Search PubMed⌕ Search

Biomedical subjects

C Wu

Publications and source records attributed to C Wu.

At least 253 records · Page 14Linked to original sources

Persistence of external chloride and DIDS binding after chemical modification of Glu-681 in human band 3.

Although its primary function is monovalent anion exchange, the band 3 protein also cotransports divalent anions together with protons at low pH. The putative proton binding site, Glu-681 in human erythrocyte band 3, is conserved throughout the anion exchanger family (AE family). To determine whether or not the monovalent anion binding site is located near Glu-681, we modified this residue with Woodward's reagent K (N-ethyl-5-phenylisoxazolium-3'-sulfonate; WRK). Measurements of Cl(-) binding by (35)Cl-NMR show that external Cl(-) binds to band 3 even when Cl(-) transport is inhibited approximately 95% by WRK modification of Glu-681. This indicates that the external Cl(-) binding site is not located near Glu-681 and thus presumably is distant from the proton binding site. DIDS inhibits Cl(-) binding even when WRK is bound to Glu-681, indicating that the DIDS binding site is also distant from Glu-681. Our data suggest that the DIDS site and probably also the externally facing Cl(-) transport site are located nearer to the external surface of the membrane than Glu-681.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Differential expression of serotonin 5-HT2 receptors during rat embryogenesis.

Serotonin (5-HT) is a neurotransmitter that also functions as a hormone and a growth factor. 5-HT is involved in numerous physiological actions and displays complex pharmacological properties. As a growth factor, 5-HT plays a role in cell proliferation and differentiation of neuronal and nonneuronal tissue and it transduces its signals through more than fourteen subtypes of 5-HT receptors. Since determination of the expression and distribution is important for understanding the role of the 5-HT receptors, we have developed an RNase protection assay (RPA) that allows the simultaneous analysis of 5-HT2AR, 5-HT2BR, and 5-HT2CR per sample of RNA. This multiprobe set also comprises probes for two house-keeping genes, L32 and GAPDH, which control for sample-loading errors. Using this RPA probe set, we have examined the relative expression of 5-HT2AR, 5-HT2BR, and 5-HT2CR in rat embryos inclusively from embryonic day (ED) 9 to 21 of development. Our data indicate that 5-HT2AR levels gradually increased from ED11 to ED21. The expression of 5-HT2BR was decreased between ED9 to ED11 then remained relatively constant through ED21. 5-HT2CR was initially expressed at residual levels between ED9 and ED12 but dramatically increased to a peak level at ED13, then decreased by ED17. Expression of the 5-HT2 receptors in these tissues was confirmed independently by RT-PCR indicating that there is developmental regulation in the expression of these receptors. The 5-HT2R multiprobe assay will be useful for detecting relative changes in the expression of these receptors in developmental, normal and pathological tissues as well as for monitoring relative changes in expression resulting from the use of pharmaceutical agents.

Animals↗

Resolution of vitamin D insufficiency in osteopenic patients results in rapid recovery of bone mineral density.

Vitamin D insufficiency is characterized biochemically by the presence of secondary hyperparathyroidism, which can contribute to bone loss in osteopenic patients. Over a 2-yr period of evaluation of 118 consecutive, free living patients with osteopenia or osteoporosis, we identified 18 subjects with depressed serum 25-hydroxyvitamin D (250HD; < or = 14 ng/mL). Twelve of these subjects harbored a low 25OHD level and consented to undergo replacement with 50,000 IU vitamin D2 twice weekly for 5 weeks. Five hundred thousand units of oral vitamin D2 resulted in significant increases in 25OHD (+24.3+/-16.9 ng/mL; P < 0.001) and the fasting urinary calcium/creatinine excretion ratio (+0.06+/-0.004; P = 0.01) and significant decreases in the serum concentration of PTH (-32.9+/-36.9 pg/mL; P < 0.001) and osteocalcin (-4.9+/-2.4 ng/mL; P < 0.001). Vitamin D repletion was associated with a significant 4-5% annualized increase in bone mineral density at both the lumbar spine (P < 0.001) and the femoral neck (P = 0.03), indicating that resolution of vitamin D insufficiency in a population of patients with low bone mass results in a rapid rebound increase in bone mineral density.

