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Biomedical subjects

W Guo

Publications and source records attributed to W Guo.

At least 163 records · Page 9Linked to original sources

DAX1 mutations map to putative structural domains in a deduced three-dimensional model.

The DAX1 protein is an orphan nuclear hormone receptor based on sequence similarity in the putative ligand-binding domain (LBD). DAX1 mutations result in X-linked adrenal hypoplasia congenita (AHC). Our objective was to identify DAX1 mutations in a series of families, to determine the types of mutations resulting in AHC and to locate single-amino-acid changes in a DAX1 structural model. The 14 new mutations identified among our 17 families with AHC brought the total number of families with AHC to 48 and the number of reported mutations to 42; 1 family showed gonadal mosaicism. These mutations included 23 frameshift, 12 nonsense, and six missense mutations and one single-codon deletion. We mapped the seven single-amino-acid changes to a homology model constructed by use of the three-dimensional crystal structures of the thyroid-hormone receptor and retinoid X receptor alpha. All single-amino-acid changes mapped to the C-terminal half of the DAX1 protein, in the conserved hydrophobic core of the putative LBD, and none affected residues expected to interact directly with a ligand. We conclude that most genetic alterations in DAX1 are frameshift or nonsense mutations and speculate that the codon deletion and missense mutations give insight into the structure and function of DAX1.

Adrenal Glands↗

Dominant negative alleles of SEC10 reveal distinct domains involved in secretion and morphogenesis in yeast.

The accurate targeting of secretory vesicles to distinct sites on the plasma membrane is necessary to achieve polarized growth and to establish specialized domains at the surface of eukaryotic cells. Members of a protein complex required for exocytosis, the exocyst, have been localized to regions of active secretion in the budding yeast Saccharomyces cerevisiae where they may function to specify sites on the plasma membrane for vesicle docking and fusion. In this study we have addressed the function of one member of the exocyst complex, Sec10p. We have identified two functional domains of Sec10p that act in a dominant-negative manner to inhibit cell growth upon overexpression. Phenotypic and biochemical analysis of the dominant-negative mutants points to a bifunctional role for Sec10p. One domain, consisting of the amino-terminal two-thirds of Sec10p directly interacts with Sec15p, another exocyst component. Overexpression of this domain displaces the full-length Sec10 from the exocyst complex, resulting in a block in exocytosis and an accumulation of secretory vesicles. The carboxy-terminal domain of Sec10p does not interact with other members of the exocyst complex and expression of this domain does not cause a secretory defect. Rather, this mutant results in the formation of elongated cells, suggesting that the second domain of Sec10p is required for morphogenesis, perhaps regulating the reorientation of the secretory pathway from the tip of the emerging daughter cell toward the mother-daughter connection during cell cycle progression.

Alleles↗

Post-hemorrhagic shock mesenteric lymph is cytotoxic to endothelial cells and activates neutrophils.

The goal of these experiments was to test the hypothesis that after a nonlethal episode of hemorrhagic shock, factors carried in the mesenteric lymph would promote endothelial cell injury and activate neutrophils to a greater extent than portal vein plasma. Catheters were placed in the efferent lymphatic duct draining the mesenteric lymph node complex, after which male rats were subjected to sham or actual shock (30 mmHg for 90 min), and lymph was collected. Portal vein plasma was collected from the sham-shock and shocked rats at 6 h post-shock or sham-shock. When the effect of lymph or portal blood plasma was tested on endothelial cell (HUVEC) monolayer permeability, it was found that post-shock lymph, but not post-shock portal vein plasma, increased HUVEC permeability to both 10 kDa and 40 kDa permeability probes. Subsequent experiments documented that only post-shock lymph was cytotoxic to endothelial cells as manifest both by decreased trypan blue dye exclusion and the increased release of Chromium-51 from chromium-loaded endothelial cells. Furthermore post-shock lymph induced a greater increase in neutrophil superoxide formation than pre-shock lymph, pre-shock, or post-shock portal vein plasma. Lastly, neutrophil-mediated endothelial cell injury was potentiated by the presence of post-shock lymph, and the magnitude of HUVEC injury was greater in endothelial cells incubated with post-shock lymph plus neutrophils than in monolayers incubated with post-shock lymph or neutrophils alone. These results suggest that post-shock lymph is cytotoxic to endothelial cells and activates neutrophils. Since the lung is the first organ that is exposed to mesenteric lymph, lung injury after hemorrhagic shock may be mediated by factors contained in mesenteric lymph.

