Search PubMed⌕ Search

Biomedical subjects

A Vogt

Publications and source records attributed to A Vogt.

At least 73 records · Page 4Linked to original sources

Is symmetry informative?

Is symmetry informative? The answer is both yes and no. We examine what information and symmetry are and how they are related. Our approach is primarily mathematical, not because mathematics provides the final word, but because it provides an insightful and relatively precise starting point. Information theory treats transformations that messages undergo from source to destination. Symmetries are information that leave some property of interest unchanged. In this respect the studies of information and symmetry can both be regarded as a Quest for the identity transformation.

Communication↗

p53-protein and Ki-67-antigen expression are both reliable biomarkers of prognosis in thick stage I nodular melanomas of the skin.

The maximum tumour thickness is the most important prognostic factor in malignant melanomas of the skin. However, the clinical outcome of thick nodular melanomas remains unpredictable. Therefore, we investigated possible prognostic markers in this subset of melanomas. From a melanoma data base, 12 patients with thick (> 3 mm) stage I nodular melanomas of the skin were identified, who were still without signs of progression after five years of follow-up. These tumours were compared to randomly selected series of 12 cases, who did not survive the first five years after removal of the tumours. We performed immunostaining for the p53-protein and the proliferation associated Ki-67-antigen. For quantification of immunostaining the tumours were entirely scanned. In addition, all tumours were investigated for any differences with conventionally applied prognostic features: the tumour thickness: the level of invasion; the prognostic index (tumour thickness multiplied by mitotic count); and the mean volume-weighted mean nuclear volume. We demonstrated significant differences between survivors and non-survivors exclusively in respect of the staining indices for p53 and Ki-67 (P < 0.03 and 0.02, respectively). With both antibodies the tumours of survivors showed lower counts as compared to non-survivors survivors. However, within both groups we found no significant correlations between the p53- and Ki-67-staining results. We conclude that immunostaining for p53-protein and Ki-67-antigen is helpful to identify individuals with thick nodular melanomas who are at risk of metastatic disease.

Adult↗

PTCA registry of German community hospitals. Arbeitsgemeinschaft Leitender Kardiologischer Krankenhausärzte (ALKK) Study Group.

BACKGROUND: Percutaneous transluminal coronary angioplasty (PTCA) is widely used, but no quality control has been systematically performed as yet. METHODS: A registry of all PTCA procedures has been established since October 1992 for the majority of the German community hospitals performing PTCA, representing about one third of all PTCA activity in Germany. Baseline demographic data, indication for PTCA, primary success and in-hospital clinical events were recorded. Each centre was visited at regular intervals to assure completeness and reliability of the data. RESULTS: Of 52453 procedures performed from October 1992 to December 1994 the catheter laboratory and discharge forms were 99.7% and 98.1% complete, respectively. In 85.9% a single lesion was dilated per procedure, but 48.7% of the patients had multivessel disease. The success rate was 66.5% in complete occlusions (residual stenosis < 70%) and 91.2% in non-occluded vessels (residual stenosis < 50%). Abrupt vessel closure occurred in 3.4%, of which 77.5% could be recanalized by repeat intervention. In procedures not done for acute myocardial infarction, the in-hospital mortality was 0.52%, the procedure-related mortality 0.37%. In 3.02% of all patients a severe complication occurred (procedure-related death, myocardial infarction or emergency bypass surgery). CONCLUSION: Complete recording of all PTCA procedures is feasible even on a nationwide basis. This is a pre-requisite for continuous quality control. The reporting of the procedures by itself very probably, has an impact on the quality which is, however, not measurable quantitatively.

Aged↗

Protein geranylgeranylation, not farnesylation, is required for the G1 to S phase transition in mouse fibroblasts.

