Nonionic oligonucleotide analogs (Matagen) as anticodic agents in duplex and triplex formation.
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Biomedical subjects
Publications and source records attributed to E Chang.
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Quiescent, full-grown Xenopus oocytes, which are arrested at the G2/M border of meiosis, contain an inactive 42-kDa mitogen-activated protein kinase (p42MAPK) that is activated when oocytes are stimulated to resume the meiotic cell cycle. We have made extracts from these oocytes that respond to four cell cycle activators: oncogenic [Val12]Ras protein, clam cyclins A delta 60 and B delta 97, and the phosphatase inhibitor okadaic acid. All four induce the tyrosine phosphorylation and activation of p42MAPK. Both cyclins and okadaic acid, but not [Val12]Ras, also lead to activation of the endogenous cyclin B/cdc2 kinase complexes in extracts of quiescent oocytes. Using extracts prepared from cycloheximide-arrested interphase cells, we show that although p42MAPK activation can occur in response to cyclin-activated cdc2, the Ras-induced activation of p42MAPK occurs without intervening cdc2 activation. Neither the nononcogenic [Gly12]Ras nor [Val12,Arg186]Ras, a mutant that lacks the C-terminal consensus sequence directing prenylation and subsequent membrane association, is an effective activator of p42MAPK in vitro.
The activities of two distinct phosphatidate phosphohydrolases (PAP) were measured in livers, hearts and adipose tissues of the JCR:LA corpulent rat which is hyperphagic, hypertriglyceridaemic and insulin resistant. The specific activity of PAP-1, which requires Mg2+, was similar in the livers of lean and corpulent female rats and in male corpulent rats, but these activities were about 1.6-fold higher than in lean males. There was a correlation between the specific activity of PAP-1 and the concentrations of hepatic and serum triacylglycerols in the males, but not in the females. Chronic treatment of the corpulent rats with ethanol did not significantly alter the hepatic activity of PAP-1, or the concentrations of hepatic or serum triacylglycerols. Specific activities of PAP-1 in the heart were higher in the lean compared to the corpulent males. There was no significant difference for the females. Specific activities of PAP-1 were over 5-fold higher in the subcutaneous adipose tissue of the corpulent males and females compared to the lean genotypes. The differences were smaller (1.6-1.9-fold) in the gonadal adipose tissue of both sexes and in the peri-renal depot for the males. PAP-1 activity in the peri-renal depots of corpulent females was 23% lower than in lean females. PAP-2 activity was insensitive to N-ethylmaleimide and did not require Mg2+ for activity. Its activity was 1.5-2.0-fold higher in the livers and hearts of the lean male and female rats than in the corpulent genotypes. Chronic treatment with ethanol increased the activity of PAP-2 in the hearts of the corpulent males, but had no effect in the corpulent females. The specific activity of PAP-2 was higher in subcutaneous, gonadal and peri-renal adipose depots in the females and in the peri-renal depot of the corpulent males compared with the lean genotypes. Lean males had higher specific activities in all three depots compared to lean females. The tissue specificity and the sex differences in the specific activities of PAP-1 and PAP-2 are discussed in terms of their proposed functions in glycerolipid biosynthesis and signal transduction. It is proposed that a decreased activity of PAP-2 could be involved in the insulin insensitivity in the corpulent rats.
Salt sensitivity affects a fraction of hypertensive and normotensive subjects, but biochemical markers that target salt-sensitive individuals are not available at present. The aim of these studies was to establish if calmodulin-phosphodiesterase (CaM-PDE) activator (J Clin Invest 82: 276, 1988) and platelet cyclic nucleotides could serve as potential markers of salt sensitivity. The results demonstrated that CaM-PDE activator was increased in the heart of Dahl salt-sensitive rats (DS/JR) compared to Dahl salt-resistant (DR/JR) animals fed a 1% sodium diet. Normotensive male Wistar rats given a low (0.15%) or high (3.5%) sodium diet from age 7 weeks to 11 weeks presented significant increases (p less than 0.01) of three parameters: blood pressure (from 106 +/- 4 to 128 +/- 8 mmHg); platelet aggregation in response to ADP and thrombin; and CaM-PDE activator levels (from 1.57 +/- 0.14 to 2.8 +/- 0.18). Basal as well as stimulated cyclic nucleotide levels were significantly reduced in rats fed the high sodium diet. Since the degree of stimulation by the agonists was unaltered, the results are compatible with augmented PDE activity. These preliminary data suggest that CaM-PDE activator should be explored as a potential marker of salt sensitivity.
