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J F Ewing

Publications and source records attributed to J F Ewing.

27 records · Page 2Linked to original sources

Human heme oxygenase-2: characterization and expression of a full-length cDNA and evidence suggesting that the two HO-2 transcripts may differ by choice of polyadenylation signal.

We show by Northern blot analysis that human HO-2 is encoded by two transcripts (1.3 and 1.7 kb) and is a single-copy gene as judged by Southern blot analysis. We further provide evidence based on Northern blot and sequence analysis of a cDNA representing the larger transcript that the transcripts differ in the 3' untranslated region. A 274-base-pair DNA fragment from the rat heme oxygenase-2 gene (I. Cruse and M.D. Maines, 1988, J. Biol. Chem. 263, 3348-3353) was used to isolate a human HO-2 cDNA from a fetal kidney library in lambda gt11. The clone, designated hK-1, was sequenced and the cDNA insert was determined to be 1625 base pairs in length, encoding a protein of 313 amino acids. Two consensus polyadenylation signals separated by 440 nucleotides were identified in the 3' untranslated region. The size of the cDNA insert closely approximated the larger of two mRNAs. The nucleotide sequence was 88% identical to the rat HO-2 gene within the predicted coding region and the putative translation product was also estimated to be 88% identical to the rat gene product (M. O. Rotenberg and D. Maines, 1990, J. Biol. Chem. 265, 7501). The predicted size, 36 kDa, corresponded well with HO-2 detected in human testis microsomes by Western blot analysis. Further, the fusion protein expressed in Escherichia coli displayed significant heme oxygenase activity, which was inhibited by Zn- and Sn-protoporphyrins, known inhibitors of eukaryotic heme oxygenase, but not by sulfhydryl reagents.

Amino Acid Sequence↗

Normal and heat-induced patterns of expression of heme oxygenase-1 (HSP32) in rat brain: hyperthermia causes rapid induction of mRNA and protein.

Most cells possess a variety of mechanisms, such as high levels of glutathione, that guard against cytotoxic free radicals, which are suspected in the etiology of various neurological deficits. Neurons, however, are deficient in this antioxidant source. The list of other potent antioxidants includes the bile pigments biliverdin and bilirubin. Heme oxygenase (HO) isozymes, HO-1 (HSP32) and HO-2, catalyze the rate-limiting step in the only biological pathway by which bile pigments are produced. In this study, heat shock is identified as the only stimulus reported to date that can alter expression in brain HO-1 of protein and mRNA in vivo. Using a HO-1 cDNA probe, we examined the level of HO-1 mRNA in normal rat brain and in brain 1 and 6 h following heat shock. Exposure of male rats to 42 degrees C for 20 min caused a 20-fold increase in brain HO-1 1.8-kb mRNA within 1 h after treatment. Quantification of brain HO-1 protein by HO-1 radioimmunoassay revealed a fourfold increase at 6 h posttreatment. In normal brain, HO-1 protein was sparsely expressed in few select neuronal and nonneuronal cell populations in forebrain, diencephalon, cerebellum, and brainstem regions. Six hours following heat shock, an intense increase in HO-1 protein in glia throughout the brain, ependyma lining the ventricles of the brain, paraventricular nucleus, Purkinje cell layer of the cerebellum, and cochlear nucleus of brainstem was observed. We suggest that increases in HO-1 transcript and protein reflect a means to elevate levels of antioxidants in cells with compromised defense mechanisms caused by stress.

Animals↗

Rapid induction of heme oxygenase 1 mRNA and protein by hyperthermia in rat brain: heme oxygenase 2 is not a heat shock protein.

