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11.
Cordas E Náray-Fejes-Tóth A Fejes-Tóth G 《American journal of physiology. Cell physiology》2007,292(5):C1971-C1981
Serum- and glucocorticoid-induced kinase-1 (SGK1) is involved in aldosterone-induced Na+ reabsorption by increasing epithelial Na+ channel (ENaC) activity in cortical collecting duct (CCD) cells, but its exact mechanisms of action are unknown. Although several potential targets such as Nedd4-2 have been described in expression systems, endogenous substrates mediating SGK1's physiological effects remain to be identified. In addition, subcellular localization studies of SGK1 have provided controversial results. We determined the subcellular location of SGK1 using SGK1-autofluorescent protein (AFP) fusion proteins. Rabbit CCD (RCCT-28A) cells were transiently transfected with a construct encoding for SGK1-AFP and were stained or cotransfected with markers for various subcellular compartments. In live cells, transiently expressed SGK1-AFP clearly colocalized with the mitochondrial marker rhodamine 123. Similarly, SGK1-AFP colocalized with the mitochondrial marker MitoTracker when stably expressed using a retroviral system in either RCCT-28A cells or the mammary epithelial cell line MCF10A. To determine which region of SGK1 is responsible for this subcellular localization, we generated RCCT-28A cell lines stably expressing SGK1 mutants. The results indicate that the NH2-terminal 60-amino acid region of SGK1 is necessary and sufficient for its subcellular localization. Localization of SGK1 to the mitochondria raises the possibility that SGK1 may play a role in regulating energy metabolism. mitochondria; localization 相似文献
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Kiela PR Midura AJ Kuscuoglu N Jolad SD Sólyom AM Besselsen DG Timmermann BN Ghishan FK 《American journal of physiology. Gastrointestinal and liver physiology》2005,288(4):G798-G808
Extracts from Boswellia serrata have been reported to have anti-inflammatory activity, primarily via boswellic acid-mediated inhibition of leukotriene synthesis. In three small clinical trials, boswellia was shown to improve symptoms of ulcerative colitis and Crohn's disease, and because of its alleged safety, boswellia was considered superior over mesalazine in terms of a benefit-risk evaluation. The goal of this study was to evaluate the effectiveness of boswellia extracts in controlled settings of dextran sulfate- or trinitrobenzene sulfonic acid-induced colitis in mice. Our results suggest that boswellia is ineffective in ameliorating colitis in these models. Moreover, individual boswellic acids were demonstrated to increase the basal and IL-1beta-stimulated NF-kappaB activity in intestinal epithelial cells in vitro as well as reverse proliferative effects of IL-1beta. We also observed hepatotoxic effect of boswellia with pronounced hepatomegaly and steatosis. Hepatotoxity and increased lipid accumulation in response to boswellia were further confirmed in vitro in HepG2 cells with fluorescent Nile red binding/resazurin reduction assay and by confocal microscopy. Microarray analyses of hepatic gene expression demonstrated dysregulation of a number of genes, including a large group of lipid metabolism-related genes, and detoxifying enzymes, a response consistent with that to hepatotoxic xenobiotics. In summary, boswellia does not ameliorate symptoms of colitis in chemically induced murine models and, in higher doses, may become hepatotoxic. Potential implications of prolonged and uncontrolled intake of boswellia as an herbal supplement in inflammatory bowel disease and other inflammatory conditions should be considered in future clinical trials with this botanical. 相似文献
14.
Raymond MA Désormeaux A Labelle A Soulez M Soulez G Langelier Y Pshezhetsky AV Hébert MJ 《Biochemical and biophysical research communications》2005,338(3):1374-1382
Endothelial cells (EC) under stress release paracrine mediators that facilitate accumulation of vascular smooth muscle cells (VSCM) at sites of vascular injury. We found that medium conditioned by serum-starved EC increase proliferation and migration of VSCM in vitro. Fractionation of the conditioned medium followed by mass spectral analysis identified one bioactive component as vitamin D-binding protein (DBP). DBP induced both proliferation and migration of VSMC in vitro in association with increased phosphorylation of ERK 1/2. PD 98059, a biochemical inhibitor of ERK 1/2, abrogated these proliferative and migratory responses in VSMC. DBP is an important carrier for the vitamin-D sterols, 25-hydroxyvitamin-D, and 1alpha,25-dihydroxyvitamin-D. Both sterols inhibited the activity of DBP on VSMC, suggesting that vitamin D binding sites are important for initiating the activities of DBP on VSMC. Release of DBP at sites of endothelial injury represents a novel pathway favoring accumulation of VSMC at sites of vascular injury. 相似文献
15.
Norbert Solymosi Csaba Torma Anikó Kern Ákos Maróti-Agóts Zoltán Barcza László Könyves Olaf Berke Jenő Reiczigel 《International journal of biometeorology》2010,54(4):423-431
Global climate change can have serious direct effects on animal health and production through heat stress. In Hungary, the
number of heat stress days per year (YNHD), i.e., days when the temperature humidity index (THI) is above a specific comfort
threshold, has increased in recent years based on observed meteorological data. Between 1973 and 2008, the countrywide average
increase in YNHD was 4.1% per year. Climate scenarios based on regional climate models (RCM) were used to predict possible
changes in YNHD for the near future (2021–2050) relative to the reference period (1961–1990). This comparison shows that,
in Hungary, the 30-year mean of YNHD is expected to increase by between 1 and 27 days, depending on the RCM used. Half of
the scenarios investigated in this study predicted that, in large parts of Hungary, YNHD will increase by at least 1 week.
