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Biomedical subjects

K Weber

Publications and source records attributed to K Weber.

At least 199 records · Page 11Linked to original sources

[Risk of hearing loss caused by high volume music--presenting an educational concept for preventing hearing loss in adolescents].

During an one-hour lecture 277 pupils between 16 and 25 years of age, were questioned about their hearing behaviour and instructed in the consequences of hearing impairment resulting from listening to loud music. Furthermore audiometrics were offered and there was possibility to measure the loudness of the walkman used. A majority visited "discos" and/or used walkman. Over 80% claimed their hearing is good, over 75% knew that loud music can cause damage to hearing. The walkman users suffered more frequently from tinnitus and failed to hear a door bell more often. After the instruction 75% of the pupils were willing to protect their hearing in future. Eight of 89 pupils had a hearing reduction of up to 40 dB(A). The average sound pressure level of the walkman was 104 dB(A).

Adolescent↗

Stimulation of neutropoiesis by a special standardized mistletoe preparation after cyclophosphamide chemotherapy in mice.

Lektinol, is a special mistletoe preparation (SMP) with immunostimulatory activity, standardized with respect to bioactive mistletoe lectin, one of the most active components of mistletoe. In the present study, stimulation of leukopoiesis by SMP was investigated in mice after induction of myelosuppression by the cytostatic agent cyclophosphamide (CP). Under the experimental conditions described, CP induced severe leukopenia followed by a recovery phase where leukopoiesis was distinctly enhanced in mice treated additionally with SMP at daily intravenous doses in a range of 30 to 5000 microliters/kg body weight. This phenomenon was mainly due to a stimulation of granulopoiesis resulting in a stronger increase of metamyelocyte and mature neutrophil counts in the peripheral blood.

Animals↗

Non-radioactive, isomer-specific inositol phosphate mass determinations: high-performance liquid chromatography-micro-metal-dye detection strongly improves speed and sensitivity of analyses from cells and micro-enzyme assays.

A microbore high-performance liquid chromatographic (HPLC) method is presented allowing rapid and sensitive mass analysis of inositol phosphates from cells and tissues. An analysis starting from inorganic phosphate up to inositol hexakisphosphate displaying a similar isomer selectivity as compared to the standard metal-dye detection system takes about 15 min. The detection sensitivity was about 15 pmol for inositol trisphosphate, about 10 pmol for inositol tetrakisphosphate, about 5 pmol for inositol pentakisphosphate and less than 5 pmol for inositol hexakisphosphate. The method was validated regarding day-to-day variations and variations at the same day of retention times and peak areas of standard inositol phosphates. Standard deviations of retention times ranged from 0.25 to 0.62% (same day) and from 0.64 to 1.61% (day-to-day variations). Ranges of standard deviations of peak areas were between 2.24% and 3.91% (same day) and 6.13% and 13.8% (day-to-day variations). Linearity of the post-column complexometric metal-dye detection system was demonstrated in the range of a few picomoles and at least 800 pmol. The method was applied to the analysis of inositol phosphates in Jurkat T-lymphocytes and assays from minute amounts of enzymes interconverting inositol phosphates. While measurements of inositol phosphates from cell extracts are now possible using significantly reduced cell numbers, micro-enzyme assays are feasible in reasonable repeated analysis times and with sufficient isomer selectivity. In conclusion, a substantial improvement towards speed of analysis and detection sensitivity of inositol phosphate mass analysis was achieved by microbore metal-dye detection HPLC.

Animals↗

Purification and biochemical characterization of myomesin, a myosin-binding and titin-binding protein, from bovine skeletal muscle.