Adult↗

A C619Y mutation in the human androgen receptor causes inactivation and mislocalization of the receptor with concomitant sequestration of SRC-1 (steroid receptor coactivator 1)

Androgen ablation therapy is a primary treatment for advanced prostate cancer, but tumors become refractive to therapy. Consequently, the role of the androgen receptors (ARs) and of mutations in the AR in prostate cancer has been a subject of much concern. In the course of analyzing tumors for mutations, we identified a somatic mutation that substitutes tyrosine for a cysteine at amino acid 619 (C619Y), which is near the cysteines that coordinate zinc in the DNA binding domain in the AR. The mutation was re-created in a wild-type expression vector and functional analyses carried out using transfection assays with androgen-responsive reporters. The mutant is transcriptionally inactive and unable to bind DNA. In response to ligand treatment, AR619Y localizes abnormally in numerous, well circumscribed predominantly nuclear aggregates in the nucleus and cytoplasm. Interestingly, these aggregates also contain the bulk of the coexpressed steroid receptor coactivator SRC-1, suggesting, in analogy to AR in spinal bulbar muscular atrophy, that this mutant may alter cellular physiology through sequestration of critical proteins. Although many inactivating mutations have been identified in androgen insensitivity syndrome patients, to our knowledge, this is the first characterization of an inactivating mutation identified in human prostate cancer.

Cell Nucleus↗

Control of early cardiac-specific transcription of Nkx2-5 by a GATA-dependent enhancer.

The homeobox gene Nkx2-5 is the earliest known marker of the cardiac lineage in vertebrate embryos. Nkx2-5 expression is first detected in mesodermal cells specified to form heart at embryonic day 7.5 in the mouse and expression is maintained throughout the developing and adult heart. In addition to the heart, Nkx2-5 is transiently expressed in the developing pharynx, thyroid and stomach. To investigate the mechanisms that initiate cardiac transcription during embryogenesis, we analyzed the Nkx2-5 upstream region for regulatory elements sufficient to direct expression of a lacZ transgene in the developing heart of transgenic mice. We describe a cardiac enhancer, located about 9 kilobases upstream of the Nkx2-5 gene, that fully recapitulates the expression pattern of the endogenous gene in cardiogenic precursor cells from the onset of cardiac lineage specification and throughout the linear and looping heart tube. Thereafter, as the atrial and ventricular chambers become demarcated, enhancer activity becomes restricted to the developing right ventricle. Transcription of Nkx2-5 in pharynx, thyroid and stomach is controlled by regulatory elements separable from the cardiac enhancer. This distal cardiac enhancer contains a high-affinity binding site for the cardiac-restricted zinc finger transcription factor GATA4 that is essential for transcriptional activity. These results reveal a novel GATA-dependent mechanism for activation of Nkx2-5 transcription in the developing heart and indicate that regulation of Nkx2-5 is controlled in a modular manner, with multiple regulatory regions responding to distinct transcriptional networks in different compartments of the developing heart.

Animals↗

Transcriptional activity of MEF2 during mouse embryogenesis monitored with a MEF2-dependent transgene.