In order to assess the relative contributions of farnesylated and/or geranylgeranylated proteins on cell cycle progression from G1 to S phase we designed potent and selective farnesyltransferase (FTI-277) and geranylgeranyltransferase-I (GGTI-298) inhibitors. Flow cytometry studies showed that treatment of NIH3T3 cells with GGTI-298 or lovastatin, which inhibits both protein farnesylation and geranylgeranylation, arrested cells in G0/G1 whereas cells treated with FTI-277 progressed normally through the cell cycle. [3H]thymidine incorporation studies showed that mevalonate and geranylgeraniol, but not farnesol, released the lovastatin G1 block. Furthermore, mevalonate release of the lovastatin G1 block was inhibited by GGTI-298 but not by FTI-277. These results demonstrate that geranylgeranylated proteins are required for cells to proceed from G1 to S phase, and that farnesylated proteins do not play an essential role in the G1 to S phase transition

Actins↗

Platelet-derived growth factor receptor tyrosine phosphorylation requires protein geranylgeranylation but not farnesylation.

We have used specific inhibitors for farnesyltransferase (FTase) and geranylgeranyltransferase (GGTase) I as well as combinations of lovastatin with geranylgeraniol (GGOH) or farnesol (FOH) to investigate the role of protein prenylation in platelet-derived growth factor (PDGF)-induced PDGF receptor tyrosine phosphorylation. NIH-3T3 cells treated with the highly specific FTase inhibitor FTI-277 had no effect on PDGF receptor tyrosine phosphorylation or PDGF activation of mitogen-activated protein kinase (MAPK) at doses that completely inhibit FTase-dependent processing. In contrast, treatment of these cells with GGTase I inhibitor GGTI-298 strongly inhibited receptor tyrosine phosphorylation, and co-treatment with FTI-277 had no additional effect. Interestingly, the inhibitory effect of GGTI-298 on PDGF activation of MAPK was only partial. Furthermore, although lovastatin, which inhibits both protein geranylgeranylation and protein farnesylation, blocked PDGF receptor tyrosine phosphorylation, co-treatment with GGOH, but not FOH, reversed the lovastatin block. In addition, although lovastatin was observed to block MAPK activation by PDGF, co-treatment with GGOH, but not FOH, restored its activation. Further investigations indicated that inhibition of receptor tyrosine phosphorylation was not due to decreased expression of the receptor or to inhibition of GGTase II. Thus, these results demonstrate that PDGF receptor tyrosine phosphorylation requires protein geranylgeranylation but not protein farnesylation and that the tyrosine phosphorylation levels of the receptor are modulated by a protein that is a substrate for GGTase I.

3T3 Cells↗

Design and synthesis of non-peptide Ras CAAX mimetics as potent farnesyltransferase inhibitors.

Cysteine farnesylation of the ras oncogene product Ras is required for its transforming activity and is catalyzed by farnesyltransferase (FTase). The Ras carboxyl terminal tetrapeptide CAAX (C is cysteine, A is any aliphatic amino acid, X is methionine or serine) is the minimum sequence for FTase recognition. We report here the design, synthesis, and biological characterization of Ras CAAX non-peptide mimetics in which the cysteine is linked through a reduced pseudopeptide bond to 4-amino-3'-carboxybiphenyl. These non-peptide mimetics are potent inhibitors of FTase (IC50 = 40 nM for the most potent inhibitor) and are highly selective for FTase over GGTase I (geranylgeranyltransferase I). They are not substrates for farnesylation, do not have peptidic features, and have no hydrolyzable bonds. Structure-activity studies reveal the importance of the position of the carboxylic acid on the aryl ring as well as the reduction of the cysteine amide bond. Substitution at the 2-position of 4-amino-3'-carboxybiphenyl increases inhibitory potency, while the removal of the carboxylic acid results in a 10-fold loss of inhibitory activity.

Alkyl and Aryl Transferases↗

Differential activation of human autoreactive T cell clones by altered peptide ligands derived from myelin basic protein peptide (87-99).

