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E Bock

Publications and source records attributed to E Bock.

At least 181 records · Page 10Linked to original sources

Biosynthesis of the D2 cell adhesion molecule: pulse-chase studies in cultured fetal rat neuronal cells.

D2 is a membrane glycoprotein that is believed to function as a cell adhesion molecule (CAM) in neural cells. We have examined its biosynthesis in cultured fetal rat brain neurones. We found D2-CAM to be synthesized initially as two polypeptides: Mr 186,000 (A) and Mr 136,000 (B). With increasing chase times the Mr of both molecules increased to 187,000-201,000 (A) and 137,000-158,000 (B). These were similar to the sizes of D2-CAM labeled with [14C]glucosamine, [3H]fucose and [14C]mannosamine, indicating that the higher Mr species are glycoproteins. In the presence of tunicamycin, which specifically blocks the synthesis of high mannose cores, Mr were reduced to 175,000 (A) and 124,000 (B). Newly synthesized A and B are susceptible to degradation by endo-beta-N-acetyl-glucosaminidase H, which specifically degrades high mannose cores, but they are resistant to such degradation after 150 min of posttranslational processing. Hence, we deduce that A and B are initially synthesized with four to five high mannose cores which are later converted into N-linked complex oligosaccharides attached to asparagine residues. However, no shift of [35S]methionine radioactivity between A and B was detected with different pulse or chase times, showing that these molecules are not interconverted. Thus, our data indicate that the neuronal D2-CAM glycoproteins are derived from two mRNAs.

Animals↗

Biosynthesis of the D2-cell adhesion molecule: post-translational modifications, intracellular transport, and developmental changes.

Posttranslational modifications and intracellular transport of the D2-cell adhesion molecule (D2-CAM) were examined in cultured fetal rat neuronal cells. Developmental changes in biosynthesis were studied in rat forebrain explant cultures. Two D2-CAM polypeptides with Mr of 187,000-210,000 (A) and 131,000-158,000 (B) were synthesized using radiolabeled precursors in cultured neurons. A and B were found to contain only N-linked complex oligosaccharides, and both polypeptides appeared to be polysialated as determined by [14C]mannosamine incorporation and precipitation with anti-polysialic acid antibody. The two polypeptides were sulfated in the trans-Golgi compartment and phosphorylated at the plasma membrane. D2-CAM underwent rapid intracellular transport, appearing at the cell surface within 35 min of synthesis. A and B were shown to be integral membrane proteins as seen by radioiodination by photoactivation employing a hydrophobic labeling reagent. In rat forebrain explant cultures, D2-CAM was synthesized as four polypeptides: A (195,000 Mr), B (137,000 Mr), C (115,000 Mr), and a group of polypeptides in the high molecular weight region (HMr) between 250,000 and 350,000. Peptide maps of the four polypeptides yielded similar patterns. Biosynthesis of C and HMr increased with age, relative to A and B. A and B were sulfated in embryonic brain, however, sulfation was not noticeable at postnatal ages. Phosphorylation, on the other hand, of A and B was observed at all ages examined. We suggest that D2-CAM function may be modified during development by changes in the relative synthesis of the different polypeptides, as well as by changes in their glycosylation and sulfation.

Animals↗

Mouse monoclonal antibodies reacting with human brain glial fibrillary acidic protein.

Three different epitopes on the glial fibrillary acidic protein (GFAP) have been identified by means of three monoclonal antibodies. The antibodies were named anti-GFAP 1, anti-GFAP 2, and anti-GFAP 3. Antibody specificities were investigated by several techniques including indirect immunoprecipitation, immunoblotting, and immunohistochemistry. The anti-GFAP 1 antibodies recognized an epitope found on GFAP from all three species tested: human, rat, and ox, but in addition a reaction was observed with cells not containing GFAP. The epitope recognized by anti-GFAP 2 was present on GFAP from human and ox, but apparently not on rat GFAP; the anti-GFAP 2 antibodies also reacted with antigen(s) other than GFAP. In contrast, the epitope defined by anti-GFAP 3 has proved absolutely specific for GFAP in human, rat, and ox.

Animals↗

Detergent extraction from rat synaptosomal plasma membranes reveals difference in mu and delta opioid receptor binding.

