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E Bock

Publications and source records attributed to E Bock.

At least 109 records · Page 6Linked to original sources

A role for the neural cell adhesion molecule in a late, consolidating phase of glycoprotein synthesis six hours following passive avoidance training of the young chick.

We have investigated the effect of intracranial injections of the amnestic anti-metabolite, 2-deoxygalactose, and antibodies to the neural cell adhesion molecule on retention of a one-trial passive avoidance task in chicks. Groups of chicks received bilateral intracranial injections of 10 mumol/hemisphere 2-deoxygalactose or 10 microliters/hemisphere anti-neural cell adhesion molecule and were tested 24 h following training. 2-Deoxygalactose injections were amnestic when administered at a previously established time (30 min pre-training). Here we show that the agent is also amnestic when injected within a second time window occurring specifically 6-8 h after training. Administration of 2-deoxygalactose between 2 and 6 h or after 8 h post-training was without effect on retention tested 24 h following training. Anti-neural cell adhesion molecule injections were amnestic only when performed at a time which coincided with the second phase of 2-deoxygalactose susceptibility. Further experiments demonstrated that the neural cell adhesion molecule is one of the molecules into which 2-deoxygalactose is incorporated. Additionally, we investigated the extent of diffusion of 2-deoxygalactose and anti-neural cell adhesion molecule following their injection, with respect to their residence in forebrain loci known to be involved in the memory for passive avoidance. We interpret these data as indicating that two waves of glycoprotein synthesis are necessary for the establishment of long-term memory for the experience of passive avoidance training. The evidence is discussed in the context of earlier results indicating that the two waves involve different glycoprotein species and, possibly, different forebrain regions. We speculate that the late phase of glycoprotein synthesis coincides with, and is required for, modulation of cell-cell adhesion processes, reflecting the selection and stabilization of synapses which maintain an enduring representation of long-term memory.

Analysis of Variance↗

Expression of NCAM mRNA and polypeptides in aging rat brain.

In aging brain, degenerative as well as compensatory regenerative processes are believed to occur. The neural cell adhesion molecule NCAM is involved in developmental and regenerative processes in the brain. However, the role of NCAM in aging brain has not been characterized. In this study, the expression of NCAM mRNAs and polypeptides was investigated in aging rat brain. The 7.4 and 6.7 kb NCAM mRNAs were selectively downregulated during postnatal development, and the 5.2 and 2.9 kb NCAM mRNAs were upregulated. However, from postnatal day 40 to old age no change in NCAM mRNA classes was observed. The fraction of NCAM mRNA containing the VASE exon increased postnatally but remained stable during adult life. VASE, which is believed to modulate the binding capacity, seemed to be relatively more abundant in the 7.4 and 6.7 kb NCAM mRNAs, encoding transmembrane NCAM forms, than in the 5.2 and 2.9 kb NCAM mRNAs, coding for glycosyl phosphatidylinositol (GPI) linked NCAM. Conversely, insertion of exons a and AAG between exons 12 and 13, a region containing two fibronectin type III repeats, seemed to be more pronounced in 5.2 and 2.9 kb NCAM mRNAs than in the 7.4 and 6.7 kb mRNAs. During postnatal development an increase in the fraction of 6.7 kb NCAM mRNA containing the exons a and AAG was observed. However, during aging the fraction of NCAM mRNAs containing this exon combination seemed constant. At the protein level, NCAM-A was downregulated both during development and aging. No changes were observed during aging in the composition of soluble NCAM forms in the brain, cerebrospinal fluid or blood plasma. The amount of NCAM in rat brain decreased during postnatal development, but remained at a constant level from postnatal day 40 to old age. To conclude, several changes in NCAM expression occur during early postnatal development emphasizing the important role of this molecule in the morphogenetic processes. During aging, a significant selective downregulation of NCAM-A was observed indicating that in general only minor regenerative processes occur in the brain.

Aging↗

Migratory, invasive and metastatic capacity of NCAM transfected rat glioma cells.

A cDNA encoding a transmembrane 140 kDa isoform of the neural cell adhesion molecule, NCAM, was transfected into the rat glioma cell line BT4Cn. Transfectants with a homogeneously high expression of NCAM-B showed a decreased capacity for penetration of an artificial basement membrane when compared to cells transfected with expression-vector alone or untransfected cells. However, when injected subcutaneously into nude mice, both NCAM expressing cells and control cells produced invasive tumors. Nude mice injected with NCAM positive cells developed tumors with slower growth rates as compared to those induced by NCAM negative cells. This implies that NCAM may not only be involved in adhesive and motile behaviour of glioma cells, but also in their growth regulation.

Animals↗

Cyclic AMP regulates NCAM expression and phosphorylation in cultured mouse astrocytes.

