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61.
Descorbeth M Anand-Srivastava MB 《American journal of physiology. Heart and circulatory physiology》2008,295(5):H2135-H2142
The levels and activity of protein kinase C and diacylglycerol were shown to be upregulated in diabetes/hyperglycemia; however, studies on the expression of upstream signaling molecules of phosphatidylinositol turnover were lacking. The present study was therefore undertaken to examine whether hyperglycemia/diabetes could also modulate the expression of Gqalpha and phospholipase C-beta (PLC-beta) proteins and associated phosphatidylinositol turnover signaling in aortic vascular smooth muscle cells (VSMCs) and A10 VSMCs exposed to high glucose. Aortic VSMCs from streptozotocin-diabetic rats exhibited an increased expression of Gqalpha and PLC-beta1 proteins (60% and 30%, respectively) compared with control cells as determined by Western blot analysis. The pretreatment of A10 VSMCs with high glucose (26 mM) for 3 days also augmented the levels of Gqalpha, G11alpha, PLC-beta1 and -beta2 proteins by about 50, 35, 30, and 30%, respectively, compared with control cells that were restored to control levels by endothelin-1 (ET-1), ET types A and B (ET(A) and ET(B)) receptors, and angiotensin II type 1 (AT1) receptor antagonists. In addition, ET-1-stimulated inositol triphosphate formation was also significantly higher in VSMCs exposed to high glucose, whereas the basal levels of inositol triphosphate were not different between the two groups. Furthermore, the treatment of A10 VSMCs with angiotensin II and ET-1 also significantly increased the levels of Gq/11alpha and PLC-beta proteins that were restored toward control levels by ET(A)/ET(B) and AT1 receptor antagonists. These results suggest that high glucose augments the expression of Gq/11alpha, PLC-beta, and mediated signaling in VSMCs, which may be attributed to AT1, ET(A), and ET(B) receptors. 相似文献
62.
The present studies were undertaken to examine if the impaired vascular function observed in diabetes is attributed to the altered levels of G-protein. Diabetes was induced in Sprague Dawley rats by a single intraperitoneal injection of streptozotocin (STZ) (60 mg/kg body wt) and after a period of 5 days, the aorta were used for adenylyl cyclase activity determination and protein quantification. A temporal relationship between the expression of Gi proteins and development of diabetes was also examined on day 1, 2, 3, 4 and 5 of injection of STZ. Blood glucose levels were significantly increased from day 1 in STZ-rats as compared to their counterpart control rats and reached to about 20 mM on 3rd day and 30 mM on 5th day. The expression of Gi-2 and Gi-3 proteins as determined by immunoblotting techniques was decreased by about 70 and 50% respectively in aorta from STZ rats compared to the control rats after 5 days of treatment, whereas 40% decrease in Gi-2 and Gi-3 was observed after 3rd day of STZ injection. On the other hand, the expression of Gs was unaltered in STZ rats. In addition, the stimulatory effect of cholera toxin (CT) on GTP-mediated stimulation of adenylyl cyclase was not different in STZ as compared to the control group. However, the stimulatory effects of isoproterenol, glucagon, NaF and FSK on adenylyl cyclase activity were significantly enhanced in STZ rats as compared to control rats, whereas basal adenylyl cyclase activity was significantly lower in STZ-rats as compared to control rats. In addition, GTPS inhibited FSK-stimulated adenylyl cyclase activity in concentration-dependent manner (receptor-independent functions of Gi) in control rats which was completely attenuated in STZ-rats. In addition, receptor-mediated inhibitions of adenylyl cyclase by angiotensin II, oxotremorine, atrial natriuretic peptide (ANP99–126) and C-ANP4–23 were also attenuated (receptor-dependent functions of Gi) in STZ-rats. These results indicate that aorta from diabetic rats exhibit decreased levels of cAMP and decreased expression of Gi. The decreased expression of Gi may be responsible for the altered responsiveness of adenylyl cyclase to hormonal stimulation and inhibition in STZ-rats. It may thus be suggested that the impaired adenylyl cyclase-Gi protein signaling may be one of the possible mechanisms responsible for the impaired vascular functions in diabetes. 相似文献
63.