Animals↗

In pubertal girls, naloxone fails to reverse the suppression of luteinizing hormone secretion by estradiol.

Estradiol (E2) negative feedback on LH secretion was examined in 10 pubertal girls, testing the hypothesis that E2 suppresses LH pulse frequency and amplitude through opioid pathways. At 1000 h, a 32-h saline infusion was given, followed 1 week later by an E2 infusion at 13.8 nmol/m2 x h. During both infusions, four iv boluses of saline were given hourly beginning at 1200 h, and four naloxone iv boluses (0.1 mg/kg each) were given hourly beginning at 1200 h on the following day. Blood was obtained every 15 min for LH determination and every 60 min for E2 determination from 1200 h to the end of the infusion. E2 infusion increased the mean serum E2 concentration from 44+/-17 to 112+/-26 pmol/L (P < 0.01). The mean LH concentration between 2200-1200 h decreased from 3.19+/-0.89 to 1.99+/-0.65 IU/L (P = 0.014), and LH pulse amplitude decreased from 3.4+/-0.6 to 2.6+/-0.5 IU/L (P = 0.0076). Although there were 1.2 fewer pulses during E2 infusion compared to saline infusion, differences did not reach significance (P = 0.1; 95% confidence interval for the difference, -3.5, 1.1). Pituitary responsiveness to GnRH, assessed at the end of the infusion by administering 250 ng/kg GnRH iv, did not change during E2 infusion. The effect of naloxone blockade of opioid activity on LH secretion was determined by assessing the area under the curve (AUC) from 1200-1600 h. During saline infusion, the LH AUC was 1122+/-375 IU/L during saline boluses and 1575+/-403 IU/L during naloxone boluses (P = 0.39). When E2 was infused, the LH AUCs during saline and naloxone boluses were 865+/-249 and 866+/-250 IU/L, respectively. Thus, in pubertal girls: 1) E2 decreases the LH concentration and LH pulse amplitude; 2) the main site of negative feedback effect of E2 appears to be at the level of the hypothalamus; 3) an increase in LH secretion after naloxone administration could not be demonstrated in these girls and may depend on the maturity of the hypothalamic-pituitary-gonadal axis; and 4) opioid receptor blockade does not reverse the E2 inhibition of LH secretion even in the most mature girls. Thus, E2 suppression of LH secretion in pubertal girls appears to be mediated by a decrease in hypothalamic GnRH secretion that is independent of opioid pathways.

Adolescent↗

[Analysis on the immuno-effects of two different Japanese encephalitis virus vaccines].

319 infants aged 5-18 months were divided in to 2 groups and immunized with Japanese encephalitis virus inactivated vaccine and live attenuated vaccine respectively. Under the detection of serum antibody, a 3.76% serum antibody positive rate was revealed before the immunization. However, after the basic immunization the serum positive rates of the two vaccines reached 59.56% and 56.08% respectively but still under the protective level. The infants were then given booster injection one year later. The serum positive rates reached 94.62% and 98.21% respectively 1 month later. When six months after the booster immunization, the positive rates were 72.34% and 94.74% respectively. According to the results, the following immunization order was recommend. For inactivated vaccine: 2 injections are given with an interval of 7-10 days for basic immunization and booster immunization be given in the second and third years. For live attenuated vaccine: one injection is given for basic immunization then booster dose be given in the second year and 4-5 years later.

Antibodies, Viral↗

N-ras mutations in 43 Chinese cases of acute myeloid leukemia.

