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Biomedical subjects

J C Cook

Publications and source records attributed to J C Cook.

At least 19 recordsLinked to original sources

Isoforms of mammalian ubiquitin-activating enzyme.

Ubiquitin-activating enzyme, "E1," is the first enzyme in the pathway leading to formation of ubiquitin-protein conjugates and represents a potential target for regulation in the metabolic control of the conjugation reaction. Antiserum raised against human E1 recognizes two immunoreactive proteins in extracts from several human cell lines and animal tissues. We have characterized these two immunoreactive proteins in HeLa cells and present evidence that they are isoforms of E1. We have designated these isoforms as "E1(110 kDa)" and "E1(117 kDa)" to reflect their apparent molecular masses determined from SDS-polyacrylamide gel electrophoresis. These two immunoreactive proteins are immunologically similar, have nearly identical peptide maps, and comigrate with enzymatic activity characteristic of E1 in native polyacrylamide gel electrophoretic separations. Pulse-labeling experiments reveal that both isoforms are long-lived in vivo with degradation rates which are inconsistent with a proenzyme/enzyme model. Furthermore, their rates of degradation, which vary depending on the cell line studied, are kinetically distinguishable in contact-inhibited human lung fibroblasts. This work represents the first demonstration of E1 isoforms in a non-plant species and carries important implications for studies of the regulatory mechanisms controlling ubiquitin conjugation.

Animals

Induction of Leydig cell adenomas by ammonium perfluorooctanoate: a possible endocrine-related mechanism.

Ammonium perfluorooctanoate (C8) produced an increased incidence of Leydig cell adenomas in Crl:CD BR (CD) rats fed 300 ppm for 2 years. A hormonal (nongenotoxic) mechanism was examined since C8 was negative in short-term tests for genotoxicity. Adult male CD rats were gavaged with either 0, 1, 10, 25, or 50 mg/kg C8 for 14 days. In addition, a control group was pair-fed to the 50 mg/kg C8 group. A dose-dependent decrease in body and relative accessory sex organ (ASO) weights was seen, with the relative ASO weights of the 50 mg/kg group significantly less than those of the pair-fed control. Serum estradiol levels were elevated in the 10, 25, and 50 mg/kg C8-treated animals. Estradiol levels in the 50 mg/kg C8 group were 2.7-fold greater than those in the pair-fed control. The increase in serum estradiol levels occurred at the same dose levels as the increase in hepatic beta-oxidation activity. A statistically significant downward trend with dose was seen in serum testosterone levels when compared with the ad libitum control. However, when the 50 mg/kg C8-treated rats were compared with their pair-fed control, no significant differences were seen. Challenge experiments, which can identify the presence and location of a lesion in an endocrine axis, were undertaken to clarify the significance of this downward trend in serum testosterone following C8 exposure. In the challenge experiments, adult CD rats were gavaged with either 0 or 50 mg/kg C8 for 14 days. One hour before termination, rats received either a human chorionic gonadotropin (hCG), gonadotropin-releasing hormone (GnRH), or naloxone challenge. Following hCG challenge, serum testosterone levels in the 50 mg/kg C8 were significantly decreased (50%) from those in the ad libitum controls. Similar decreases, although not significant, were seen in serum testosterone following GnRH and naloxone challenge. The challenge experiments suggest that the decrease in serum testosterone following C8 exposure is due to a lesion at the level of the testis. In addition, progesterone, 17 alpha-hydroxyprogesterone, and androstenedione were examined in the 50 mg/kg C8-treated males following hCG challenge. A 60% decrease was observed in androstenedione levels in the C8-treated animals from those in the ad libitum controls; no other differences were seen. These data suggest that the decrease in serum testosterone following hCG challenge may be due to a decrease in the conversion of 17 alpha-hydroxyprogesterone to androstenedione. The observed effects described above can be attributed to the elevated serum estradiol levels.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenoma

Comparison of the effects of Wyeth-14,643 in Crl:CD BR and Fisher-344 rats.

