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Biomedical subjects

J H Chin

Publications and source records attributed to J H Chin.

At least 19 recordsLinked to original sources

Cloning and expression of a novel lipase gene from Bacillus sphaericus 205y.

A Bacillus sphaericus strain (205y) that produces an organic solvent-tolerant lipase was isolated in Port Dickson, Malaysia. The gene for the lipase was recovered from a genomic library and sequenced. Phylogenetic analysis was performed based on an alignment of thirteen microbial lipase sequences obtained from the NCBI database. The analysis suggested that the B. sphaericus lipase gene is a novel gene, as it is distinct from other lipase genes in Families I.4 and I.5 reported so far. Expression in Escherichia coli under the control of the lacZ promoter resulted in an eight-fold increase in enzyme activity after a 3-h induction with 1 mM IPTG. The crude enzyme thus obtained showed a slight (10%) enhancement in activity after a 30-min incubation in 25% (v/v) n-hexane at 37 degrees C, and retained 90% of its activity after a similar period in 25% (v/v) p-xylene.

Amino Acid Sequence↗

Nociceptin/orphanin FQ modulation of ionic conductances in rat basal forebrain neurons.

Nociceptin/orphanin FQ (N/OFQ) is an endogenous opioid-like heptadecapeptide that plays an important role in a variety of physiological functions. N/OFQ and its receptor opioid receptor-like orphan receptor-1 are abundant in the diagonal band of Broca (DBB), a basal forebrain nucleus where the loss of cholinergic neurons is linked to memory and spatial learning deficits. In the whole animal, central injections of N/OFQ have been shown to disrupt spatial learning. In this study, we investigated the basis for these behavioral observations by examining the cellular effects of N/OFQ on chemically identified DBB neurons. Whole cell patch-clamp recordings were performed on enzymatically dissociated DBB neurons. Under voltage-clamp conditions, bath application of N/OFQ (10 pM-1 microM) resulted in a dose-dependent depression of whole cell currents. Single cell reverse transcription-polymerase chain reaction analysis identified cholinergic and fewer GABAergic cells to be N/OFQ-responsive. [Nphe(1)]nociceptin-(1-13)-NH(2) and CompB (J-113397) antagonized the N/OFQ response, but both compounds also displayed partial agonist activity. Using a combination of channel blockers we determined that the effects of N/OFQ were mediated via a suite of Ca(2+) (N- and L-type) and Ca(2+)-dependent K(+) (iberiotoxin-sensitive) conductances. In addition, biophysical analysis of voltage subtraction protocols revealed that N/OFQ reduces transient outward and the delayed rectifier K(+) currents. Because N-type and L-type Ca(2+) channels are important in the context of neurotransmitter release, our observations indicate that N/OFQ inhibition of Ca(2+)-dependent conductances in cholinergic neurons would be expected to result in depression of acetylcholine release, which may explain the behavioral actions of N/OFQ in the brain.

Acetylcholine↗

Magnolol attenuates peroxidative damage and improves survival of rats with sepsis.

Reactive oxygen species and peroxidative damage are implicated in the pathophysiology of sepsis. Magnolol is a compound extracted from the Chinese medicinal herb Magnolia officinalis and has multiple pharmacological effects, notably antioxidant functions. To determine whether magnolol can modulate the course of sepsis, survival rate and biochemical parameters were analyzed in rats with sepsis with various treatment protocols. Magnolol at doses ranging from 10(-9) g/kg to 10(-5) g/kg was administered either before or after induction of sepsis by cecal ligation and puncture. Magnolol did not modulate the course of sepsis induced by two cecal punctures. When one cecal puncture was performed, a moderately evolving type of sepsis was induced, and the survival rate of affected rats was significantly improved by pretreatment with 10(-7) g/kg magnolol. The beneficial effect was partially retained if magnolol was administered 6 hours after onset of sepsis when a higher dose (10(-5) g/kg) was used. The intensity of lipid peroxidation in plasma, liver, and lung of septic rats was also attenuated in a treatment-dependent manner. Magnolol at this dose range exerted these beneficial effects probably through its antioxidant efficacy. These significant results may suggest magnolol as a candidate agent for the treatment of sepsis.

Animals↗

Heat shock activates c-Src tyrosine kinases and phosphatidylinositol 3-kinase in NIH3T3 fibroblasts.

