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Biomedical subjects

S Wong

Publications and source records attributed to S Wong.

At least 145 records · Page 8Linked to original sources

The human aromatic L-amino acid decarboxylase gene can be alternatively spliced to generate unique protein isoforms.

Aromatic L-amino acid decarboxylase (AADC) is expressed in a wide variety of tissues, including those where it is known to convert L-DOPA and 5-hydroxytryptophan to dopamine and serotonin, respectively. AADC has been cloned from many species and shown to undergo alternative splicing within its 5' untranslated region. Here, we report that the human AADC gene can undergo additional alternative splicing of exon 3, generating two different protein isoforms (termed AADC480 and AADC442). Both transcripts are widely expressed, with AADC442 predominating in many neuronal and nonneuronal tissues. When homogenates were prepared from COS-7 cells transfected with expression vectors containing either cDNA, AADC480 catalyzed the decarboxylation of both L-DOPA and 5-hydroxytryptophan. AADC442 was inactive in either assay. These findings suggested that AADC442 may have a different function in non-monoamine-expressing tissues. Taken together, these results suggest that the human AADC gene undergoes complex processing, leading to the formation of both tissue-specific transcripts as well as unique protein isoforms.

5-Hydroxytryptophan↗

Mechanical function of dystrophin in muscle cells.

We have directly measured the contribution of dystrophin to the cortical stiffness of living muscle cells and have demonstrated that lack of dystrophin causes a substantial reduction in stiffness. The inferred molecular structure of dystrophin, its preferential localization underlying the cell surface, and the apparent fragility of muscle cells which lack this protein suggest that dystrophin stabilizes the sarcolemma and protects the myofiber from disruption during contraction. Lacking dystrophin, the muscle cells of persons with Duchenne muscular dystrophy (DMD) are abnormally vulnerable. These facts suggest that muscle cells with dystrophin should be stiffer than similar cells which lack this protein. We have tested this hypothesis by measuring the local stiffness of the membrane skeleton of myotubes cultured from mdx mice and normal controls. Like humans with DMD mdx mice lack dystrophin due to an x-linked mutation and provide a good model for the human disease. Deformability was measured as the resistance to indentation of a small area of the cell surface (to a depth of 1 micron) by a glass probe 1 micron in radius. The stiffness of the membrane skeleton was evaluated as the increment of force (mdyne) per micron of indentation. Normal myotubes with an average stiffness value of 1.23 +/- 0.04 (SE) mdyne/micron were about fourfold stiffer than myotubes cultured from mdx mice (0.34 +/- 0.014 mdyne/micron). We verified by immunofluorescence that both normal and mdx myotubes, which were at a similar developmental stage, expressed sarcomeric myosin, and that dystrophin was detected, diffusely distributed, only in normal, not in mdx myotubes. These results confirm that dystrophin and its associated proteins can reinforce the myotube membrane skeleton by increasing its stiffness and that dystrophin function and, therefore, the efficiency of therapeutic restoration of dystrophin can be assayed through its mechanical effects on muscle cells.

Animals↗

Nucleotide sequence of the gyrA gene and characterization of ciprofloxacin-resistant mutants of Helicobacter pylori.

PCR was used to amplify a 238-bp region from Helicobacter pylori which corresponded to the quinolone resistance-determining region in Escherichia coli. The gyrA gene of H. pylori was cloned and sequenced. An open reading frame of 2,478 nucleotides coded for a polypeptide of 826 amino acids with a calculated molecular mass of 92,508 Da. The amino acid sequence showed an overall 52% identity with other bacterial gyrA genes but was most closely related to the gyrA subunit of Campylobacter jejuni (76.5% identity). Sequencing of the amplification product from ciprofloxacin-resistant mutants of H. pylori revealed four classes of mutations with substitutions at amino acid 87 (Asn-->Lys), amino acid 88 (Ala-->Val), and amino acid 91 (Asp-->Gly, -->Asn, or -->Tyr) and a double substitution at amino acids 91 and 97 (Ala-->Val). Ciprofloxacin-susceptible strains of H. pylori could be transformed to ciprofloxacin resistance by using the amplified fragment from resistant strains as donor DNA. Of the 11 ciprofloxacin-resistant mutants examined, only one did not have an alteration within the quinolone resistance-determining region, suggesting that, in H. pylori, resistance to quinolones is primarily a result of alterations in gyrA.

Amino Acid Sequence↗

Pharmacology of calcitonin gene related peptide release from sensory terminals in the rat trachea.

