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Biomedical subjects

M Hecker

Publications and source records attributed to M Hecker.

At least 109 records · Page 6Linked to original sources

Induction by staurosporine of nitric oxide synthase expression in vascular smooth muscle cells: role of NF-kappa B, CREB and C/EBP beta.

1. The effect of different protein kinase inhibitors on the expression of the inducible isoform of nitric oxide (NO) synthase (iNOS) was investigated in cultured vascular smooth muscle cells (VSMC) isolated from the rat aorta. 2. The non-selective protein kinase C (PKC) inhibitor, staurosporine, but not the more selective PKC inhibitors, calphostin C and Ro 31-8820, or the tyrosine kinase inhibitors, genistein and erbstatin analogue (erbstatin A), elicited a distinct (up to six fold) up-regulation of iNOS gene expression in these cells, as demonstrated by a parallel increase in iNOS mRNA and protein abundance as well as an accumulation of nitrite (NO2-) in the conditioned medium. Actinomycin D and cycloheximide inhibited the effect of staurosporine, suggesting an involvement of both DNA transcription and de nova protein synthesis. 3. Staurosporine also synergistically potentiated the stimulating effect of interleukin-1 beta (IL-1 beta), but not that of the adenylyl cyclase activator, forskolin, on NO2- production and iNOS protein abundance. Staurosporine, on the other hand, had no effect on the IL-1 beta-mediated increase in iNOS mRNA abundance. The effect of staurosporine on both basal and IL-1 beta-stimulated NO2- production was concentration-dependent with an apparent maximum at 3 nM. Among the other protein kinase inhibitors tested, only calphostin C also enhanced the stimulant effect of IL-1 beta approximately two fold, while genistein, erbstatin A and Ro 31-8220 inhibited rather than potentiated it. 4. Staurosporine did not influence basal activity of the transcription factors CREB and nuclear factor kappa B (NF-kappa B), but increased that of C/EBP. Moreover, staurosporine significantly augmented the activation of C/EBP by IL-1 beta and forskolin. 5. These findings suggest that in cultured VSMC a staurosporine-sensitive protein kinase exists, which is unlikely to be related to PKC, that prevents iNOS gene expression presumably by suppressing basal C/EBP activity. They also indicate that NF-kappa B and a member of the C/EBP family of transcription factors, presumably C/EBP beta, act synergistically under basal conditions and possibly also following exposure to IL-1 beta in the up-regulation of iNOS gene expression in these cells. Targeting of the activation of C/EBP beta may thus represent an interesting approach to interfere selectively with the cytokine-induced over-production of NO in acute and chronic inflammatory conditions.

Animals↗

ACE inhibitor potentiation of bradykinin-induced venoconstriction.

1. Angiotensin-converting enzyme (ACE) inhibitors exert their cardiovascular effects not only by preventing the formation of angiotensin II (AII), but also by promoting the accumulation of bradykinin in or at the vessel wall. In addition, certain ACE inhibitors have been shown to augment the vasodilator response to bradykinin, presumably by an interaction at the level of the B2 receptor. We have investigated whether this is a specific effect of the ACE inhibitor class of compounds in isolated endothelium-denuded segments of the rabbit jugular vein where bradykinin elicits a constrictor response which is exclusively mediated by activation of the B2 receptor. 2. Moexiprilat and ramiprilat (< or = 3 nM) enhanced the constrictor response to bradykinin three to four fold. Captopril and enalaprilat were less active by approximately one and quinaprilat by two orders of magnitude. Moexiprilat and ramiprilat, on the other hand, had no effect on the constrictor response to AII or the dilator response to acetylcholine. 3. The bradykinin-potentiating effect of the ACE inhibitors was not mimicked by inhibitors of amino-, carboxy-, metallo- or serine peptidases or the synthetic ACE substrate, hippuryl-L-histidyl-L-leucine, at a concentration which almost abolished the residual ACE activity in the vessel wall. In contrast, angiotensin-(1-7) (10 microM), an angiotensin I metabolite, significantly enhanced the constrictor response to bradykinin. 4. Ramiprilat did not alter the binding of [3H]-bradykinin to a membrane fraction prepared from endothelium-denuded rabbit jugular veins or to cultured fibroblasts, and there was no ACE inhibitor-sensitive, bradykinin-induced cleavage of the B2 receptor in cultured endothelial cells. 5. These findings demonstrate that ACE inhibitors selectively potentiate the B2 receptor-mediated vascular effects of bradykinin. Their relative efficacy appears to be independent of their ACE-inhibiting properties and might be related to differences in molecule structure. Moreover, the potentiation of the biological activity of bradykinin by this class of compounds does not seem to be mediated by a shift in affinity of the B2 receptor or a prevention of its desensitization, but may involve an increase in the intrinsic activity of unoccupied B2 receptor molecules.

