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Insulin-like growth factor (IGF)-I and IGF binding protein-3 concentrations in fluid from human stimulated follicles.

Insulin-like growth factor-I (IGF-I) and IGF binding protein-3 (IGFBP-3) play an important role in regulating follicle growth and maturation. We have evaluated whether responsiveness to gonadotrophins during an in-vitro fertilization (IVF) treatment is related to follicular fluid IGF-I and IGFBP-3 concentrations. We also investigated if a difference is present in IGF-I and IGFBP-3 concentrations between patients treated with human menopausal gonadotrophin (HMG) and patients treated with highly purified follicle stimulating hormone (FSH). We have measured IGF-I and IGFBP-3 in follicular fluid from pre-ovulatory follicles in an IVF programme. All 70 patients were stimulated after being down-regulated with a gonadotrophin-releasing hormone (GnRH) analogue. IGF-I concentrations in follicular fluid were significantly inversely correlated with the number of ampoules FSH administered and number of days of FSH administration, and significantly correlated with the number of follicles aspirated. IGFBP-3 concentrations were not correlated with any other parameter measured nor were IGF-I and IGFBP-3 concentrations correlated. IGFBP-3 concentrations were significantly higher in patients receiving highly purified FSH compared with patients receiving HMG (P < 0.005). These results are new evidence that IGF-I concentration in follicular fluid is higher in women who respond better to follicular stimulation, i.e. women who grow many follicles, women who need a shorter duration of stimulation and women who need fewer ampoules FSH before oocyte retrieval.

Adult↗

Immunomodulatory action of spermine and spermidine on NR8383 macrophage line in various culture conditions.

We examined the effect of spermine (SPM) and spermidine (SPD) on tumor necrosis factor (TNF)alpha and monocyte chemoattractant protein-1 (MCP-1) secretion from macrophages in various culture conditions, including several protocols of polyamines addition and media supplemented with 0, 1 or 15% fetal bovine serum. TNFalpha secretion was inhibited by SPM or SPD added 18h before stimulation in a concentration-dependent manner. Their effect was directly related to the presence of FBS. When SPM or SPD was added simultaneously to the stimulus, the TNFalpha secretion inhibition was higher than that obtained after pre-treatment. In this case, the effect was inversely proportional to the presence of FBS. The addition of polyamines also inhibited the secretion of MCP-1 in NR8383 cells. We conclude that SPM and SPD inhibited the secretion of inflammatory cytokines TNFalpha and MCP-1 in different ways, depending on culture conditions. In any case, SPM was more effective than SPD.

Animals↗

Cyclic AMP and adenyl cyclase in brain tumors.

Some of the regulatory mechanisms of cyclic adenosine monophosphate (AMP) production in human brain tumors were investigated by assessing both cyclic AMP levels and adenyl cyclase activity. A large disparity was found between the levels of cyclic AMP of normal brain and brain-tumor tissue. Cyclic AMP levels were much lower in brain tumors (25.8 pmoles (picomoles)/mg protein) than in normal brain (98.8 pmoles/mg protein). These studies also show that the abnormally low levels of cyclic AMP in tumors parallel those of adenyl cyclase. The mean adenyl cyclase activity of brain tissue was found to be 111.0 pmoles of cyclic AMP/min/mg protein, while that of the tumor was only 23.0 pmoles/min/mg protein. Levels of cyclic AMP and adenyl cyclase activity were inversely related to the degree of malignancy. Attempts to stimulate adenyl cyclase in homogenates of human brain and brain tumors resulted in a similar response in both tissues. Norepinephrone was the most effective stimulant and produced a two- to threefold increase in cyclic AMP production, while histamine had no effect. It is concluded that one of the factors governing tumor growth may be a defect in the adenyl cyclase system.

Adenylyl Cyclases↗

Response of airway smooth muscle cells to TGF-beta 1: effects on growth and synthesis of glycosaminoglycans.