We report a method for isolating homogeneous myomesin from mammalian skeletal muscle. The identity of the purified bovine protein was confirmed by its reactivity with myomesin-specific monoclonal antibodies and with polyclonal antibodies raised against peptides derived from the amino-terminal and carboxy-terminal ends of the sequence predicted by the human myomesin cDNA. All partial sequences obtained from bovine myomesin can be aligned along the human sequence predicted by its cloned cDNA. Electron microscopy of myomesin revealed short flexible rods with a molecular length of about 50 nm. Circular dichroism spectra showed a high degree of beta structure as expected for a member of the immunoglobulin superfamily of proteins. Alignment of the sequences of the class I and II domains of myomesin with the sequences of domains of known three-dimensional structure provides a more detailed model of myomesin. In agreement with this view, the cleavage sites observed by limited proteolysis locate primarily between individual domains. In a solid-phase overlay assay myomesin specifically bound to the myosin rod and to light meromyosin (LMM), but not to the carboxy-terminal 30-kDa fragment of LMM. The myosin-binding site seemed to be confined to the amino-terminal 240 residues of the molecule. The cross-reactivity of myomesin with the phosphorylation-dependent monoclonal neurofilament antibody NE14 [Shaw, G.E., Debus, E. & Weber, K. (1984) Eur. J. Cell Biol. 34, 130-136] was analyzed. NE14 reactivity of myomesin was abolished by alkaline phosphatase. Reactivity of the antibody on stable proteolytic fragments of myomesin showed that the phosphorylation site must reside within the carboxy-terminal 60 residues.

Amino Acid Sequence↗

Mice deficient for the lysosomal proteinase cathepsin D exhibit progressive atrophy of the intestinal mucosa and profound destruction of lymphoid cells.

Mice deficient for the major lysosomal aspartic proteinase cathepsin D, generated by gene targeting, develop normally during the first 2 weeks, stop thriving in the third week and die in a state of anorexia at day 26 +/- 1. An atrophy of the ileal mucosa first observed in the third week progresses towards widespread intestinal necroses accompanied by thromboemboli. Thymus and spleen undergo massive destruction with fulminant loss of T and B cells. Lysosomal bulk proteolysis is maintained. These results suggest, that vital functions of cathepsin D are exerted by limited proteolysis of proteins regulating cell growth and/or tissue homeostasis, while its contribution to bulk proteolysis in lysosomes appears to be non-critical.

Animals↗

Epitope mapping and direct visualization of the parallel, in-register arrangement of the double-stranded coiled-coil in the NuMA protein.

NuMA, a 238 kDa protein present in the nucleus during interphase, translocates to the spindle poles in mitosis. NuMA plays an essential role in mitosis, since microinjection of the NuMA SPN-3 monoclonal antibody causes mitotic arrest and micronuclei formation. We have mapped the approximate position of the epitopes of six monoclonal NuMA antibodies using recombinant NuMA fragments. The SPN-3 epitope has been located to residues 255-267 at the C-terminus of the first helical subdomain of the central rod domain and several residues crucial for antibody binding have been identified. To gain insight into the ultrastructure of NuMA, several defined fragments, as well as the full-length recombinant protein, were expressed in Escherichia coli and purified to homogeneity. They were then characterized by chemical cross-linking, circular dichroism spectra and electron microscopy. The results directly reveal the tripartate structure of NuMA. A long central rod domain is flanked by globular end domains. The rod is 207 nm long and is at least 90% alpha-helical. It reflects a double-stranded coiled-coil with the alpha-helices arranged parallel and in register. The NuMA protein thus forms the longest coiled-coil currently known. Our analyses reveal no indication that recombinant NuMA assembles into filaments or other higher order structures.

Amino Acid Sequence↗

Beta tubulin of bull sperm is polyglycylated.

Carboxy-terminal fragments of alpha and beta tubulin from bull sperm were isolated and characterized by automated sequencing and mass spectrometry. About 60% of sperm alpha tubulin is polyglycylated. The lateral chain, which can reach 13 residues in length, is covalently attached via an isopeptide bond. The fully detyrosinated sperm alpha tubulin lacks polyglycylation. Thus mammalian sperm microtubules differ from the ciliary axonemal microtubules of the protozoan Paramecium for which others have documented a complete polyglycylation of both alpha and beta tubulin.

Amino Acid Sequence↗

[Severe pneumonitis as a complication of low-dose methotrexate therapy in psoriasis-associated polyarthritis].

