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U Traub

Publications and source records attributed to U Traub.

12 recordsLinked to original sources

Role of the intermediate filament protein vimentin in delaying senescence and in the spontaneous immortalization of mouse embryo fibroblasts.

Because knockout of the vimentin gene in mice did not produce an immediately obvious, overt, or lethal specific phenotype, the conjecture was made that the mutation affects some subtle cellular functions whose loss manifests itself only when the mutant animals are exposed to stress. In order to substantiate this idea in a tractable in vitro system, primary embryo fibroblasts from wildtype (V(+/+)) and vimentin-knockout (V(-/-)) mice were compared with regard to their growth behavior under the pseudophysiologic conditions of conventional cell culture. Whereas in the course of serial transfer, the V(+/+) fibroblasts progressively reduced their growth potential, passed through a growth minimum around passage 12 (crisis), and, as immortalized cells, resumed faster growth, the V(-/-) fibroblasts also cut down their growth rate but much earlier, and they either did not immortalize or did so at an almost undetectable rate. Cells withdrawing from the cell cycle showed increased concentrations of reactive oxygen species and signs of oxidative damage: enlarged and flattened morphology, large nuclear volume, reinforced stress fiber system as a result of increased contents of actin and associated proteins, prominent extracellular matrix, and perinuclear masses of pathological forms of mitochondria with low membrane potential. The differences in the cell cycle behavior of the V(+/+) and V(-/-) cells in conjunction with the morphologic changes observed in mitotically arrested cells suggests a protective function of vimentin against oxidative cell damage. Because vimentin exhibits affinity for and forms crosslinkage products with recombinogenic nuclear as well as mitochondrial DNA in intact cells, it is credible to postulate that vimentin plays a role in the recombinogenic repair of oxidative damage inflicted on the nuclear and mitochondrial genome throughout the cells' replicative lifespan. Recombinational events mediated by vimentin also appear to take place when the cells pass through the genetically unstable state of crisis to attain immortality. The residual immortalization potential of V(-/-) fibroblasts might be attributable to their capacity to synthesize, in place of vimentin, the tetrameric form of a lacZ fusion protein carrying, in addition to a nuclear localization signal, the N-terminal 59 amino acids of vimentin and thus its DNA-binding site. On the basis of these results and considerations, a major biologic role of vimentin may be to protect animals during development and postnatal life against genetic damage and, because of its contribution to the plasticity of the genome, to allow them to respond to environmental challenges.

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[Double-helical CT pitfall: the native hyperdense basilar artery].

PURPOSE: The unenhanced signs of basilar thrombosis at computed tomography (CT) is the hyperdense visualization of the basilar artery due to intravascular thrombosis. In patients who are clinically asymptomatic, hyperdense visualization of the basilar artery can be observed, if scanned with a double helical CT. Purpose of the present study was to evaluate the diagnostic significance of these changes seen at double-helical CT. MATERIAL AND METHOD: Ten patients patients underwent double-helical CT of a portion of the base of the skull. In each case, 5-mm and 10-mm fused slices were obtained. The patency of the visualized vessels was then documented using contrast-enhanced images. RESULTS: The differences in attenuation between the 5-mm and 10-mm fused slices obtained at native examinations were a median 11 HU. Subsequent contrast enhanced studies documented patency of the examined vessels. CONCLUSION: The present data show that the hyperdense basilar artery as a sign of thrombotic occlusion is not valid when thin, fused slices are obtained at double-helical CT.

Adult↗

Large scale co-isolation of vimentin and nuclear lamins from ehrlich ascites tumor cells cultured in vitro.