We have examined the functional consequences induced by interaction of DR2a-restricted myelin basic protein (MBP) (87-99)-specific T cell clones (TCC) with altered peptide ligands (APL) derived from MBP peptide (87-99). The immunodominant MBP peptide (87-99) has been implicated as a candidate antigen in multiple sclerosis (MS) by several lines of evidence. In the present study, we have defined the T cell receptor (TCR) contact residues for DR2a-restricted, (87-99)-specific T helper type 1 T cells to design APL suitable to modify the functions of such T cells potentially relevant for the pathogenesis of MS. We show that neutral (L-alanine substitutions) or conservative exchanges of the primary and secondary TCR contact residues lead to various alterations of T cell function, ranging from differences in interleukin-2 receptor up-regulation to anergy induction and TCR antagonism. The potential usefulness of APL as an immunomodulating therapy for DR2+ MS patients is discussed.

Amino Acid Sequence↗

Structural continuity of filtration slit (slit diaphragm) to plasma membrane of podocyte.

Murine monoclonal antibody 5-1-6 was reported to bind to the slit membrane and closely related structures in rat renal glomeruli; it induced heavy, reversible proteinuria and appeared to redistribute onto the plasma membrane of epithelial cells after binding at the original target sites. This phenomenon of antigenic movement has not been analyzed in detail to date. In addition to normal kidneys we also studied localization of the antigen recognized by monoclonal antibody 5-1-6 in protamine sulfate-perfused rat kidneys, in which slit diaphragms are known to be functionally modified. Isolated glomeruli as well as ultrathin kidney cryosections were labeled by the immunogold technique to clarify the relation between this antigen and the slit diaphragm. Sequential localization of injected monoclonal antibody was visualized using a post-embedding immunogold method in rats 2 hours to 12 days after injection of antibody. Ultrastructural immunogold labeling demonstrated that under normal conditions antigenic molecules were expressed mainly in the area beneath the slit diaphragms. Occasionally labeling was found at the base of the foot process, facing the glomerular basement membrane. After protamine sulfate treatment antigenic sites were dislocated due to the lifting and disruption of slit diaphragms, indicating that this antigen is associated with slit diaphragms. Injected antibody was localized at the filtration slits at 2 hours, and by 12 hours it had moved onto the apical plasma cell membrane of foot process. In addition, from 3 days onwards patch or cap-like formation on the plasma cell membrane of podocytes was seen. Possible shedding of antibody from podocyte cell surface membrane was occasionally encountered, but internalization of antibody was a minor event. Elution experiments in isolated glomeruli at day 3 indicated that antigen and antibody were both localized on the podocyte cell surface membrane, suggesting redistribution of immune complexes. In conclusion, filtration slits (slit diaphragms) and the apical membrane of foot process of podocytes demonstrate structural continuity, as revealed by the movement of the antigen recognized by monoclonal antibody 5-1-6 as antigen-antibody complexes.

Animals↗

Induction of glomerulonephritis in rats with staphylococcal phosphatase: new aspects in post-infectious ICGN.

Staphylococcal neutral phosphatase (NPtase) is a highly cationic bacterial surface bound protein. It has significant affinity for human and rat immunoglobulins in vitro and an electrostatic interaction may be involved. Radioisotopic studies showed that NPtase had a high affinity for the polyanionic structures of the rat renal glomerulus. When the left kidneys of germ-free or naive (non-immune) Wistar rats were perfused with 80 micrograms of I125 NPtase, 21 micrograms of NPtase were found in the left kidneys and 11 micrograms in the isolated glomeruli 15 minutes after perfusion. Deposits of autologous immunoglobulin and C3 were seen in the glomeruli of rats immediately after perfusion with NPtase (15 min) and persisted throughout the 14-day observation period. Histologically, neutrophil influx into the glomerulus was seen at 15 minutes and increased until three hours; subepithelial electron-dense deposits were found after three days and were still visible on day 14. Proteinuria started within the first 24 hours despite the absence of an immune response at this time and was still present on day 14. Similar results were observed in immune deficient athymic nude rats in the early phase. Perfusion of heparin after NPtase inhibited the deposition of IgG and C3 and prevented proteinuria in naive but not in actively immunized rats. This result provides further evidence that specific antibodies to NPtase were not involved in the immune complex-like deposits seen in the early phase. NPtase is a novel molecule, as it reveals both high affinity for the GBM and binding of circulating immunoglobulins, by a non-antigen-antibody mechanism, to form IC-like deposits on the GBM. These deposits are capable of activating the complement system, thus triggering a series of events leading to glomerulonephritis. These results delineate an additional pathway for the pathogenesis of ICGN related to bacterial infection.