OBJECTIVE: To detect 3 kinds of N-ras mutations in Chinese patients with acute myeloid leukemia (AML). METHODS: In vitro DNA amplification followed by oligonucleotide dot analysis were used to study N-ras gene mutations in 43 cases of acute myeloid leukemia (AML). 25 healthy people were used as controls. Patients were selected in the Beijing district and consisted of 19 males and 24 females. The average age was 37. The controls were healthy individuals with the average age of 36.5 from the same region. 3 oligonucleotide probes were artificially synthesized to detect mutations in codon 12 and 13 of N-ras. RESULTS: Five out of 43 AML samples have been found contain G-->A mutation in codon 12.2 have G-->T mutation in codon 12. One has G-->A mutation in codon 13. The mutation rate was 18.6%. None of the controls presented these mutations. The frequency of mutation of N-ras in the AML samples showed statistical differences with that of the controls. CONCLUSION: Analysis of the results suggests the N-ras mutations may have some relationship with the etiology of acute myeloid leukemia.

Adult↗

[Tissue factor expression during all-trans retinoic acid or arsenic trioxide treatment in acute promyelocytic leukemia].

OBJECTIVE: In order to study the effect of all-trans retinoic acid (ATRA) or arsenic trioxide (As2O3) treatment on the expression of tissue factor (TF) in acute promyelocytic leukemia(APL). METHODS: The plasma level of soluble fibrin monomer complex(SFMC) and D-dimer(D-D), and the TF level of cell lysate were measured by ELISA, the transcription of TF mRNA was assessed by RT-PCR. RESULTS: The plasma level of SFMC and D-D, the procoagulant activity(PCA) of bone marrow blasts, the TF level of cell lysate and the transcription of TF mRNA all remarkably elevated at diagnosis, while reduced after ATRA or As2O3 therapy. CONCLUSION: Both ATRA and As2O3 downregulated the expression of TF mRNA, decreased the PCA and TF levels in APL cells, inhibited coagulation activation and secondary hyperfibrinolysis, thus greatly relieved the bleeding symptom in the early stage of treatment.

Adolescent↗

The influence of impaired microvasculature on regional blood flow of the spinal cord after microsurgery.

OBJECTIVE: To further investigate the impact of impaired microvasculature of spinal cord and its physiological compensation on postoperative morbidity after intramedullary microsurgery. METHODS: In 120 cats, the segmental anterior longitudinal spinal arteries (ALSA), the posterior longitudinal spinal arteries (PLSA), and the unilateral radiculomedullary arteries (RMA) were selectively coagulated in different patterns. Hydrogen electrode technique was used to detect the changes of regional blood flow of the spinal cord at different segments. Benzidine dihydrochloride (BDHC) staining was used to observe the microvascular pattern of the spinal cord, tetrazolium chloride (TTC) staining was applied to morphometric analysis of the ischemic area, and hematoxylin-eosin staining was applied to histologic examination. RESULTS: When the segmental ALSA was injured, the blood flow of the gray matter and white matter decreased greatly. Since the central arteries were the terminal blood supply arteries, no compensation occurred after the injury. The blood flow of the segment below the impaired segment hardly changed, indicating that the direction of the blood flow in ALSA altered to adapt the changes of the microvasculature. Injury to the unilateral PLSA and RMA at both cervical and lumbar area only caused a minor decrease in the regional blood flow, unless the perimedullary arterial system was considerably injured. In the thoracic medullary segment, the sparse microvasculature was the main cause for the segment vulnerable to ischemia and infarction. This was caused by not only the rarity of RMA as an anatomic factor, but also the small number and low activity of the neurons at this area. After microsurgery, the impairment and decompensation of the microvasculature were closely related to the ischemic volume of and pathological changes in the spinal cord. CONCLUSION: The impairment and decompensation of microvasculature after microsurgery are the rudimentary causes of spinal cord ischemia. During operation, one should protect the terminal arteries to decrease the severity of injury to the perimedullary system, and do the best to avoid disturbance of microvasculature to accelerate the recovery of postoperative ischemia and neurological dysfunction of the spinal cord.

Adaptation, Physiological↗

[Clinical study on qiangxinling liquid extract in treating congestive heart failure].