Angiotensin-Converting Enzyme Inhibitors↗

Effects of barbiturates on the expression of the inducible nitric oxide synthase in vascular smooth muscle.

Certain cytokines stimulate the expression of the inducible nitric oxide synthase (iNOS) in vascular smooth muscle cells (VSMCs) and in many other cell types. The large amounts of nitric oxide (NO) generated by iNOS in the vascular wall contribute to the unrelenting hypotension in septic shock. Because septic patients are often treated with barbiturates, we examined the effect of these anesthetic agents on the expression of iNOS in VSMCs. The induction of iNOS was elicited either in cultured rat aortic SMCs [interleukin-1beta (IL-1beta), 60 U/ml for 24 h] or in endothelium-denuded segments of the rabbit carotid artery [IL-1beta (100 U/ml) for 7 h]. The activity of iNOS was assessed by the accumulation of nitrite in the conditioned medium of cultured VSMCs and by the hyporeactivity of carotid arteries to phenylephrine. Moreover, iNOS protein abundance was determined by Western blot analysis, iNOS messenger RNA (mRNA) by reverse transcription followed by the polymerase chain reaction (PCR), and activation of the transcription factor NF-kappaB by gel electrophoretic mobility-shift analysis of nuclear extracts from VSMCs. The IL-1beta-stimulated increase in nitrite formation, iNOS protein, and mRNA abundance in VSMCs was significantly augmented in the presence of thiopental (100 microM), whereas methohexital, hexobarbital, pentobarbital, and phenobarbital were without effect. The potentiating effect of thiopental was observed only when the barbiturate was administered during the first 2 h of the 24-h incubation period of cultured VSMCs with IL-1beta. Thiopental did not affect the IL-1beta-stimulated activation of NF-kappaB in VSMCs. This barbiturate also significantly augmented the hyporeactivity to phenylephrine in carotid arteries exposed to IL-1beta, an effect that was abolished by N(G)-nitro-L-arginine. Exposure of either cultured or native VSMCs to thiopental alone did not stimulate iNOS expression. These findings demonstrate that the thiobarbiturate thiopental, but not oxybarbiturates, augments the IL-1beta-stimulated synthesis of NO in both cultured and native VSMCs. This effect of thiopental is the result of an increased expression of iNOS, involving most likely mechanisms distinct from NF-kappaB activation. The use of thiopental for long-term treatment of septic patients might possibly potentiate the biosynthesis of NO in the vascular wall and thus cause a further deterioration of the hemodynamic state.

Anesthetics, Intravenous↗

Identification and characterization of a new beta-glucoside utilization system in Bacillus subtilis.

A new catabolic system in Bacillus subtilis involved in utilization of beta-glucosidic compounds has been investigated. It consists of five genes encoding phosphotransferase system (PTS) enzyme II (licB and licC) and enzyme IIA (licA), a presumed 6-phospho-beta-glucosidase (licH), as well as a putative regulator protein (licR). The genes map around 334 degrees of the B. subtilis chromosome, and their products are involved in the uptake and utilization of lichenan degradation products. These five genes are organized in two transcriptional units. A weak promoter precedes gene licR, and transcription is obviously terminated at a secondary structure immediately downstream of the reading frame, as shown by Northern RNA blot analysis. Genes licB, licC, licA, and licH constitute an operon. Initiation of transcription at the promoter in front of this operon presumably requires activation by the gene product of licR. The LicR protein shows an unusual domain structure, i.e., similarities to (i) the conserved transcriptional antiterminator BgIG family signature and (ii) PTS enzyme II. Using RNA techniques and transcriptional lacZ fusions, we have shown that the expression of the licBCAH operon is inducible by products of lichenan hydrolysis, lichenan and cellobiose. The presence of excess glucose prevents the induction of this operon, indicating the control by carbon catabolite repression. Moreover, the expression of the operon requires the general PTS components and seems to be negatively controlled by the specific lic PTS enzymes.