Ehrlich ascites tumor (EAT) cells propagated in mass suspension culture were used as a starting material for the simultaneous isolation and purification of large quantities of the intermediate filament protein vimentin and the nuclear lamins A/C and B. Triton cytoskeletons, obtained by repeated washing of cells with a low ionic strength buffer containing Triton X-100 and 4 mM Mg2+, were extracted with 6 M urea at low salt concentration and in the presence of EDTA. Separation of solubilized proteins from unfolded chromatin (DNA) was accomplished by recondensation of the chromatin (DNA) in the presence of Mg2+ before centrifugation. To achieve separation of vimentin from nuclear lamins, the urea extract was subjected to DEAE-Sepharose CL-6B chromatography. Single-stranded DNA-cellulose chromatography was employed for the final purification of vimentin and for the separation of lamin B from lamins A/C. Further purification of lamin B was carried out by CM-Sepharose CL-6B chromatography and of lamins A/C by chromatography on hydroxylapatite. All chromatographies were performed in the presence of 6 M urea. 500 g of pelleted EAT cells yielded approximately 700 mg of vimentin, 225 mg of lamins A/C and 21 mg of lamin B. 2D-polyacrylamide gel electrophoresis revealed great microheterogeneity of lamins A/C, which to a high extent was due to phosphorylation, whereas lamin B was much less heterogeneous. In the absence of urea and at low salt concentration, lamins A/C required pH 5 to stay in solution whereas lamin B required pH 7.5. Increasing the salt concentration to 150 or 250 mM NaCl resulted in the formation of paracrystals from a urea-free mixture of lamins A/C and B. Although the lamins could not be assembled into intermediate filaments under a variety of ionic conditions, the preparations obtained will be useful for further biochemical characterization of these nuclear proteins.

Animals↗

Lack of lamins A and C in mammalian hemopoietic cell lines devoid of intermediate filament proteins.

Using immunofluorescence microscopy and immunoblot analysis, we have examined the composition of the nuclear lamina in several murine and human cell lines. Whereas it was shown that intermediate filament-positive Ehrlich ascites tumor and HeLa-S3 cells contain the three major mammalian lamin subspecies, only lamin B could be detected in several myeloid- and lymphoid-derived cell lines representative of distinct stages in hemopoietic differentiation but all devoid of cytoplasmic intermediate filament proteins. These included the murine plasmacytoma cell types MPC-11 and MOPC-31C, murine myeloma cells X63-Ag8.6.5.3 and human promyelocytic leukemia cells HL-60. Our results provide the first evidence that mammalian somatic cells capable of normal proliferation may lack both cytoplasmic intermediate filament proteins and a normal complement of nuclear lamins.

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Tenacious binding of lipids to vimentin during its isolation and purification from Ehrlich ascites tumor cells.

Vimentin enriched in cytoskeletal frameworks by Triton X-100 extraction of Ehrlich ascites tumor cells and purified from a low ionic strength extract of the cell residues by (NH4)2SO4 precipitation and DEAE-Sepharose and ssDNA-cellulose chromatography in the presence of 6 M urea was highly contaminated with lipids. Thin-layer chromatography of a chloroform-methanol extract of the purified protein revealed, besides small amounts of phospholipids, the presence of large quantities of neutral lipids.

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Dephosphorylation of histone H1 after mengovirus infection of Ehrlich ascites tumor cells.

The effect of mengovirus infection on the extent of phosphorylation of histone H1 was studied in Ehrlich ascites tumor cells. After prelabeling of the nuclear protein with [32P] orthophosphate, the excorporation of radioactivity was followed as a function of time postinfection. Employing high-resolution polyacrylamide gradient slab gel electrophoresis and autoradiography, it was found that, compared to a relatively slow turnover of phosphate groups in histone H1 in mock-infected cells, in mengovirus-infected cells the excorporation of radiolabel from histone H1 was significantly enhanced. In the latter case, the decrease of histone-bound radioactivity was paralleled by a reduction of the band multiplicity in the histone H1 region of the electrophoresis profile. It was also shown that the microheterogeneity in the histone H1 complements isolated at various times postinfection was reduced to the same basal 3-band level by incubation of the nuclear protein fractions in the presence of alkaline phosphatase. After this treatment, the band multiplicity equaled that found in histone H1 from stationary cells.

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Localization of host poly(A)+ mRNA in the ribosome profile of mengovirus-infected Ehrlich ascites tumor cells.