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[3H]Batrachotoxinin-A benzoate ([3H]BTX-B) binds with high affinity to sites on voltage sensitive sodium channels in synaptoneurosomes from guinea pig cerebral cortex. Local anesthetics competitively antagonize the binding of [3H]BTX-B. An irreversible local anesthetic, procaine isothiocyanate (PRIT) and a tritiated derivative [( 3H]PRIT) have been prepared. PRIT inhibits the binding of [3H]BTX-B in a noncompetitive, irreversible manner (apparent Ki = 13 microM) whereas the parent compound, procaine, inhibits in a competitive, reversible manner (Ki = 40 microM). The dissociation rate of [3H]BTX-B from sites on the sodium channel is greatly accelerated in a concentration dependent manner in the presence of PRIT. A 50% increase in the dissociation rate of [3H]BTX-B is achieved in the presence of 0.98 microM PRIT. [3H]PRIT binds irreversibly to three proteins in synaptoneurosomes with apparent molecular weights of 20, 42, and 68 kDa. Protection studies with procaine and other local anesthetics suggest that only the 68 kDa species was related to local anesthetic binding.
Cancer treatment with the drug cisplatin is often thwarted by the emergence of drug-resistant cells. To study this phenomenon, we identified two independent cellular factors that recognize cisplatin-damaged DNA. One of the two factors, designated XPE binding factor, is deficient in complementation group E of xeroderma pigmentosum, an inherited disease characterized by defective repair of DNA damaged by ultraviolet radiation, cisplatin, and other agents. Human tumor cell lines selected for resistance to cisplatin showed more efficient DNA repair and increased expression of XPE binding factor. These results suggest that XPE binding factor may be responsible, at least in part, for the development of cisplatin resistance in human tumors and that the mechanism may be increased DNA repair.
The aim of this study was to investigate the effects of dietary calcium and sodium on blood pressure (BP) in normotensive rats (Wistar, WKY), spontaneously hypertensive rats (SHR) and Dahl rats and on calmodulin (CaM) activator, a newly-discovered hydrophobic compound that increases CaM activity in SHR and spontaneously hypertensive mice (SHM) tissues (J Clin Invest 82:276, 1988). The CaM activator was assessed by its capacity to stimulate a CaM-dependent phosphodiesterase (CaM-PDE). In Wistar rats, which were fed a high sodium diet (3.5%), BP significantly increased (P less than .01) from 106 +/- 4 to 128 +/- 8 mm Hg in parallel to an elevation of the CaM activator from 1.57 +/- 0.14 to 2.80 +/- 0.18 U. WKY, SHR, and Dahl salt-sensitive (DS/JR) and salt-resistant (DR/JR) rats were given low (0.15%) or high (2.5%) Ca diets, both with 1% sodium. In rats receiving high dietary Ca the progression of hypertension diminished and BP was lower in SHR (156 +/- 4 mm Hg) and young DS/JR rats (125 +/- 3 mm Hg) than in those receiving low dietary Ca (192 +/- 10 and 183 +/- 2 mm Hg). There was a concomitant decrease of CaM activator in these animals to levels indistinguishable from those of WKY or DR/JR rats. The activator was also found in the heart, kidneys and erythrocytes from SHM. In the presence of exogenously added CaM, lipidic extracts from the SHM heart showed augmented CaM-PDE activity relative to normotensive preparations. This difference was eliminated by trifluoperazine.(ABSTRACT TRUNCATED AT 250 WORDS)
The traumatic nature of spinal cord injury necessitates adjustments for the individual physically, socially, vocationally and sexually, as well as placing great strain on the family. Although one would suspect a high prevalence of psychological disruption following spinal cord injury, there is still much debate concerning the extent of the psychological reaction to such a trauma. This situation can partly be attributed to the lack of systematic research characteristic of most studies in this area. This paper reviews more recent literature which has investigated psychological morbidity in persons with spinal cord injury. The inadequacies of this research are discussed and suggestions for future research and psychological treatment for the spinal injured are provided.
Xeroderma pigmentosum (XP) is characterized by the defective excision repair of DNA damaged by many agents, including ultraviolet radiation (UV) and cisplatin. We have identified a factor in human cells that recognizes multiple forms of DNA damage and is absent in XP complementation group E. Denoted XPE binding factor, it is expressed at five-fold higher levels in tumor cell lines resistant to the antitumor drug cisplatin. Finally, although it does not have photoreactivating activity, XPE binding factor shares multiple binding characteristics with yeast photolyase, suggesting that it is the human homolog of photolyase.
The disease xeroderma pigmentosum is characterized by deficient repair of damaged DNA. Fusions of cells from different patients have defined nine genetic complementation groups (A through I), implying that DNA repair in humans involves multiple gene products. In this report, an extension of the gel electrophoresis binding assay was used to identify at least one nuclear factor that (i) bound to DNA damaged by ultraviolet radiation or the antitumor drug cisplatin, but (ii) was notably absent in cells from complementation group E. Therefore, the factor appears to participate in a versatile DNA repair pathway at the stage of binding and recognition.