Catalytic activity of heme oxygenase (heme, hydrogen-donor:oxygen oxidoreductase, EC 1.14.99.3) isozymes, HO-1 and HO-2, permits production of physiologic isomers of bile pigments. In turn, bile pigments biliverdin and bilirubin are effective antioxidants in biological systems. In the rat brain we have identified only the HO-1 isozyme of heme oxygenase as a heat shock protein and defined hyperthermia as a stimulus that causes an increase in brain HO-1 protein. Exposure of male rats to 42 degrees C for 20 min caused a rapid and marked increase in brain 1.8-kilobase HO-1 mRNA. Specifically, a 33-fold increase in brain HO-1 mRNA was observed within 1 h and sustained for at least 6 h posttreatment. In contrast, the two HO-2 homologous transcripts (1.3 and 1.9 kilobases) did not respond to heat shock; neither the ratio nor the level of the two messages differed from that of the control when measured either at 1, 6, or 24 h after hyperthermia. The induction of a 1.8-kilobase HO-1 mRNA resulted in a pronounced increase in HO-1 protein 6 h after hyperthermia, as detected by both Western immunoblot and RIA. Immunocytochemistry of rat brain showed discrete localization of HO-1-like protein only in neurons of select brain regions. Six hours after heat shock, an intense increase in HO-1-like protein was observed in both Purkinje cells of the cerebellum and epithelial cells lining the cerebral aqueduct of the brain. We suggest that the increase in HO-1 protein, hence increased capacity to form bile pigments, represents a neuronal defense mechanism against heat shock stress.

Animals↗

Heterogeneity of haem oxygenase 1 and 2 isoenzymes. Rat and primate transcripts for isoenzyme 2 differ in number and size.

In Cebus apella monkey, as with other mammalian species tested to date, two different forms of haem oxygenase, HO-1 and HO-2, are detected. With the use of cDNA fragment corresponding to HO-1 nucleotides +71 to +833, blot hybridization of RNA revealed the presence of only one HO-1 mRNA of approx. 1.8 kb in both rat and monkey liver, kidney and brain. With the use of a full-length HO-2 DNA probe, blot hybridization of RNA isolated from the same rat organs revealed the presence of two HO-2 homologous transcripts of approx. 1.3 kb and approx. 1.9 kb. The same probe detected only one message of approx. 1.7 kb in monkey organs. The rat 1.3 kb mRNA has been previously shown [Rotenberg & Maines (1990) J. Biol. Chem. 265, 7501-7506] to encode HO-2 (36 kDa). The monkey 1.7 kb mRNA and the rat 1.3 kb mRNA encode proteins with similar molecular masses and immunochemical properties as indicated by Western-immunoblotting analysis. In rat organs the relative abundance of the two mRNAs differed as follows: in the liver the 1.3 kb mRNA was by far the most abundant form; in the brain equal amounts of the two mRNAs were detected, whereas in the kidney the 1.3 kb mRNA was somewhat more abundant. The protein encoded by the 1.8 kb HO-1 mRNA in the monkey did not exhibit immunochemical reactivity with antibody to rat HO-1 in Western blotting and direct e.l.i.s.a. analysis. The data suggest that, at the primary structural level, both HO-1 and HO-2 share extensive base sequence similarity in the rat and the Cebus apella monkey. The HO-1 protein, however, appears to undergo differential post-translational and/or conformational modifications in the two species, whereas the secondary structure of HO-2 protein and antigenic epitopes are conserved among the two mammalian species.

Animals↗

Phospholipase C-mediated release of low molecular weight follicle-stimulating hormone receptor-binding inhibitor from testis membranes.

Low molecular weight inhibitors (FRBI) of FSH binding to receptor have been isolated from a variety of gonadal tissue extracts. Because of similarities noted in the composition of FRBI and that expected for polypeptides anchored to plasma membrane via a glycosyl-phosphatidylinositol linkage, we used bacterial phospholipase C to determine if FRBI could be released from calf testis membranes. FRBI was measured by use of radioligand-receptor assays and by a direct chemical method involving derivatization with dansyl chloride followed by HPLC. Phospholipase C treatment released FRBI from calf testis membranes in a time-dependent fashion. Phospholipase C-mediated release was blocked by O-phenanthroline, a specific inhibitor of phosphoinositol-phospholipase C (PI-PLC) activity. These data suggest that FRBI is anchored to testicular plasma membranes via a phospholipase C cleavable glycosyl-phosphatidylinositol anchor. The quantity of PI-PLC releasable FRBI in the testis and its FSH receptor-binding inhibitory potency suggest the possibility that endogenous regulation of FRBI release from testicular membranes could result in local attenuation of FSH action at the receptor level.