The four members of the MEF2 family of MADS-box transcription factors, MEF2-A, MEF2-B, MEF2-C and MEF2-D, are expressed in overlapping patterns in developing muscle and neural cell lineages during embryogenesis. However, during late fetal development and postnatally, MEF2 transcripts are also expressed in a wide range of cell types. Because MEF2 expression is controlled by translational and post-translational mechanisms, it has been unclear whether the presence of MEF2 transcripts in the embryo reflects transcriptionally active MEF2 proteins. To define the temporospatial expression pattern of transcriptionally active MEF2 proteins during mouse embryogenesis, we generated transgenic mice harboring a lacZ reporter gene controlled by three tandem copies of the MEF2 site and flanking sequences from the desmin enhancer, which is active in cardiac, skeletal and smooth muscle cells. Expression of this MEF2-dependent transgene paralleled expression of MEF2 mRNAs in developing myogenic lineages and regions of the adult brain. However, it was not expressed in other cell types that express MEF2 transcripts. Tandem copies of the MEF2 site from the c-jun promoter directed expression in a similar pattern to the desmin MEF2 site, suggesting that transgene expression reflects the presence of transcriptionally active MEF2 proteins, rather than other factors specific for DNA sequences flanking the MEF2 site. These results demonstrate the presence of transcriptionally active MEF2 proteins in the early muscle and neural cell lineages during embryogenesis and argue against the existence of lineage-restricted MEF2 cofactors that discriminate between MEF2 sites with different immediate flanking sequences. The discordance between MEF2 mRNA expression and MEF2 transcriptional activity in nonmuscle cell types of embryos and adults also supports the notion that post-transcriptional mechanisms regulate the expression of MEF2 proteins.

Animals↗

Integrin-linked kinase and PINCH: partners in regulation of cell-extracellular matrix interaction and signal transduction.

Integrin-linked kinase (ILK) is a focal adhesion serine/threonine protein kinase that is emerging as a key signaling protein functioning at one of the early convergence points of integrin- and growth factor-signaling pathways. ILK binds to PINCH through the N-terminal ankyrin (ANK) repeat domain and the PINCH binding is crucial for focal adhesion localization of ILK. The ILK-PINCH interaction also connects ILK to Nck-2, an SH2-SH3-containing adaptor protein that interacts with components of growth factor and small GTPase signaling pathways. The kinase activity of ILK is regulated by both cell adhesion and growth factors in a phosphoinositide 3-kinase (PI3K)-dependent manner. ILK phosphorylates downstream targets such as protein kinase B (PKB, also known as Akt) and glycogen synthase kinase 3 (GSK-3) and regulates their activities. Overexpression of ILK in epithelial cells leads to striking morphological changes mimicking epithelial-mesenchymal transition, including upregulation of integrin-mediated fibronectin matrix assembly and downregulation of cell-cell adhesions. Furthermore, ILK regulates nuclear translocation of (beta)-catenin and gene expression, and promotes cell cycle progression and tumor formation. Recent genetic studies in Drosophila melanogaster and Caenorhabditis elegans have shown that lack of expression of ILK or PINCH results in phenotypes resembling those of integrin-null mutants, which demonstrates that ILK and PINCH are indispensable for integrin function during embryonic development.

Adaptor Proteins, Signal Transducing↗

Integrin-linked kinase is localized to cell-matrix focal adhesions but not cell-cell adhesion sites and the focal adhesion localization of integrin-linked kinase is regulated by the PINCH-binding ANK repeats.

Integrin-linked kinase (ILK) is a ubiquitously expressed protein serine/threonine kinase that has been implicated in integrin-, growth factor- and Wnt-signaling pathways. In this study, we show that ILK is a constituent of cell-matrix focal adhesions. ILK was recruited to focal adhesions in all types of cells examined upon adhesion to a variety of extracellular matrix proteins. By contrast, ILK was absent in E-cadherin-mediated cell-cell adherens junctions. In previous studies, we have identified PINCH, a protein consisting of five LIM domains, as an ILK binding protein. We demonstrate in this study that the ILK-PINCH interaction requires the N-terminal-most ANK repeat (ANK1) of ILK and one (the C-terminal) of the two zinc-binding modules within the LIM1 domain of PINCH. The ILK ANK repeats domain, which is capable of interacting with PINCH in vitro, could also form a complex with PINCH in vivo. However, the efficiency of the complex formation or the stability of the complex was markedly reduced in the absence of the C-terminal domain of ILK. The PINCH binding defective ANK1 deletion ILK mutant, unlike the wild-type ILK, was unable to localize and cluster in focal adhesions, suggesting that the interaction with PINCH is necessary for focal adhesion localization and clustering of ILK. The N-terminal ANK repeats domain, however, is not sufficient for mediating focal adhesion localization of ILK, as an ILK mutant containing the ANK repeats domain but lacking the C-terminal integrin binding site failed to localize in focal adhesions. These results suggest that focal adhesions are a major subcellular compartment where ILK functions in intracellular signal transduction, and provide important evidence for a critical role of PINCH and integrins in regulating ILK cellular function.