Bacillus subtilis↗

Expression of a stress- and starvation-induced dps/pexB-homologous gene is controlled by the alternative sigma factor sigmaB in Bacillus subtilis.

SigmaB-dependent general stress proteins (Gsps) of Bacillus subtilis are essential for the development of glucose-starvation-induced cross-resistance to oxidative challenge. However, the proteins directly involved in this nonspecific resistance to oxidative stress have to be identified. We found that one prominent Gsp displayed strong sequence similarity to the previously characterized oxidative-stress-inducible MrgA protein of B. subtilis and to the starvation-induced Dps/PexB protein of Escherichia coli. We therefore designated this prominent Gsp Dps. While MrgA belongs to the peroxide-stress-inducible proteins needed for the H2O2-inducible adaptive response to oxidative stress, Dps belongs to the proteins induced by heat, salt, or ethanol stress and after starvation for glucose but not by a sublethal oxidative challenge. Primer extension experiments identified two overlapping promoters upstream of the coding region of dps, one being sigmaB dependent (PB) and the other being sigmaB independent (P1). Both promoters contribute to the basal level of dps during growth. After stress or during entry into the stationary phase, transcription from PB strongly increased whereas transcription from P1 decreased. Mutant strains lacking Dps completely failed to develop glucose-starvation-induced resistance to oxidative stress. These results confirm our suggestion that sigmaB-dependent general stress proteins of B. subtilis are absolutely required for the development of nonspecific resistance to oxidative stress.

Amino Acid Sequence↗

Increased serum NG-hydroxy-L-arginine in patients with rheumatoid arthritis and systemic lupus erythematosus as an index of an increased nitric oxide synthase activity.

OBJECTIVES: To determine the feasibility of monitoring the serum concentration of NG-hydroxy-L-arginine (L-NHA) as an index of an increased nitric oxide (NO) synthase activity in patients with rheumatoid arthritis (RA) and systemic lupus erythematosus (SLE) compared with nitrate (NO3-), the major circulating metabolite of NO whose concentration is influenced by dietary intake. METHODS: The serum concentrations of L-NHA, L-arginine (L-Arg), and NO3- were determined in 33 patients with RA, 25 patients with SLE and, 29 healthy subjects. RESULTS: Serum L-NHA was significantly increased in RA patients with high disease activity (287% of control, p < 0.01), but not with low disease activity (115%), as well as in patients with SLE (173%, p < 0.01). In contrast, serum NO3- did not differ significantly between either group of patients and the respective control group. CONCLUSION: NO synthase activity or expression, or both, is upregulated in RA patients with high disease activity and in patients with SLE. Serum L-NHA seems to be a more specific and reliable index of an increased activity of this enzyme in patients with acute or chronic inflammatory diseases than NO3-.

Acute Disease↗

Copurification of ribosomal protein S2 and DNA-dependent RNA polymerase from heat-shocked cells of Bacillus subtilis.

The DNA-dependent RNA polymerases from heat-shocked and vegetatively grown cells of Bacillus subtilis were isolated and compared. The RNA polymerase from non-stressed cells had the well known alpha, beta, beta' and sigma composition of eubacterial RNA polymerases. The RNA polymerase from heat-shocked cells exhibited one additional band shown by SDS-PAGE. N-terminal sequencing of the first 16 amino acids of the associated protein demonstrated its identity with the ribosomal protein S2.

Amino Acid Sequence↗

A transferable, beta-naphthoflavone-inducible, hyperpolarizing factor is synthesized by native and cultured porcine coronary endothelial cells.

