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Activation of protein kinase C subtypes alpha, gamma, delta, epsilon, zeta, and eta by tumor-promoting and nontumor-promoting agents.

Protein kinase C (PKC) subtypes alpha, gamma, delta, epsilon, zeta, and eta have been expressed using the baculovirus expression system. The partially purified PKC subtypes have been studied for their substrate specificities and phospholipid-independent activation by various chemically different nontumor- and tumor-promoting agents, as well as their inhibition of kinase activity by staurosporine and two related compounds. An endogenous PKC-like kinase activity of Sf9 cells was detected and analyzed for cofactor requirements and inhibition. Protamine sulfate was most efficiently phosphorylated by all of the PKC subtypes tested, although this phosphorylation was independent of phosphatidylserine (PS) and diacylglycerol (DAG) or 12-O-tetradecanoylphorbol 13-acetate (TPA). Except for PKC-zeta, all subtypes tested phosphorylated myelin basic protein (MBP), histone, or a peptide derived from the pseudosubstrate region of PKC-alpha in a PS/DAG-dependent manner but to varying extents. Among the various agents tested, TPA most efficiently stimulated the kinase activities of the PKC subtypes in a phospholipid-dependent manner. Phorbol 12,13-dibutyrate (PDBu) was less effective than TPA but displayed no major difference among the subtypes. Activation of PKC-alpha by bryostatin-1 reached only half of the TPA response whereas the other subtypes were activated more effectively. The weak tumor promoter resiniferonol 9,13,14-orthophenyl acetate (ROPA) mainly stimulated PKC-alpha and PKC-gamma at 1 microM concentration, whereas PKC-epsilon and PKC-eta were much less activated. Sapintoxin D, mezerein, indolactam V, and resiniferatoxin at concentrations of 1-100 nM preferentially activated PKC-alpha in a DAG-like manner, whereas at 1 microM other subtypes were activated as well. Preferential activation of PKC-alpha was also noted for tinyatoxin and thapsigargin, but their mode of activation is unclear because these two compounds did not compete for the phorbol ester binding of the PKC subtypes as the other agents did. Of the three PKC inhibitors tested, staurosporine most efficiently inhibited kinase activity of the PKC subtypes, whereas K252a and CGP 41251 were at least 10 times less effective. However, K252a showed certain specificity for inhibition of PKC-alpha, and CGP 41251 failed to inhibit PKC-epsilon and PKC-zeta. Given the different substrate specificities and modes of activation by various tumor-promoting and nontumor-promoting agents, as well as the different sensitivities towards different inhibitors, our results indicate a divergence of individual PKC subtypes in signal transduction.

Animals↗

A model for transcriptional regulation based upon homology between introns and promoter regions and secondary structure in the promoter regions: the human globins.

Considerable homology was detected between promoter regions and introns of the same gene for each of the six genes in the human globin complex. In addition, homology between a promoter region of one gene and an intron of a second gene was observed. Each of the six genes also had extensive stem-loop structures in the promoter region. When the stretches of intron-promoter homology were compared to the regions involved in stem-loop structures, the two were found to be overlapping. It was hypothesized that the regulation of globin-switching in humans was accomplished by base pairing of intron transcripts with critical regions of the stem-loop structures. This hypothesis is consistent with all known facts regarding normal globin-switching.

Base Sequence↗

DNA damage promotes histone deacetylase 4 nuclear localization and repression of G2/M promoters, via p53 C-terminal lysines.

Repression of G(2)/M promoters after DNA damage is an active mechanism that requires the p53 tumor suppressor. We have recently found that histone deacetylase 4 (HDAC4) is recruited on NF-Y-dependent repressed promoters. In this report, we describe the relationship between p53 and HDAC4 recruitment following DNA damage using immunofluorescence, chromatin immunoprecipitation, and transfection experiments. HDAC4 shuttles from the cytoplasm into the nucleus, following DNA damage, independently of the activation of p53 and becomes associated with promoters through a p53-dependent mechanism. The C-terminal lysines of p53, which are acetylated and methylated, are required for HDAC4 recruitment and transcriptional repression. Trichostatin treatment, but not HDAC4 functional inactivation, relieves the adriamycin-mediated repression of G(2)/M promoters. Our results indicate that HDAC4 is a component of the DNA damage response and that post-translational modifications of p53 are important for repression of G(2)/M genes.