Transforming growth factor-beta (TGF-beta) is formed in the airways and may have a role in airway remodeling in asthma. We have studied the effects of TGF-beta on bovine airway smooth muscle cells (BASMC) in vitro. Thymidine incorporation by BASMC was inhibited after a 24-h incubation with TGF-beta 1. In contrast, thymidine incorporation by BASMC was stimulated (35.1 +/- 11.2%) after a 48-h incubation with 1 ng/ml TGF-beta 1. Cell number was also increased (25.9 +/- 7.6%) after a 72-h incubation with 3 ng/ml TGF-beta 1. TGF-beta 1 also increased cell size at 72 h, with a 24.3 +/- 6.2% increase in cell, diameter. Increases in BASMC size were accompanied by increased [3H]proline incorporation into cell protein. In cells from any individual animal, there was a strong inverse correlation (r = -0.97) between changes in cell number and cell size. In cells from some animals, the main effect of TGF-beta 1 was to promote an increase in cell number, whereas in others the predominant effect was cell hypertrophy. In contrast epidermal growth factor (EGF) led to an increase in thymidine incorporation and cell number in all preparations but did not increase cell size. TGF-beta 1 also promoted secretion of glycosaminoglycans into culture medium by BASMC with a preferential increase in hyaluronan secretion (4.5-fold) after 24 h. Latent TGF-beta (0.89 +/- 0.06 ng/ml) was also detected in conditioned medium from cultured BASMC, and TGF-beta 1 expression was demonstrated with RNA extracts from BASMC. Varying degrees of both smooth muscle cell hypertrophy and hyperplasia occur in asthma. These results obtained with airway smooth muscle cells indicate that TGF-beta could play a role in the structural changes seen in asthma.

Animals↗

Gastrointestinal and pancreatic function in peritoneal dialysis patients: their relationship with malnutrition and peritoneal membrane abnormalities.

BACKGROUND: Malnutrition is frequent in peritoneal dialysis (PD) patients, but the contribution of gastrointestinal (GI) dysfunction has not been well established. METHODS: We studied GI function in 49 stable PD patients to ascertain its relationship with malnutrition. After an overload fat diet, fecal fat, sugar, starch and nitrogen, intestinal protein permeability (alpha(1)-antitrypsin fecal clearance [C-alpha(1)-AT]), fecal chymotrypsin (CT), GI hormones and gastrin, pepsinogen I and II, cholecystokinin (CCK), gastrin releasing peptide (GRP), and neuropeptide Y (NPY) were measured. Vasoactive intestinal polypeptide (VIP), substance P (SP), and tumor necrosis factor (TNF-alpha) and biochemical nutritional markers were evaluated. RESULTS: All patients showed high fecal sugar. Elevated fecal nitrogen was found in 21 patients, 6 with high C-alpha(1)-AT. High fecal starch levels appeared in 21, fat in 20, and low fecal CT in 39 patients. These determinations showed inverse relation with nutritional markers. Increased fecal C-alpha(1)-AT values were associated with lower serum albumin. Fecal CT values showed a negative linear correlation with serum albumin and were inversely associated with retinol-binding protein, normalized protein nitrogen appearance, and serum iron. High plasma levels of pancreatic stimulating hormones were found: gastrin, CCK, and VIP. These levels were higher in patients with a worse pancreatic exocrine function. Higher values of other GI hormones, gastrin, pepsinogen I and II, CCK, GRP, and TNF-alpha. Normal concentrations of NPY, VIP, and PS were observed. CONCLUSION: GI abnormalities (malabsorption, maldigestion, pancreatic dysfunction, and protein losing enteropathy) are present in an important number of PD patients. These features are negatively associated to nutrition.

Adult↗

Stimulation of macrophage colony-stimulating factor synthesis by interleukin-1.

Interleukin-1 (IL-1), which plays an important role in the inflammatory response, was found to induce colony-stimulating factor-1 (CSF-1) expression in the MIA PaCa-2 cells. IL-1-induced CSF-1 production was markedly suppressed (70%) by pertussis toxin. This inhibition by pertussis toxin was reversed by benzamide, an inhibitor of ADP-ribosylation reactions. Similarly, IL-1-induced CSF-1 production was inhibited by cholera toxin and this inhibition was reversed by an arginine analog, p-methoxy-benzylaminodecamethylene guanidine sulfate. Dibutyryl-cAMP as well as other cAMP elevating agents such as theophylline and forskolin also suppressed IL-1-induced CSF-1 production, suggesting that cAMP concentrations inversely regulate the biosynthesis of CSF-1. Measurement of cAMP concentration indicated that IL-1 treatment of MIA PaCa-2 cells did not change the cAMP level. IL-1-induced CSF-1 production was not suppressed by the protein kinase C (PKC) inhibitor, H7, under conditions in which 12-O-tetradecanoylphorbol-13-acetate-induced CSF-1 production was completely abolished. These data suggest that IL-1-induced CSF-1 production is not mediated via the activation of PKC. Analysis of oncogene c-fos and c-jun expression has shown the enhancement of expression of both protooncogenes prior to CSF-1, suggesting that the expression of these two oncogenes may be the mechanism which triggers CSF-1 gene expression.