In an intraluminally perfused rat trachea model, we have observed the following. (i) Capsaicin evoked a concentration-dependent calcitonin gene related peptide (CGRP) release from the trachea. Its effects were mimicked by the capsaicin analogue resiniferatoxin and blocked by capsazepine, a competitive antagonist of capsaicin. Capsazepine did not attenuate the peptide release evoked by bradykinin, nicotine, or prostaglandin E2. (ii) Elevation of extracellular H+ resulted in a proton concentration dependent increase in CGRP release, but this was not inhibited by capsazepine. (iii) Indomethacin treatment did not alter capsaicin- or proton-induced CGRP release; in contrast bradykinin- and nicotine-induced release were significantly reduced. (iv) Chemical destruction of sympathetic nerve fibers by systemic pretreatment with 6-hydroxydopamine reduced CGRP release evoked by nicotine, but the release produced by capsaicin or bradykinin remained unchanged. These results suggest that the effect of capsaicin on tracheal CGRP release occurs via activation of specific capsaicin receptors on primary sensory C-fibers, while protons act at a different site from that acted upon by capsaicin in the trachea. Cyclooxygenase products are likely involved in the effects of bradykinin and nicotine, but not those of capsaicin and protons. Sympathetic activation may mediate nicotine-, but not bradykinin- or capsaicin-induced CGRP release. These observations indicate that factors present in the extravascular--extracellular melieu of the trachea can evoke the release of CGRP from sensory C-fibers and that there are multiple mechanisms whereby these agents may interact with the afferent terminals.

Animals↗

Estrogen stimulates oxytocin gene expression in human chorio-decidua.

We have recently shown that oxytocin (OT) is synthesized within human amnion, chorion, and decidua during late gestation. The levels of OT messenger ribonucleic acid (mRNA) increased around the time of parturition, suggesting that locally produced OT may play a role in this poorly understood process. In this report, we present results from investigations into the effects of estrogen and progesterone on the synthesis of OT by human chorio-decidua. Using an in vitro incubation system, estradiol at physiological concentrations more than doubled the concentration of OT mRNA. This was reflected by an increase in the amount of OT peptide secreted into the medium. The increase in OT mRNA was antagonized by tamoxifen, suggesting that the effects were estrogen receptor mediated. Progesterone had no effect on OT mRNA synthesis. Using ribonuclease protection assays, mRNAs for estrogen receptor (ER) and progesterone receptor (PR) were detected in all tissues examined. The highest levels were found in decidua, with lower amounts in chorion and very small amounts in amnion and placenta. This is the same relative tissue distribution that we previously demonstrated for OT mRNA. A single transcript was present for ER, and two transcripts were protected for PR. The concentrations of ER mRNA in chorio-decidua were 3-fold higher in tissues obtained after spontaneous labor onset than in tissues obtained from cesarean section at a similar gestational age but before labor onset. Levels of PR did not change significantly. We conclude that synthesis of OT in human chorio-decidua may be regulated in part by estrogen, and that regulation of ER levels may be an important factor modulating this effect. These data support the hypothesis of a paracrine network within human fetal membranes and decidua that may participate in regulating the timing of human birth.

Chorion↗

Metabolism of oxytocin in human decidua, chorion, and placenta.

Oxytocin (OT) synthesized within human decidua may influence the timing of human parturition. Metabolism of OT within intrauterine tissues may regulate local concentrations. We hypothesized that a decrease in OT metabolism may contribute to an increase in local tissue concentrations around the time of parturition. Thus, we compared OT degradation in human decidua with that in chorion and placenta obtained before or after labor onset at term. We measured kinetic parameters for OT metabolism and determined pathways of degradation. Both cytosol and microsomal fractions contained aminopeptidase and postproline endopeptidase activities. Metabolism in the microsomal fractions was predominantly by an aminopeptidase enzyme that cleaves the ring structure of OT and removes amino acid residues from the N-terminal end. Metabolism in the cytosol fractions was predominantly via postproline endopeptidase activity, which cleaves the C-terminal Leu8-Gly9NH2. The resultant OT-(1-7) also is a substrate for aminopeptidase activity. The apparent maximum velocities of OT metabolism in the cytosol subcellular fractions of decidua (0.87 +/- 0.30 nmol/mg protein.min) and chorion (1.04 +/- 0.47) were significantly (P < or = 0.05) higher than those in corresponding microsomal fractions (0.17 +/- 0.05 and 0.29 +/- 0.10, respectively). Placental cytosols (1.08 +/- 0.34) were similar to decidua and chorion, but the microsomal fractions had significantly greater activity (0.82 +/- 0.22). The Km values for all tissues were in the range of 8-20 mumol/L. There were no significant changes in the kinetic parameters for OT metabolism around the time of labor onset. We conclude that human decidua and chorion as well as placenta actively metabolize OT, but changes in metabolism do not occur around parturition. If increasing decidual concentrations of OT play a role in the timing of human labor onset, mechanisms that increase production or secretion are of primary importance.