Animals↗

Studies on the anti-tumor-promoting activity of naturally occurring substances. IV. Pd-II [(+)anomalin, (+)praeruptorin B], a seselin-type coumarin, inhibits the promotion of skin tumor formation by 12-O-tetradecanoylphorbol-13-acetate in 7,12-dimethylbenz[a]anthracene-initiated mice.

Since Pd-II [(+)anomalin, (+)praeruptorin B], a seselin-type coumarin, was found to inhibit tumor promoter induced phenomenon in vitro, the effect of Pd-II on the in vivo tumor-promoting action of 12-O-tetradecanoylphorbol-13-acetate (TPA) in 7,12-dimethylbenz[a]anthracene-initiated mouse skin was investigated. Pd-II, applied 40 min before the TPA treatment, at a dose of 10 mumol/painting, completely suppressed tumor formation up to 20 weeks of tumor promotion, without any toxicity. Besides Pd-II, various anti-tumor-promoter coumarins were found in the traditional Chinese medicine Qian-Hu, from which Pd-II was obtained. These coumarins may be useful for the development of an effective method to prevent cancer.

9,10-Dimethyl-1,2-benzanthracene↗

Toxicokinetics of tumour promoters of mouse skin. II. Metabolism of the tumour promoter 12-O-tetradecanoylphorbol-13-acetate in mouse skin and biological activities of metabolites.

The metabolism of the phorbol diester [20-3H]12-O-tetradecanoylphorbol-13-acetate [( 3H]TPA) was studied in the back skin of NMRI mice after topical administration of a single tumour-promoting dose, dp. Up to 72 h after administration most of the radioactivity recovered from the skin surface, and from the epidermis and dermis of the treated skin area was unchanged TPA, as determined by silica gel HPLC of extracts obtained from these skin fractions. The major TPA metabolite was less polar than TPA and chromatographed in the range of long-chain TPA-20-acylates. At 72 h, it accounted for about 25, 5 and 30% of total radio-activity extracted from skin surface, epidermis and dermis respectively. Of metabolites more polar than TPA, phorbol-13-acetate (PA) by far predominated over 12-O-tetradecanoylphorbol (TP) in both the epidermis and dermis, and by 72 h its relative amount was 3.9 and 2.4% in these skin fractions. Both phorbol monoesters, PA and TP, were not detected in skin surface extracts. In addition to metabolites, various autoxidation products of TPA were present in small amounts in the extracts from each of the skin fractions. The TPA-20-acylate fraction of metabolites isolated from the extracts of skin fractions at 24 h was separated further into the individual metabolites by the combined use of argentation and reversed-phase HPLC. These individual metabolites were identified by co-chromatography with authentic reference compounds. They were TPA-20-acylates carrying saturated fatty acids (16-26 carbon atoms), cis-mono-unsaturated fatty acids (16-24 carbon atoms), linoleic acid and arachidonic acid. The conjugation of TPA with long-chain fatty acids is the first example of a new route of xenobiotic metabolism in skin. When tested for irritant activity on the mouse ear, TPA-20-acylates were about one to two orders of magnitude less active than TPA. Similarly, when TPA-20-tetradecanoate was tested for tumour-promoting activity on the back skin of NMRI mice over a dose range of dp = 50-200 nmol applied twice weekly according to the computer-assisted standard protocol 16, it was found to be of only intermediate potency as compared to the highly potent tumour promoter TPA. The results of the present investigation indicate that metabolic conjugation of TPA with long-chain fatty acids to yield TPA-20-acylates is another pathway of metabolic deactivation of TPA, thus supporting the hypothesis that TPA itself is the ultimate tumour promoter in mouse skin.

Animals↗

Asbestos promotes morphological transformation and elevates expression of a gene family invariably induced by tumor promoters in C3H/10T1/2 cells.

