PubMed Health⌕ Search

Biomedical subjects

R Beckmann

Publications and source records attributed to R Beckmann.

At least 37 records · Page 2Linked to original sources

Large-conductance cation channels in the envelope of nuclei from rat cerebral cortex.

Eucaryotic nuclei are surrounded by a double-membrane system enclosing a central cisterna which is continuous with the endoplasmic reticulum and serves as a calcium store for intracellular signaling. The envelope regulates protein and nucleic acid traffic between the nucleus and the cytoplasm via nuclear pores. These protein tunnels cross through both nuclear membranes and are permeable for large molecules. Surprisingly, patch clamp recordings from isolated nuclei of different cell species have revealed a high resistance of the envelope, enabling tight seals and the resolution of single ion channel activity. Here we present for the first time single-channel recordings from nuclei prepared from neuronal tissue. Nuclei isolated from rat cerebral cortex displayed spontaneous long-lasting large conductances in the nucleus-attached mode as well as in excised patches. The open times are in the range of seconds and channel activity increases with depolarization. The single-channel conductance in symmetrical K+ is 166 pS. The channels are selective for cations with PK/PNa = 2. They are neither permeable to, nor gated by Ca2+. Thus, neuronal tissue nuclei contain a large conductance ion channel selective for monovalent cations which may contribute to ionic homeostasis in the complex compartments surrounding these organelles.

Animals↗

The influence of skull-conductivity misspecification on inverse source localization in realistically shaped finite element head models.

The electric conductivities of different tissues are important parameters of the head model and their precise knowledge appears to be a prerequisite for the localization of electric sources within the brain. To estimate the error in source localization due to errors in assumed conductivity values, parameter variations on skull conductivities are examined. The skull conductivity was varied in a wide range and, in a second part of this paper, the effect of a nonhomogeneous skull conductivity was examined. An error in conductivity of lower than 20% appears to be acceptable for fine finite element head models with average discretization errors down to 3 mm. Nonhomogeneous skull conductivities, e.g., sutures, yield important mislocalizations especially in the vincinty of electrodes and should be modeled.

Brain↗

Inverse localization of electric dipole current sources in finite element models of the human head.

The paper describes finite element related procedures for inverse localization of multiple sources in realistically shaped head models. Dipole sources are modeled by placing proper monopole sources on neighboring nodes. Lead field operators are established for dipole sources. Two different strategies for the solution of inverse problems, namely combinatorial optimization techniques and regularization methods are discussed and applied to visually evoked potentials, for which exemplary results are shown. Most of the procedures described are fully automatic and require only proper input preparation. The overall work for the example presented (from EEG recording to visual inspection of the results) can be performed in roughly a week, most of which is waiting time for the computation of the lead field matrix or inverse calculations on a standard and affordable engineering workstation.

Cerebral Cortex↗

The ACE-inhibitor lisinopril affects plasma insulin levels but not fibrinolytic parameters.

There is evidence that ACE-inhibitors exert beneficial effects on endogenous fibrinolysis in patients with previous myocardial infarction. It is still unknown if this effect is restricted to this patient group only and by which mechanisms ACE-inhibitors exhibit the profibrinolytic effects. One possible explanation might be the positive influence of ACE-inhibitors on insulin metabolism by decreasing plasma insulin which in turn could decrease PAI-1, a major regulator of the fibrinolytic system. Therefore the present study examines the relationship between insulin and PAI-1 plasma levels during intravenous glucose tolerance tests before and after administration with the ACE-inhibitor lisinopril in 12 male obese patients with angiographically proven coronary artery disease and borderline hypertension. After a 4-weeks wash-out period glucose tolerance tests were performed before and after lisinopril-treatment (10mgs/d) for 12 weeks. After the treatment period, fasting plasma insulin level decreased from 15.6 +/- 2.1 to 11 +/- 1.8 uU/ml, p < or = 0.01. Stimulated levels of insulin during glucose tolerance test also significantly decreased by lisinopril (peak insulin from 57 +/- 10 to 41.2 +/- 7.3 uU/ml, p < or = 0.02). Basal plasma tissue plasminogen activator antigen, PAI-1 total antigen and PAI-1 "active" antigen were unaffected by therapy (8.4 +/- 0.5 vs 8.6 +/- 0.5 ng/ml, 118 +/- 20 vs 124 +/- 16 ng/ml and 21 +/- 7 vs 30 +/- 7 ng/ml, respectively). Our data confirm a beneficial effect of lisinopril on plasma levels of insulin but failed to demonstrate any profibrinolytic effect in this study population, thus questioning the postulated mechanism of influencing endogenous fibrinolysis by changes of plasma insulin.