3T3 Cells↗

Water pollution and human health in China.

China's extraordinary economic growth, industrialization, and urbanization, coupled with inadequate investment in basic water supply and treatment infrastructure, have resulted in widespread water pollution. In China today approximately 700 million people--over half the population--consume drinking water contaminated with levels of animal and human excreta that exceed maximum permissible levels by as much as 86% in rural areas and 28% in urban areas. By the year 2000, the volume of wastewater produced could double from 1990 levels to almost 78 billion tons. These are alarming trends with potentially serious consequences for human health. This paper reviews and analyzes recent Chinese reports on public health and water resources to shed light on what recent trends imply for China's environmental risk transition. This paper has two major conclusions. First, the critical deficits in basic water supply and sewage treatment infrastructure have increased the risk of exposure to infectious and parasitic disease and to a growing volume of industrial chemicals, heavy metals, and algal toxins. Second, the lack of coordination between environmental and public health objectives, a complex and fragmented system to manage water resources, and the general treatment of water as a common property resource mean that the water quality and quantity problems observed as well as the health threats identified are likely to become more acute.

Agriculture↗

Phosphorylation of Drosophila heat shock transcription factor.

The role that phosphorylation plays in regulating heat shock factor (HSF) function and activity has been the subject of several studies. Here, we demonstrate that Drosophila melanogaster HSF (DmHSF) is a phosphoprotein that is multiply phosphorylated at some sites and is dephosphorylated at others upon heat shock. However, the steady-state level of phosphorylation of Drosophila HSF remains unchanged after heat shock. Phosphoamino-acid analysis reveals that predominantly serine residues are phosphorylated for both the non-shocked and heat shocked molecules. Gel mobility shift assays using extracts from SL2 cells treated with a variety of phosphatase and kinase inhibitors show little or no effect on the heat shock induced DNA binding activity of HSF or on its recovery. We conclude that phosphorylation plays no significant role in regulating the heat induced DNA binding activity of Drosophila HSF.

Animals↗

A mechanism for selective induction of 2'-5' oligoadenylate synthetase, anti-viral state, but not MHC class I genes by interferon-beta in neurons.

Interferon-inducible expression of major histocompatibility class I genes has previously been found to be quantitatively and functionally deficient in neurons compared to other somatic cells or other neural cell types including astrocytes. This deficiency is a key component of neuronal immunoprivilege during viral infections of the CNS. To the contrary, in the present study, induction of functional antiviral state by IFN-beta in neurons compared to astrocytes was found to be highly efficient with respect to both viral replication and protection from cytopathic effects. A candidate antiviral state gene found to be efficiently induced in neurons by IFN-beta was the 2'-5'-oligoadenylate synthetase (OAS) gene. Unlike MHC class I genes, induction of OAS was comparable in neurons and astrocytes indicating differential expression in these neural cell types. Analysis of OAS gene promoter activity indicated that induction of the OAS gene by IFN-beta was dependent on a region containing the interferon stimulated responsive element (ISRE). In contrast, a construct containing the MHC class I-ISRE responsible for induction by IFN-beta in astrocytes was not responsive to IFN-beta in neurons. Therefore, transcription factor binding to the OAS- and MHC-ISREs was analyzed. While the OAS and MHC Class I site bound equal amounts of the transcriptional repressor IRF-2, the OAS-ISRE preferentially interacted with the transcriptional activator ISGF3 in response to IFN-beta. Further, unlike neurons, upregulation of MHC class I genes in astrocytes was related to binding of IRF-1 instead of IRF-2 to the MHC-ISRE. It is proposed that selective activation of anti-viral state genes compared to MHC class I genes by IFN-beta in neurons is mediated by preferential induction and binding of ISGF3 to anti-viral state gene ISREs but not the MHC-ISRE.