Bucladesine↗

FSH and TGF-beta superfamily members regulate granulosa cell connective tissue growth factor gene expression in vitro and in vivo.

Connective tissue growth factor (CTGF) is a heparin-binding growth factor implicated in diverse epithelial cell types as a paracrine regulator of mitosis, angiogenesis, cellular taxis, and remodeling of the extracellular matrix. To understand the possible roles of CTGF in the ovarian paracrine system, we studied CTGF gene expression by granulosa cells in relation to their stage of cellular differentiation using both in vitro and in vivo methodologies. Untreated monolayer granulosa cell cultures from immature rats abundantly expressed the approximately 2.5-kb CTGF mRNA transcript (determined by Northern analysis), but had low levels of aromatase activity (an index of granulosa cell differentiation). Treatment for 48 h with FSH (0.1-10 ng/ml) dose-dependently inhibited (>or=50%) CTGF mRNA expression, but enhanced aromatase enzyme activity. This in vitro observation of CTGF mRNA down-regulation coinciding with FSH-induced granulosa cell maturation is substantiated by studies of in vivo ovarian CTGF expression in FSHbeta knockout mice. Northern blot and in situ hybridization analyses demonstrate high levels of CTGF expression in the granulosa cells of preantral follicles blocked from further development by the absence of FSH. The action of FSH (10 ng/ml) was mimicked in vitro by 8-bromo-cAMP (1.0 mM) and was augmented by the additional presence of androgen (1 micro M 5alpha-dihydrotestosterone), consistent with mediation by intracellular cAMP. Conversely, treatment of granulosa cell cultures with TGFbeta1 (0.1-10 ng/ml) dose-dependently increased CTGF mRNA levels up to 12-fold at a dose of 10 ng/ml, without affecting aromatase activity. Cotreatment with FSH (0.1-10 ng/ml) dose-dependently suppressed the stimulatory action of TGFbeta1 (10 ng/ml) on CTGF mRNA, but substantially enhanced aromatase activity beyond levels induced by FSH alone. Importantly, other TGFbeta superfamily members known to be produced in the ovary (growth/differentiation factor-9 and activin A; 10 ng/ml) stimulated granulosa cell CTGF mRNA in a similar fashion as TGFbeta1 (10 ng/ml), and this was also inhibited by FSH (10 ng/ml). These data show that granulosa cell CTGF gene expression is inversely related to the stage of granulosa cell differentiation, being directly inhibited by FSH via cAMP-mediated signaling. CTGF mRNA abundance in nondifferentiated granulosa cells is up-regulated in vitro by TGFbeta1, growth/differentiation factor-9, and activin, suggesting paracrine roles for these growth/differentiation factors in the regulation of CTGF synthesis in mammalian ovaries.

Activins↗

Fas antigen stimulation induces marked apoptosis of T lymphocytes in human immunodeficiency virus-infected individuals.

Apoptosis (programmed cell death) of T lymphocytes has been proposed as a mechanism which plays an important role in the pathogenesis of human immunodeficiency virus (HIV) disease. Activation of Fas (CD95) can either result in costimulation of proliferation and cytokine production or in the induction of apoptosis of T lymphocytes. This raises the possibility that Fas is involved in the observed T cell apoptosis during HIV disease. In this report we show that peripheral blood CD4+ and CD8+ T lymphocytes from HIV-infected individuals undergo apoptosis in vitro in response to antibody stimulation (cross-linking) of Fas at a much higher frequency than from uninfected controls. This anti-Fas-induced T cell apoptosis is markedly higher than spontaneous T cell apoptosis in HIV-infected individuals. Antibodies against other members of the tumor necrosis factor (TNF)/nerve growth factor receptor family such as CD27, CD30, CD40, 4-1BB, p55 TNF receptor, p75 TNF receptor, and TNF receptor-related protein did not result in any increase of T cell apoptosis above that spontaneously observed in HIV+ individuals. Anti-Fas-induced apoptosis was much higher in symptomatic HIV-infected individuals; and the magnitude of anti-Fas-induced CD4+ T cell apoptosis correlated inversely with peripheral blood CD4+ T cell absolute counts. Surface expression of Fas on T cells was also found to be higher in HIV-infected individuals. Resting and activated CD4+ and CD8+ T cells both underwent apoptosis in response to anti-Fas antibody. L-Selectin positive memory CD4+ T cells were especially susceptible to anti-Fas-induced apoptosis. These findings show that CD4+ and CD8+ T lymphocytes in HIV-infected individuals are primed in vivo to undergo apoptosis in response to Fas stimulation, suggesting that Fas signaling may be responsible for the T lymphocyte functional defects and depletion observed in HIV disease.