OBJECTIVE: To find the safe and effective treatment and drugs for congestive heart failure (CHF). METHODS: Ninety CHF patients whose heart function belong to III-IV grade were randomly divided into 3 groups: Group A was treated with Qiangxinling liquid extract (QXLLE); Group B with QXLLE plus small dose of digoxin and Group C with digoxin alone. RESULTS: The total effective rate on heart function of Group A was 86.7%, Group B 93.3% and Group C 83.3%, the effect of Group B was better than that of the other two groups (P < 0.05, P < 0.01). The digoxin withdrawing and reducing rate in Group B was higher than that in Group C (86.7% vs 50.0%, P < 0.05). The left ventricular systolic function, including stroke volume, cardiac output, ejection fraction of the 3 groups were improved after treatment, among them the effect of Group B was the best (P < 0.01). Moreover, improvement in ventricular diastolic function was shown in Group A and B, including the maximum blood flow of the late and the early diastolic stage as well as the ratio of them (P < 0.05, P < 0.01). The plasma renin activity, angiotensin II and atrial natriuretic peptide of Group A and B were also lowered after treatment and were significantly different to those of the Group C (P < 0.01). CONCLUSIONS: QXLLE could improve the heart function, clinical symptoms and neuro-endocrinal indexes of CHF patients and reduce the side effects of digoxin.

Adult↗

[Association of nm23-H1 with orthopedic oncological conditions].

OBJECTIVE: To explore the correlation between nm23-H1 gene and malignant and semi-malignant bone tumors. METHOD: Thirty surgical specimens were collected, including 8 osteosarcomas, 7 giant cell tumors, 4 chondrosarcomas, 2 Ewing's sarcomas, 2 malignant fibrohistocytomas, 1 neurofibrosarcoma, 1 schwannoma, and 5 metastatic cancers. The expression of nm23-H1 in these specimens was observed by in situ hybridization and immunohistochemical staining. RESULT: The expression of nm23-H1 in 4 cases of primary giant cell tumor (GCT) was high, but was low or absent in 3 recurrent ones. In 4 cases of chondrosarcomas, the expression was positive. Its expression was basically negative in Ewing's tumor, malignant fibrous histiocytoma and metastatic sarcomas. CONCLUSION: There is no association of nm23-H1 with osteosarcoma.

Adult↗

[Effects of l-stepholidine on the peripheral vascular dopamine DA1 and DA2 receptor subtypes].

The effects of l-stepholidine(l-SPD) on peripheral vascular dopamine DA1 and DA2 receptors were studied using isolated vascular rings in rabbits. It was shown that (1) l-SPD(0.1-10 mumol.L-1) shifted the dose-response curves to the right in a nonparallel fashion and decreased the maximal response (Emax) of both the fenoldopam(FODA, a selective DA1 agonist)-induced and the propyl-buty-dopamine(PBDA, a selective DA2 agonist)-induced vasorelaxation showing a non-competitive antagonistic action. The pD2 values of l-SPD for FODA in the renal, pulmonary and mesenteric arteries were 5.43, 5.48 and 5.58, respectively. The pD2 values for PBDA in the mesenteric and femoral arteries were 5.35 and 5.89, respectively. The potencies of its antagonistic action were comparable to SCH23390, a selective DA1 antagonist, and to domperidone, a selective DA2 antagonist. (2) l-SPD(0.1-100 mumol.L-1) per se was also found to induce slight but dose-related vasorelaxations in the renal and pulmonary arteries displaying its DA1 agonistic activity. Its pD2 values were 4.98 and 5.02, respectively. However, its Emax were considerably smaller than that of FODA. These results suggest that l-SPD is a mixed peripheral DA1 and DA2 receptor antagonists and weak DA1 receptor agonist with pharmacological property of dual action.

Animals↗

Replicative senescence of normal human oral keratinocytes is associated with the loss of telomerase activity without shortening of telomeres.