Elevated ammonium concentrations in the medium of cultivated cells have
been shown to increase the intracellular levels of uridine-5'-diphospho-
N-acetylglucosamine (UDP-GlcNAc) and uridine-5'-diphospho-N-
acetylgalactosamine (UDP-GalNAc; Ryll et al., 1994). These sugar
nucleotides are substrates for glycosyltransferases in the glycosylation
pathway. In our experiments, recombinant Chinese hamster ovary cells
producing an immunoadhesin glycoprotein (GP1-IgG) have been cultivated
under controlled cell culture conditions in the presence of different
ammonium concentrations.15N-Labeled ammonium chloride (15NH4Cl) was added
exogenously to the cell culture media to determine if ammonium was
incorporated into UDP-GlcNAc and cytidine-5'-
monophospho-N-acetylneuraminic acid (CMP-NANA) pools, and subsequently
incorporated into GP1-IgG as N-linked glycans. The intracellular pools of
UDP-activated hexosamines (UDP-GNAc) were followed during the time course
of the experiment. To assess the extent of15NH4+incorporation into the
glycans of GP1-IgG, the glycoprotein was first purified to homogeneity by
protein A chromatography. Enzymatically released N- glycans were then
analyzed by matrix-assisted laser desorption/ionization time-of-flight mass
spectrometry. N-Glycans synthesized in the presence of15NH4Cl revealed an
N-glycan-dependent increase in mass-to-charge of 2.5-4.8 Da. These results
indicate that 60-70% of the total nitrogen containing monosaccharides had
incorporated15N. Presumably,15NH4+was incorporated into GlcNAc and N-
acetylneuraminic acid as proposed earlier (Ryll et al., 1994). This might
be a universal and previously not described reaction in mammalian cells
when exposed to nonphysiological but in cell culture commonly found
concentrations of ammonium. The data presented here are of significance for
glycoprotein production in mammalian cell culture, since it has been shown
previously that elevated levels of UDP- activated hexosamines affect
N-glycan characteristics such as branching and degree of amino sugar
incorporation. In addition, our results demonstrate that isotope labeling
in combination with MALDI-TOF-MS can be used as an alternate tool to
radioactive labeling of sugar substrates in metabolic studies.
相似文献
64.
This study examined the application of previously characterized microparticles composed of hyaluronan (HA) and chitosan hydroglutamate (CH) as well as novel microparticles consisting of both polymers (HA/CH) to improve the nasal delivery of a model drug. The rabbit bioavailabilities of gentamicin incorporated in HA, CH, and HA/CH microparticles were increased 23-, 31-, and 42-fold, respectively, compared with the control intranasal solution of gentamicin, indicating that all test microparticles were retained for longer periods on the nasal mucosa of the rabbits as supported by previous in vitro dissolution as well as frog palate mucoadhesion studies, thereby improving drug absorption. The higher bioavailabilities of CH-based formulations (CH and HA/CH) suggest the penetration-enhancing effects of CH may also be partially responsible for the improvement. A model was developed, based on a glass impinger device, to deliver dry powder formulations reproducibly onto the surface of cultured cell monolayers. In vitro permeability and fluorescence microscopy studies on the tight junctions of the 16HBE14o- cell lines further confirmed the ability of CH-based formulations to enhance penetration. Furthermore, the in vitro absorption profile from cell culture studies was consistent with those determined from in vivo studies. The complementary effect from the mucoadhesive nature of HA coupled with the penetration-enhancing effects of CH makes the novel HA/CH formulation a promising nasal delivery system. 相似文献
65.
Background
Helicobacter pylori colonizes the human stomach and is associated with gastritis, peptic ulcer, and gastric cancer. This ubiquitous association between H. pylori and humans is thought to be present since the origin of modern humans. The H. pylori genome encodes for an exceptional number of restriction and modifications (R-M) systems. To evaluate if R-M systems are an adequate tool to determine the geographic distribution of H. pylori strains, we typed 221 strains from Africa, America, Asia, and Europe, and evaluated the expression of different 29 methyltransferases. 相似文献66.