2',5'-Oligoadenylate Synthetase↗

Integrin-linked kinase and associated proteins (review).

Integrin-linked kinase (ILK) is a recently identified cytoplasmic protein serine/threonine kinase implicated in integrin-, growth factor- and Wnt-signaling pathways. It contains several structurally conserved motifs including ankyrin repeats, pleckstrin-homology (PH) domain and protein kinase catalytic domain that are critical for signal transduction. Recent studies have documented that ILK plays important roles in bi-directional ( and ) transmembrane signaling pathways via integrins and other proteins, leading to regulation of cell adhesion, growth, survival, extracellular matrix deposition and potentially differentiation. Furthermore, ILK is implicated in tumorigenesis and ILK appears to be a useful diagnostic marker of certain human tumors. The identification of novel ILK-associated proteins will provide a better understanding of how ILK functions in intracellular signal transduction cascades and tumorigenesis.

Adaptor Proteins, Signal Transducing↗

A quantitative study of atropine-resistant contractile responses in human detrusor smooth muscle, from stable, unstable and obstructed bladders.

PURPOSE: The objective of the study was to quantify in vitro the magnitude of atropine-resistant contractions using human detrusor samples and to determine the cellular processes underlying these contractions. MATERIALS AND METHODS: Isometric contractile responses were measured in isolated strips of human detrusor muscle obtained from patients with i) stable, ii) unstable or iii) obstructed bladders. Preparations were electrically stimulated or exposed to carbachol and ATP in the superfusate. RESULTS: Force-frequency curves were shifted to the right in samples from unstable and obstructed bladders. These same tissue groups also showed significant atropine-resistant contractions which were abolished by the neurotoxin TTX, or the non-hydrolysable ATP analog, alpha,beta-methylene ATP, suggesting that these contractions were mediated by neurally released ATP. Sub-division of the patient group with unstable bladders demonstrated that those with neuropathic instability did not show atropine-resistance, whereas those with idiopathic instability or secondary instability after obstruction did show atropine-resistant contractions. The potency of carbachol in generating a contracture was significantly greater than ATP (mean EC50 0.65 microM and 151 microM respectively) however, for each agonist there was no difference in potency between the three patient groups. Direct muscle excitability was similar in all three patient groups. CONCLUSIONS: It is concluded that purinergic, atropine-resistant contractions are present in some types of dysfunctional bladder, and these are not caused by a differential sensitivity of the muscle to ATP and cholinergic agonists.

Adenosine Triphosphate↗

A comparison of the mode of action of ATP and carbachol on isolated human detrusor smooth muscle.

PURPOSE: The objectives of the study were: i) to examine the ability of carbachol and ATP to raise intracellular [Ca2+] in isolated detrusor myocytes; ii) to determine the origin of the intracellular Ca2+ and iii) to address the question of whether the appearance of purinergic contractions in detrusor from unstable and obstructed human bladders is reflected in the sensitivity of the cell to the two agonists. MATERIALS AND METHODS: Intracellular Ca2+ transients generated by extracellular ATP and carbachol were recorded from isolated human detrusor myocytes. Cells were dissociated by collagenase disruption of the biopsy. Intracellular Ca2+ was measured by epifluorescence microscopy using Fura-2 and electrophysiological recordings were made with patch electrodes. RESULTS: In cells from stable bladder biopsies the half-maximal concentrations (EC50) for ATP and carbachol to generate Ca2+ transients were 0.10 and 0.25 microM respectively. With cells from unstable bladders the EC50 values for both agonists and the magnitude of the Ca2+ transients were not significantly different from those obtained in cells from normal bladders. The transient in ATP was preceded by a transient depolarisation generated by a large inward current. The carbachol-Ca2+ transient was independent of changes to membrane potential, except in a subset of cells where complex membrane potential changes followed the rise of intracellular Ca2+. The ATP-Ca2+ transient was partially abolished by nicardipine and completely abolished by zero-Ca solutions, the carbachol-Ca2+ transient was unaffected by nicardipine and less completely attenuated by zero-Ca solutions. Prior exposure to caffeine suggested that the carbachol-Ca2+ transient, but not the ATP-Ca2+ transient, originated from intracellular stores. CONCLUSIONS: It is concluded that both agonists are equipotent in increasing intracellular Ca2+, but by different routes. The generation of purinergic contractions in detrusor from unstable bladder is not due to altered sensitivities of the detrusor myocyte to ATP or cholinergic agonists.