Animals↗

Anti-DNA antibody derived from a systemic lupus erythematosus (SLE) patient forms histone-DNA-anti-DNA complexes that bind to rat glomeruli in vivo.

Histone can mediate the binding of both free DNA and DNA complexed to anti-DNA antibody to the glomerular capillary wall. We tested whether performed histone-DNA-anti-DNA immune complexes (IC) could bind to the glomerular capillary wall. The immune complex, generated with anti-DNA antibody derived from an SLE patient and excess of 125I-DNA followed by digestion with DNase, was mixed with histones. The complex containing 4 micrograms DNA was injected via the aorta into the left kidney of rats. At 15 min, 1-3% of the histone-DNA-anti-DNA antibody complex bound (measured as 125I-DNA), when histone was omitted less than 0-1% of the DNA-anti-DNA antibody complex bound. By immunofluorescence human immunoglobulins and histones, representing the IC, could be observed in a capillary pattern; but no complement deposition was detected. Electron microscopy revealed discrete, electron dense deposits in a subendothelial, subepithelial and mesangial localization at 15 min. These results provide direct evidence that antibodies from serum of SLE patients can form soluble histone-DNA-anti-DNA immune complexes that bind to the glomerular capillary wall in vivo.

Animals↗

Thrombolysis and mechanical intervention following myocardial infarction.

In concept, mechanical interventions are attractive options for treating acute myocardial infarction with or without preceding thrombolysis: rapid reperfusion of the infarct-related artery can be achieved in the vast majority of cases, and the underlying coronary lesion is treated at the same time. Various strategies have been extensively investigated. When performed in specialized centres, direct percutaneous transluminal coronary angioplasty (PTCA) without prior thrombolysis appears to improve the outcome more than conventional thrombolysis. Whether this also holds true for the diverse range of hospitals remains unknown. Routine PTCA after thrombolysis did not show any benefit over thrombolysis alone. Rescue PTCA after failed thrombolysis is probably beneficial. Currently, only limited experience exists with other mechanical interventions, including intra-aortic balloon pumping, thrombectomy with special new devices, or stent insertion, which need further investigation before they can be recommended for routine use in acute myocardial infarction.

Angioplasty, Balloon, Coronary↗

-Myocardial protection by preconditioning. Experimental and clinical significance-.

Short periods of ischemia render the myocardium more resistant to a subsequent prolonged coronary occlusion resulting in a reduction of infarct size. This cardioprotective mechanism has been called ischemic preconditioning. Acute myocardial ischemia results in a rapid decline of high energy phosphates. After short periods of ischemia the high energy phosphate levels are better preserved and the increase of lactate is slower during the prolonged subsequent ischemia in the preconditioned group compared to control. The duration of ischemia needed for induction of the protective effect is 2.5 min in dogs and 20 min in our swine model. In porcine myocardium the protection is lost about 1 h after induction and a renewal is not possible at that time, but is 24 h later. For rabbits or dogs, but not in pigs, a late protection 24 h after induction or preconditioning has been shown ("second window of protection"). Adenosine or adenosine A1 receptor agonists, muscarinic M2 receptor agonists, alpha 1-receptor agonists and bradykinin B2 receptor agonists as well as opening of the K+ATP-channel substitute for ischemia in the induction of protection. Activation of protein kinase C results in protection in rats and rabbits, but not in dogs or pigs. Inhibition of protein kinase C translocation or kinase activity results in a loss of the protection induced by preceding ischemia. After blockade of the K+ATP-channel the protection induced by adenosine A1 receptor activation is lost. Therefore opening of the K+ATP-channel is a prerequisite for induction of the protective effect. Inhibition of the inhibitory G-protein by pertussis toxin has been shown to result in a loss of protection, therefore the Gi-protein seems to be involved in the evolution of protection. In humans during coronary angioplasty anginal pain and lactate production during a second balloon occlusion is diminished without any change in the regional myocardial perfusion. This adaptation is inhibited by blockade of the K+ATP-channel or of the adenosine A1 receptor. Intermittent cross-clamping before a longer occlusion during open-heart surgery results in a better preservation of high energy phosphates compared to controls without preceding short ischemia. These observations support the hypothesis that ischemic preconditioning also occurs in humans. Angina pectoris preceding the myocardial infarction may have preconditioned the human heart against the subsequent myocardial infarction, but studies concerning the influence of angina pectoris on short-term outcome after thrombolysis are conflicting. In the future, ischemic preconditioning or preconditioning with drugs may prolong the duration of ischemia tolerated without necrosis and improve the prognosis of patients by reducing the infarct size.