A 71-year-old woman with psoriasis-associated rheumatoid arthritis had for 15 months been treated with methotrexate (5 mg/week orally). Four weeks before admission she had developed dyspnoea and cough. On admission her axillary temperature was 38.2 degrees C, the white cell count was normal. Erythrocyte sedimentation rate (50/90 mm), lactate dehydrogenase activity (449 U/l) and the creatinine level (1.33 mg/dl) were all elevated. Blood gas analysis revealed partial respiratory impairment (pO2 52 mm Hg), and the chest X-ray demonstrated bilateral interstitial-alveolar changes. Despite antibiotics the temperature continued to rise, and on the 11th day a blood eosinophilia of 4% was noted. The bronchial mucosa was normal on bronchoscopy, and transbronchial biopsy showed only minor interstitial fibrosis, occasional macrophages and lymphocytes. Cultures of the lavage-fluid were negative. As methotrexate pneumonitis was suspected the drug was discontinued and prednisolone administered (50 mg daily for 3 days, gradually reducing over 7 days). The symptoms quickly improved, and blood gas analysis and the X-rays became normal. The patient was discharged symptom-free after 30 days.

Acute Disease↗

The sequence of a cytoplasmic intermediate filament (IF) protein from the annelid Lumbricus terrestris emphasizes a distinctive feature of protostomic IF proteins.

The complete cDNA clone for a cytoplasmic intermediate filament (IF) protein from the annelid Lumbricus terrestris reported here, shows an extra 42 residues in the coil 1b subdomain of the central rod, as do the IF proteins from nematodes and molluscs. These extra six heptads are also present in all nuclear lamins but not in any known vertebrate cytoplasmic IF protein. Thus, it seems that protostomic metazoa conserve a lamin-like structural element in their cytoplasmic IF proteins, which was lost in the deuterostomic metazoan branch leading to the vertebrates.

Animals↗

Primary structure of the neuronal clathrin-associated protein auxilin and its expression in bacteria.

The protein auxilin is a coat component of brain clathrin-coated vesicles. It interacts directly with the heavy chain of clathrin and supports its assembly into regular cages [Ahle, S. & Ungewickell, E. (1990) J. Cell Biol. 111, 19-29]. The combined open reading frames of three cow brain cDNA clones with a total of 4531 nucleotides predict a molecular mass of 99,504 Da for auxilin. The coding region is followed by a very long untranslated region of at least 1670 nucleotides. By Northern analysis, auxilin transcripts are found only in brain tissue. Auxilin is not related to any of the previously sequenced clathrin-binding proteins, but the region of positions 50-350 is 29% identical (similarity 56%) to the corresponding region of the actin-binding protein tensin from chicken fibroblasts. Recombinant auxilin expressed in and purified from bacteria by affinity chromatography is functional with respect to clathrin binding.

Adaptor Proteins, Vesicular Transport↗

Characterization of post-translational modifications of brain tubulin by matrix-assisted laser desorption/ionization mass spectrometry: direct one-step analysis of a limited subtilisin digest.

Matrix-assisted ultraviolet laser desorption/ionization (MALDI) mass spectrometry was used to investigate the molecular masses and heterogeneity patterns caused by post-translational modifications in tubulin from porcine brain. Direct analysis of the limited digest with subtilisn shows that the molecular masses of the majority of the carboxyterminal fragments are below 2 kDa, while the truncated tubulin subunits have lost approximately the same mass. The results confirm the cleavage sites previously postulated for this protease. The mass information on the peptides allows the degree of polyglutamylation to be measured directly and shows that molecules with two glutamyl residues in the side chain are the most abundant species. In addition it identifies the degree of tyrosination of alpha tubulin. This one-step monitoring of a complex digest provides information equivalent to that obtainable from the purified components, while the amount of material required is reduced by three orders of magnitude when compared to previous studies. MALDI spectra partially resolve the alpha and beta subunits of the highly homogeneous tubulin from turkey erythrocytes, which lacks polyglutamylation but does not separate alpha and beta subunits from the heterogeneous brain tubulin. Post-translational modifications of the brain tubulin result in shifting peaks to higher molecular masses, in broadening of the peaks, and in loss of resolution.

Amino Acid Sequence↗