The distribution of poly(A)+ mRNA among polysomes, monosomes, and ribosome-free supernatant fractions after mengovirus infection of Ehrlich ascites tumor (EAT) cells was investigated employing sucrose gradient centrifugation of their corresponding postnuclear supernatants. Poly(A)+ mRNA was isolated from sucrose gradient fractions and quantitated in a cell-free protein synthesizing system from uninfected EAT cells. It was also localized by annealing [3H]-poly(U) to the poly(A)-tracts of mRNA present in the sucrose gradient fractions. Both experiments revealed a gradual shift of host poly(A)+ mRNA from large to small polysomes and monosomes, respectively, with the time postinfection. The greatest part of host template RNA appears to remain ribosome-bound and only a fraction seems to be detached from the ribosomes in the course of mengovirus infection. At the end of the infectious cycle, 8 h postinfection, approximately 70% of the poly(A)+ mRNA detected in uninfected cells is still biologically active, but not translated in vivo, in agreement with data from the [3H]poly(U)hybridization experiment.

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Changes in the microheterogeneity of histone H1 after mengovirus infection of Ehrlich ascites tumor cells.

Employing high-resolution polyacryl-amide gradient slab-gel electrophoresis in 6M urea and 6% acetic acid, a distinct change in the microheterogeneity of histone H1 was detected after mengovirus infection of Ehrlich ascites tumor cells. Whereas in uninfected cells the band multiplicity was found to be 6, it was reduced to 4 in the course of the infectious cycle (8 to 9 h). It could be deomonstrated that, while the electrophoretically slowly moving subspecies H1e and H1f disappeared from the band profile of histone H1, the faster migrating bands H1a and H1b increased in relative intensity. The relative intensity of band H1d was also drastically reduced, that of band H1c stayed practically constant throughout infection. When Ehrlich ascites tumor cells were labeled with a mixture of [14C]amino acids prior to mengovirus infection, the radioactivity incorporated into histone H1 subspecies of low electrophoretic mobility was chased into histone H1 components of high mobility in the course of infection, suggesting a virus-induced, unidirectional interconversion of the multiple histone H1 subunits. With the exception of a histone H2B subspecies, which also decreased in amount, the relative quantities of the other histones stayed constant throughout infection.

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Enhanced phosphorylation of ribosomal protein s6 and other cytoplasmic proteins after mengovirus infection of Ehrlich ascites tumor cells.

After mengovirus infection of Ehrlich ascites tumor cells, an increased incorporation of radioactive phosphate into ribosomal protein S6 was detected. As judged from the shape of the radioautography spot and the location of the modified protein on the two-dimensional polyacrylamide gel, it must be concluded that more than one phosphate group was incorporated into ribosomal protein S6. Concomitantly, multiple cytoplasmic proteins, particularly those with high affinity for ribosomes, were phosphorylated. Compared with the controls (mock infection), mengovirus infection induced only a slight additional phosphorylation of the proteins of the ribosome-free supernatant. Employing the radio isotope dilution test with 3', 5'-cyclic AMP-binding protein, no enhancement of the intracellular concentration of 3', 5'-cyclic AMP in response to mengovirus infection could be deomonstrated.

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Fate of histone messenger RNA in mengovirus-infected Ehrlich ascites tumor cells.

Histone mRNA was isolated from mengovirus-infected Ehrlich ascites tumor cells at various times postinfection and quantitated in a reticulocyte cell-free protein-synthesizing system. The amount of translatable histone mRNA decreases during the first hour postinfection by 30%, rises during the following 1-1.5 h by 10-15%, drops progressively in the further course of infection, and reaches 20% of the control at the end of the infectious cycle (8-9 h postinfection). On the basis of the relative histone mRNA contents, the histone-synthesizing potentials of mengovirus-infected Ehrlich ascites tumor cells are substantially higher throughout infection than actually expressed in vivo. This result indicates that the virus-induced shutoff of histone synthesis is not directly the consequence of inactivation or degradation of histone mRNA. Most of the histone mRNA recovered from mengovirus-infected Ehrlich ascites tumor cells is bound to ribosomes. Late in infection, certain mRNAs are co-isolated with histone mRNAs, very likely due to loss or shortening of poly(A) occurring after release of the mRNAs from polyribosomes.

Animals↗