Antigens, CD↗

In vitro effect of platelet-derived growth factor-BB on collagen synthesis and proliferation of human periodontal ligament cells.

OBJECTIVES: Platelet-derived growth factor (PDGF)-BB is a polypeptide growth factor which has been shown to stimulate periodontal regeneration. In this study, we investigated the time- and dose-dependent effect of PDGF-BB on the proliferation and collagen synthesis of human periodontal ligament (PDL) cells. MATERIALS AND METHODS: For the proliferation assay, PDL cells were cultured in 0.01-10 ng ml(-1) of PDGF-BB for 12 or 24 h, and cell numbers were counted. For the collagen synthesis assay, PDL cells were cultured in 0.1-10 ng ml(-1) of PDGF-BB for 1 to 24 h. The ratio of collagen content in total protein was evaluated, and the gene expression of type I collagen was assessed quantitatively by Northern blotting analysis. RESULT AND CONCLUSIONS: PDGF-BB stimulated the proliferation of PDL cells in a time- and dose-dependent manner with the maximum effect at 10 ng ml(-1). PDGF-BB induced the collagen synthesis of PDL cells with the maximum effect for 24-h treatment, and 1 ng ml(-1) of PDGF-BB. PDGF-BB exhibits an inverse dose-dependent effect on proliferation and collagen synthesis by PDL cells. These findings suggest that PDGF-BB is one of the important regulators of the maintenance of the extracellular matrix in PDL, and may play an important role in the regeneration of PDL.

Becaplermin↗

Co-transduction of cDNAs for c-kit and steel factor into single CD34+ cord blood cells further enhances the growth of erythroid and multipotential progenitors.

Previous studies have demonstrated that the c-kit encoded tyrosine kinase receptor and its ligand, steel factor (SLF), are critical for normal blood cell development. We have reported that transduction of the c-kit gene into single hematopoietic progenitor cells (HPC), CD34(+++) cells, from cord blood (CB) enhances erythroid colony formation via a SLF-dependent mechanism. We therefore decided to evaluate the impact on cell proliferation of co-transducing c-kit and SLF cDNAs into these cells. CD34(+++) cells were sorted as a population or as 1 cell/well for cells expressing the highest levels of CD34 and different levels of c-kit. Cells were then prestimulated with granulocyte macrophage (GM)-colony stimulating factor (CSF), interleukin (IL)-3, IL-6, erythropoietin (Epo) in the presence and absence of various concentrations of SLF. Cells were then transduced with SLF and/or c-kit cDNAs, and then assayed for colony formation with the same cytokine combination. At a single cell level, co-transduction with c-kit and SLF genes significantly enhanced colony formation compared with individual gene transduction, especially by erythroid and multipotential progenitors that responded to stimulation by added cytokines. Little or no growth was seen with the c-kit- and/or SLF-transduced cells without addition of cytokines. The degree of enhancement effected by co-transduction inversely correlated with the degree of expression of c-kit protein before transduction. Optimal enhancing effects were noted in CD34(+++) kit(Lo/-) cells co-transduced with both c-kit and SLF cDNAs. Reverse transcriptase-polymerase chain (RT-PCR) analysis of SLF mRNA expression in CD34(+++) cells and enzyme-linked immunoadsorbent assay (ELISA) measurement of secreted SLF protein demonstrated that the transduced SLF cDNA was expressed and soluble SLF was released in medium cultured with SLF gene transduced MACS-separated CD34(+) cells in the presence, but not in the absence, of IL-3, GM-CSF, IL-6, and Epo. These results demonstrate the enhancement of the proliferation of growth factor responsive HPC that express transduced c-kit and SLF genes.