The components of the renin-angiotensin system have been colocalized in many tissues suggesting that local generation of angiotensin II can regulate blood flow in specific organs or tissues. This in combination with the fact that proliferating tissues require angiogenesis and increased blood flow to develop have led us to study the relationship of angiotensinogen mRNA production to cell cycle regulation. Reuber H35 (H4IIE) cells were growth-arrested by serum deprivation. Cells were then treated with 10% fetal calf serum, depleted serum, or insulin. Insulin and serum were equally potent at increasing beta-actin mRNA levels, depressing angiotensinogen mRNA levels, and in increasing [3H]methyl thymidine incorporation. The half-maximal insulin effect occurred at 5 x 10(-9) M. Insulin-like growth factor I and II had no effect on any of the parameters measured. 12-O-tetradecanoyl phorbol 13-acetate (TPA) also induced beta-actin mRNA, decreased angiotensinogen mRNA, and caused an increase in [3H]methyl thymidine incorporation. The TPA effects were of shorter duration and of lower magnitude than those caused by insulin or serum. Inactivation of protein kinase C by preincubation with TPA did not block the insulin response. TPA has been shown to induce angiogenesis in vitro. Thus, these studies suggest that inhibition of angiotensinogen gene activity may be part of the proliferative or angiogenic process. Our experimental data may provide a model for further experimental dissection of the biochemical steps involved in angiogenesis.
Angiotensinogen is regulated by both hormones and changes in cardiovascular and electrolyte status. We have used the Reuber H35 (H4IIE) rat hepatoma cell line to study the regulation of angiotensinogen mRNA levels by dexamethasone, aldosterone, L-T3, and 17 beta-estradiol. Using the Acc I (1097 basepairs) fragment of our angiotensinogen cDNA clone, we have studied, by Northern and slot blot analysis, the accumulation of angiotensinogen mRNA in this cell culture system. Angiotensinogen mRNA of approximately 1800 bases was identified in these cells. It was identical in size to angiotensinogen mRNA from rat liver. Cells grown in medium containing serum depleted of thyroid and steroid hormones for up to 72 h showed a progressive decrease in angiotensinogen mRNA. Dexamethasone treatment resulted in a time- and dose-dependent increase in angiotensinogen mRNA. The half-maximal response occurred at 10(-9) M dexamethasone, with a maximal response of approximately 4-fold (serum-free conditions). Aldosterone induced a dose-dependent increase in mRNA. Half-maximal levels were obtained at 5 X 10(-8) M. Competition studies using the glucocorticoid antagonist RU38486 (Roussel-UCLAF) confirmed that dexamethasone was acting through the glucocorticoid receptor and suggested that aldosterone was acting through the same receptor. L-T3 treatment caused a dose and time-dependent increase in angiotensinogen mRNA levels. The half-maximal response occurred at 5 X 10(-8) M, and the maximal response was a 2-fold increase. Combined treatment with dexamethasone and L-T3 triiodothyronine resulted in a synergistic increase in angiotensinogen mRNA levels. 17 beta-Estradiol failed to elicit a change in angiotensinogen mRNA levels consistent with the observation that these cells lack estrogen receptors. Our results indicate that hepatic angiotensinogen mRNA levels are regulated in a complex fashion by several hormones. These cells provide a useful system for studying the hormonal regulation of the angiotensinogen gene.
The effect of intramammary antibiotic therapy at calving on mastitis infection prevalence, linear score milk somatic cell count, and milk NAGase activity, 30 d postpartum, and on milk production, 90 to 120 d postpartum, was tested. Cows (n = 175) were split into treatment and control groups at drying off. All cows received commercial dry cow therapy. At calving, treated cows received commercial lactating cow therapy in all quarters after the first two milkings; control cows were not treated. Composite milk samples were aseptically collected from all cows at drying off, calving, and 30 d postpartum. Udder health traits: linear score milk SCC, NAGase activity, and bacterial content in milk, were determined on all samples. The first three DHI milk weights were recorded for all cows. Treatment and control cows had similar prevalences of intramammary infections during the dry and 30-d postpartum periods. Least squares means of linear score milk SCC and NAGase activities were similar at drying off and calving. Cell count scores were similar between groups; NAGase activities were higher in control cows at 30 d postpartum. Control cows tended to produce more milk postpartum. Results demonstrated no advantage of intramammary therapy at calving in improving milk production or udder health.
We report on the successful prenatal diagnosis of the late infantile "Jansky-Bielschowsky" variant of the neuronal ceroid-lipofuscinoses (NCL). The fetus was studied at 16 weeks of gestation because of an affected sib. Uncultured amniotic fluid cells were studied by conventional electron microscopic techniques. About one-third of a subpopulation of dark, elongated cells contained one or more deposits of curvilinear cytosomes bound by a single unit membrane. These findings were considered typical of the late infantile variant of NCL. After delivery at term, a skin punch biopsy and a buffy coat preparation from the baby were examined and found to have similar characteristic inclusions, which confirmed our prenatal diagnosis.
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Skin punch biopsies of six children suffering from infantile or late onset Tay-Sachs disease, juvenile Sandhoff disease, or GM gangliosidosis type I, contained axons which, when viewed with the electron microscope, were distended by large amorphous black deposits. These are nonspecific residual bodies. Their large numbers indicate severe disturbance of the nerve cell and may be part of the dying back process. The three cases with Tay-Sachs disease had also axonal zebra or complex membranous bodies which appeared to be specific. Cytoplasmic vacuolation of other cells was a feature in the patient with GM1 gangliosidosis. Biopsies of three parents were negative.
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