1. The vascular endothelium releases a hyperpolarizing factor (endothelium-derived hyperpolarizing factor, EDHF) tentatively identified as a cytochrome P450-derived arachidonic acid metabolite. However, there is still controversy concerning its transferability and identity. We designed a bioassay system for assessing EDHF release in which the membrane potential was recorded in cultured vascular smooth muscle cells located downstream from donor endothelial cells. 2. Under combined nitric oxide (NO) synthase and cyclo-oxygenase blockade with NG-nitro-L-arginine (100 mumol l-1) and diclofenac (10 mumol l-1), the superfusate from bradykinin (30 mumol l-1)-stimulated, cultured porcine coronary endothelial cells induced a distinct hyperpolarization followed by a depolarization. Direct application of bradykinin to the smooth muscle cells resulted solely in membrane depolarization. Similar results were obtained using bradykinin-stimulated porcine coronary arteries as donor. 3. Single-channel current measurements suggest that this EDHF-induced hyperpolarization was elicited by the activation of Ca(2+)-dependent K+ channels. 4. Increasing the transmural pressure within the donor segment significantly enhanced the duration, but not the amplitude of the hyperpolarization induced by the effluate from bradykinin-stimulated donor segments. 5. Inhibition of P450 oxygenase activity with clotrimazole (3 mumol l-1) or 17-octadecynoic acid (3 mumol l-1) abolished EDHF release from the coronary endothelium, while the P450-derived arachidonic acid metabolite, 5,6-epoxyeicosatrienoic acid, induced a hyperpolarization of detector smooth muscle cells almost identical to that induced by EDHF. Moreover, induction of P450 activity by beta-naphthoflavone (3 mumol l-1, 48 h), significantly increased the bradykinin-induced release of EDHF. 6. These findings suggest that the vascular endothelium releases a transferable hyperpolarizing factor, chemically distinct from NO and prostacyclin, in response to agonists and mechanical stimulation. This beta-naphthoflavone-inducible EDHF appears to be a cytochrome P450-derived metabolite of arachidonic acid, which elicits hyperpolarization by activation of Ca(2+)-dependent K+ channels.

8,11,14-Eicosatrienoic Acid↗

Nitric oxide attenuates the release of endothelium-derived hyperpolarizing factor.

BACKGROUND: The contribution of the endothelium-derived hyperpolarizing factor (EDHF), proposed to be a cytochrome P450-derived metabolite of arachidonic acid, to endothelium-dependent dilatation under physiological conditions has yet to be established, because its effect can be detected only after inhibition of NO synthase and cyclooxygenase. The possibility that NO exerts a feedback inhibition on EDHF formation was studied in isolated perfused arterial segments. METHODS AND RESULTS: Under combined blockade of NO synthase and cyclooxygenase, the EDHF-mediated vasodilatation elicited by receptor-dependent agonists in rabbit carotid and porcine coronary arteries was significantly attenuated by the NO donors C87-3786 and CAS 1609. The endothelium-independent dilatation elicited by isoproterenol was not altered by either NO donor. In NG-nitro-L-arginine-treated carotid artery segments, C87-3786 significantly attenuated the acetylcholine-induced increase in 6-keto-prostaglandin F1 alpha release, which was taken as an index of arachidonic acid liberation. In parallel experiments using cultured human endothelial cells, C87-3786 attenuated the Ca2+ response to bradykinin. The release of EDHF from a luminally perfused porcine coronary artery was detected by recording the membrane potential of downstream-situated cultured rat aortic smooth muscle cells. The NO donor C87-3786 had no effect on the hyperpolarization elicited by preformed EDHF but markedly inhibited its release from bradykinin-stimulated donor segments. CONCLUSIONS: These findings indicate that under physiological conditions, the production of EDHF is damped by NO. Therefore, it follows that when NO synthesis is impaired, alleviation of this intrinsic inhibition may, at least in part, maintain endothelial vasodilator function.

6-Ketoprostaglandin F1 alpha↗

Sequence and transcriptional analysis of clpX, a class-III heat-shock gene of Bacillus subtilis.

The nucleotide sequence of clpX, which is localized between the tig (trigger factor) and the lon (ATP-dependent protease) genes at 245 degrees on the standard Bacillus subtilis (Bs) genetic map, was determined. The putative clpX gene codes for a 46-kDa protein of 421 amino acid (aa) residues. A comparison of the deduced aa sequence with those of the recently described bacterial clpX gene products from Synechocystis sp., Escherichia coli (Ec), Haemophilus influenzae and Azotobacter vinelandii revealed strong similarities. However, in contrast to Ec, clpX and clpP of Bs are located at different loci on the chromosome and are transcribed as monocistronic genes. A heat-inducible sigma A-like promoter was mapped upstream of the clpX structural gene, but no CIRCE element, characteristic of class-I heat-shock genes (e.g., groESL and dnaK), was found between the transcriptional and translational start sites. Although the majority of the heat-inducible general stress genes in Bs are under the control of the alternative sigma factor, sigma B, the heat induction of clpX appears to be sigma B-independent. The latter indicates that clpX belongs to class-III heat-inducible genes.

ATPases Associated with Diverse Cellular Activitie↗

Impaired oxidative stress resistance of Bacillus subtilis sigB mutants and the role of katA and katE.