Wyeth-14,643 (WY) belongs to a diverse class of compounds which have been shown to produce hepatic peroxisome proliferation and hepatocellular carcinoma in rodents. Based on a review of bioassay data, a relationship appears to exist between peroxisome proliferating compounds and Leydig cell adenoma formation. Most rat bioassays with peroxisome proliferators have been conducted in the Fisher-344 (F344) rat, which has a high spontaneous incidence of Leydig cell adenomas. Thus, it was necessary to use an alternative animal model to investigate this relationship further. Therefore the Crl:CD BR (CD) rat, which has a low spontaneous Leydig cell adenoma incidence, was chosen for a 2-year feeding study with WY. Before initiating this 2-year feeding study, it was necessary to investigate whether any strain differences existed between CD and F344 rats with respect to WY-induced peroxisome and cell proliferation. In this study, male CD and F344 rats were fed diets containing 0, 50, or 1000 ppm WY for 21 days. Peroxisome proliferation in the liver and testis was determined biochemically by measuring beta-oxidation activity and was confirmed ultrastructurally. Serum hormone levels and cell proliferation rates in the liver and testis were also measured. In addition, basal beta-oxidation activity and cell proliferation rates were compared between the CD and F344 rats. A significant decrease in final body weight was observed in the 1000 ppm WY groups for both CD and F344 rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Association of ubiquitin-activating enzyme with HeLa cell chromosomes during mitosis.

Ubiquitin-activating enzyme (E1) is the first enzyme in the pathway leading to formation of ubiquitin-protein conjugates. Antibodies raised against E1 were affinity purified and used for immunostaining HeLa cells. Condensed chromosomes in mitotic cells were found to be strongly immunoreactive. Chromosomes from metaphase-arrested HeLa cells were isolated and chromosome-associated proteins were analyzed by Western blotting. E1 was detected in fractions containing isolated chromosomes. These results suggest that E1 is associated with condensed chromosomes during mitosis.

Blotting, Western

Purification and partial characterization of ubiquitin-activating enzyme from Saccharomyces cerevisiae.

Ubiquitin-activating enzyme was purified from the yeast Saccharomyces cerevisiae by covalent affinity chromatography on ubiquitin-Sepharose followed by HPLC anion-exchange chromatography. Enzyme activity was monitored by the ubiquitin-dependent ATP: 32PPi exchange assay. The purified enzyme has a specific activity of 1.5 mumol 32PPi incorporated into ATP.min-1.mg-1 at 37 degrees C and pH 7.0 under standard conditions for substrate concentrations as described by Ciechanover et al. (1982) J. Biol. Chem. 257, 2537-2542. The catalytic activity showed a maximum at pH 7.0. Its molecular weight both in non-denaturing and in SDS-gel electrophoresis was estimated to be 115 kDa, suggesting a monomeric form. The isoelectric point determined by gel electrofocusing was approximately 4.7. Two protein bands differing slightly in electrophoretic mobility could be distinguished when SDS gels were loaded with very small amounts of purified E1 and immunoblotted, the one with higher molecular weight being clearly predominant. The same two bands were also found in anti-E1 immunoblots of crude yeast lysates prepared under broad protease inhibition.

Blotting, Western

Immunocytochemical localization of ubiquitin-activating enzyme in the cell nucleus.

Ubiquitin-activating enzyme, "E1", is the first enzyme in the pathway leading to formation of ubiquitin-protein conjugates. We present immunocytochemical evidence that Ubiquitin-activating enzyme is concentrated in the cell nucleus. This finding points to the nucleus as the major site of action of this enzyme. Since ubiquitin itself is not similarly compartmentalized, this result suggests a high level of ubiquitin conjugate formation in the nucleus with a rapid turnover of ubiquitin conjugates.

Animals

Collagen remodeling and changes in LV function during development and recovery from supraventricular tachycardia.