The murine proliferin gene family, which has been shown to respond consistently to tumor promoters and other cellular pro-oxidant agents in C3H/10T1/2 cells, was used to monitor responses after treatment of these cell cultures with toxic, pro-oxidant asbestos fibres. Proliferin mRNA levels were increased by amosite, crocidolite or chrysotile asbestos fibres, especially in the presence of fresh serum and at low cell densities. Promotion of morphological transformation was confirmed in two-stage focus formation assays using crocidolite at a fibre density that induced proliferin expression. Asbestos-induced gene expression was inhibited by millimolar levels of N-acetylcysteine (NAC), supporting a linkage between: (i) induced oxidant stress that was sufficient to promote morphological transformation; (ii) induction of proliferin expression. Other anti-oxidant compounds (dithiothreitol and pyrrolidine dithiocarbamate) or enzymes (superoxide dismutase and catalase) did not inhibit induced expression. Non-fibrous powders (titanium dioxide, quartz or silica gel) were also effective inducers of proliferin mRNA accumulation. Latex beads and activated charcoal were effective at higher particle densities, implying that ubiquitous particle-induced surface membrane effects can lead to an NAC-reversible step necessary for proliferin induction. The results showed that asbestos resembled all other promoters of morphological transformation in C3H/10T1/2 cells in that an antioxidant-sensitive induction of the proliferin gene family occurred following treatment.

Animals↗

Grafting assay distinguishes promotion sensitive from promotion resistant JB6 cells.

The JB6 mouse epidermal cell system has been used extensively as an in vitro transformation model for the study of tumor promotion. The standard JB6 cell assay for promotion of transformation is carried out in soft agar or other anchorage independent conditions. The present study was directed to the development of an in vivo model to distinguish the promotion resistant (P-) and promotion sensitive (P+) progression phenotypes. Results indicate that the grafting assay distinguishes P- and P+ cells in vivo with P+ but not P- cells forming tumors within 7-9 weeks. Expression of dominant negative mutant jun TAM67 blocks both anchorage independent transformation response and graft bed tumor formation by P+ cells, suggesting that the requirement for AP-1 activation in transformation now applies in vivo. Expression of mutated p53 produced a gain of P+ phenotype in P- cells in vitro, but not in vivo. Histochemical and Northern blot analysis for expression of various keratinocyte markers revealed no evidence for expression, suggesting a loss of keratinocyte markers following establishment in culture. In summary, the skin-grafting assay described in this study appears to be a valid in vivo assay for distinguishing the preneoplastic progression phenotypes represented by JB6 P- and P+ cells.

Animals↗

Analysis of the promoters for the two immunity genes present in the ColE3-CA38 plasmid using two new promoter probe vectors.

We have constructed two new promoter probe vectors which carry a polylinker derived from plasmid pUC19 proximal to the 5' end of a promoter-less galactokinase gene. Using these two vectors we have demonstrated that the ColE3imm gene and the ColE8imm gene present on the ColE3-CA38 plasmid have their own promoters, independent of the SOS promoter of the colicin E3 structural gene. The activity of two terminators, one located proximal to the 5' end of the ColE8imm gene, the other located proximal to the 5' end of the lys gene, were shown by a comparison of the galactokinase activity conferred by several of the recombinant plasmids.

Bacterial Proteins↗

NELF and DSIF cause promoter proximal pausing on the hsp70 promoter in Drosophila.

NELF and DSIF collaborate to inhibit elongation by RNA polymerase IIa in extracts from human cells. A multifaceted approach was taken to investigate the potential role of these factors in promoter proximal pausing on the hsp70 gene in Drosophila. Immunodepletion of DSIF from a Drosophila nuclear extract reduced the level of polymerase that paused in the promoter proximal region of hsp70. Depletion of one NELF subunit in salivary glands using RNA interference also reduced the level of paused polymerase. In vivo protein-DNA cross-linking showed that NELF and DSIF associate with the promoter region before heat shock. Immunofluorescence analysis of polytene chromosomes corroborated the cross-linking result and showed that NELF, DSIF, and RNA polymerase IIa colocalize at the hsp70 genes, small heat shock genes, and many other chromosomal locations. Finally, following heat shock induction, DSIF and polymerase but not NELF were strongly recruited to chromosomal puffs harboring the hsp70 genes. We propose that NELF and DSIF cause polymerase to pause in the promoter proximal region of hsp70. The transcriptional activator, HSF, might cause NELF to dissociate from the elongation complex. DSIF continues to associate with the elongation complex and could serve a positive role in elongation.

