid chromatography].

This paper describes a method for determining enrofloxacin (ERFX) and it's main metabolite ciprofloxacin(CPFX), in animal plasma by RP-IPLC simultaneously. Dichloromethane was utilized as an extracting agent of plasma. Chromatographic conditions were ODS column with methanol-25 mmol/L tetrabutylammonium hydroxide (20:80, V/V, pH 3.0) as mobile phase, pipemidic acid as the internal standard and UV detection at 272 nm. With the method established in this paper, the work is done simply, rapidly, sensitively and accurately. It was actually adapted to determine ERFX and it's metabolite CPFX concentrations in plasma and pharmacokinetic studies, and to determine ERFX and CPFX contents in calves plasma successfully for the first time.

Animals↗

Effect of hypoxia on motion sickness induced by optokinetic stimulation.

The purpose of this experiment was to study the effect of hypoxia on motion sickness (MS) induced by optokinetic stimulation and to observe its character and principle. Twenty healthy male subjects aged 18-25 years received optokinetic stimulus (OS) and hypoxic-optokinetic stimulus (HOS) according to the "Latin Square" arrangement and "Self-control" methods. Motion sickness symptoms (MSS) and optokinetic horizontal nystagmus (OKHN) were recorded and analysed. The results indicated: (1) MS average score for HOS was higher than that for OS (P<0.001); (2) Slow phase velocity(SPV) of OKHN in HOS was lower than that in OS (P<0.001). The results clearly showed that moderate hypoxia could deteriorate the MS induced by OS. It provided a method for the screening of MS sensitivity.

Adolescent↗

[Pressure control system for the hermetically sealed cabin of the recoverable satellite].

There are many precision instruments and equipment for scientific researches and experiments in the hermetically sealed cabin of satellite. Appropriate pressure must be controlled in the cabin in order to ensure the instruments and equipment from the adverse space environment. This paper describes a pressure control system for the hermetically sealed cabin in the recoverable scientific detect and experimental satellite. The cabin pressure is regulated automatically into the specific levels by venting or supplying the air from or to the cabin during launch, on orbit and before reentry of the satellite. The system has low mass, low power consumption and high reliability. It was used successfully in the recoverable satellite first in September 1987 and had been used many times since then. It is the first active pressure control system for the hermetically sealed cabin of the satellite in China.

Atmospheric Pressure↗