Antigens, CD34↗

Gene expression of the transcription factor NF-kappa B in hippocampus: regulation by synaptic activity.

NF-kappa B is a potent transcriptional activator that resides in latent form in the cytoplasm complexed to its inhibitor I kappa B. Phosphorylation of I kappa B by protein kinase C (PKC) releases NF-kappa B, enabling its translocation to the nucleus. Since PKC can activate NF-kappa B and PKC is activated by long-term potentiation (LTP), we investigated NF-kappa B expression after hippocampal LTP induced in vivo. We first described the expression of the NF-kappa B subunits, p50 and p65, and I kappa B alpha mRNAs, in each cell field of the hippocampus. In other brain locations I kappa B alpha mRNA exhibited a more selective expression than p50 and p65. We then demonstrated specific NF-kappa B-like DNA-binding activity in hippocampal whole-cell extracts and in synaptosomes using electrophoretic mobility shift assays by the following criteria: (1) latent binding was revealed after deoxycholate treatment; (2) binding was competed off by unlabeled kappa B oligonucleotides; and (3) antibodies to either p50 or p65 blocked binding. Since p50 gene expression is auto-regulated by NF-kappa B, we used its expression as a reporter for NF-kappa B activity using quantitative in situ hybridization. Both p50 and p65 increased their expression in response to either LTP-inducing or low-frequency control stimulation, although the increase in p65 mRNA levels was greater after LTP than control stimulation. In contrast to p50 and p65, I kappa B alpha hybridization levels were not increased, but were inversely correlated with the magnitude of LTP. Since NF-kappa B subunit gene expression in the hippocampus is increased by augmented synaptic activity, NF-kappa B activation may contribute to alterations in target gene expression that accompany activity-dependent synaptic plasticity, but only in a combinatorial fashion with other transcription factors.

Animals↗

Uric acid and endothelial dysfunction in essential hypertension.

Recent epidemiologic and experimental evidence suggests that serum uric acid (UA) is an independent risk factor for cardiovascular and renal diseases. However, endothelial dysfunction is an early predictor of cardiovascular events, particularly in hypertensive patients. For assessment of the association between UA and endothelial function, 217 (108 men, 109 women; aged 48.0 +/- 10.6 yr) white never-treated hypertensive patients were studied. All patients underwent the following procedures: BP measurements, laboratory tests (C-reactive protein [CRP], insulin resistance by homeostasis model assessment, serum creatinine, and UA), and endothelial function evaluated by intra-arterial infusion of acetylcholine (ACh). Serum creatinine, CRP, and maximal vasodilatory response to ACh were related to the UA (all P < 0.0001). In the multiple regression analysis, serum UA ranked as the third correlate of peak of forearm blood flow predictor, after homeostasis model assessment and CRP. The data show an independent link between UA and endothelial function, also in a statistical model that included CRP. In conclusion, the data demonstrate an inverse and significant relationship between UA and ACh-stimulated vasodilation in patients with uncomplicated, untreated essential hypertension, independent of traditional cardiovascular risk factors. Probably, the chronic inflammation that was documented in these patients may be considered the mechanistic link between serum UA and vascular damage.

Adult↗

A Taenia solium metacestode factor nonspecifically inhibits cytokine production.

Studies of the immune response in chronic helminth infections suggest that parasites modulate the host's immune response. Taenia solium metacestodes, in particular, produce molecules that down-regulate cell-mediated immunity. We have described a small RNA peptide termed metacestode factor (MF) that depresses the murine immune response to Salmonella typhimurium antigens. MF inhibits mitogen-induced proliferation, humoral and cellular responses to metacestode antigens, and inflammation surrounding metacestodes implanted subcutaneously in mice. To assess the effects of MF on cytokine production we stimulated murine spleen cells in vitro with concanavalin A and measured cytokine concentrations in the culture supernatants by enzyme-linked immunosorbent assay. When cultured with MF, the cells showed significantly decreased production of interleukin 2 (IL-2), interferon-gamma (IFN-gamma), and IL-4 as compared with mitogen alone. Exogenous rIL-2 and rIL-4 largely restored the proliferative response (85% and 71% of control cells, respectively). MF also decreased production of tumor necrosis factor-alpha (TNF-alpha) by macrophages stimulated with lipopolysaccharide and IFN-gamma. The TNF-alpha concentration was inversely correlated with the MF concentration. Experiments using spleen cells from mice treated with MF also showed a significant reduction in IL-4 concentration. These results suggest that MF inhibits cytokine production without regard to cell type or cytokine. This may explain the function of this molecule as an inhibitor of the host inflammatory and immune responses.