Two catalases of B. subtilis have been studied which are subject to two different regulatory mechanisms. Whereas KatA belongs to the group of proteins specifically induced by oxidative stress, KatE is a general delta B-dependent stress protein, not induced by oxidative stress. There are two mechanisms of oxidative stress resistance, the adaptive resistance induced by low H2O2 concentrations and an unspecific resistance acquired in glucose-starved cells. Mutants lacking KatA are defective in the adaptive resistance and both exponentially growing and glucose-starved cells are 100-fold more sensitive against lethal concentrations of H2O2. Under both conditions, however, a katE mutant was just as resistant as the wild type. Therefore, the role of KatE in oxidative stress tolerance remains obscure. sigB mutants which are no longer able to induce delta B-dependent general stress proteins in glucose-starved cells are characterized by a strong impairment in the unspecific oxidative stress resistance but not in the H2O2-induced oxidative stress resistance. This is the first evidence that sigB mutants have an obvious phenotype compared to the wild type and indicates that delta B-dependent general stress proteins may function in providing starving cells with resistance against oxidative stress.

Bacillus subtilis↗

Antioxidants differentially affect nuclear factor kappa B-mediated nitric oxide synthase expression in vascular smooth muscle cells.

Increased 'oxidative stress' resulting in the activation of nuclear factor kappa B (NF-kappa B) is thought to play a crucial role in the cytokine-mediated expression of the inducible isoform of nitric oxide synthase (iNOS) in different cell types. Therefore, the effects of four different antioxidants, carbocromen, chrysin, 3,4-dichloroisocoumarin (DCI) and N-acetylserotonin (NAS), on iNOS expression were investigated in vascular smooth muscle cells (VSMC). All antioxidants strongly reduced the phorbol ester-stimulating superoxide anion formation in native VSMC. Carbocromen (200 microM) and chrysin (50 microM) had no effect, while NAS (1 mM) abolished the increase in nitrine production and iNOS protein abundance in cultured VSMC exposed to interleukin-1 beta (IL-1 beta, 60 U/ml) or the adenyl cyclase activator forskolin (10 microM). DCI also revealed a marked inhibitory effect in IL-1 beta-stimulated VSMC, but was less effective in cells treated with forskolin. DCI, but not NAS, also suppressed the activation of NF-kappa B in VSMC exposed to IL-1 beta, while no significant NF-kappa B activation was detected in forskolin-treated cells. These findings demonstrate that antioxidants differentially affect iNOS expression in VSMC both at the transcriptional level by preventing the activation of NF-kappa B and at the post-transcriptional level, presumably by promoting iNOS mRNA or protein degradation. They also suggest that reactive oxygen intermediates do not play a role in the activation of NF-kappa B by IL-1 beta in VSMC, and that transcription factors other than NF-kappa B mediate the induction of iNOS expression by elevating the intracellular concentration of cyclic AMP.

Animals↗

Potentiation of the biological efficacy of bradykinin by ACE inhibitors: a shift in the affinity of the B2 receptor?

We have recently demonstrated that the angiotensin I-converting enzyme (ACE) inhibitor ramiprilat augments the endothelium-dependent dilator response to bradykinin in the isolated perfused rat heart by an interaction at the B2 receptor level. We have now investigated whether this is an effect of the ACE inhibitor class of compounds by studying the bradykinin-induced vasoconstriction in isolated segments of the rabbit jugular vein. Among five different ACE inhibitors, moexiprilat and ramiprilat proved to be the most effective in potentiating the constrictor response to bradykinin. This effect was not mimicked by other protease inhibitors or the synthetic ACE substrate hippuryl-L-histidyl-L-leucine. The ACE inhibitors, on the other hand, failed to affect the constrictor or dilator responses elicited by other receptor-dependent agonists in this vascular model. These findings demonstrate that ACE inhibitors selectively potentiate the B2 receptor-mediated constrictor response to bradykinin in the rabbit jugular vein, possibly by increasing the affinity of the B2 receptor.

Angiotensin-Converting Enzyme Inhibitors↗

Heat-shock and general stress response in Bacillus subtilis.

