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Arsenite-induced aryl hydrocarbon receptor nuclear translocation results in additive induction of phase I genes and synergistic induction of phase II genes.

Complex mixtures of carcinogenic metalloids, such as arsenic, and polycyclic aromatic hydrocarbons or halogenated aromatic hydrocarbons are common environmental contaminants. The biological consequences of exposure to these mixtures are unpredictable and, although the health effects of individual chemicals may be known, the toxicity of environmental mixtures is largely unexplored. Arsenic, not a potent mutagen by itself, is co-mutagenic with many DNA-damaging agents. Mixtures of arsenite plus benzo[a]pyrene (B[a]P) augment B[a]P mutagenicity, suggesting that arsenite might uncouple expression of phase I and II genes responsible for detoxification. We have studied the effects of arsenite exposure on the activation of the aryl hydrocarbon receptor (AHR) and its subsequent role in gene transactivation. Treatment of mouse Hepa-1 cells with arsenite induces AHR nuclear translocation and binding to the Cyp1a1 gene promoter with the same efficiency as tetrachlorodibenzo-p-dioxin (TCDD), the most potent ligand of the AHR; however, TCDD and B[a]P are an order of magnitude more potent than arsenite in up-regulating Cyp1a1 transcription. Global profiling analyses of cells treated with arsenite plus B[a]P indicate that several phase I and II detoxification genes are in some cases additively and in others synergistically deregulated by the mixtures. Real-time reverse transcription-polymerase chain reaction analyses of mouse embryonic fibroblasts showed that the mixtures had an additive effect on the mRNA levels of Cyp1b1, a prototypical phase I detoxification gene, and an AHR-dependent synergistic effect on the corresponding levels of Nqo1, a prototypical phase II gene. We conclude that exposure to arsenite/B[a]P mixtures causes regulatory changes in the expression of detoxification genes that ultimately affect the metabolic activation and disposition of toxicants.

Active Transport, Cell Nucleus↗

Elucidation of regulatory elements that control damage induction and competence induction of the Bacillus subtilis SOS system.

A novel consensus sequence (GAAC-N4-GTTC) has been identified within the promoter regions of DNA damage-inducible (din) genes from Bacillus subtilis. This sequence has been proposed to function as an operator site that is required for regulation of the SOS system of B. subtilis. To test this hypothesis, a deletion analysis of the dinA and recA promoter regions was utilized. A single consensus sequence is sufficient and necessary for damage-inducible regulation of the dinA and recA promoters. Deletion of the consensus sequences upstream of these promoters derepressed their expression under uninduced conditions. In addition, this deletion analysis has further defined sequences upstream of the recA promoter that are required for expression of the recA gene in cells that have differentiated to the state of natural competence. Northern (RNA) hybridization and S1 nuclease protection experiments have demonstrated that the damage-inducible and competence-inducible recA-specific transcripts initiate from a single promoter. Mutations within the comA, srfA, and degU loci each completely abolish the competence-inducible expression of the recA gene.

Amino Acid Sequence↗

Study of the activity of differentiation-induction in a Chinese herb-viscum alniformosanae. Part 1: In vitro induction of differentiation in HL-60 leukemic cell line by conditioned medium secreted from viscum alniformosanae-stimulated mononuclear cells.

A conditioned medium(CM), designated as 572-CMF-, was a Chinese herb viscum alniformosanae (V.A.) stimulated mononuclear cells. This CM has the capacity to induce the promyelocytic cell line HL-60 to differentiate into morphologically and functionally mature monocytoid cells. However, our results on the effect of a combination of 572 conditioned medium and IFN-r, TNF and IL-2 were neither synergistic nor additive. Further investigation of the nature of this conditioned medium remains to be performed.

Cell Differentiation↗

Induction of the intermediate lobe pro-opiomelanocortin system with chronic swim stress and beta-adrenergic modulation of this induction.