Chronic supraventricular tachycardia (SVT) causes left ventricular (LV) dYsfunction and dilatation. Termination of SVT appears to improve symptoms of congestive heart failure. However, the structural events that occur during development and regression of SVT-induced cardiomyopathy are unknown. Accordingly, LV function (simultaneous echocardiogram-catheterization) and collagen content and distribution were measured in pigs (23-25 kg) assigned to three groups: 1) rapid atrial pacing (240 beats/min) for 3 wk (SVT, n = 10); 2) SVT for 3 wk, followed by deactivation of the pacemaker and a 4-wk recovery period (PST, n = 9); and 3) sham-operated controls (CON, n = 10). LV fractional shortening was 30 +/- 2% in CON, fell to 13 +/- 2% with SVT (P less than 0.05), and returned to CON values with PST (31 +/- 2%). SVT resulted in significantly increased LV end-diastolic dimension compared with CON (4.9 +/- 0.3 vs. 3.5 +/- 0.2 cm, P less than 0.05) and no change in LV wt/body wt (2.7 +/- 0.2 vs. 2.6 +/- 0.2 g/kg, P = 0.85). Termination of SVT (PST) resulted in development of hypertrophy, LV mass increased to 3.50 +/- 0.3 g/kg (P less than 0.05 vs. CON). With the use of pressure-dimension-thickness relations during diastole, the regional chamber stiffness constant (Kc) was computed. Kc was unchanged by SVT compared with CON (5.3 +/- 1.4 vs. 3.7 +/- 0.5, P greater than 0.35) but increased with PST (7.4 +/- 0.6, P less than 0.05). LV hydroxyproline content significantly fell with SVT compared with CON (2.24 +/- 0.58 vs. 2.68 +/- 0.45 mg/g dry wt, P less than 0.05, respectively) and significantly increased with PST (3.68 +/- 0.85 mg/g dry wt, P less than 0.05). With the use of transmission electron microscopy, collagen fibril diameter was reduced with SVT compared with CON (1.45 +/- 0.5 vs. 1.7 +/- 0.5 microns, P less than 0.05) and increased with PST (3.3 +/- 1.4 microns, P less than 0.05). Scanning electron microscopy revealed disruption of collagen struts between adjacent SVT myocytes and a thickened collagen weave with PST. Thus chronic SVT resulted in systolic and diastolic dysfunction and reduced collagen support of adjoining myocytes. Early recovery from SVT was associated with LV hypertrophy, increased collagen, and increased LV stiffness.

Animals

Creatine kinase: race-gender differences in patients hospitalized for suspected myocardial infarction.

Race-gender differences in creatine kinase values were studied in 647 consecutive patients admitted for suspected myocardial infarction. The lowest value in a serial set for each patient was used for group comparisons. Significant differences were found between Hispanic females and black males, using standard values. Using log creatine kinase values, significant differences were found among blacks, Caucasians, and Hispanics. Males had higher log creatine kinase values than females, but no differences were found between sexes within racial groups. Body surface area differences (significant between males and females) did not explain all of the racial-gender differences found. Reexamination of ranges of normality, taking into account race-gender differences, is strongly supported by these data.

Asian People

Characterization of a specific binding protein for 2,3,7,8-tetrachlorodibenzo-p-dioxin in human thymic epithelial cells.

Specific toxic and biochemical responses elicited by 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) in human thymic epithelial (TE) cells in culture are mediated by the TCDD receptor protein. Characterization of the physicochemical properties of the TCDD receptor in cytosol fractions from cultured human TE cells indicates that this protein is similar, but not identical, to the extensively studied receptor species present in mouse and rat liver. The human TCDD receptor sediments at 9.1 S on sucrose density gradients at 0 degrees, undergoes a temperature-dependent conversion at 20 degrees to a species sedimenting at 10.7 S, and partially dissociates in the presence of 0.4 M KCl, as judged by the appearance of a peak sedimenting at 5 S. Both the temperature- and salt-dependent changes in the observed physical properties of the human TCDD receptor are inhibited by sodium molybdate. Two molybdate-stabilized binding species can be resolved from TCDD specific binding isotherms to human TE cytosol. Under identical conditions, only a single TCDD specific binding component was detected in cytosol fractions from both mouse and rat liver. Mixing cytosol prepared from human TE cells with hepatic cytosol fractions from C57BL/6 mice revealed the presence of a heat-labile, trypsin-sensitive factor in human TE cells that inhibits TCDD specific binding to the murine hepatic receptor. Molybdate stabilized the mouse receptor against the actions of this human inhibitory factor. Molybdate also may stabilize the human TCDD receptor, as indicated by the 2- to 3-fold increase in total TCDD specific binding measured in human TE cytosol fractions in the presence of this metallo-oxyanion.