Animals↗

Growth regulation by p27Kip1 is abrogated by multiple mechanisms in aggressive malignant lymphomas.

The cyclin-dependent kinase inhibitor p27Kip1 is a key regulator of the G1/S transition, and an inverse relationship between p27Kip1 protein expression and proliferation index has been reported in malignant lymphomas. However, a subset of aggressive B-cell lymphomas demonstrates high p27Kip1 expression despite a high proliferation index. The aim of this study was to determine potential mechanisms by which lymphoma cells abrogate the growth inhibitory effect of high p27Kip1. The effect of transforming growth factor-beta (TGF-beta) and serum stimulation on p27Kip1 expression and cyclin E/cdk2 activity was investigated in four lymphoma cell lines, Jurkat, CEM-6, OCI-Ly1 and Nalm-6. Reactive lymphocytes responded to growth inhibitory TGF-beta by inducing p27Kip1 expression, with subsequent accumulation of cells in G0/G1. In contrast, TGF-beta did not alter the level of p27Kip1 in Jurkat, CEM-6 and OCI-Ly1 cells with no change in cyclin E/cdk2-kinase activity. Serum stimulation also did not result in a significant change in p27Kip1 expression. Western blot analysis of subcellular fractions demonstrated cytoplasmic p27Kip1, corroborated by immunocytochemistry in a subset of the lymphoma cells. Sequestration of p27Kip1 by cyclin D3 was observed in the nuclear and cytoplasmic fractions of Nalm-6, OCI-Ly-1 and NCEB cells. These results indicate that multiple mechanisms contribute to the abrogation of growth regulation by unscheduled high p27Kip1 protein expression including deficient response to TGF-beta and serum, sequestration by cyclin D3 and cytoplasmic displacement.

Blotting, Western↗

Multiple mechanisms are used for growth rate and stringent control of leuV transcriptional initiation in Escherichia coli.

Expression of the Escherichia coli leuV operon, which contains three tRNA(1)(Leu) genes, is regulated by several mechanisms including growth-rate-dependent control (GRDC) and stringent control (SC). Structural variants of the leuV promoter which differentially affect these regulatory responses have been identified, suggesting that promoter targets for GRDC and SC may be different and that GRDC of the leuV promoter occurs in the absence of guanosine 3', 5'-bisdiphosphate. To determine the mechanisms of the leuV promoter regulation, we have examined the stability of promoter open complexes and the effects of nucleotide triphosphate (NTP) concentration on the efficiency of the leuV promoter and its structural variants in vitro and in vivo. The leuV promoter open complexes were an order of magnitude more stable to heparin challenge than those of rrnBp(1). The major initiating nucleotide GTP as well as other NTPs increased the stability of the leuV promoter open complexes. When the cellular level of purine triphosphates was increased at slower growth rates by pyrimidine limitation, a 10% reduction in leuV promoter activity was seen. It therefore appears that transcription initiation from the leuV promoter is less sensitive to changes in intracellular NTP concentration than that from rrnBp(1). Comparative analysis of regulation of the leuV promoter with and without upstream activating sequences (UAS) demonstrated that the binding site for factor of inversion stimulation (FIS) located in UAS is essential for maximal GRDC. Moreover, the presence of UAS overcame the effects of leuV promoter mutations, which abolished GRDC of the leuV core promoter. However, although the presence of putative FIS binding site was essential for optimal GRDC, both mutant and wild-type leuV promoters containing UAS showed improved GRDC in a fis mutant background, suggesting that FIS protein is an important but not unique participant in the regulation of the leuV promoter.

Base Sequence↗

Hormonal modulation of interleukin-6, tumor necrosis factor and associated receptor secretion in postmenopausal women.