Adenosine Triphosphate↗

[The role of adenosine in "ischemic preconditioning"].

Repeated short coronary occlusions trigger probably more than one pathway leading to increased tolerance toward ischemia. Adenosine plays probably a very important but not an exclusive role. It may act via opening of A1-receptor-operated K(+)-channels that lead to hyperpolarization of the cell, and it has antiadrenergic actions. A proposed action of adenosine via protein kinase C is not confirmed. Trophic factors are expressed during short periods of ischemia and contribute to survival, probably via inhibition of apoptosis.

Adenosine↗

Activated Drosophila Ras1 is selectively suppressed by isoprenyl transferase inhibitors.

Ras CAAX (C = cysteine, A = aliphatic amino acid, and X = any amino acid) peptidomimetic inhibitors of farnesyl protein transferase suppress Ras-dependent cell transformation by preventing farnesylation of the Ras oncoprotein. These compounds are potential anticancer agents for tumors associated with Ras mutations. The peptidomimetic FTI-254 was tested for Ras1-inhibiting activity in whole animals by injection of activated Ras1val12 Drosophila larvae. FTI-254 decreased the ability of Ras1val12 to form supernumerary R7 photoreceptor cells in the compound eye of transformed flies. In contrast, it had no effect on the related supernumerary R7 phenotypes of flies transformed with either the activated sevenless receptor tyrosine kinase, Raf kinase, or a chimeric Ras1val12 protein that is membrane associated through myristylation instead of isoprenylation. Therefore, FTI-254 acts as an isoprenylation inhibitor to selectively inhibit Ras1val12 signaling activity in a whole-animal model system.

Alkyl and Aryl Transferases↗

Frequency of "optimal anticoagulation" for acute myocardial infarction after thrombolysis with front-loaded recombinant tissue-type plasminogen activator and conjunctive therapy with recombinant hirudin (HBW 023). ALKK Study Group.

This retrospective analysis reviewed 183 patients with acute myocardial infarction who were given front-loaded recombinant tissue-type plasminogen activator (rt-PA) and r-hirudin (HBW 023) in 1 of 4 dose groups (bolus dose of 0.07, 0.1, 0.2, or 0.4 mg/kg, followed by an infusion of 0.05, 0.06, 0.1, or 0.15 mg/kg/hour over 48 hours). Activated partial thromboplastin time (aPTT) levels were determined at baseline and at 4, 8, 12, 16, 20, 24, 32, 40, and 48 hours. Of the 178 patients with r-hirudin treatment for > or = 12 hours, anticoagulation was optimal in 55.1% (all aPTTs > 2 x baseline), suboptimal in 33.7% (lowest aPTT > 1.5 but < 2 x baseline), and inadequate in 11.2% (> or = 1 aPTT but < 1.5 x baseline). Optimal anticoagulation was observed more frequently in the higher dose groups (dose 1, 15%; dose 2, 44.4%; dose 3, 63.4%; dose 4, 73.4%; p for trend < 0.0001). Patency (according to Thrombolysis in Myocardial Infarction trial grade 2 or 3) of the infarct artery after 36 to 48 hours was higher in the group with optimal anticoagulation compared with those with suboptimal or inadequate anticoagulation: 97.9%, 88.4%, and 85%, respectively (p = 0.03 optimal vs suboptimal or inadequate anticoagulation). In conclusion, r-hirudin in a dose of 0.1 or 0.15 mg/kg/hour achieves an optimal anticoagulation in about 63% or 74% of patients, which is associated with an enhanced patency 24 to 48 hours after rt-PA. A subsequent study revealed that this effective anticoagulation may be accompanied by an increased risk of severe bleeding complications after thrombolysis.