Angiotensin-Converting Enzyme Inhibitors↗

Serum albumin is a specific inhibitor of apoptosis in human endothelial cells.

Excess blood vessels are removed by apoptosis of endothelial cells, however, the signals responsible for this have not been defined. Apoptosis of cultured human umbilical vein endothelial cells is induced by deprivation of serum or adhesion. In this paper, apoptosis in human umbilical vein and microvascular endothelium was induced by deprivation of serum and or adhesion. Apoptosis was confirmed on the basis of morphology, ultrastructure and internucleosomal cleavage of DNA. Loss of endothelial adhesion was found to be an early event in cultured endothelial cell apoptosis and was exploited to quantitate apoptosis. The effect of: bovine serum albumin; human serum albumin; recombinant human albumin; dithiothreitol reduced human and bovine albumin; CNBr treated human and bovine albumin as well as ovalbumin upon endothelial apoptosis was determined. Native bovine and human albumin as well as recombinant human material inhibited apoptosis at physiological concentrations with identical dose response curves in both umbilical vein and microvascular cells. Dithiothreitol treatment destroyed all protective activity while bovine but not human albumin was partially inactivated by CNBr treatment. The unrelated protein ovalbumin was not protective. Albumin did not inhibit apoptosis if cells were also deprived of adhesion. The data suggest that albumin is a specific inhibitor of human endothelial apoptosis but does not protect cells also deprived of adhesion. Reduced supply of albumin to endothelium in poorly perfused blood vessels may provide a mechanism for the removal of excess blood vessels in remodelling tissues. Also, the failure of albumin to protect endothelial cells deprived of adhesion from apoptosis may reflect the need to remove potentially micro-embolic cells detached due to trauma.

Apoptosis↗

Bradykinin induces rise of free calcium in nuclei of neuroblastoma x glioma hybrid NG 108-15 cells.

Confocal fluorescence microscopy was used to study the bradykinin-induced calcium signals in the neuroblastoma x glioma cell line NG 108-15. We found that bradykinin induced a rise in free calcium, not only in the cytoplasm but also in the nucleus. The nuclear and cytosolic calcium concentrations were not significantly different and rose to about 1.2 microM. The signal was mediated by the B2-receptor subtype as confirmed using the specific antagonist Hoe 140. Both the onset and the intensity of the calcium signals were concentration-dependent. The rise of nuclear calcium level was independent of extracellular calcium and suppressed by thapsigargin which is known to deplete inositol 1,4,5-trisphosphate-sensitive calcium stores. Bradykinin-induced calcium increase desensitizes rapidly. This desensitization was shown not to involve activation of protein kinase C.

Animals↗

Origin of P16 median nerve SEP component identified by dipole source analysis--subthalamic or within the thalamo-cortical radiation?

Following median nerve stimulation, several monophasic peaks were recorded at the scalp in the 15-18 ms time range. Source analysis, using three different methods, modelled a source near the centre of the head with an orientation towards the activated hemisphere and a peak activity at 16 ms post stimulus. Magnetic recordings detected no signal in this time range, which confirmed a subcortical location of the source. From dipole localization it was not possible to assign the exact origin of the P16 source to either the subthalamic level or the thalamo-cortical radiation, because of the limited spatial resolution at the centre of the spherical head model. An estimate of the conduction velocity of the medial lemniscus pointed towards a subthalamic origin. The P16 source was preserved in two patients with a lesion of the thalamo-cortical radiation and the ventral thalamus. Further evidence for a subthalamic location of P16 was derived from the physical mechanisms generating far-field potentials.

Adult↗

Hepatocyte growth factor stimulates expression of plasminogen activator inhibitor type 1 and tissue factor in HepG2 cells.

