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Biomedical subjects

C M Wilson

Publications and source records attributed to C M Wilson.

At least 73 records · Page 4Linked to original sources

Regulation of the GLUT1 glucose transporter in cultured myocytes: total number and subcellular distribution as determined by photoaffinity labelling.

We have used the impermeant photoaffinity label 2-N-4-(1-azi-2,2,2-trifluoroethyl)benzoyl-[2-3H] 1,3-bis-(D-mannos-4-yloxy)-2-propylamine (ATB-[2-3H]BMPA) to identify and quantify the glucose transporters on the surface of BC3H-1 cells, a continuously cultured skeletal-muscle cell line lacking the MyoD transcription factor required for cell fusion. ATB-[2-3H]BMPA was used in combination with immunoprecipitation of the GLUT1 glucose transporter, the only isoform expressed in these cells. The total cellular GLUT1 content was also determined by photolabelling and immunoprecipitation after cell permeabilization with digitonin (0.025%). In glucose-starved cells, 85% of the glucose transporters were present at the cell surface in the basal state, with little change in response to insulin (200 nM), correlating with lack of additional 2-deoxyglucose uptake in response to insulin. Feeding the cells with glucose (25 mM) for 24 h resulted in an 80% decrease in the total GLUT1 content relative to starved cells, of which only 25% were present on the cell surface. This was associated with an 85% decrease in 2-deoxyglucose uptake. In addition, acute stimulation of the fed cells with insulin or phorbol 12-myristate 13-acetate (PMA) led to an increase in GLUT1 at the cell surface, and, in correspondence, an increase in 2-deoxyglucose uptake by approx. 2- and 4-fold respectively. We conclude that exofacial photoaffinity labelling of glucose transporters with ATB-[2-3H]BMPA in the presence and absence of digitonin, followed by specific immunoprecipitation, provides an accurate measure of total and cell-surface glucose transporters in differentiated BC3H-1 muscle cells. This technique demonstrates that glucose pre-feeding (1) decreases the total number of GLUT1 and (2) redistributes the majority of the remaining transporters to an intracellular site, where they can now be translocated to the cell surface in response to insulin and PMA.

Affinity Labels↗

Insulin stimulation of glucose transport activity in rat skeletal muscle: increase in cell surface GLUT4 as assessed by photolabelling.

We have used a photoaffinity label to quantify cell surface GLUT4 glucose transporters in isolated rat soleus muscles. In this system, insulin stimulated an 8.6-fold increase in 3-O-methylglucose glucose transport, while photolabelled GLUT4 increased 8-fold. These results demonstrate that the insulin-stimulated increase in glucose transport activity in skeletal muscle can be accounted for by an increase in surface-accessible GLUT4 content.

Affinity Labels↗

Haemophilus paraphrophilus vertebral osteomyelitis.

OBJECTIVE: To report the first case of Haemophilus paraphrophilus vertebral osteomyelitis--the second reported case of osteomyelitis of any site caused by this organism. CLINICAL FEATURES: A 41-year-old male bus driver with no significant previous medical history presented with severe abdominal and back pain, which was eventually localised to the eleventh thoracic vertebra (T11). H. paraphrophilus was isolated from pus aspirated from the vertebral body. INTERVENTIONS AND OUTCOME: The patient was treated with penicillin given intravenously for four weeks, then with antibiotics given orally for a further three weeks, with good clinical response. CONCLUSION: H. paraphrophilus is an infrequent pathogen which may be difficult to identify and test for antibiotic susceptibility, but can cause serious infection, including primary haematogenous osteomyelitis.

Administration, Oral↗

Glucose transporter localization in rat skeletal muscle. Autoradiographic study using ATB-[2-3H]BMPA photolabel.

Surface glucose transporters of intact muscles were photolabeled with the membrane impermeant ATB-[2-3H]BMPA reagent and localized by autoradiography. We found sparse labeling of the glucose transporters by ATB-[2-3H]BMPA on the sarcolemmal membrane around the muscle fiber. The majority of label was on the interior of the muscle fiber, at a discrete site which matched the distribution of AI junctions and which was presumed to be on the exterior surface of T-tubules. The amount of photolabel on the T-tubule was increased in response to insulin and was blocked by cytochalasin B. These results support the concept that glucose transport may occur predominantly across the T-tubule membrane under basal and insulin-stimulated conditions.