Aminopeptidases↗

Expression of the co-stimulator molecule B7-1 in pancreatic beta-cells accelerates diabetes in the NOD mouse.

B7-1 is a co-stimulatory molecule that signals T-cells that recognize antigen to proliferate and differentiate into effector T-cells. The same cell must present antigen and express co-stimulatory molecules, such as B7-1, to activate naive T-cells. Thus, tissues that do not express co-stimulatory molecules would not be expected to induce immune responses, while expression of a co-stimulator on tissue cells may convert them into effective antigen-presenting cells and induce autoimmunity. To test this, transgenic mice have been generated that express B7-1 on the beta-cells of the pancreatic islets of Langerhans. On a B6 genetic background, B7-1 expression on beta-cells does not predispose to diabetes. B6 mice are resistant to diabetes. However, when B7-1 is expressed on the beta-cells of B6 mice backcrossed once to the genetically susceptible NOD strain, the onset of diabetes is accelerated and the autoimmune attack intensified. This illustrates that B7-1 is a very potent co-stimulatory molecule in vivo and that its presence on the surface of tissue cells can potentiate the autoimmune process.

Aging↗

Group therapy of aboriginal offenders in a Canadian forensic psychiatric facility.

In recent years, the use of group therapy approaches with Aboriginal or Native Canadians/American Indians has become widely accepted. However, many advocates of this approach rarely consider the implications of group therapy for culturally heterogeneous groups, such as when non-Aboriginal peoples are involved or when there are Aboriginal peoples from different cultures and/or with different degrees of orientation to Euro-Canadian culture. This article documents the use of one form of group therapy for Aboriginal offenders in a forensic psychiatric facility, where this degree of cultural heterogeneity exists. The article concludes that, at least within a forensic psychiatric setting, group therapies that mirror the social, cultural, racial, and class structures of Euro-Canadian society are problematic in the treatment of traditional Aboriginal offenders but much less so for acculturated Aboriginal offenders.

Acculturation↗

The differential effects of three forms of interferon alfa on hepatic regeneration after partial hepatectomy in the rat.

The purpose of this study was to determine whether all commercially available forms of interferon alfa (INF alpha) have the same inhibitory effect on hepatic regeneration and whether this inhibitory effect can be prevented by putrescine, a hepatic growth promotor. Adult male Sprague-Dawley rats (n = 92) received either IFN alpha-2a, 2b, n1, or saline, 0 and 18 hours after partial hepatectomy (PHx) or 16 hours before PHx. A subgroup of 29 rats being treated with IFn alpha-2a or saline also received putrescine (5, 50, or 500 mg/kg) 16 hours before PHx. Hepatic regeneration was documented by determining [3H]-thymidine incorporation into hepatic DNA (DNA synthesis), hepatic putrescine levels, and, in selected cases, ornithine decarboxylase (ODC) activity at 24 hours after PHx. The results of the study showed that hepatic regeneration was unaffected when IFN alpha was administered 0 and 18 hours after PHx. When administered at -16 hours, only IFN alpha-2a significantly inhibited DNA synthesis and was associated with decreased hepatic putrescine levels. Inhibition was dose-dependent in that a 10-fold increase in IFN alpha-2a caused a further decrease in both DNA synthesis and hepatic putrescine levels. At the higher dose, IFN alpha-2b and n1 also inhibited DNA synthesis and lowered hepatic putrescine levels and ODC activity. Exogenous putrescine (5 and 50 mg/kg) restored hepatic regenerative activity to normal but was toxic at high concentrations (500 mg/kg). These data indicate that not all commercially available forms of IFN alpha inhibit hepatic regeneration in the rat to the same extent.

Animals↗

Acadesine reduces the frequency of coronary artery reocclusion following rt-PA induced thrombolysis in the dog.