There is increasing evidence that cellular responses to stress are in part regulated by protein kinases, although specific mechanisms are not well defined. The purpose of these experiments was to investigate potential upstream signaling events activated during heat shock in NIH3T3 fibroblasts. Experiments were designed to ask whether heat shock activates p60 c-Src tyrosine kinase or phosphatidylinositol 3-kinase (PI 3-kinase). Using in vitro protein kinase activity assays, it was demonstrated that heat shock stimulates c-Src and PI 3-kinase activity in a time-dependent manner. Also, there was increased PI 3-kinase activity in anti-phosphotyrosine and anti-c-Src immunoprecipitated immunocomplexes from heated cells. Heat shock activated mitogen-activated protein kinase (MAPK) and p70 S6 kinase (S6K) in these cells. The role of PI 3-kinase in regulating heat shock activation of MAPK and p70 S6K was investigated using wortmannin, a specific pharmacological inhibitor of PI 3-kinase. The results demonstrated that wortmannin inhibited heat shock activation of p70 S6K but only partially inhibited heat activation of MAPK. A dominant negative Raf mutant inhibited activation of MAPK by heat shock but did not inhibit heat shock stimulation of p70 S6K. Genistein, a tyrosine kinase inhibitor, and suramin, a growth factor receptor inhibitor, both inhibited heat shock stimulation of MAPK activity and tyrosine phosphorylation of MAPK. Furthermore, a selective epidermal growth factor receptor (EGFR) inhibitor, tryphostin AG1478, and a dominant negative EGFR mutant also inhibited heat shock activation of MAPK. Heat shock induced EGFR phosphorylation. These results suggest that early upstream signaling events in response to heat stress may involve activation of PI 3-kinase and tyrosine kinases, such as c-Src, and a growth factor receptor, such as EGFR; activation of important downstream pathways, such as MAPK and p70 S6K, occur by divergent signaling mechanisms similar to growth factor stimulation.

3T3 Cells↗

Activation of heat shock protein (hsp)70 and proto-oncogene expression by alpha1 adrenergic agonist in rat aorta with age.

Induction of heat shock proteins (hsp) most likely is a homeostatic mechanism in response to metabolic and environmental insults. We have investigated signal transduction mechanisms involved in alpha1, adrenergic receptor stimulation of hsp7O gene expression in isolated aortas with age. We found that alpha1 adrenergic agonists directly induced hsp70 mRNA in rat aorta in vitro; the alpha1, selective antagonist prazosin blocked this effect whereas chloroethylclonidine, an antagonist which has some selectivity for alpha1B receptors, was ineffective. This response was insensitive to pertussis toxin and was partially blocked by the protein kinase C inhibitor H7. Removal of extracellular calcium attenuated induction of hsp70 mRNA but not the induction of c-fos or c-myc. The induction of hsp70 mRNA by either norepinephrine or by phorbol dibutyrate was blunted in aortas from old (24-27 mo) rats whereas c-fos responses were not diminished in the older vessels. The hsp70 response to elevated temperature (42 degrees C) was not changed with age. Activation of hsp70 expression most likely involves a pertussis toxin insensitive G protein which activates protein kinase C, and requires extracellular calcium. With age, hsp70 gene expression induced by stimulation of alpha1 adrenergic receptors is markedly attenuated, which could modify responses to stress or vascular injury with aging.

Adrenergic alpha-1 Receptor Agonists↗

cAMP signaling mechanisms with aging in rats.

Blunted cAMP responses to beta-adrenergic agonists play a major role in diminished smooth muscle relaxation in blood vessels from older animals, although the mechanisms remain uncertain. A diminished cAMP response could potentially arise from changes in the expression of adenylyl cyclase-coupled G proteins, such as a diminished expression of Gs or an increased expression of Gi. We tested the hypothesis that a loss in Gs or increased expression of Gi could occur in tissues such as the aorta, heart and kidney with aging, which would provide a unifying explanation for blunted cAMP responses to many hormones with aging in a variety of cells. Using Western blotting with specific antibodies, we found no generalized changes in G protein expression with aging. Also, injection of pertussis toxin (which functionally inactivates Gi) into older animals did not restore vascular relaxation mediated by beta-adrenergic receptors. We previously found an elevated ratio of regulatory to catalytic subunits of protein kinase A in the aorta of older rats, which would tend to impair activation of the catalytic unit; this alteration was not generalized to other organs such as the heart and kidney. Old rats fed a low salt diet did not show the restored beta-adrenergic agonist-induced vasodilation previously found in elderly humans, suggesting that there are species differences in the development of this deficit. Altogether, these results suggest that altered G protein expression does not provide a general explanation for blunted activation of adenylyl cyclase with aging.