Affinity Labels↗

A and B forms of the androgen receptor are present in human genital skin fibroblasts.

Two forms of the androgen receptor (AR) protein (apparent molecular masses, approximately 110 kDa and approximately 87 kDa) are present in human genital skin fibroblasts. The 87-kDa isoform (AR-A) contains an intact C terminus but lacks the normal N terminus found in the 110-kDa isoform (AR-B). AR-A is the same size as the mutant form of AR produced in fibroblasts from an androgen-resistant individual (R776) by initiation of AR synthesis at the internal Met-188 residue of AR-B. The ratio of AR-B to AR-A in fibroblasts derived from normal individuals is approximately 10:1. The AR isoforms detected in these experiments resemble the A and B forms of the human progesterone receptor, which also are encoded by a single gene and differ by the absence or presence of an N-terminal segment. The A and B forms of the human progesterone receptor differ in their ability to activate target genes and are regulated differently in various types of cells. The identification of similar forms of human AR raises the possibility that AR-A and AR-B also subserve different functions.

Blotting, Western↗

Asystolic arrest as a presentation of sarcoidosis.

A 41-year-old man who presented with a history of sudden loss of consciousness suffered two further episodes during which asystole was documented. Subsequent investigations included exercise stress testing, thallium scintigraphy, electrophysiological studies, CT-scan of chest, Kveim test and a gallium-67 scan, which led to a presumptive diagnosis of averted sudden death as a first presentation of sarcoidosis with primary cardiac involvement.

Adult↗

Efficacy of 100 mg of double-bolus alteplase in achieving complete perfusion in the treatment of acute myocardial infarction.

OBJECTIVES: The purpose of this study was to assess the efficacy of 150 mg of aspirin plus 100 mg of alteplase, administered as two intravenous bolus injections of 50 mg each given 30 min apart, and followed by intravenous heparin, on infarct-related coronary artery patency (Thrombolysis in Myocardial Infarction [TIMI] flow grade 3). BACKGROUND: Previous workers have shown in animals that reducing the duration of an infusion of recombinant tissue-type plasminogen activator increases the initial rate of thrombolysis, resulting in high early infarct-related coronary artery patency rates. The logical progression of this idea is bolus administration. METHODS: Consecutive patients presenting up to 6 h from the onset of symptoms were recruited for the study. Angiography was performed at 60 and 90 min after the first bolus and between 19 to 48 h after study entry. Patients were followed up for 1 month. RESULTS: At 60 min, angiography revealed infarct-related coronary artery patency of TIMI flow grade 3 in 55 (86%) of 64 patients (95% confidence interval [CI] 75% to 93%) and TIMI flow grade 2 or 3 in 58 (91%) of 64 patients (95% CI 81% to 97%). At 90 min, infarct-related artery patency of TIMI flow grade 3 was achieved in 74 (88%) of 84 patients (95% CI 79% to 94%) and TIMI flow grade 2 or 3 in 78 (93%) of 84 patients (95% CI 85% to 97%). Two patients (2.4%) had early angiographic reocclusion whereas 10 (11.9%) had late reinfarction. Bleeding episodes were mostly minor, and there was no cerebrovascular bleeding. Five patients (6.0%) died within 1 month of the acute myocardial infarction. CONCLUSIONS: In 84 patients with acute myocardial infarction, administration of 100 mg of double-bolus (2 x 50 mg) alteplase, aspirin and heparin is associated with remarkably high early infarct-related coronary artery patency rates (TIMI flow grade 3) of 86% and 88%, respectively, at 60 and 90 min.

Adult↗

Identification of Hox genes in newborn lung and effects of gestational age and retinoic acid on their expression.