HGF is a powerful mitogen for both rat and human hepatocytes, epithelial cells and endothelial cells in vitro, and is angiogenic in vivo. It has considerable homology with plasminogen and has been shown to upregulate urokinase-type plasminogen activator (u-PA) in endothelial cells as well as u-PA and its receptor in kidney epithelial cells. In this study, we report that human recombinant HGF stimulates expression of plasminogen activator inhibitor type 1 (PAI-1) and tissue factor (TF) in the human hepatoma cell line HepG2. PAI-1 antigen as determined by a specific enzyme-linked immunosorbent assay increased up to threefold in conditioned media of HepG2. This increase was dose dependent with maximum stimulation achieved with a concentration of 50 ng/mL of hepatocyte growth factor (HGF). PAI-1 antigen also increased up to fourfold in the extracellular matrix in HGF treated HepG2. The production of the PAI-1 binding protein vitronectin (Vn) was not affected by HGF. In contrast, TF activity in HepG2 treated with HGF increased up to twofold. As determined by Northern blotting, PAI-1 and TF-specific mRNA were increased significantly in the presence of HGF, whereas Vn mRNA was not affected. The increase in PAI-1 and TF mRNA was also seen when HepG2 were incubated with HGF in the presence of cycloheximide, thereby indicating that de novo protein synthesis is not required to mediate the effect. u-PA could be detected neither in unstimulated or HGF-stimulated HepG2 cells on the antigen level nor on the mRNA level. In conclusion, our data give evidence that HGF, in addition to its proliferative effect for different cell types, is also involved in the local regulation of fibrinolysis and coagulation. One could speculate that HGF might modulate processes requiring matrix degradation by increasing the expression of the protease u-PA in one cell type and by upregulating the expression of the serine protease inhibitor PAI-1 in a different cell type. Because u-PA has been shown to activate latent HGF to the active form, it could furthermore be speculated that by upregulating PAI-1, which in turn could inhibit u-PA, HGF might regulate its own activation.

Carcinoma, Hepatocellular↗

Differential nuclear localization of protein kinase C isoforms in neuroblastoma x glioma hybrid cells.

The protein kinase C (PKC) alpha, beta and epsilon isoforms have distinct nuclear localizations in neuroblastoma x glioma hybrid cells NG 108-15. We found by immunoblotting that PKC alpha, beta II, delta and epsilon are the predominant isoforms in these cells. In contrast to other neuronal cell lines, none of these isoforms is down-regulated during differentiation. Confocal immunofluorescence microscopy revealed that in undifferentiated cells PKC alpha is located in the cytoplasm and in the nucleus excluding nucleoli. In differentiated cells PKC alpha was almost exclusively located in the cytoplasm. Stimulation of the cells with phorbol ester resulted in translocation to the plasma membrane. PKC beta II was not detectable in the nuclei. PKC delta was found in the nucleoli and in the cytoplasm, in differentiated cells particularly in the neurites. Phorbol ester failed to induce a translocation to other compartments. PKC epsilon was localized with the nuclear-pore complexes at the nuclear envelope. In differentiated cells after stimulation with phorbol ester, partial translocation to the plasma membrane was observed.

Animals↗

Effects of papaverine and prostaglandin E1 on corpus cavernosum smooth muscle of arteriogenically and diabetically impotent men.

Relaxant effect of prostaglandin E1 (PGE1) and papaverine (PAP) were measured in strips of corpus cavernosum smooth muscle taken from a healthy control group of men (A; n = 5), from arteriogenically impotent men (B; n = 6) and from additionally diabetic impotent men (C; n = 5) with venous leakage. Maximal relaxant effect was achieved with PAP at a mean of 10(-4) mol/l and PGE1 at a mean of 5.8 x 10(-6) mol/l. PAP induced complete relaxation in all strips. There was no difference in relaxant effects between groups. Relaxant effect was less pronounced and depended significantly on etiology: phenylephrine-induced tension was reduced by 76 +/- 8% (A), 54 +/- 14% (B) and 23 +/- 18% (C), respectively. In conclusion, our data suggest degradation of PGE1 receptors depending on the cause of erectile dysfunction. Furthermore, relaxant capacity of cavernous smooth muscle per se seems not to be impaired in impotence. Therefore, pathophysiology of venous leakage cannot sufficiently be explained by a lack of relaxation.

Alprostadil↗

Fibrinogen, t-PA, and PAI-1 plasma levels in patients with pulmonary hypertension.

We measured fibrinogen levels as well as the fibrinolytic parameters tissue-type plasminogen activator (t-PA) and plasminogen activator inhibitor 1 (PAI-1) in plasma samples obtained at basal conditions and after stimulating the fibrinolytic system by venous occlusion (VO). Samples were taken from patients with primary pulmonary hypertension (PPH), with secondary thromboembolic pulmonary hypertension (SPHTH), with secondary pulmonary hypertension due to congenital heart disease with Eisenmenger's reaction (SPHCD), and from healthy control individuals (CON). Fibrinogen levels were not significantly different between the groups with PPH and SPHTH or between SPHCD and CON. The latter groups, however, exhibited significantly lower fibrinogen plasma levels compared with PPH or SPHTH (p < 0.01). Basal plasma levels of t-PA antigen, t-PA activity, and PAI-1 activity, respectively, did not differ significantly between the study groups. After VO, mean t-PA activity levels increased to a higher extent in control subjects compared with patients with PPH, or SPHTH, or SPHCD, with significant differences only between CON and SPHTH or CON and PPH (p < 0.03). Patients with PPH and SPHTH exhibit both increased fibrinogen plasma levels and a diminished fibrinolytic response compared with healthy subjects. Moreover, the fibrinogen plasma levels in patients with SPHCD are in normal range, and the fibrinolytic response is similar to CON compared with PPH and SPHTH, thus indicating the existence of a comparable prothrombotic situation in patients with PPH and SPHTH.