Swimming at 25-30 degrees C for 30 min stimulates release of beta-endorphin from both the anterior and intermediate lobe of the pituitary in rats. Measurement of N-acetyl beta-endorphin-immunoreactivity (IR), which is specific for intermediate lobe secretion, indicates a 2- to 3-fold increase in N-acetyl beta-endorphin IR in plasma following this challenge. When swim is repeated on a daily basis, there is an increase in the amount of N-acetyl beta-endorphin IR released with repeated swim over time. As well as increased response to the swim challenge, these animals demonstrate an increase in the resting plasma levels of N-acetyl beta-endorphin IR and an increase in the intermediate lobe content of N-acetyl beta-endorphin IR. Molecular sieving of plasma from rats which were swum repeatedly demonstrates that this N-acetyl beta-endorphin IR consists of both larger molecular weight N-acetyl beta-endorphin IR, e.g. N-acetyl beta-endorphin1-31 and C-terminally shortened forms, e.g. N-acetyl beta-endorphin1-27. Administration of propranolol (3 mg/kg), a beta-adrenergic antagonist, 30 min before the onset of swim is able to block the intermediate lobe release of N-acetyl beta-endorphin IR with acute swim challenge. However, repeated administration of propranolol in conjunction with repeated swim is not able to block the swim stress-induced increase in plasma N-acetyl beta-endorphin IR or the increase in N-acetyl beta-endorphin IR content of the intermediate lobe. This is not due to decreased sensitivity to propranolol with repeated administration since in rats given chronic propranolol treatment an acute dose of propranolol is still able to block swim stress-induced release of N-acetyl beta-endorphin IR. Similarly, it is not due to a decreased efficacy of this dose of propranolol in rats which were swum chronically.

Animals↗

Induction of functional cytodifferentiation in the epithelium of tissue recombinants. II. Instructive induction of Wolffian duct epithelia by neonatal seminal vesicle mesenchyme.

When grown as renal grafts in adult male hosts, the upper (cranial), middle and lower (caudal) portions of fetal mouse and rat Wolffian ducts developed into epididymis, epididymis plus ductus deferens, and seminal vesicle, respectively. In heterotypic tissue recombinants, the epithelia from upper and middle Wolffian ducts were instructively induced to undergo seminal vesicle morphogenesis by neonatal seminal vesicle mesenchyme. Functional cytodifferentiation was examined in these recombinants using antibodies against major androgen-dependent, seminal vesicle-specific secretory proteins. The instructively induced Wolffian duct epithelia synthesized normal amounts of all of the secretory proteins characteristic of mature seminal vesicles, as judged by immunocytochemistry on tissue sections and gel electrophoresis plus immunoblotting of secretions extracted from the recombinants. In heterospecific recombinants composed of rat and mouse tissues, the seminal vesicle proteins induced were specific for the species that had provided the epithelium. This showed that the seminal vesicle epithelium in the recombinants was derived from instructively induced Wolffian duct epithelium and not from epithelial contamination of the mesenchymal inductor. Upper Wolffian duct epithelium, instructively induced to undergo seminal vesicle morphogenesis, did not express epididymis-specific secretory proteins, showing that its normal development had been simultaneously repressed.

Animals↗

[Induction of atopic dermatitis-like skin lesion in NC/Nga mice--the influence of the skin barrier destroying solution to the induction of dermatitis].

NC/Nga mouse is well known as a mouse model for atopic dermatitis. In general, when NC/Nga mouse are raised under specific pathogen free (SPF) conditions no skin lesions are detected, but when under non-filtrated (conventional) condition, atopic dermatitis like skin lesions appear spontaneously. However, this dermatitis develops in 70-90% of mice (not 100%), which makes it difficult to perform reproducible experiments every time. This study was performed under SPF conditions, using the four solutions (2% SDS, 4% SDS, ethanol, acetone/ether) to destroy the skin barrier function, and thereafter, applying the extracted solution of mite: Dermatophagoides pteronyssinus, which is a very popular antigen in pathogenesis of human atopic dermatitis. The extracted solution of mite was applied repeatedly on the NC/Nga mice with a pretreatment of barrier destroying solution and after 8 weeks the mice developed severe dermatitis (clinical skin condition score of 7-10.2 points) with marked elevation of plasma IgE level, whereas mice coated only with the barrier destroying solution showed weak skin lesion with no elevation of plasma IgE level. BALB/c mice, which are employed as control, showed weak skin lesion (clinical skin condition score of 0-3.8 points) and slight elevation of plasma IgE level after repeated application of the extracted solution of mite with a pretreatment of the barrier destroying solution, whereas mice coated only with the barrier destroying solution showed weak skin lesion and the no elevation of plasma IgE level was observed. In this study, using several solutions to disturb the skin barrier function before applying the antigen, we have found a suitable condition and types of solutions in inducing dermatitis in NC/Nga mice.

Acetone↗