Telomerase activity was analyzed in 7 different cultures of secondary normal human oral keratinocytes (NHOKs), 1 normal human oral epithelial tissue specimen, 1 immortalized human oral keratinocyte (HOK) cell line, and 10 human oral cancer cell lines using the PCR-based telomeric repeat amplification protocol assay. Telomerase activity was found in all tested cells and tissue, but the activity in NHOKs and epithelial tissue was lower than that in other tested cell lines. Inasmuch as continued subculture of NHOKs results in replicative senescence, we investigated the association between telomerase activity and replicative senescence by evaluating the enzyme activity in NHOK cultures with different population doubling levels. Three different NHOK cultures were independently subcultured until these cells reached the postmitotic stage. Unlike in fibroblasts derived from the human oral cavity, significant telomerase activity was detected in rapidly proliferating NHOKs, and telomerase activity was barely detectable in the keratinocytes near and at senescence. However, the terminal restriction fragment consisting of telomeric DNA was found to be constantly maintained at approximately 6.0 kilobases in NHOKs without any detectable shortening of telomeres by subcultures. Intracellular p53 and p21WAF1/CIP1 protein levels in NHOKs were gradually and significantly diminished by the passage of cells. These data indicate that actively proliferating NHOKs contain telomerase activity and that replicative senescence of NHOKs is associated with the loss of telomerase activity without shortening of telomeres. However, replicative senescence of NHOKs is apparently not linked to an accumulation of wild-type p53 and/or p21WAF1/CIP1 proteins in these cells.

Adult↗

Persistently exaggerated startle responses in rats treated with pyridostigmine bromide.

Troops in the Persian Gulf War have registered complaints consistent with CNS dysfunction that emerged after returning from the Gulf. A common experience among Persian Gulf War veterans was exposure to pyridostigmine bromide (PB) for prophylaxis against nerve gas exposure. To determine whether PB causes emergent CNS dysfunction, Wistar-Kyoto (WKY) and Sprague-Dawley (SD) rats were given PB for 7 consecutive days in their drinking water. The WKY, but not the SD, rats exhibited a delayed-onset, persistently exaggerated startle response. The WKY rats exhibited exaggerated startle responses that appeared 15 days after the end of PB treatment and were still evident 22 days after the end of treatment. Both the duration and the magnitude of the exaggerated startle responses were related to the dosage of PB. The PB-treated rats exhibited normal short-term and long-term habituation. However, exaggerated startle responses were related to the development of enhanced short-term sensitization. Treating the rats for a second time, 7 weeks after the end of the first PB treatment, induced an exaggerated startle response that appeared sooner and dissipated faster than was evident after the first PB treatment. Inasmuch as the WKY rat has inherently low butyrylcholinesterase activity, a scavenger for PB, these results suggest that prophylactic PB may influence CNS function in individuals with low butyrylcholinesterase activity. Elaboration of the factors that mediate enhanced sensitization in the WKY rat may provide insight into some of the complaints registered by veterans of the Persian Gulf War.

Animals↗

Enzymatic activity of 2'-5'-oligoadenylate synthetase is impaired by specific mutations that affect oligomerization of the protein.

Previous studies from our laboratory have shown that deletion of residues 321 to 344 of the 9-2 isozyme of 2'-5'-oligoadenylate (2-5(A)) synthetase causes a loss of its enzyme activity (Ghosh, S. K., Kusari, J., Bandyopadhyay, S. K., Samanta, H., Kumar, R., and Sen, G. C. (1991) J. Biol. Chem. 266, 15293-15299). Sequence comparison of this region among the different isozymes of 2-5(A) synthetases revealed that the residues at positions 330 to 333 are highly conserved. Alanine-scanning mutagenesis of these residues demonstrated that the residues present at 331, 332, and 333 are important for activity but the proline at position 330 was dispensable. The triple mutant containing Ala residues at 331, 332, and 333 was completely inactive. Different double mutants were slightly active, and the three single mutants were partially active. The triple mutant was further characterized for delineating the nature of its defect. The mutant protein was enzymatically inactive irrespective of whether it was synthesized in rabbit reticulocyte lysate, Escherichia coli or Trichoplusia ni insect cells. It could bind double-stranded RNA and ATP as efficiently as the wild type protein. It was, however, defective in oligomerization. Gel filtration and sedimentation velocity analyses of in vitro synthesized proteins revealed that the wild type protein, but not the triple mutant, formed tetramers. The tetrameric fraction, but not the monomeric fraction of the wild type protein was enzymatically active. The failure of the triple mutant to participate in homomeric protein-protein interaction was confirmed by in vivo assays in insect cells. These results indicate that tetramerization of the protein is required for the enzymatic activity of the small 2-5(A) synthetases.