The induction of stress proteins is an important component of the adaptional network of a non-growing cell of Bacillus subtilis. A diverse range of stresses such as heat shock, salt stress, ethanol, starvation for oxygen or nutrients etc. induce the same set of proteins, called general stress proteins. Although the adaptive functions of these proteins are largely unknown, they are proposed to provide general and rather non-specific protection of the cell under these adverse conditions. In addition to these non-specific general stress proteins, all extracellular signals induce a set of specific stress proteins that may confer specific protection against a particular stress factor. In B. subtilis at least three different classes of heat-inducible genes can be defined by their common regulatory characteristics: Class I genes, as exemplified by the dnaK and groE operons, are most efficiently induced by heat stress. Their expression involves a sigma A-dependent promoter, an inverted repeat (called the CIRCE element) highly conserved among eubacteria, and probably a repressor interacting with the CIRCE element. The majority of general stress genes (class II, more than 40) are induced at sigma B-dependent promoters by different growth-inhibiting conditions. The activation of sigma B by stress or starvation is the crucial event in the induction of this large stress regulon. Only a few genes, including Ion, clpC, clpP, and ftsH, can respond to different stress factors independently of sigma B or CIRCE (class III). Stress induction of these genes occurs at promoters presumably recognized by sigma A and probably involves additional regulatory elements which remain to be defined.

Bacillus subtilis↗

Etomidate and thiopental inhibit the release of endothelium-derived hyperpolarizing factor in the human renal artery.

BACKGROUND: Endothelium-derived hyperpolarizing factor is thought to be a cytochrome P450-derived arachidonic acid metabolite that hyperpolarizes vascular smooth muscle cells by opening Ca(2+)-activated K+ channels (K+Ca channels). In the rabbit carotid artery both volatile and intravenous anesthetics inhibit the acetylcholine-stimulated release of endothelium-derived hyperpolarizing factor. Because the release of this factor may help to maintain vascular tone in humans under conditions of a failing nitric oxide synthesis, e.g., in atherosclerosis, the effects of two intravenous anesthetics, thiopental and etomidate, on the endothelium-derived hyperpolarizing factor-mediated relaxant response to acetylcholine were investigated in human isolated renal artery segments. METHODS: The segments were suspended in Krebs-Henseleit solution (37 degrees C) containing the cyclooxygenase inhibitor diclofenac (1 microM) and preconstricted with norepinephrine (6 microM). Relaxations caused by acetylcholine (1 microM) were compared in the presence and absence of the nitric oxide synthase inhibitor N(G)-nitro-L-arginine (0.1 mM) in control segments and in segments exposed to etomidate or thiopental (0.03-0.3 mM). In addition, the effects of the two anesthetics on the relaxant response to the nitric oxide donors glyceryl trinitrate (3 microM) and sodium nitroprusside (0.1 microM) were examined. RESULTS: The relaxant response to acetylcholine, which was resistant to both nitric oxide synthase and cyclooxygenase blockade, was markedly reduced by the K+Ca channel antagonist tetrabutyl ammonium (3 mM) and the cytochrome P450 inhibitor clotrimazole (30 microM). Both etomidate and thiopental, at a concentration of 0.3 mM, selectively attenuated the relaxant response to acetylcholine in N(G)-nitro-L-arginine-treated segments, but did not affect relaxations elicited by glyceryl trinitrate or sodium nitroprusside. CONCLUSIONS: Etomidate and thiopental inhibit the endothelium-derived hyperpolarizing factor-mediated relaxant response to acetylcholine in the human renal artery, an effect that appears to be attributable to the cytochrome P450-inhibiting properties of these anesthetics.

Anesthetics, Intravenous↗

Phosphate-starvation-inducible proteins in Bacillus subtilis: a two-dimensional gel electrophoresis study.

A two-dimensional (2-D) gel electrophoresis study of Bacillus subtilis strain 168 identified 20 proteins that are strongly induced in response to phosphate starvation. The induction of nine of these phosphate-starvation-induced (Psi) proteins was dependent on a functional PhoR protein. PhoR is the histidine sensor-kinase component of a phosphate-concentration-sensing two-component regulatory system which, together with its partner response regulator PhoP, controls the expression of genes in the Pho regulon. Genes encoding PhoR-dependent Psi proteins are therefore likely to be members of the Pho regulon. Spo0A approximately P, the response regulator of the signal transduction pathway required for the induction of sporulation, has previously been shown to negatively affect the induction of the Pho regulon by repressing the phoP-phoR operon. The induction pattern of some PhoR-dependent Psi proteins was altered in a spo0A mutant such that their synthesis continued for longer than was found with the wild-type. The most abundant Psi protein, Psi1-3, was characterized by N-terminal sequencing of internal peptide fragments and shown to have a high similarity to an Escherichia coli protein which is involved in phosphate uptake during phosphate starvation.