Aging↗

Impaired cAMP-mediated gene expression and decreased cAMP response element binding protein in senescent cells.

The capacity of various growth factors to induce c-fos expression is diminished with senescence. Because adenosine 3',5'-cyclic monophosphate (cAMP)-mediated responses are also blunted with aging, we wondered whether cAMP-induced c-fos gene expression might be impaired with senescence. Using IMR fibroblasts, we found that prostaglandin E1 (PGE1) and forskolin, stimulators of cAMP accumulation in young and senescent cells, increased abundance of c-fos and junB mRNA more in young than senescent cells. The abundance of the cAMP response element binding protein (CREB), a transcription factor which enhances gene expression when phosphorylated by protein kinase A, was markedly decreased in both whole cell and nuclear extracts of senescent cells, in both Western blotting and in gel retardation assays. Also, PGE1-induced phosphorylation of CREB by protein kinase A was markedly attenuated in senescent cells. There is a marked decrement in expression of CREB with senescence, and the results suggest the possibility that the diminished expression of CREB may contribute to altered cAMP-mediated regulation of gene expression with senescence.

Aging↗

Impaired beta-adrenergic receptor-mediated regulation of gene expression in adipocytes from older rats.

With aging, in many cells there is a blunted capacity of beta-adrenergic agonists to increase adenosine 3',5'-cyclic monophosphate (cAMP) accumulation. We wondered if blunted cAMP responses led to impaired regulation of genes in which expression is modified by cAMP. To test this hypothesis, adipocytes were isolated from 2- and 12- to 16-mo-old Sprague-Dawley rats that were stimulated with isoproterenol, and the inhibitory effect on expression of genes for lipoprotein lipase (LPL) and fatty acid synthase (FAS) were examined. Isoproterenol-stimulated cAMP accumulation and glycerol release were impaired in adipocytes from the older rats. Isoproterenol inhibited expression of LPL and FAS mRNAs in cells from the younger but not older rats. Removal of endogenous adenosine partially restored isoproterenol-mediated inhibition of expression of these genes in the cells. These results demonstrate that blunted cAMP responses associated with aging in obese Sprague-Dawley rats led to altered regulation of LPL and FAS genes. These findings extend the possible physiological implications of impaired hormone-induced cAMP responses with aging.

Adenosine Deaminase↗

Inactivation of endothelial derived relaxing factor by oxidized lipoproteins.

Endothelial cell derived relaxing factor (EDRF) mediated relaxation of blood vessels is impaired in vessels exposed to lipoproteins in vitro and in arteries of hyperlipidemic humans and animals. To investigate the mechanism by which lipoproteins impair the effects of EDRF, which is likely nitric oxide (NO) or a related molecule, we have bioassayed EDRF/NO activity by measuring its ability to increase cGMP accumulation in rat fetal lung cultured fibroblasts (RFL-6 cells). Low density lipoprotein modified by oxidation (ox-LDL) induced a concentration-dependent inhibition of EDRF activity that had been released from bovine aortic endothelial cells (BAEC) stimulated with bradykinin or the calcium ionophore A23187. In addition, lipoproteins directly impaired authentic NO-induced stimulation of cGMP accumulation in the detector cells; stimulation by sodium nitroprusside was unaffected. Ox-LDL or oxidized HDL3 were highly potent in blocking NO-stimulated cGMP accumulation with EC50's of approximately 1 microgram/ml. Lipid extracted from ox-LDL blocked NO-stimulated cGMP accumulation to about the same extent as intact ox-LDL, while the protein component of ox-LDL did not inhibit the cGMP response. These results suggest that the lipid component of oxidized lipoproteins inactivate EDRF after its release from endothelial cells.