Rat synaptosomal plasma membranes were extracted with a detergent (CHAPS, a zwitterionic derivative of cholic acid). mu and delta opioid receptor binding and adenylate cyclase activities were tested in the intact membranes and in the supernatants from detergent treated membranes. The 6000 X g/8 min. supernatant contained mu receptor binding equal to 33% of the mu receptor binding measured in the untreated membranes. When the detergent treated membranes were sedimented at (50,000 X g/10 min.), 23% of the mu receptor binding was recovered in the supernatant. After a 100,000 X g/30 min. centrifugation the supernatant contained 10% of the mu receptor binding when compared to untreated membranes. Of the delta receptor binding found in intact membranes, 10% or less was recovered in the 3 supernatants described above. Furthermore, the mu and delta receptor binding were distributed differently among particles in the supernatants. This indicates differences in the chemical properties of the mu and delta opioid receptors. Adenylate cyclase assays showed that the G/F site of this enzyme complex was inactivated in the supernatants from detergent treated membranes parallel to the delta receptor binding decrease. However, the catalytic part of adenylate cyclase was present in the supernatants and seemed resistant to the detergent.

Adenylyl Cyclases↗

Immunocytochemical demonstration of the 'neuronal membrane marker' the D2-glycoprotein in human embryos.

The regional distribution and cellular localization of the D2-glycoprotein in human embryonic tissues have been investigated by immunocytochemistry at the light microscope level in sections of human embryonic brain, spinal cord, some neural crest derivatives, muscle, liver and skin. the majority of neuronal membranes exhibited a positive staining reaction for D2 already in the earliest (15 mm crown-rump length) embryo examined. By 20 mm crown-rump length and later a positive staining associated with membranes of embryonic muscle, bile canaliculi, epithelial cells of the skin and choroid plexus was also observed. The D2 which is immunochemically related to the neuronal cell adhesion molecule (N-CAM), is supposed to be involved in cell adhesion phenomena. We find this suggested function less compatible with demonstrated localization of the D2-glycoprotein.

Cell Membrane↗

Low cerebrospinal fluid concentration of brain-specific protein D2 in patients with normal pressure hydrocephalus.

The synaptic membrane glycoprotein D2 was measured in cerebrospinal fluid (CSF) and plasma in 13 patients with normal pressure hydrocephalus (NPH), in 14 patients with primary degenerative dementia of Alzheimer type (PDD), and in 24 patients without evidence of organic nervous disease (controls). Mean CSF D2 concentration was significantly lower in NPH patients: 299 +/- 48 ng/ml (SEM) (P less than 0.001) than in PDD patients: 658 +/- 50 ng/ml (SEM) and in controls 641 +/- 45 ng/ml (SEM). Plasma D2 concentrations were higher in PDD patients compared with those found in controls. Determination of CSF D2 concentrations might be of diagnostic value in discrimination between patients with NPH and PDD patients with enlarged ventricles associated with diffuse brain atrophy.

Adult↗

Identification of fetuin in human and rat fetuses and in other species.

The fetal protein, fetuin, has previously only been identified in species belonging to the order Artiodactyla. Samples of fetal, newborn and adult human (Homo sapiens) and rat (Rattus norvegicus) plasma and tissues have been studied using three techniques: (a) crossed immunoelectrophoresis of plasma against each of four different anti-fetuin antisera (two anti-cattle, one anti-pig and one anti-sheep); (b) the peroxidase-antiperoxidase technique applied to agarose gels containing plasma spots; (c) the indirect immunoperoxidase technique applied to human fetal tissue sections. In human fetal samples all three methods gave evidence for the presence of fetuin except late in gestation and in the newborn. Adult plasma was negative. In rat fetuses only plasma was tested, by methods (a) and (b). Positive reactions were obtained for both fetal and adult samples; the fetal samples cross-reacted with several of the anti-fetuins, adult samples reacted with only one. All the fetal and embryonal plasma samples tested with the peroxidase-antiperoxidase method were positive for fetuin except for the chicken. Thus fetuin appears to be distributed in at least five mammalian orders (Artiodactyla, Primates, Rodentia, Carnivora and Perissodactyla).

Animals↗

Enzyme-linked immunosorbent assay of the D2-glycoprotein.

D2 is a glycoprotein enriched in neuronal membranes and probably involved in intercellular adhesion. An immunochemical relationship between D2 and the neuronal cell adhesion molecule from chick has been demonstrated. Changes in D2 concentration in human body fluids correlate to certain neurological diseases. We here report the purification of the D2 membrane proteins from fetal and adult human brain and the demonstration of physicochemical differences between the two proteins. Enrichments of 133 times (fetal D2) and 350 times (adult D2) were found. Specific rabbit antisera against the purified D2 proteins were produced, and this enabled the setting up of an enzyme-linked immunosorbent assay for D2 quantification in human brain extracts, cerebrospinal fluids, sera, and amniotic fluids.

Adult↗

Quantification of the D2-glycoprotein in amniotic fluid and serum from pregnancies with fetal neural tube defects.