Hormone replacement therapy (HRT) reduces the risk for osteoporosis but transiently increases cardiovascular risk for some postmenopausal women. This study investigated the hypothesis that these risks are associated with HRT-induced changes in mononuclear cell secretion of interleukin-6 (IL-6), tumor necrosis factor alpha (TNF-alpha), and associated soluble receptors. Compared to the untreated condition (n=8), estrogen therapy (n=7) and estrogen+progestin therapy (n=7) both caused 2-fold elevations in TNF-alpha secretion. IL-6 secretion was increased (48%, P=0.04) only by estrogen+progestin therapy. Although soluble receptor secretion was not different among groups, soluble TNF receptor type I and IL-6 receptor secretion were inversely related to plasma follicle stimulating hormone (P<0.05). Both therapies reduced plasma osteocalcin (a marker for osteoporosis) by approximately 50% (P<0.002). Plasma C-reactive protein (CRP, a marker for cardiovascular risk) was 3-fold higher in women receiving only estrogen, compared to untreated women (P=0.01), and twice as high as those receiving estrogen+ progestin (P=0.045). Simple linear relationships were not observed between cytokine secretion and these markers, but a significant HRT/TNF-alpha interaction with osteocalcin (P=0.022) and an HRT/IL-6 interaction with CRP (P =0.016) indicated more complex relationships between hormone replacement, cytokine activity, and health risks associated with menopause.

C-Reactive Protein↗

Proliferation-independent induction of macrophage cyclin D2, and repression of cyclin D1, by lipopolysaccharide.

D-type cyclins are induced in response to mitogens and are essential and rate-limiting for G1 phase progression in normal mammalian cells. Macrophages proliferating in response to colony-stimulating factor-1 (CSF-1) express cyclin D1 and to a lesser extent cyclin D2 but not cyclin D3. Previously we showed that the macrophage-activating agent lipopolysaccharide (LPS) blocks CSF-1-induced proliferation and cyclin D1 expression in macrophages. Here we report upon the effect of LPS on expression of cyclin D2 in normal mouse bone marrow-derived macrophages (BMM). Unexpectedly we found that this anti-mitogen raised levels of CSF-1-stimulated cyclin D2 mRNA and protein. Furthermore, LPS alone induced cyclin D2 but not cyclin D1. Inhibition of the MEK/ERK (MAPK/ERK kinase/extracellular signal-regulated kinase) mitogen-activated protein kinase pathway repressed LPS-induced cyclin D2 mRNA, whereas inhibition of the p38 mitogen-activated protein kinase enhanced expression. However, in contrast to cyclin D1, cyclin D2 in bone marrow-derived macrophages did not appear to be regulated by protein kinase A pathways. The present data (a) show elevation of a D-type cyclin in the absence of proliferation, (b) demonstrate inverse regulation of two distinct D-type cyclins under identical conditions, and (c) suggest that cyclin D2 plays a role in macrophage activation by LPS.

Animals↗

ILKAP regulates ILK signaling and inhibits anchorage-independent growth.

ILKAP is a protein phosphatase 2C that selectively associates with integrin linked kinase, ILK, to modulate cell adhesion and growth factor signaling. We investigated the role of endogenous cellular ILKAP in antagonizing ILK signaling of two key targets, PKB and GSK3beta. Silencing of endogenous ILKAP by short interfering RNA (siRNA) stimulated GSK3beta phosphorylation at S9, with no effect on PKB S473 phosphorylation. In LNCaP prostate carcinoma cells, transient or stable expression of ILKAP suppressed ILK immune complex kinase activity, demonstrating an interaction between ILKAP and ILK. Consistent with the silencing data, ILKAP inhibition of ILK selectively inhibited S9 phosphorylation of GSK3beta without affecting S473 phosphorylation of PKB. The ILKAP-mediated inhibition of S9 phosphorylation was rescued by overexpression of ILK, but not by a dominant-negative ILK mutant. The expression level of cyclin D1, a target of ILK-GSK3beta signaling, was inversely correlated with ILKAP protein levels, suggesting that antagonism of ILK modulates cell cycle progression. ILKAP expression increased the proportion of LNCaP cells in G1, relative to vector control cells, and siRNA suppression of ILKAP increased entry of cells into the S phase, consistent with ILK antagonism. Anchorage-independent growth of LNCaP cells was inhibited by ILKAP, suggesting a critical role in the suppression of cellular transformation. Taken together, our results indicate that endogenous ILKAP activity inhibits the ILK-GSK3beta signaling axis, and suggest that ILKAP activity plays an important role in inhibiting oncogenic transformation.Oncogene (2004) 23, 3454-3461. doi:10.1038/sj.onc.1207473 Published online 1 March 2004

Cell Cycle↗