Animals↗

High correlation between lipid peroxide radical and tumor-promoter effect: suppression of tumor promotion in the Epstein-Barr virus/B-lymphocyte system and scavenging of alkyl peroxide radicals by various vegetable extracts.

We examined the ability of hot-water extracts of 66 vegetables and plants to suppress tumor promotion, as well as to scavenge lipid peroxide radicals in vitro. To assess the effect against tumor promotion (transformation) in vitro, we used the phorbol myristate acetate/Epstein-Barr virus/B-lymphocyte system. To assess the lipid radical-scavenging effect, the luminol-enhanced chemiluminescence method using the tert-butyl hydroperoxide/heme system was used, which generates more alkyl peroxide radical (ROO.) than alkyl (R.) and alkoxyl (RO.) radicals. The results showed a significant correlation between the anti-tumor-promoting effect and the lipid radical-scavenging effect (r = 0.82). We found that boiled extracts of green leaves of carrot, crucifers, and beans (black bean, red bean, mung bean, and soybean) had the greatest anti-tumor-promoter and radical-scavenging activities. Cold-water extracts of vegetables generally exhibited only about 10% or less of the activity of the hot-water extracts.

Antigens, Viral↗

Tumor-promoting phorbol esters promote melanogenesis and prevent expression of the adrenergic phenotype in quail neural crest cells.

Tumor-promoting phorbol esters were used to manipulate the in vitro development of neural crest cells. When plated at clonal density in secondary culture, quail neural crest cells from the trunk region gave rise to three types of colonies, pigmented, unpigmented, and mixed. Pigmented colonies consisted exclusively of melanocytes; up to 50% of the unpigmented mixed colonies contained adrenergic nerve cells which could be identified by a catecholamine-specific histofluorescence method. Addition of potent tumor promoters to the culture medium shortened the doubling time of neural crest cells and altered their morphologic appearance. It also delayed the onset of pigmentation, prevented the expression of the adrenergic phenotype, reduced the number of unpigmented and mixed colonies, and increased the number of pigmented colonies, most likely by directing progenitor cells preferentially to the melanogenic pathway. There was a clear correlation between the ability of phorbol esters to promote skin tumors in mice and their ability to interfere with the in vitro development of quail neural crest cells. The potent promoters 12-0-tetradecanoyl phorbol 13-acetate (TPA) and phorbol 12,13-didecanoate (PDD) were most effective, phorbol 12,13-diacetate (PDA) was considerably less effective, the nonpromoting analogues 4-0-methyl 12-0-tetradecanoyl phorbol 13-acetate (4-0-Me-TPA) and 4 alpha-phorbol 12,13-didecanoate (4alpha-PDD) and the parent alcohol phorbol (PHR) had little or no effect.

Animals↗

Enhancing effect of absorption promoters on percutaneous absorption of a model dye (6-carboxyfluorescein) as poorly absorbable drugs. I. Comparison of plasma levels after addition of various absorption promoters in rat.

We have investigated the promotive effect of various agents on percutaneous absorption of 6-carboxyfluorescein (CF), a water-soluble fluorescent dye, as poorly absorbable drugs. The absorption of CF was determined by measuring rat plasma CF levels. As an absorption promoter, several reagents such as surface-active agents, protein solubilizers and permeation promoters were used. The used concentration of the reagents was determined so as not to make a trauma on the skin. As results, plasma CF levels following the co-administration of 0.05 w/v% sodium dodecyl sulfate and 0.1 v/v% 2-mercaptoethanol showed the highest values. Plasma CF level was increased 40 times as compared to that of control experiment and was increased 9 times as compared to that of pretreatment with 4 w/v% calcium thioglycolate which was reported previously as a strong absorption promoter for theophylline by us. When the stratum corneum, having a barrier function for percutaneous absorption of many compounds, was removed mechanically, plasma CF levels of control experiment and pretreatment with 4 w/v% calcium thioglycolate were increased remarkably. However, plasma CF level after the co-administration of 0.05 w/v% sodium dodecyl sulfate and 0.1 v/v% 2-mercaptoethanol did not show a considerable difference as compared to that of the case with the presence of the stratum corneum.