Adolescent

An in vitro model for studying the toxicity of 2,3,7,8-tetrachlorodibenzo-p-dioxin to human thymus.

A coculture system of human thymic epithelial (HuTE) cells and thymocytes (T lymphocyte precursors) has been established and characterized as an in vitro model for assessing the potential toxicity of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) to human thymus. HuTE cells in culture were responsive to TCDD as judged by induction of the cytochrome P1-450 monooxygenase activities, 7-ethoxycoumarin O-deethylase (ECOD) and 7-ethoxyresorufin O-deethylase (EROD). Measurement of the responsiveness of thymocytes cocultured on TCDD-pretreated HuTE monolayers to the mitogens concanavalin A (Con A) and phytohemagglutinin (PHA) indicated that TCDD can act directly on HuTE cells to suppress thymocyte maturation (at a concentration of 10 nM, TCDD produced a 25 to 50% inhibition of thymocyte responsiveness to Con A and PHA). Both the induction of cytochrome P1-450 monooxygenase activity (EC50 values approximately 1 nM) and immunosuppressive responses elicited by TCDD in HuTE cells were concentration-dependent and stereospecific (as judged by the relative activities of chlorinated dibenzo-p-dioxin and dibenzofuran isomers), indicating involvement of the Ah receptor which was detected in all HuTE strains examined. Initial characterization of these Ah receptor-mediated responses in several strains of HuTE cells indicated marked interstrain differences in maximally inducible ECOD and EROD activities which did not appear to directly correlate with measured concentrations of the cytosolic Ah receptor, and in certain strains examined, differences in sensitivity and magnitude were observed for TCDD-evoked immunotoxic responses but not always for the induction response. These data on the actions of TCDD on cultured HuTE cells suggest that human thymus is a target for TCDD and related halogenated aromatic compounds. In HuTE cells, measurement of either the Ah receptor concentration or of marker responses such as the induction of cytochrome P1-450 alone cannot provide an accurate quantitative assessment of susceptibility to TCDD-induced thymus toxicity.

7-Alkoxycoumarin O-Dealkylase

Immunosuppression following exposure to 7,12-dimethylbenz[a]anthracene (DMBA) in Ah-responsive and Ah-nonresponsive mice.

Recent reports suggest that the immunotoxicity of certain polycyclic aromatic hydrocarbons is associated with the Ah locus in mice. To test whether immunosuppression mediated by 7,12-dimethylbenz[a]anthracene (DMBA) is regulated by the Ah locus, several endpoints of immune function were measured in Ah-responsive B6C3F1 and Ah-nonresponsive DBA/2N and in Ah-congenic C57BL/6J (responsive B6-AhbAhd and nonresponsive B6-AhdAhd) mice dosed sc with up to 100 micrograms/g DMBA in corn oil. Some groups of B6C3F1 and DBA/2N mice were exposed to 100 micrograms/g benzo[a]pyrene (B(a)P) or 1 nmol 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) for determination of hepatic microsomal monooxygenase activity. The body weights of all mice were unaffected by DMBA exposure, but thymus weights and spleen cellularity were decreased. Antibody plaque-forming cells (PFC) measured 4 days after iv sheep erythrocyte (SRBC) immunization were suppressed 99% in B6C3F1 and 96% in DBA/2 mice. Antibody PFC after in vitro immunization to SRBC were similarly suppressed 98% in both B6-AhbAhd and B6-AhdAhd Ah-congenic mice exposed to 100 micrograms/g DMBA. Responses to the T-cell mitogens concanavalin A and phytohemagglutinin were significantly suppressed in both B6C3F1 and DBA/2N strains, as was mitogenesis to bacterial lipopolysaccharide. The unidirectional mixed lymphocyte responses of the congenic strains were suppressed 76% in B6-AhbAhd and 85% in B6-AhdAhd, cytotoxic lymphocyte generation was suppressed 68% in B6-AhbAhd and 78% in B6-AhdAhd. The overall differences between immunosuppressive responses in splenocytes from B6-AhbAhd and B6-AhdAhd congenics were not significant. Induction of cytochrome P1-450, a marker of Ah responsiveness, was determined by 7-ethoxycoumarin O-deethylase monooxygenase activity in hepatic microsomes or splenocytes. This monooxygenase activity was not significantly increased in either B6C3F1 or DBA/2 mice exposed to DMBA, whereas B(a)P and TCDD exposure significantly induced enzyme activity in B6C3F1 hepatocytes. These data suggest that DMBA has an immunosuppressive action on murine splenocytes which is independent of the Ah locus and associated induction of cytochrome P1-450 xenobiotic-metabolizing enzymes.