Adult↗

Influence of cardiac output on peak t-PA plasma levels in patients receiving thrombolytic therapy with recombinant tissue-type plasminogen activator--correlation with patency rate.

We studied 35 consecutive patients with short onset of myocardial infarction who underwent thrombolytic therapy with rt-PA at a standard dosage regimen of 100 mg rt-PA total (10 mg given as a bolus followed by 50 mg, 20 mg and 20 mg per hour for 3 hours). These patients were monitored for t-PA antigen and t-PA activity and PAI-1 activity plasma levels during rt-PA infusion. Success or failure of thrombolytic therapy was evaluated by non-invasive criteria (early plasma creatine kinase peaks, early peak plasma myoglobin values, and electrocardiographic criteria) as well as by means of coronary angiography at the fourth day after thrombolytic treatment. In 24 (68.6%) of these patients a success of thrombolytic therapy could be established by these criteria, while 11 patients did not respond to thrombolytic therapy. Fifteen patients (14 responders and one non-responder) had to be excluded from the further evaluation because in these patients clinical laboratory data obtained upon admission before initiation of thrombolytic therapy were not complete. Therefore, 20 patients (10 responders and 10 non-responders) could further be analysed. The two groups of patients were not significantly different in body weight, body weight index, age, gender, liver or kidney functional parameters as determined before initiation of the thrombolytic therapy. Furthermore, PAI-1 plasma levels before initiation of thrombolytic therapy were not significantly different in the two groups, as were rt-PA dosage per body weight or body weight index.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The role of type-1 plasminogen activator inhibitor in failure of thrombolytic therapy with recombinant tissue plasminogen activator.

We investigated the possible role of type-1 plasminogen activator inhibitor (PAI-1) on success or failure of thrombolytic therapy with recombinant tissue plasminogen activator (rt-PA) in 10 responders and 10 non-responders with acute myocardial infarction and early initiation of therapy within 2 h of onset using the common infusion scheme (100 mg rt-PA over 3 h). We determined plasma levels of t-PA (activity and antigen) as well as PAI-1 (activity and antigen) in samples obtained before, during and after thrombolytic treatment and compared the course of each of those parameters between responders and non-responders to therapy. Success or failure of treatment was determined by a combination of noninvasive methods and proven by coronary angiography within 5 days of initiation of thrombolysis. Thirty, 60, 90, and 120 min after initiation of rt-PA infusion, specific t-PA activities in plasma of responders were 0.62, 0.63, 0.62, and 0.57 (IU/ng/ml), respectively, as compared to 0.42, 0.42, 0.40, and 0.32 (IU/ng/ml) in nonresponders (p < 0.001). Between 4 and 8 h after initiation of therapy, a time span known to be critical for thrombotic reocclusion, specific activities were still significantly elevated in responders as compared to non-responders (p < 0.01). PAI-1 activity levels, which were not detectable during rt-PA infusion in either group, recovered to pre-treatment values 2 h earlier in non-responders.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Nuclear substrates of protein kinase C.

Starting from the finding that, for neuronal cells, the nuclear-membrane-associated protein kinase C (PKC) is the so-called 'membrane inserted', constitutively active form, we attempted to identify substrates of this nuclear PKC. For this purpose, nuclear membranes and other subcellular fractions were prepared from bovine brain, and in-vitro phosphorylation was performed. Several nuclear membrane proteins were found, the phosphorylation of which was inhibited by specific PKC inhibitors and effectively catalyzed by added PKC. Combining the methods of two-dimensional gel electrophoresis, in-situ digestion, reverse-phase HPLC and microsequencing, two of these nuclear PKC substrates were identified; the known PKC substrate Lamin B2, which serves as a control of the approach and the nucleolar protein B23. Our data suggest, that, for B23, Ser225 is a site of phosphorylation by PKC.