Animals↗

Effect of bacterial lipopolysaccharide on growth of murine bladder cancer, MBT-2.

Intradermal palpable MBT-2 tumor responded with bacterial lipopolysaccharide to hemorrhagic necrosis (LPS) in C3H/HeN (endotoxin sensitive) mice. We have tested LPS fractions isolated from E. coli, Klebsiella pneumoniae, Salmonella minnesota, Pseudomonas aeruginosa and Serratia culture filtrates. All these LPS preparations showed tumor necrotizing activity accompanied by toxicity (body weight loss) in C3H/HeN mice. However, MBT-2 tumors grown in an endotoxin-resistant strain (C3H/HeJ) of mice did not respond to LPS, even at a very high dose. In vitro, the LPS showed no cytotoxic effect on MBT-2 cells. For comparison, systemic administration of tumor necrosis factor (cachexin ) did not affect the i.d. tumor growth. These data indicate that host reactions to LPS (endotoxicity) plays a pivotal role in the expression of tumor necrosis. Accordingly, comparisons of tumor response between endotoxin sensitive and resistant mice avoid potential overestimation of the therapeutic value of certain bacterial products and/or LPS contaminated agents.

Animals↗

The neuroendocrine prostate: characterization and quantitation of calcitonin in the human gland.

Calcitonin was extracted from surgically-derived prostate tissue, and quantified using radioimmunoassay. Normal prostatic specimens contained 15.18 +/- 10.03 ng./gm. wet weight (mean +/- S.D., n = 20), with a range of 1.50 to 39.62 ng./gm. The result for the hyperplastic tissue samples (n = 20) averaged 0.63 +/- 0.39 ng./gm. with a range of 0.22 to 1.49 ng./gm. This difference was statistically significant (p less than .0001). Dilution profiles for the prostatic calcitonin and synthetic monomeric human calcitonin were congruent, suggesting that the two peptides are identical. A comparison of calcitonin levels and the number of immunohistochemically derived neuroendocrine cells in contiguous tissue sections showed an empiric correlation. The mean calcitonin level in normal human prostate tissue was found to exceed values previously reported for numerous other organs, with the exception of the thyroid gland, the principal source of circulating calcitonin. We propose that a subpopulation of neuroendocrine cells within the prostate gland produce calcitonin, as is the case in the gastrointestinal tract, lung, and other organs. Our findings also support the hypothesis that the calcitonin found in seminal fluid originates in the prostate. Putative roles for calcitonin in the genitourinary system are discussed.

Calcitonin↗

Follicle stimulating hormone binding inhibitor produced by the bacteria Serratia interacts with receptor for follicle stimulating hormone in calf testis membranes.

Bacteria of the genus Serratia, including a strain of Serratia liquifaciens isolated from contaminated porcine follicular fluid, produced an inhibitor of 125I-human follicle-stimulating hormone (hFSH) binding to calf testis membranes in vitro. In order to evaluate its potential usefulness and significance, we undertook studies to identify the site of action of this inhibitor. Large quantities (grams) of inhibitor-containing material (SL-1) were obtained by enrichment culture techniques and its chemical composition was determined. Follicle-stimulating hormone-binding inhibitory activity (FSH-BI) in SL-1 was associated with a protein-containing substance of approximately 30,000 Mr and also with larger Mr (greater than 300,000) forms. Preincubation studies demonstrated that binding inhibition by SL-1 was due to effects on the membranes rather than effects on the radioligand (125I-hFSH). Kinetics studies indicated that FSH inhibition by SL-1 was a relatively slow process that reached steady-state conditions between 23 and 25 h at 20 degrees C, in contrast to FSH, which reached steady-state conditions by 12 h at 20 degrees C. Estimates of FSH-BI activity, e.g., mass required to produce a 50% inhibition of 125I-hFSH binding, varied drastically when these kinetics differences were not taken into account. Our observations emphasize the need to establish steady-state conditions for each ligand before assessing mechanisms of action using Michaelis-Menton assumptions (e.g., competitive binding assays, Scatchard analyses).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