Jacques Genest Marc Cantin Madhu B. Anand-Srivastava Jean R. Cusson André de Léan Raúl Garcia Jolanta Gutkowska Pavel Hamet Otto Kuchel Pierre Larochelle et al. 《Reviews of Physiology, Biochemistry and Pharmacology》1988,110(-1):1-145
In the history of medical research, few advances have been more rapid — in all aspects — than those in the research on the atrial natriuretic factor since the original observation by de Bold et al. in 1981 of the marked natriuresis, diuresis, and vasorelaxation following the i. v. administration of crude atrial extracts. The atrial factor responsible for these findings has been isolated and sequenced, the cDNA coding for ANF has been cloned, and the gene has been localized on the chromosomal map. Most of its biological activities have been determined, and these clearly provide a balance to the activities of the reninangiotensin system. Many points remain to be elucidated, such as the role of ANF in patients with essential hypertension with congestive heart failure; the participation of ventricular ANF in pathological states such as hypertension and congestive heart failure; the interplay of ANF and angiotensin II in brain regions involved in the regulation of sodium, water, and blood pressure such as the AV3V region and the subfornical organ; the role of ANF in the ciliary bodies of the eyes; the relationship of particulate guanylate cyclase stimulation and adenylate cyclase inhibition with vasorelaxation; the neuromodulatory role of ANF in neural transmission; and many others. Fundamental questions remain to be answered and offer a field for innovative researches.From the Clinical Research Institute of Montreal and the Université de Montréal. Clinical Research Institute of Montréal, 110 Pine Avenue West, Montréal, Québec, Canada H2W 1R7 相似文献
67.
Madlen Stange Alfredo Mari Tim Roloff Helena MB Seth-Smith Michael Schweitzer Myrta Brunner Karoline Leuzinger Kirstine K. Sgaard Alexander Gensch Sarah Tschudin-Sutter Simon Fuchs Julia Bielicki Hans Pargger Martin Siegemund Christian H. Nickel Roland Bingisser Michael Osthoff Stefano Bassetti Rita Schneider-Sliwa Manuel Battegay Hans H. Hirsch Adrian Egli 《PLoS pathogens》2021,17(3)
The first case of SARS-CoV-2 in Basel, Switzerland was detected on February 26th 2020. We present a phylogenetic study to explore viral introduction and evolution during the exponential early phase of the local COVID-19 outbreak from February 26th until March 23rd. We sequenced SARS-CoV-2 naso-oropharyngeal swabs from 746 positive tests that were performed at the University Hospital Basel during the study period. We successfully generated 468 high quality genomes from unique patients and called variants with our COVID-19 Pipeline (COVGAP), and analysed viral genetic diversity using PANGOLIN taxonomic lineages. To identify introduction and dissemination events we incorporated global SARS-CoV-2 genomes and inferred a time-calibrated phylogeny. Epidemiological data from patient questionnaires was used to facilitate the interpretation of phylogenetic observations. The early outbreak in Basel was dominated by lineage B.1 (83·6%), detected first on March 2nd, although the first sample identified belonged to B.1.1. Within B.1, 68·2% of our samples fall within a clade defined by the SNP C15324T (‘Basel cluster’), including 157 identical sequences at the root of the ‘Basel cluster’, some of which we can specifically trace to regional spreading events. We infer the origin of B.1-C15324T to mid-February in our tri-national region. The other genomes map broadly over the global phylogenetic tree, showing several introduction events from and/or dissemination to other regions of the world via travellers. Family transmissions can also be traced in our data. A single lineage variant dominated the outbreak in the Basel area while other lineages, such as the first (B.1.1), did not propagate. A mass gathering event was the predominant initial source of cases, with travel returners and family transmissions to a lesser extent. We highlight the importance of adding specific questions to epidemiological questionnaires, to obtain data on attendance of large gatherings and their locations, as well as travel history, to effectively identify routes of transmissions in up-coming outbreaks. This phylogenetic analysis in concert with epidemiological and contact tracing data, allows connection and interpretation of events, and can inform public health interventions.Trial Registration: ClinicalTrials.gov . NCT04351503相似文献
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