Acadesine is a ribose-substituted imidazole with antithrombotic properties mediated by adenosine. In view of the beneficial effects of antiplatelet agents on thrombolysis and post-thrombolytic reocclusion, we studied the effects of acadesine on t-PA induced coronary reperfusion and continued artery thrombosis. In 4 groups of dogs we examined the effects of saline and 3 doses of acadesine (0.5, 1.0, 2.0 mg/kg/min, i.v.) on time reperfusion, and incidence and time to reocclusion following infusion of t-PA (10 micrograms/kg/min, i.v.). Acadesine had no effect on time to reperfusion, but significantly (p < 0.05) reduced the incidence of reocclusion and prolonged the time to reocclusion at the highest dose tested. In saline treated animals vessels reoccluded in 6 or 7 animals (86%) at 33 +/- 6 min after reperfusion. With the lowest dose of acadesine (0.5 mg/kg/min) vessels reoccluded in 3 of 3 animals (100%) at 18 +/- 7 min. In animals treated with 1.0 mg/kg/min acadesine, the incidence of reocclusion was reduced, but not significantly (p < 0.1) to 2 of 6 (33%), and time to reocclusion was prolonged to 59 +/- 11 min (p < 0.1). At the highest dose (2.0 mg/kg/min) of acadesine, only 2 of 8 (25%) animals reoccluded (p < 0.05), and time to occlusion was prolonged to 80 +/- 13 min (p < 0.05). Acadesine had no effect on hemodynamics. These results suggest that acadesine might prove beneficial in clinical settings of platelet activation and prothrombotic conditions, such as occur during thrombolysis with t-PA.

Aminoimidazole Carboxamide↗

The disulfide linkages and glycosylation sites of the human natriuretic peptide receptor-C homodimer.

The natriuretic peptide receptor-C (NPR-C) constitutes greater than 95% of the natriuretic peptide binding sites in vivo. This cell surface glycoprotein is a disulfide-linked homodimer with a subunit molecular weight of 68,000. Two sources and types of ANP affinity-purified human NPR-C were used to map disulfide linkages and glycosylation sites of this receptor by mass spectrometry: the extracellular domain obtained by papain cleavage of a receptor-IgG fusion protein expressed in Chinese hamster ovary cells, and a baculovirus/Sf9-expressed cytoplasmic truncation mutant in which 34 of 37 cytoplasmic domain amino acids were deleted. Two intramolecular disulfide bonded loops were found in the 435 amino acid extracellular domain (C63-C91, C168-C216). The juxtamembrane residues C428 and C431 are involved in homodimer formation, confirmed by site-directed mutagenesis of full-length NPR. Three of the four potential Asn-linked glycosylation sites are occupied: N41 (complex), N248 (high mannose), and N349 (complex; partial occupancy). These data describe the intra- and intermolecular linkages in NPR-C, providing a model for the homologous guanylyl cyclase receptors, NPR-A and NPR-B; both of the cyclase receptors likely contain the first amino-terminal 29 amino acid loop, but only NPR-A possesses the second 49 amino acid loop in common with NPR-C.

Amino Acid Sequence↗

Photodynamic therapy mediated induction of early response genes.

Photodynamic therapy (PDT) generates reactive oxygen species which initiate the cytotoxic events of this tumor treatment. We demonstrate that PDT mediated oxidative stress induced a transient increase in the early response genes c-fos, c-jun, c-myc, and egr-1 in murine radiation-induced fibrosarcoma cells. Incubation of exponentially growing cells with porphyrin based photosensitizers in the dark also induced an increase in mRNA levels of early response genes. However, the xanthine photosensitizer, rose bengal, produced increased c-fos mRNA levels only following light treatment. Nuclear runoff experiments confirmed that the induction of c-fos mRNA is controlled in part at the level of transcription. Likewise, a chloramphenicol acetyltransferase reporter construct containing the major c-fos transcriptional response elements was inducible by porphyrin and PDT. Signal transduction pathways associated with PDT mediated c-fos activation were examined by treating cells with protein kinase inhibitors. Staurosporine and 1-(5-isoquinolinesulfonyl)-2-methylpiperazine inhibited PDT mediated c-fos activation while N-(2-guanidinoethyl)-5-isoquinoline-sulfonamide had no effect. In addition, quinacrine, which can inhibit phospholipase activity, blocked PDT induced c-fos mRNA expression. These results suggest that photosensitizer mediated oxidative stress acts through protein kinase-mediated signal transduction pathway(s) to activate early response genes.

Animals↗

Cis,cis-muconate lactonizing enzyme from Trichosporon cutaneum: evidence for a novel class of cycloisomerases in eucaryotes.