9,10-Dimethyl-1,2-benzanthracene

Ah receptor: relevance of mechanistic studies to human risk assessment.

Studies of the toxic actions of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) in numerous animal models and in human and animal cells in culture have established that the most characteristic pathologic lesions produced by this compound result from events initiated by the interaction of TCDD with a specific intracellular receptor protein, the Ah receptor. Although most research on the interaction of TCDD with the Ah receptor has focused on establishing involvement of this receptor complex in specific toxic responses, recent application of modern cell and molecular biology techniques is yielding new insights into the mechanism(s) of signal transduction. Elucidation of these mechanisms is essential for understanding the molecular basis of the cell and species specificity which is a hallmark of TCDD toxicity. This knowledge should provide the framework for development of a more toxicologically relevant risk assessment model.

Animals

Sequence analyses of adipokinetic hormones II from corpora cardiaca of Schistocerca nitans, Schistocerca gregaria, and Locusta migratoria by fast atom bombardment mass spectrometry.

Structures of the second adipokinetic hormones (AKH II's) from three locust species have been assigned by fast atom bombardment mass spectrometry. The AKH II hormone is identical in two Schistocerca species, S. nitans and S. gregaria, but is different in Locusta migratoria. Both AKH II's are related to red pigment-concentrating hormone (RPCH) from prawns, Schistocerca AKH II being [Thr6]-RPCH and Locusta AKH II being [Ala6]-RPCH. Schistocerca AKH II is also bioactive in Locusta individuals.

Amino Acid Sequence

Cytochrome P-450 induction by 3-methylcholanthrene and its antagonism by 2,2-dimethyl-5-t-butyl-1,3-benzodioxole.

Previous studies in this laboratory have shown 2,2-dimethyl-5-t-butyl-1,3-benzodioxole (DBBD) to antagonize 3-methylcholanthrene induction of cytochrome P-450 in Dub:ICR mice yet have no effect on phenobarbital induction. In the present experiments, C57BL/6 mice, an Ah responsive strain, produced a similar response under the same experimental conditions. The hypothesis that DBBD, although not a cytochrome P-450 inducer, competes with 3-methylcholanthrene for binding to the Ah receptor was tested. Using sucrose density gradients, the Ah receptor was measured in hepatic cytosol from Dub:ICR and C57BL/6 male mice. DBBD was unable to displace either 2,3,7,8-tetra-chlorodibenzo-p-dioxin or 3-methylcholanthrene from the Ah receptor, in vitro. However, in in vivo experiments, DBBD treatment of Dub:ICR mice caused Ah receptor depression at 6 and 24 hr with complete recovery in between, while 3-methylcholanthrene treatment caused a 2-fold Ah receptor reduction at 2 hr followed by complete recovery after 12 hr. When 3-methylcholanthrene and DBBD were coadministered, the depression of the Ah receptor was additive. DBBD-pretreated mice had a 2.25-fold reduction in Ah receptor level, effectively blocking the ability of 3-methylcholanthrene to increase the cytochrome P-450 content and either benzo[a]pyrene hydroxylase or ethoxyresorufin O-deethylase activities. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis confirmed that 3-methylcholanthrene induction of cytochrome P-450 was inhibited by DBBD pretreatment. Hence, although DBBD does not displace 3-methylcholanthrene from the Ah receptor in vitro, it does antagonize 3-methylcholanthrene induction of cytochrome P-450 and also reduces the amount of available receptor in vivo. This interaction may be due either to antagonism or to downregulation of the Ah receptor.