Animals↗

Beta-adrenergic responsiveness in cultured vascular smooth muscle cells and fibroblasts: effect of age.

beta-Adrenergic agonists stimulate cyclic 3',5'-adenosine monophosphate (cAMP) accumulation and relaxation in vascular smooth muscle; both of these responses decline in rat aorta with increasing age. To ascertain whether the deficit in beta-receptor stimulated cAMP accumulation persists in isolated aortic smooth muscle cells, the effect of isoproterenol on cAMP accumulation was measured in cultured vascular smooth muscle cells (VSMC) and vascular fibroblasts taken from young (4-6 weeks) and older (8-12 months) Fischer 344 male rats. Immunofluorescent staining confirmed the identity of VSMC as distinct from fibroblasts. Isoproterenol stimulated cAMP accumulation in a time- and concentration-dependent manner in both cell types; maximal cAMP accumulation induced by beta-adrenergic stimulation in cultured cells was much higher than those seen in the intact aorta. While there was a blunting of cAMP response to isoproterenol in fibroblasts cultured from the older rats, the response in VSMC cultured from the older rats was actually increased compared to the VSMC cultured from the younger rats. In contrast, activation of cAMP accumulation in the cultured cells by forskolin was similar in cells from older and young animals. The results suggest that the blunting in isoproterenol-stimulated cAMP accumulation found in aortas from older animals is not seen in VSMC cultured from these animals; whether this change in the culture reflects removal of some extrinsic factor in the older rats or is a consequence of intrinsic changes in the cells in culture requires further investigation.

Aging↗

Age-related deficit in beta receptor stimulation of cAMP binding in blood vessels.

Both vascular relaxation and cAMP accumulation mediated by beta adrenergic agonists declines with increasing age. We have developed a method to measure the biologically relevant cAMP bound to the regulatory subunits of cAMP-dependent protein kinase in rat aorta. In homogenates of rat aorta, binding of [3H]cAMP was saturable with a Kd of 8.0 +/- 1.5 nM; the dissociation of [3H]cAMP from the binding sites was comprised of fast and slow components at 4 degrees C. Endogenous cAMP binding in aortas stimulated with isoproterenol (10(-5) M) or forskolin (10(-5) M) was quantitated by radioimmunoassay. Compared to basal values, isoproterenol increased cAMP binding by 37% (P less than 0.05) in aortas from young animals (5-6 weeks) but had essentially no effect on binding in older animals (9-11 months). In contrast, forskolin, which causes full relaxation in aortas from older rats, equally elevated bound cAMP values in aortas in the two age groups. In addition, the ratio of total cAMP binding sites to cAMP-dependent protein kinase catalytic activity was 45% higher in aortas from the older rats, suggesting that there were proportionately more regulatory subunits in those vessels. The deficit in isoproterenol-stimulated cAMP binding in vascular smooth muscle in older animals may in part explain the loss in relaxation mediated by beta adrenergic agonists.

Aging↗

Progressive dystonia following resuscitation from cardiac arrest.

We report a case of a 55-year-old man in whom progressive extrapyramidal disease developed nearly 1 year after resuscitation from cardiopulmonary arrest. Parkinsonian features evolved within 3 months, and progressive generalized dystonia developed after 11 months. CT and MRI revealed bilateral basal ganglia infarction. Autopsy after 4 years of illness showed bilateral basal ganglia necrosis with preserved corticospinal tracts. These findings support earlier suggestions that postinfarction dystonia is mediated by a pyramidal system lacking normal striatal control.

Dystonia↗

Adenosine receptors in brain: neuromodulation and role in epilepsy.

Adenosine is now recognized as an important endogenous modulator of neuronal excitability in the mammalian central nervous system. Adenosine is produced and released in the brain, where it exerts potent depressant effects on neuronal firing and synaptic transmission. Multiple adenosine receptor subtypes have been characterized using biochemical, electrophysiological, and radioligand binding techniques. Adenosine analogues have potent anticonvulsant actions in vitro and antagonize seizures in animals induced by a variety of mechanisms, including kindling. The future development of selective adenosine receptor agonists may provide new and more effective treatment for epilepsy.

Adenosine↗

Prevalence of hepatitis B markers in psychiatric in-patients in Singapore: a pilot study.

The prevalence of hepatitis B infection among 71 patients in an adult psychiatric hospital was determined by testing for hepatitis B surface antigen (HBsAg), its antibody (anti-HBs) and antibody against hepatitis B core antigen (anti-HBc). The results showed 12.7 per cent positive for HBsAg, 63.4 per cent positive for anti-HBs and 69 per cent positive for anti-HBc. This assessment of the prevalence of hepatitis B in a group of adult long-term institutional patients may be used as a guide when hepatitis B vaccination is being considered for use in a psychiatric hospital. The need for a similar study on health care personnel working in the same institution is emphasized.

Adolescent↗