However, the increase observed in the past, and that predicted for the near future, is spatially heterogeneous, and areas
that currently have large cattle populations are expected to be affected more severely than other regions. 相似文献
16.
Benita Wolf Adrian Schwarzer Anik L. C?té Thomas H. Hampton Thomas Schwaab Eduardo Huarte Craig R. Tomlinson Jiang Gui Jan L. Fisher Camilo E. Fadul Joshua W. Hamilton Marc S. Ernstoff 《PloS one》2012,7(12)
Lymphocytes are a key component of the immune system and their differentiation and function are directly influenced by cancer. We examined peripheral blood lymphocyte (PBL) gene expression as a biomarker of illness and treatment effect using the Affymetrix Human Gene ST1 platform in patients with metastatic renal cell carcinoma (mRCC) who received combined treatment with IL-2, interferon-?-2a and dendritic cell vaccine. We examined gene expression, cytokine levels in patient serum and lymphocyte subsets as determined by flow cytometry (FCM). Pre-treatment PBLs from patients with mRCC exhibit a gene expression profile and serum cytokine profile consistent with inflammation and proliferation not found in healthy donors (HD). PBL gene expression from patients with mRCC showed increased mRNA of genes involved with T-cell and TREG-cell activation pathways, which was also reflected in lymphocyte subset distribution. Overall, PBL gene expression post-treatment (POST) was not significantly different than pre-treatment (PRE). Nevertheless, treatment related changes in gene expression (post-treatment minus pre-treatment) revealed an increased expression of T-cell and B-cell receptor signaling pathways in responding (R) patients compared to non-responding (NR) patients. In addition, we observed down-regulation of TREG-cell pathways post-treatment in R vs. NR patients. While exploratory in nature, this study supports the hypothesis that enhanced inflammatory cytotoxic pathways coupled with blunting of the regulatory pathways is necessary for effective anti-cancer activity associated with immune therapy. This type of analysis can potentially identify additional immune therapeutic targets in patients with mRCC. 相似文献
17.
Õrfi László Wáczek Frigyes Kövesdi István Mészáros György Idei Miklós Horváth Anikó Hollósy Ferenc Mák Marianna Szegedi Zsolt Szende Béla Kéri György 《International journal of peptide research and therapeutics》1999,6(5-6):325-333
A parallel combinatorial library of over 1600 compounds has been designed and synthesized for the development of new potential peptidomimetic protein tyrosine kinase (PTK) inhibitor leads. These peptidomimetic molecules are aimed at intervening with the substrate binding site of the pp60c-src enzyme. The new structures were based on known PTK inhibitors with at least two variously substituted aromatic moieties attached by spacer groups of different length and flexibility. Eleven bis-aryl-type inhibitory compounds were found in the range of 18–100 μM IC50 concentrations from combinations of 12 different substituents. Molecular modeling of the active compounds showed a characteristic distance of 12–14 Å between the farthest sp2 carbon atoms of the two aromatic rings. Conformational analysis of several peptide substrates recently found for pp60c-src PTK showed that the energy-minimized conformers had the same distance between the two aromatic moieties. Several compounds in the library not only showed remarkable PTK inhibitory activity but also a significant apoptosis-inducing effect on HT-29 human colon tumor cells. 相似文献
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Miyazaki A Tsuda Y Fukushima S Yokoi T Vántus T Bökönyi G Szabó E Horváth A Kéri G Okada Y 《Bioorganic & medicinal chemistry letters》2008,18(23):6199-6201
Novel somatostatin analogues containing a pyrazinone ring, compounds 1 and 2, exhibited good antiproliferative activity on A431 tumor cells. To increase antitumor activity and binding affinity on somatostatin receptors (SSTRs), we substituted Tyr in the critical sequence, Tyr-D-Trp-Lys, with more hydrophobic aromatic residue. The substituted compounds dramatically lost antitumor activity, indicating that Tyr residue was an essential residue. 相似文献
20.
Erdélyi P Fodor T Varga AK Czugler M Gere A Fischer J 《Bioorganic & medicinal chemistry》2008,16(9):5322-5330
The inhibition of cyclooxygenase enzymes plays an important role in the treatment of inflammatory diseases. N-Hydroxy-4-(5-methyl-3-phenylisoxazol-4-yl)benzenesulfonamide (3)—a primary metabolite of the highly selective COX-2 inhibitor valdecoxib—was synthesized and stabilized as its monohydrate (3a·H2O). The anti-inflammatory properties of 3a·H2O were investigated in carrageenan-induced edema and in acute and chronic pain models. Based on our biological investigation, we conclude that N-hydroxy-valdecoxib 3a is an active metabolite of valdecoxib. 相似文献