The absolute stereochemical courses of cis,cis-muconate lactonizing enzyme (MLE;EC 5.5.1.1) from Trichosporon cutaneum (TcMLE) and chloromuconate cycloisomerase (MLE II; EC 5.5.1.7) from Pseudomonas sp B13 have been determined from 1H NMR measurements. Both cycloisomerases convert cis,cis-muconate to (4S)-muconolactone by a syn lactonization, the absolute stereochemical outcome of which is identical to that observed with MLE from Pseudomonas putida. The regiochemical courses of cyclization of 3-halo-cis,cis-muconates by TcMLE and MLE II have been characterized and shown to differ in a halogen substituent dependent manner, suggesting at least a different active site architecture of the two MLEs. Moreover, the regiochemical preferences of MLE II and TcMLE parallel results previously observed for the nonenzymatic lactonization of the 3-halomuconates at pH 1-6 and in concentrated HCl, respectively, in which alternate mechanisms of cyclization were proposed [Pieken, W. A., & Kozarich, J. W. (1990) J. Org. Chem. 55, 3029-3035]. Complementary DNA clones encoding TcMLE have been isolated from phenol induced T. cutaneum cDNA using the polymerase chain reaction. The deduced amino acid sequence does not exhibit any similarity to that of MLE from P. putida. It does however, exhibit moderate sequence similarity (21% residue identity, 14 gaps) with 3-carboxy-cis,cis-muconate lactonizing enzyme (CMLE; EC 5.5.1.5) from Neurospora crassa, which catalyzes a regiochemically analogous and stereochemically identical lactonization reaction with 3-carboxymuconate. The limited data available suggest that the fungal CMLE and yeast MLE are representative of a unique class of eucaryotic cycloisomerases which have evolved convergently with the bacterial MLEs.

Amino Acid Sequence↗

Visual and circadian responses to light in aged retinally degenerate mice.

The progression of photoreceptor degeneration in retinally degenerate (rd) mice commences early in postnatal development resulting in the complete loss of rods by 60-70 days of age followed by the more protracted loss of cones. We have previously shown that rd mice 80 days of age are capable of phase shifting their circadian locomotor rhythms in response to brief pulses of light and these animals show the same sensitivity as wild-type (+/+) controls. If surviving cones mediate these circadian responses, then one would expect the sensitivity of the circadian system in rd mice to decline with age and parallel the loss of cones. We demonstrate that aging rd mice (80-767 days of age) remain capable of photically regulating circadian locomotor rhythms in a manner indistinguishable from +/+ mice. Circadian responses to light do not parallel cone cell degeneration in rd mice. In contrast to the circadian responses to light, old (> 210 days of age) rd mice show no visually-evoked behavioral or electroretinogram (ERG) responses.

Aging↗

MR imaging assisted temperature calculations during cryosurgery.

MRI has the potential of becoming an important imaging modality for monitoring the extent of the frozen region during cryosurgery. However, while the temperature history inside the frozen region is of utmost importance in determining the likely outcome of a cryosurgical procedure, it cannot be accessed directly through MRI because of the extremely low signal produced by the frozen region. We have developed a new MRI-assisted numerical technique that can calculate and display the temperature distribution in the frozen region on a standard MR image. The technique combines MR imaging data with a finite difference formulation of the energy equation. Here, the technique is described and experimental results that verify the technique are shown.

Algorithms↗

A putative nucleoside triphosphate-binding domain in the nonstructural protein of B19 parvovirus is required for cytotoxicity.

Cytotoxicity secondary to B19 parvovirus infection is due to expression of the viral nonstructural protein. Nonstructural proteins of many parvoviruses contain a well-conserved nucleoside triphosphate (NTP)-binding motif, which has been shown to be essential for a variety of protein functions. We show here that cytotoxicity of the B19 parvovirus nonstructural protein was abolished by single mutations of amino acids within the NTP-binding domain, especially within the A motif, implicating NTP-binding in virus-induced cell death.

Amino Acid Sequence↗

Formation of empty B19 parvovirus capsids by the truncated minor capsid protein.

We previously reported that empty capsids of B19 parvovirus were formed by the major capsid protein (VP2) alone expressed in a baculovirus system, but the minor capsid protein (VP1), longer by 227 amino acids, alone did not form empty capsids. We report here further investigations of the constraints on capsid formation by truncated versions of VP1. Studies were performed with recombinant baculoviruses expressed in Sf9 cells. Severely shortened VP1, extended beyond the VP2 core sequence by about 70 amino acids of the unique region, formed capsids normal in appearance; longer versions of VP1 also formed capsids but did so progressively less efficiently and produced capsids of more markedly dysmorphic appearance as the VP1-unique region was lengthened.

Animals↗