Hox genes are sequence-specific DNA transcription factors, which are important in embryonic development and are expressed in a number of fetal tissues, including the lung. Additionally, retinoic acid (RA) has been shown to modulate Hox gene expression in a number of cell types. The specific aims of this study were to 1) identify those Hox genes expressed in newborn mouse lung using reverse transcription-polymerase chain reaction (RT-PCR), 2) study the ontogeny of Hox gene expression in fetal mouse and rat lung by Northern analysis using cDNAs for mouse Hox genes, and 3) study the effects of RA on whole lung Hox mRNA levels in cultured fetal rat lung explants. Our data show that 16 different homeobox genes are expressed in newborn mouse lung. This includes seven Hox genes not previously identified in lung, as well as the divergent homeobox gene Hex. Steady-state mRNA levels of Hox A5 (Hox 1.3), B5 (Hox 2.1), B6 (Hox 2.2), and B8 (Hox 2.4) decrease with advancing gestational age in mouse lungs (E14 to adult). Similarly, Hox A5, B5, and B6 follow the same decreasing pattern of expression with advancing gestational age in rat lungs (E15 to adult). RA treatment of E17 rat lung explants in culture resulted in a significant dose- and time-dependent increase in Hox A5, B5, and B6 mRNA levels. The highest mRNA levels were seen in explants treated with 1 x 10(-5) M RA for 4-16 h. We conclude that there are many homeobox genes expressed in developing rodent lung and that their mRNA levels are affected by both gestational age and RA.

Amino Acid Sequence↗

Butyrate modulates surfactant protein mRNA in fetal rat lung by altering mRNA transcription and stability.

We examined the effects of Na butyrate, a known regulator of gene expression, on surfactant protein mRNA concentration, transcription, and degradation. Exposure of explants of 18-day fetal rat lung to Na butyrate resulted in a decrease in surfactant protein A (SP-A) mRNA concentration to 7% of control after 6 h and to 18% of control after 24 h. The reduction in SP-A mRNA concentration was associated with decreased mRNA transcription and stability at both these times. The effects on SP-B mRNA were similar to those on SP-A, but quantitatively less. In contrast, butyrate had a biphasic effect on SP-C mRNA concentration. There was an initial decrease to 30% of control at 6 h, followed by an increase to control levels by 24 h. Transcription of SP-C was increased at both these times, whereas degradation was enhanced at 6 h, but not at 24 h. The level of surfactant protein mRNA after butyrate treatment therefore depends on the balance between induced changes in transcription and degradation. Butyrate had no effect on gamma-actin mRNA concentration in this system. Circulating levels of butyric acid analogues are elevated in the mothers and fetuses in diabetic pregnancies. Some of these fetuses have delayed lung maturation and decreased amniotic fluid SP-A levels. We speculate that butyric acid analogues partially mediate the changes in pulmonary maturation induced by maternal diabetes.

Animals↗

Amino acid substitutions in the hormone-binding domain of the human androgen receptor alter the stability of the hormone receptor complex.

We have investigated the basis of androgen resistance in seven unrelated individuals with complete testicular feminization or Reifenstein syndrome caused by single amino acid substitutions in the hormone-binding domain of the androgen receptor. Monolayer-binding assays of cultured genital skin fibroblasts demonstrated absent ligand binding, qualitative abnormalities of androgen binding, or a decreased amount of qualitatively normal receptor. The consequences of these mutations were examined by introducing the mutations by site-directed mutagenesis into the androgen receptor cDNA sequence and expressing the mutant cDNAs in mammalian cells. The effects of the amino acid substitutions on the binding of different androgens and on the capacity of the ligand-bound receptors to activate a reporter gene were investigated. Substantial differences were found in the responses of the mutant androgen receptors to incubation with testosterone, 5 alpha-dihydrotestosterone, and mibolerone. In several instances, increased doses of hormone or increased frequency of hormone addition to the incubation medium resulted in normal or near normal activation of a reporter gene by cells expressing the mutant androgen receptors. These studies suggest that the stability of the hormone receptor complex is a major determinant of receptor function in vivo.

Androgen-Insensitivity Syndrome↗

Respiratory distress caused by parasites.