Adenosine Triphosphate↗

[Epidemiological analysis of the fires happened in China from 1950 to 1994].

OBJECTIVE: Approaching the harmful factors and the preventive steps of fires for controlling and preventing fires from harming people. METHOD: Descriptive analysis was used to review 2,905,504 fires-cases in China from 1950 to 1994. RESULTS: On average, there were 3,432 people died and 6,726 injured in 64,567 fires per year. From the middle of 70's, the means of injured and death rates decreased slightly, but have gone up a little after 80's. The economical loss has risen greatly year after year, reaching the maximum of 1.3 billion Yuan (RMB) in 1994. The loss of a fire case in 1994 was more than twice than that in 1990. 89.4% fires were caused by man's faults. The fire cases in Sichuan, Yunnan, Jiangshu, Zhejiang and Guangdong Provinces were more serious than the average, of which Guangdong was the worst. Data from 17 departments showed that, the fire frequency in residential quarters of cities and countryside were highest (24%), and the number of injury and death accounted for 28.4%. The fire happens frequently in winter, and least in summer. CONCLUSIONS: The problem caused by accounted fire has not been controlled effectively.

Burns↗

[Expression of glycoprotein hepatitis C virus in mammalian cell and application of purified protein for detection of antibody against E2 in hepatitis C patients].

OBJECTIVE: E2 glycoprotein of hepatitis C virus was expressed in mammalian cell and purified for detection of antibody against E2 in hepatitis C patients. METHODS: E2/NS1 gene derived from HCV was inserted into expression vector containing six His tag. The recombinant plasmid was transfected into mammalian cells to express E2 glycoprotein expression. E2 glycoprotein was purified by affinity chromophotography. The purified protein was used to establish EIA method for detection of antibodies against E2 in hepatitis C patients. RESULT: Expressed E2 glycoprotein was 7.0 x 10(4). Purification of the purified E2 protein was 90.2%. Twenty-nine patients were anti-E2 antibody positive(82.9%). CONCLUSION: It was the first time to establish EIA method for detection of anti-E2 antibody by purified E2 glycoprotein in China. E2 glycoprotein expressed in mammalian cells had good immunogenity and could increase the sensibility of anti-HCV detection. It suggests that E2 glycoprotein may be useful for development of new anti-HCV reagents.

Hepatitis C↗

Antibody response to E2 glycoprotein induced in mice by immunization with plasmid DNA containing sequence derived from a Chinese genotype III/2a isolate of hepatitis C virus.

OBJECTIVE: To induce antibody response against E2 glycoprotein derived from a Chinese genotype III/2a isolate of hepatitis C virus (HCV) in BALB/C mice by plasmid DNA-based immunization. METHODS: Plasmid p3W14 containing E2/NS1 gene derived from a Chinese genotype III/2a isolate of HCV, which was verified to express 70 kDa E2 glycoprotein in NIH3T3 cells, was used for direct intramuscular injection in BALB/C mice. Specific antibody to E2 glycoprotein was detected by recombinant E2 protein. RESULTS: Specific anti-E2 antibody could be detected in mice inoculated with p3W14(5/6). Titer of antibody ranged from 1:15 to 1:120. CONCLUSION: Successfully inducing anti-E2 antibody in mice by plasmid DNA-based immunization containing E2/NS1 gene from a Chinese genotype III/2a isolate of HCV is the first time in China.

12E7 Antigen↗