Animals

Induction of cytochrome P-450 in congenic C57BL/6J mice by isosafrole: lack of correlation with the Ah locus.

Isosafrole induction of cytochrome P-450 was compared in congenic strains of C57BL/6J mice, one of which expresses normal levels of the Ah receptor [B6(Ahb)], and another that does not contain a measurable receptor concentration [B6(Ahd)]. Using sucrose gradient analysis of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) binding, an Ah receptor concentration of 69.1 +/- 3.8 fmol/mg protein was measured in the hepatic cytosol from B6(Ahb) mice, while no receptor could be detected in the cytosol from B6(Ahd) mice. Isosafrole treatment (75 mg/kg X 3 days) increased the total hepatic microsomal cytochrome P-450 content to the same extent in the two congenic strains. The level of microsomal monooxygenase induction in the isosafrole-treated B6(Ahd) mice was greater than that of B6(Ahb) mice for ethylmorphine N-demethylase and isosafrole metabolite-complex formation, the latter a measure of cytochrome P2-450. In the case of 7-ethoxycoumarin O-deethylase only the isosafrole-treated B6(Ahd) mice had elevated microsomal activity. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) also revealed a similar induction pattern for the two congenic strains, following isosafrole treatment. Thus, the isosafrole treated B6(Ahd) mice produced an equivalent or slightly larger induction of cytochrome P-450 than the B6(Ahb) mice, suggesting that there is no direct role for the Ah receptor in the regulation of these cytochrome P-450 monooxygenase activities by isosafrole.

7-Alkoxycoumarin O-Dealkylase

Patency rate of bifurcated aortic grafts: comparative analysis of woven versus knitted prostheses in the same patient.

To investigate the difference in patency rate between woven and knitted aortofemoral or aortoiliac prosthetic grafts, a special vascular prosthesis was manufactured with one limb of the graft knitted and the other, woven. The prosthesis was implanted in 143 consecutive patients with occlusive aortoiliac arteriosclerotic disease or aneurysms. Detailed statistical analysis failed to reveal any difference in the patency rate between the woven and knitted limbs of the grafts during an observation period ranging from one month to two years.

Aged

2,2-Dimethyl-5-t-butyl-1,3-benzodioxole: an unusual inducer of microsomal enzymes.

Our previous studies have shown that 2,2-dimethyl-5-t-butyl-1,3-benzodioxole (DBBD), a methylenedioxyphenyl (MDP) analog in which the methylene hydrogens have been replaced by methyl groups, does not form an inhibitory complex with cytochrome P-450 nor induce this cytochrome. However, in the present experiments, DBBD-treated male Dub:ICR mice showed an increase in NADPH-dependent cytochrome c (P-450) reductase and epoxide hydrolase activity. This separation of cytochrome P-450 induction from the induction of epoxide hydrolase and NADPH-dependent cytochrome c (P-450) reductase appears to be unique among inducers of xenobiotic metabolizing enzymes. In similar experiments, mice were treated with phenobarbital + DBBD or 3-methylcholanthrene + DBBD and the following parameters were measured: cytochrome P-450 content; NADPH-dependent reduction of cytochrome c; ethylmorphine and benzphetamine N-demethylase; 7-ethoxycoumarin O-deethylase; benzo[a]pyrene hydroxylase; and ethoxyresorufin O-deethylase. The microsomal proteins were examined by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate (SDS-PAGE). Phenobarbital + DBBD treatment gave results which did not differ significantly from those obtained with phenobarbital alone. In contrast, cytochrome P-450 content and benzo[a]pyrene hydroxylase and ethoxyresorufin O-deethylase activities were less in mice treated with 3-methylcholanthrene + DBBD than in animals treated with 3-methylcholanthrene alone. SDS-PAGE confirmed that induction of cytochrome P-450 by 3-methylcholanthrene was reduced by DBBD, suggesting that the latter compound may be an antagonist to the Ah cytosolic receptor.

Animals