2',5'-Oligoadenylate Synthetase↗

Ethanol upregulates the expression of p21 WAF1/CIP1 and prolongs G1 transition via a p53-independent pathway in human epithelial cells.

The control of cell cycle progression is necessary for accuracy in the replication of DNA and the distribution of genetic information to daughter cells. Disturbances in progression of the cell cycle may result in the loss of genomic integrity, a 'hallmark' of cancer cells. Extensive consumption of alcoholic beverages is a risk factor associated with the development of various human epidermoid cancer including oral and pharyngeal squamous cell carcinomas. However, effects of ethanol on cell cycle progression and on the expression of genes associated with the cell cycle have not been studied. We report here that exposure of human epithelial cells to ethanol, at concentration (100-200 mM) that do not cause cell death, (a) does not affect or only reduces slightly the cellular level of p53 protein, (b) upregulates the transcription of the WAF1/CIP1 gene, (c) inhibits the Cdk2 activity, and (d) reduces the rate of cellular proliferation by inducing a delay in G1 phase transition. The results also indicate that, at these non-cytotoxic concentrations, ethanol exhibits its effects through a p53-independent mechanism.

CDC2-CDC28 Kinases↗

Grapefruit juice increases felodipine oral availability in humans by decreasing intestinal CYP3A protein expression.

The increase in oral availability of felodipine and other commonly used medications when taken with grapefruit juice has been assumed to be due to inhibition of CYP3A4, a cytochrome P450 that is present in liver and intestine. To evaluate the effect of repeated grapefruit juice ingestion on CYP3A4 expression, 10 healthy men were given 8 oz of grapefruit juice three times a day for 6 d. Before and after receiving grapefruit juice, small bowel and colon mucosal biopsies were obtained endoscopically, oral felodipine kinetics were determined, and liver CYP3A4 activity was measured with the [14C N-methyl] erythromycin breath test in each subject. Grapefruit juice did not alter liver CYP3A4 activity, colon levels of CYP3A5, or small bowel concentrations of P-glycoprotein, villin, CYP1A1, and CYP2D6. In contrast, the concentration of CYP3A4 in small bowel epithelia (enterocytes) fell 62% (P = 0.0006) with no corresponding change in CYP3A4 mRNA levels. In addition, enterocyte concentrations of CYP3A4 measured before grapefruit juice consumption correlated with the increase in Cmax when felodipine was taken with either the 1st or the 16th glass of grapefruit juice relative to water (r = 0. 67, P = 0.043, and r = 0.71, P = 0.022, respectively). We conclude that a mechanism for the effect of grapefruit juice on oral felodipine kinetics is its selective downregulation of CYP3A4 in the small intestine.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Cloning and functional expression of a brain peptide/histidine transporter.

Here we report the cloning and functional characterization of a rat novel peptide/histidine transporter (PHT1), which was expressed in the brain and the retina. The cDNA encodes the predicted protein of 572 amino acid residues with 12 putative membrane-spanning domains. The amino acid sequence has moderate homology with a nonspecific peptide transporter found in the plant. When expressed in Xenopus laevis oocytes, PHT1 cRNA induced high affinity proton-dependent histidine transport activity. This transport process was inhibited by dipeptides and tripeptides but not by free amino acids such as glutamate, glycine, leucine, methionine, and aspartate. Dipeptide carnosine transport activity was also confirmed by direct uptake measurement. By in situ hybridization analysis, PHT1 mRNA was widely distributed throughout whole brain. Especially, intense hybridization signals were found in the hippocampus, choroid plexus, cerebellum, and pontine nucleus. Signals were located in both the neuronal and small nonneuronal cells in these areas. PHT1 protein could contribute to uptake of oligopeptides, which function as neuromodulators, and clearance of degraded neuropeptides and be a new member in the growing superfamily of proton-coupled peptide and nitrate transporters, although its structure, localization, and pharmacological characteristics are unique among these members.

Amino Acid Sequence↗