Administration, Topical↗

Microbial compounds selectively induce Th1 cell-promoting or Th2 cell-promoting dendritic cells in vitro with diverse th cell-polarizing signals.

Upon microbial infection, specific Th1 or Th2 responses develop depending on the type of microbe. Here, we demonstrate that different microbial compounds polarize the maturation of human myeloid dendritic cells (DCs) into stably committed Th1 cell-promoting (DC1) or Th2 cell-promoting (DC2) effector DCs that polarize Th cells via different mechanisms. Protein extract derived from the helminth Schistosoma mansoni induced the development of DC2s that promote the development of Th2 cells via the enhanced expression of OX40 ligand. Likewise, toxin from the extracellular bacterium Vibrio cholerae induced development of DC2s as well, however, via an OX40 ligand-independent, still unknown mechanism. In contrast, toxin from the intracellular bacterium Bordetella pertussis induced the development of DC1s with enhanced IL-12 production, which promotes a Th1 cell development. Poly(I:C) (dsRNA, mimic for virus) induced the development of extremely potent Th1-inducing DC1, surprisingly, without an enhanced IL-12 production. The obtained DC1s and DC2s are genuine effector cells that stably express Th cell-polarizing factors and are unresponsive to further modulation. The data suggest that the molecular basis of Th1/Th2 polarization via DCs is unexpectedly diverse and is adapted to the nature of the microbial compounds.

Antigens, Helminth↗

Differential induction of c-fos and c-jun proto-oncogenes and AP-1 activity by tumor promoter 12-O-tetradecanoyl phorbol 13-acetate in cells at different stages of tumor promotion in vitro.

A two-stage (initiation and promotion) model of chemical transformation of mouse embryonic fibroblasts was used to elucidate the molecular mechanisms of tumor promotion in vitro. C3H10T1/2 cells which had been initiated with a subcarcinogenic dose (0.5 micrograms ml-1) of benzo[a]pyrene (B[a]P) were isolated after 12-O-tetradecanoyl phorbol 13-acetate (TPA) treatment lasting 12, 24 or 36 days. These series of partially promoted cells were designated T-12, T-24 and T-36 cells. T-12 and T-24 cells exhibited higher anchorage-independent growth on soft agar in the presence of TPA than did the initiated or T-36 cells. Cytosolic protein kinase C (PKC) in the resting state was slightly depleted in T-24 and T-36 cells. Proteolytic down-regulation of membrane-bound PKC was enhanced in T-12 cells compared with the initiated cells after 3 h of TPA treatment. Induction of c-fos and c-jun proto-oncogene expression increased two- to threefold in T-12 cells. Moreover, the basal level of c-fos mRNA progressively increased in T-12, T-24 and T-36 cells. As compared with other cell types, T-12 cells had the highest AP-1 DNA-binding activity at both the basal level and at 30 min after TPA treatment. These results indicate that deregulation of the TPA-induced cellular responses occurs in the cells at various stages of tumor promotion, and might be associated with transforming processes.

Animals↗

Effect of the wake-promoting agent modafinil on sleep-promoting neurons from the ventrolateral preoptic nucleus: an in vitro pharmacologic study.

STUDY OBJECTIVES: The pharmacologic profile of modafinil, an increasingly popular wake-promoting drug for narcolepsy treatment, differs from those of classic psychostimulants such as amphetamine. However, its brain targets are still a matter of debate. We hypothesized that modafinil could increase waking by inhibiting the sleep-promoting neurons from the ventrolateral preoptic nucleus (VLPO). Such action could be direct or indirect via the potentiation of inhibition mediated by waking neurotransmitters. We thus studied the effect of modafinil on the membrane potential and firing rate of VLPO neurons recorded in rat-brain slices. We further determined whether pretreatment with modafinil modifies the effect of noradrenaline, carbachol, serotonin, histamine, dopamine, or clonidine. MEASUREMENTS AND RESULTS: Pretreatment with modafinil specifically increased the inhibition of VLPO neurons induced by noradrenaline but had no effect when applied alone or in combination with other substances. Pretreatment with nisoxetine, a selective noradrenaline reuptake blocker, similarly increased the noradrenaline-induced inhibition of VLPO cells. Further, the potentiation by modafinil was minimized when modafinil and nisoxetine were applied together. CONCLUSIONS: These results suggest that modafinil blocks the reuptake of noradrenaline by the noradrenergic terminals on sleep-promoting neurons from the VLPO. Such a mechanism could be at least partially responsible for the wake-promoting effect of modafinil.