Parasitic etiologies of pulmonary symptoms generally represent some degree of immunocompromise or occur as uncommon presentations of common parasitic infections. In regions where HIV infection is more prominent, PCP probably will be the most common parasitic respiratory disease seen. In geographic regions where helminthic infections are more common, patients with respiratory symptoms and eosinophilia probably will be seen more often and require a search for a specific etiology. In more rare circumstances, travel to an endemic area may suggest a more exotic parasitic etiology for respiratory symptoms.

Animals↗

cDNA cloning, characterization, and tissue-specific expression of human xanthine dehydrogenase/xanthine oxidase.

We isolated cDNAs encoding xanthine dehydrogenase (XD; xanthine:NAD+ oxidoreductase, EC 1.1.1.204) from a human liver cDNA library. The complete nucleotide sequence of human XD was determined; the deduced amino acid sequence encoded a protein of 1336 amino acid residues of M(r) 147,782. Human XD possessed many of the signature sequences typical of XDs from flies and rodents, including an unusual cysteine distribution, a potential 2Fe/2S binding site, and a putative molybdopterin cofactor binding domain. Analysis of potential NAD binding sites suggested a simple hypothesis for the conversion of human XD into the oxygen metabolite forming xanthine oxidase (XO; xanthine:oxygen oxidoreductase, EC 1.1.3.22). Using a human XD complementary RNA hybridization probe, we found a 5100-base RNA in human liver by RNA blot-hybridization analysis. This RNA exhibited tissue-specific distribution that may be pertinent to XD- and XO-mediated oxygen radical injury in ischemia/reperfusion and inflammation. A second 4500-base RNA was detected in some tissues and may arise through differential transcription termination.

Amino Acid Sequence↗

Characterization of the pfmdr2 gene for Plasmodium falciparum.

We report the characterization of the pfmdr2 gene which is a gene related to the P-glycoprotein family but with a somewhat different structure than the mdr genes. Based on DNA sequence analysis of genomic clones, we have discovered that the pfmdr2 gene has 10 predicted transmembrane domains and a single ATP-binding site. In a homology search using GenBank sequences, we discovered that the pfmdr2 gene has a significant homology with the hmt1 gene in yeast. The yeast hmt1 gene is involved in cadmium resistance and is hypothesized to transport cadmium containing complexes from the cell. We have further characterized the pfmdr2 gene expression by northern analysis and discovered that it is expressed in a stage-specific manner, only at the trophozoite stage and not in ring stages. We have prepared a rabbit antibody to a recombinant fusion protein expressing a portion of the pfmdr2 coding region. In IFA analysis, this antibody stains trophozoites and not ring stages. Western analysis reveals a protein of approximately 110 kDa which is consistent with the size of the predicted open reading frame based on DNA sequence analysis. Based on this analysis and previous work, there is no evidence for a change in pfmdr2 expression in drug-resistant versus drug-sensitive parasites.

ATP-Binding Cassette Transporters↗

Stage-specific transcripts of the Plasmodium falciparum pfmdr 1 gene.

Genes have been identified in Plasmodium falciparum which belong to the ATP-binding cassette superfamily of transport systems based upon sequence and structural homology. One of these genes, the pfmdr 1 gene, is homologous to the mammalian mdr 1 gene, which encodes the P-glycoprotein product. Strong phenotypic data suggests the involvement of a P-glycoprotein-like molecule in the mediation of drug resistance in P. falciparum. The goal of this work was to characterize the expression of the pfmdr 1 messenger RNA: both the stage specific expression and the level of expression in mefloquine sensitive or resistant parasites. We identified two messenger RNA homologous to this gene, one of 8.5 kb expressed in ring and trophozoite stages, and a second messenger RNA of 7.5 kb expressed only in trophozoites. Previously we had reported an increased expression of messenger RNA for pfmdr 1 in a mefloquine-resistant clone. Here we extend this and demonstrate that overexpression of the pfmdr 1 gene is consistent with the mefloquine resistance phenotype in a panel of recent isolates from Thailand.

Animals↗