D2 is a glycoprotein existing in both membrane-bound and soluble forms. Employing a specific rabbit antibody against purified human brain D2, we developed an enzyme-linked immunosorbent assay (ELISA) for the quantification of D2 and applied it to amniotic fluids from 87 normal and 36 pathological pregnancies. With a cut-off point of 150 ng D2/ml, no false positive D2 values were obtained in any of the amniotic fluids from normal fetuses, although the alpha-fetoprotein concentrations were slightly increased in 13 cases. No false negative D2 values were found in any of the 18 investigated amniotic fluids from fetuses with anencephaly. Of 8 amniotic fluids from fetuses with spina bifida, 2 false negative D2 values were found. No false negative alpha-fetoprotein values were found in any of the cases with neural tube defects in this study. In 10 amniotic fluids from fetuses with other malformations, 5 samples showed raised D2 concentrations. The D2 level in sera from 10 women carrying normal fetuses and 16 women carrying malformed fetuses was also determined, but no statistically significant difference in D2 level was found in the pathological sera when compared with normal sera. It was concluded that the determination of D2 concentrations in amniotic fluid by means of the D2-ELISA may be used as an additional test in the screening of fetal malformations in early pregnancy.

Amniotic Fluid↗

[Effectiveness of a low-calorie diet in the postoperative period].

The characteristic feature of post-aggression metabolism is the hormone-induced metabolic changeover from anabolism to catabolism. Typically, a disturbance of glucose utilisation, enhanced lipolysis and protein catabolism are particularly prominent, all of which lead us to expect restricted utilisation of ingested food substrates. With regard to this special aspect the authors investigated in a clinical study in 10 patients with gastrectomy whether a low-calorie diet could meet energy requirements while at the same time reducing the increased glucogenesis, lipogenesis and protein catabolism. The results show that blood glucose homoeostasis is maintained without exogenous insulin supply by a daily ingestion of 1 g./kg. body weight amino acids and 4 g./kg. body weight carbohydrates, and that at the same time catabolism can be markedly reduced and that there is also no hypercatabolic increase of urea in the serum or excessive formation of triglycerides. Hence, it is considered meaningful to prescribe during the postoperative stress phase a low-calorie diet with a sufficient supply of amino acids even in case of severe trauma.

Aged↗

Purification of the synaptic membrane glycoprotein D2 from rat brain.

D2 is a nervous-specific membrane protein enriched in fractions of synaptosomal membranes from rat brain. Recently, an immunochemical relationship between D2 and the chick cell adhesion molecule (CAM) has been demonstrated. There is reason to believe that D2 is involved in adhesion phenomena between neurites. The purpose of the present study was to purify and further characterize the D2 protein from rat brain. In the developed purification procedure synaptosomal membranes from rat brains were prepared and solubilized by means of non-ionic detergent. The subsequent purification steps were hydroxylapatite chromatography, wheat germ lectin affinity chromatography, gel filtration, and lysine affinity chromatography. The purified D2 was found to be enriched 240 times compared with the starting brain homogenate and 120 times compared with the synaptosomal membrane fraction. The recovery of D2 was 26% when the amount of D2 in the synaptosomal membrane fraction was set to 100%. The purified D2 antigen was used for production of monospecific rabbit antisera, and it was found to be composed of two polypeptides of apparent molecular weights 130,000 and 150,000, respectively.

Animals↗

Penicillamine-induced myasthenia gravis: effects of penicillamine on acetylcholine receptor.

Autoimmune diseases, including myasthenia gravis, occur in patients treated with D-penicillamine. Because D-penicillamine might induce autoantibodies by the mechanism of antigenic alteration, we studied the reaction of D-penicillamine with purified acetylcholine receptor from Torpedo californica. We found that brief exposure to D-penicillamine resulted in its covalent attachment to two receptor subunits, alpha (40,000 daltons) and gamma (59,000 daltons), presumably by reduction and formation of mixed disulfides. Furthermore, D-penicillamine treatment resulted in a dramatic modification of the equilibrium acetylcholine binding properties of both purified receptor and receptor-rich membrane fragments.

Acetylcholine↗

Thoracic extramedullary hematopoiesis: evaluation by conventional radiology and computed tomography.

4 cases of extramedullary hematopoiesis (EH) in the posterior mediastinum in patients affected with serious chronic anemia are presented. The contribution of conventional radiology and computed tomography (CT) to the assessment of an exact diagnosis, is discussed. The CT images are above all characterized by the presence of typical bilateral, asymmetrical paravertebral hyperdense masses (about 45 HU). Besides, a striated aspect of the vertebral bodies is common. For a rather sure diagnosis of EH in patients with chronic anemia, a conventional chest X-ray and CT of the thorax is sufficient. Biopsy and thoracotomy should be avoided.

Adult↗