Animals↗

Differential induction of 15 and 16 kDa nuclear proteins in promotion sensitive and promotion resistant mouse JB6 cells.

Gene expression relevant to promotion of neoplastic transformation was investigated by measuring proteins differentially synthesized in two mouse epidermal JB6 cell lines sensitive (P+) or resistant (P-) to tumor promoter induced transformation. One dimensional polyacrylamide gel electrophoresis of proteins from cells that had been pulse labeled with 35S-methionine after various times of exposure to the phorbol ester 12-O-tetradecanoylphorbol 13-acetate (TPA) revealed two protein bands whose intensity increased after 20-24 hr exposure to TPA. Cell fractionation showed that these proteins of 15 and 16 kDa were localized in the nuclear, not the cytosolic, fraction. Parallel studies with 32P-labeled cells showed no evidence for phosphorylation of these proteins. Comparison of P- with P+ cells showed that the observed induction of p15/16 synthesis at 20 hr was specific for P+ cells, with little evidence for stimulated synthesis in P- cells during a 48 hr period. We thus conclude that the tumor promoter produces a late stimulation in the rate of synthesis of 15 and 16 kDa nuclear proteins preferentially in promotion sensitive cells.

Animals↗

A critical base in the yeast mitochondrial nonanucleotide promoter. Abolition of promoter activity by mutation at the -2 position.

The yeast mitochondrial promoter comprises a highly conserved nonanucleotide sequence, 5'-ATATAAGTA-3'. Transcription is initiated both in vivo and in vitro at the 3'-terminal A (+1). The G at the -2 position is strictly conserved. The requirement for this nucleotide is established by comparing the in vitro promoter activity of nonanucleotides containing any of the four bases at the -2 position, obtained as synthetic oligonucleotides. Only the synthetic promoter having G at the -2 position exhibits any promoter activity.

Base Sequence↗

Activation of protein kinase C and specific phosphorylation of a Mr 90,000 membrane protein of promotable BALB/3T3 and C3H/10T1/2 cells by tumor promoters.

The activation of protein kinase C and protein phosphorylation by tumor promoters were examined using quiescent cultures of BALB/3T3 and C3H/10T1/2 cells, because in these cells tumor promoters enhance chemically induced transformation and also induce DNA synthesis and ornithine decarboxylase. The cytosol and membrane fractions were partially purified, and the activity of protein kinase C was assayed. In quiescent cells, protein kinase C activity was found only in the cytosol fraction. Treatment with 100 ng of 12-O-tetradecanoylphorbol-13-acetate or teleocidin B per ml caused rapid translocation of protein kinase C from the cytosol to the membrane fraction. The activity in the cytosol disappeared almost completely after 15 min when the activity in the membrane reached a peak. The membrane activity gradually decreased to the control level after 6 h, while no activity reappeared in the cytosol within 6 h. Under these circumstances, a membrane protein with a molecular weight of 90,000 and pl of 4.0-4.4 (termed p90) was specifically phosphorylated, possibly by the activated protein kinase C, in both cell-free and intact-cell systems. On treatment of quiescent BALB/3T3 cells with 100 ng of 12-O-tetradecanoylphorbol-13-acetate, p90 phosphorylation increased 2-fold in 1 min, reaching a peak in 15 min of 3.4-fold the initial value. The phosphorylation of p90 increased with increase in the concentrations of 12-O-tetradecanoylphorbol-13-acetate between 0.1 and 10 ng/ml and reached a plateau at 10 ng/ml. p90 phosphorylation also occurred on exposure of the cells to non-phorbol ester tumor promoters (mezerein and teleocidin B) and growth factors, such as platelet-derived growth factor and fibroblast growth factor. p90 was not immunoprecipitated by antibody against the insulin receptor. Phosphorylation of p90 occurred at a serine residue. The present study suggests that activation of protein kinase C and phosphorylation of p90 by it are early events leading to tumor promotion.

Animals↗