Alkaline Phosphatase↗

Alternate promoters direct stress-induced transcription of the Bacillus subtilis clpC operon.

clpC of Bacillus subtilis is part of an operon containing six genes. Northern blot analysis suggested that all genes are co-transcribed and encode stress-inducible proteins. Two promoters (PA and PB) were mapped upstream of the first gene. PA resembles promoters recognized by the vegetative RNA polymerase E sigma A. The other promoter (PB) was shown to be dependent on sigma B, the general stress sigma factor in B. subtilis, suggesting that clpC, a potential chaperone, is expressed in a sigma B-dependent manner. This is the first evidence that sigma B in B. subtilis is involved in controlling the expression of a gene whose counterpart, clpB, is subject to regulation by sigma 32 in Escherichia coli, indicating a new function of sigma B-dependent general stress proteins. PB deviated from the consensus sequence of sigma B promoters and was only slightly induced by starvation conditions. Nevertheless, strong induction by heat, ethanol, and salt stress occurred at the sigma B-dependent promoter, whereas the vegetative promoter was only weakly induced under these conditions. However, in a sigB mutant, the sigma A-like promoter became inducible by heat and ethanol stress, completely compensating for sigB deficiency. Only the downstream sigma A-like promoter was induced by certain stress conditions such as hydrogen peroxide or puromycin. These results suggest that novel stress-induction mechanisms are acting at a vegetative promoter. Involvement of additional elements in this mode of induction are discussed.

Autoradiography↗

Inhibition by antioxidants of nitric oxide synthase expression in murine macrophages: role of nuclear factor kappa B and interferon regulatory factor 1.

1. In view of the potential deleterious effects of high amounts of nitric oxide (NO) produced by the inducible isoform of NO synthase (iNOS) in inflammation, the prevention of the expression of this enzyme represents an important therapeutic goal. In cytokine-stimulated cells, activation of nuclear factor kappa B (NF-kappa B) is crucial for the increase in iNOS gene expression. Since NF-kappa B activation appears to involve a redox-sensitive step, we have investigated whether three structurally unrelated antioxidants, 5,7-dihydroxyflavone (chrysin), 3,4-dichloroisocoumarin (DCI) and N-acetyl 5-hydroxytryptamine (N-acetylserotonin, NAS), affect iNOS expression in cultured RAW 264.7 monocyte/macrophages stimulated with bacterial lipopolysaccharide (LPS, 140 ng ml-1) and interferon-gamma (IFN gamma, 5 u ml-1). 2. During a 6 h incubation period neither LPS nor IFN gamma alone exerted a significant effect but when combined, caused a prominent increase in nitrite formation, iNOS mRNA and protein abundance. Co-incubation with chrysin (50 microM), DCI (50 microM) or NAS (1 mM) markedly attenuated this increase in iNOS gene expression. 3. DCI, but not chrysin or NAS, prevented the activation of NF-kappa B in cells exposed to LPS plus IFN gamma for 30 min. In contrast, all three antioxidants significantly blunted the DNA-binding activity of interferon regulatory factor 1 (IRF-1), which mediates the synergistic effect of IFN gamma on iNOS gene expression in cells treated for 2 h with LPS plus IFN gamma. 4. DCI thus appears to inhibit iNOS gene expression at the transcriptional level by preventing the activation of both NF-kappa B and IRF-1. The inhibitory effect of DCI on NF-kappa B activation, however, does not seem to be related to its antioxidative properties, since DCI, unlike chrysin or NAS, is a potent serine protease inhibitor which stabilizes the inactive NF-kappa B complex by protecting the inhibitory I kappa B-alpha subunit from proteolytic degradation. 5. The virtually identical inhibitory effect of chrysin, DCI and NAS on the activation of IRF-1 points to a redox-sensitive step in the activation of this transcription factor, which in contrast to NF-kappa B requires de novo protein synthesis. 6. Since iNOS gene expression in human cells and tissues usually requires the combination of several cytokines, antioxidants such as chrysin and NAS which do not interfere with the activation of NF-kappa B may be of therapeutic value for selectively inhibiting the enhanced expression of this enzyme in inflammation.

Animals↗