Adult↗

Ras CAAX peptidomimetic FTI-277 selectively blocks oncogenic Ras signaling by inducing cytoplasmic accumulation of inactive Ras-Raf complexes.

Ras-induced malignant transformation requires Ras farnesylation, a lipid posttranslational modification catalyzed by farnesyltransferase (FTase). Inhibitors of this enzyme have been shown to block Ras-dependent transformation, but the mechanism by which this occurs remains largely unknown. We have designed FTI-276, a peptide mimetic of the COOH-terminal Cys-Val-Ile-Met of K-Ras4B that inhibited potently FTase in vitro (IC50 = 500 pM) and was highly selective for FTase over geranylgeranyltransferase I (GGTase I) (IC50 = 50 nM). FTI-277, the methyl ester derivative of FTI-276, was extremely potent (IC50 = 100 nM) at inhibiting H-Ras, but not the geranylgeranylated Rap1A processing in whole cells. Treatment of H-Ras oncogene-transformed NIH 3T3 cells with FTI-277 blocked recruitment to the plasma membrane and subsequent activation of the serine/threonine kinase c-Raf-1 in cells transformed by farnesylated Ras (H-RasF), but not geranylgeranylated, Ras (H-RasGG). FTI-277 induced accumulation of cytoplasmic non-farnesylated H-Ras that was able to bind Raf and form cytoplasmic Ras/Raf complexes in which Raf kinase was not activated. Furthermore, FTI-277 blocked constitutive activation of mitogen-activated protein kinase (MAPK) in H-RasF, but not H-RasGG, or Raf-transformed cells. FTI-277 also inhibited oncogenic K-Ras4B processing and constitutive activation of MAPK, but the concentrations required were 100-fold higher than those needed for H-Ras inhibition. The results demonstrate that FTI-277 blocks Ras oncogenic signaling by accumulating inactive Ras/Raf complexes in the cytoplasm, hence preventing constitutive activation of the MAPK cascade.

Alkyl and Aryl Transferases↗

Burkitt lymphoma Daudi cells contain two distinct farnesyltransferases with different divalent cation requirements.

Farnesylation is a lipid posttranslational modification required for the biological function of several signaling proteins including the Ras oncoprotein where this modification is required for malignant transformation. Here we report the identification of two distinct farnesyltransferases (FTases) in Burkitt lymphoma Daudi cells. Separation of Daudi cell cytosolic fractions by ion exchange chromatography resulted in two peaks (FTases I and II) that, on gel filtration, show molecular masses of 90 000 and 250 000 Da, respectively. Immunoblotting experiments showed that FTase I is composed of an alpha/beta-heterodimer of about 50 000 Da each. FTase II contained a beta-subunit that is immunologically indistinguishable from the beta-subunit of FTase I and the previously reported human and rat brain FTase but contained an alpha-subunit that reacted poorly with a rat brain anti-alpha-antibody. As in rat brain FTase, Daudi FTases I and II both required magnesium for enzymatic activity. However, their zinc requirements differed. In the absence of Zn2+, FTase I had little activity (10%) whereas FTase II had 30% of its maximum activity (maximum activity obtained in the presence of Zn2+). Furthermore, whereas both FTases I and II were potently inhibited by KB-Ras C-terminal Cys-Val-Ile-Met tetrapeptide mimics, only FTase I but not FTase II required zinc for peptide binding and inhibition.

Alkyl and Aryl Transferases↗