Amino Acid Sequence↗

Isolation of deacetoxycephalosporin C from fermentation broths of Penicillium chrysogenum transformants: construction of a new fungal biosynthetic pathway.

Deacetoxycephalosporin C (DAOC), a precursor of cephalosporins excreted by Cephalosporium and Streptomyces species, has been produced in Penicillium chrysogenum transformed with DNA containing a hybrid penicillin N expandase gene (cefEh) and a hybrid isopenicillin N epimerase gene (cefDh). DAOC from a P. chrysogenum transformant was identified by ultraviolet light (UV), high performance liquid chromatography (HPLC), nuclear magnetic resonance (NMR) and mass spectrum analyses. P. chrysogenum transformed with DNA containing cefEh without cefDh did not produce DAOC. Untransformed P. chrysogenum produced penicillin V (phenoxymethylpenicillin) but not DAOC. Transformants also produced penicillin V but, in general, less than untransformed P. chrysogenum. The cefEh and cefDh genes were constructed by replacing the open reading frame (ORF) of cloned P. chrysogenum pcbC and penDE genes with the ORF of the Streptomyces clavuligerus expandase gene, cefE, and the ORF of the Streptomyces lipmanii epimerase gene, cefD, respectively. Analyses of representative transformants suggested that production of DAOC occurred via cefEh and cefDh genes stably integrated in the P. chrysogenum genome. DNA from untransformed P. chrysogenum did not hybridize to cefE or cefD gene probes.

Amino Acid Isomerases↗

Modulation of heparin cofactor II activity by glycosaminoglycans and adhesive glycoproteins.

Heparin cofactor II (HCII) is a specific thrombin inhibitor; its inhibitory activity is stimulated by heparin (Hep) and dermatan sulfate (DS). Vitronectin (VN), a heparin binding adhesive glycoprotein present in plasma and extracellular matrix, has been shown to decrease the stimulatory effect of Hep but not of DS on thrombin inhibition by HCII (Preissner and Sié, 1988). We analyzed the effect of glycosaminoglycans (GAGs) and GAG-binding proteins on the HCII/thrombin interaction in more detail. HCII was purified from the supernatant of barium citrate adsorbed normal human plasma by polyethylene glycol precipitation followed by affinity chromatography on heparin-Sepharose CL-6B and ion-exchange chromatography on a QAE-Sephadex A-50. Inhibition of thrombin by HCII was studied in the absence and presence of GAGs (hep 0.03-30 micrograms/ml, DS 0.05-50 micrograms/ml, heparan sulfate (HS) 0.05-50 micrograms/ml) in a chromogenic substrate assay using S-2366 as a thrombin substrate. The effects of VN and fibronectin (FN) on HCII stimulation by GAGs were determined. In addition to Hep and DS the inhibitory effect of HCII was stimulated by HS, however, to a lesser extent. Using 0.03U/ml thrombin and 1nM HCII the stimulatory effect of GAGs was completely inhibited when Hep (less than or equal to 0.3 micrograms/ml) was preincubated with VN (60 micrograms/ml) and decreased to less than 50% when HS (50 micrograms/ml) was preincubated with VN (60 micrograms/ml). VN had no effect on DS as already described previously.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Adhesion↗

Nitric oxide mediates relaxation in rabbit and human corpus cavernosum smooth muscle.

We investigated in vitro the relaxant effect of exogenous acetylcholine (ACh) and electric-field stimulation (EFS) on rabbit and human corpus cavernosum smooth muscle strips (CC) precontracted with phenylephrine. The effects of EFS and ACh were monitored alone, after muscarinic receptor blockade and after inhibition of nitric oxide (NO) formation with L-N-nitro-arginine (L-NOARG). In rabbit and human CC, both atropine and L-NOARG abolished the relaxant effects of ACh. The relaxant effects of EFS, however, were only slightly reduced by atropine to 97.5 +/- 17.5% in human CC and to 89.0 +/- 6.1% in rabbit CC. L-NOARG further reduced the EFS effects to 0.8 +/- 1.7% in human CC and to 16.2 +/- 8.7% in rabbit CC. In strips obtained from impotent patients with diabetes mellitus, the relaxant effects appeared to be significantly less than in strips from nondiabetic impotent men. Tetrodotoxin blocked the relaxant EFS effects in human and rabbit strips completely. The data indicate the important role of NO in cholinergically induced relaxation of cavernous smooth muscle in rabbits and humans. Our findings support the idea of NO as the nonadrenergic noncholinergic neurotransmitter in penile erection in both species. Rabbit erectile tissue might serve as an in vitro animal model for further investigation.

Acetylcholine↗