The neural cell adhesion molecule (NCAM) plays a key morphoregulatory role during neural development. Patterns of NCAM expression were investigated in cultured astrocytes exhibiting distinct states of morphological differentiation. In vitro differentiation of confluent primary cultures of astrocytes was enhanced by a long-term (7 days) treatment with dibutyryl cyclic AMP (dBcAMP). The diversity of NCAM mRNAs arising from alternative splicing of a single primary transcript was analyzed by Northern blotting. Synthetic DNA-oligonucleotide probes, designed to recognize selected exons (exons 7, 15, and VASE) or exon combinations (exons 7/8, exons 12/13, and exons 12/a/AAG/13), revealed NCAM mRNA classes of 6.7, 5.2, and 2.9 kilobases (kb) in both control and dBcAMP-treated astrocytes. Although long-term treatment of astrocytes with dBcAMP did not change the qualitative pattern of NCAM transcripts, the relative abundance of individual mRNA species appeared to be altered: in morphologically differentiated astrocytes, a general elevation of NCAM mRNA as well as preferential accumulation of the 6.7 kb message were found. The quantitative rise within this size class may primarily be accounted for by a dramatic upregulation of exon VASE-containing NCAM transcripts. In dBcAMP-treated astrocytes, immunoblot analysis revealed an unexpected expression of the 190 kDa NCAM-A isoform as well as an intense staining of bands corresponding to NCAM-B (135 kDa) and NCAM-C (115 kDa), as compared to the control pattern of untreated astrocytes. Furthermore, NCAM-A and NCAM-B were shown to be phosphorylated in astrocytes subjected to long-term treatment with dBcAMP, whereas no incorporation of [32P]phosphate into NCAM was demonstrated in untreated astrocytes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Age-related changes in expression of neural cell adhesion molecule (NCAM) in heart: a comparative study of newborn, adult and aged rats.

The neural cell adhesion molecule (NCAM) has been implicated in cellular interactions involved in cardiac morphogenesis and innervation. In this study, expression of NCAM mRNA and protein was characterized in rat heart during postnatal development and aging (postnatal days 1, 10, 40, 270, and 730). Alternative splicing of NCAM mRNA was analyzed by Northern blotting using DNA oligonucleotide probes designed for demonstration of certain exons or exon combinations. Total NCAM mRNA was downregulated during postnatal development followed by upregulation in the aging heart. Three major NCAM mRNA classes of 6.7, 5.2 and 2.9 kb were expressed in newborn heart in approximately equal proportions. At all other ages, the mRNAs of 5.2 and 2.9 kb were more predominant than the 6.7 kb mRNA. During postnatal development and aging, expression of exon VASE was selectively downregulated in the 6.7 kb NCAM mRNA class, whereas it was clearly detectable in NCAM mRNA classes of 5.2 and 2.9 kb. Insertion of exons a and AAG between exons 12 and 13 was more pronounced in the 5.2 and 2.9 kb NCAM mRNAs than in the 6.7 kb mRNA at all ages. Insertions at the 12/13 junctions decreased in the 6.7 kb mRNA as compared to the 5.2 and 2.9 kb mRNAs during postnatal development. Quantification of NCAM protein by enzyme-linked immunosorbent assay showed that NCAM protein amount decreased from a level of 0.93 microgram NCAM/mg total protein at birth to postnatal day 40 where a level of 0.21 microgram NCAM/mg total protein was found. During aging, NCAM increased again to 0.34 micrograms NCAM/mg total protein at postnatal day 730. NCAM isoforms were studied by immunoblotting analysis. At all ages, the major NCAM isoforms of 190, 145 and 120 kDa were observed in heart, the 145 kDa isoform being predominant.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

[Integrated diagnostic imaging in the study of tumors of the periskeletal soft tissues].

Integrated diagnostic imaging is nowadays an extremely valuable tool in the study of periskeletal soft tissue tumors, relative to their diagnosis, prognosis and treatment. In the past, difficulties arose from the complex embryogenetic factors causing the tumors, from the different growth patterns and courses of the lesions themselves, and finally from poor development of technology specifically designed to study the soft tissues. Today, such new imaging methods as CT and MRI exhibit special features allowing the accurate study of the soft tissues and their conditions. The basic method to investigate the relationship of soft tissues to skeleton is still conventional radiology--or xeroradiography--with the soft-ray technique. However, its limitations are well known. US, with the appropriate probes and the correct technique, with comparative and dynamic studies, yields precise information, especially relative to benign tumors. CT allows not only lesion but also tumor staging, together with the study of adjacent structures; moreover, CT angiography provides accurate information as to tumor vascularization. The role of MRI, though still debated, looks extremely promising. Finally, as for angiography, the method has been replaced by newer technologies and thus limited to preoperative vascular mapping.

Angiography↗

[Decubitus calcifications of the soft tissues. Comparison between radiology and echography].

In the past, several obstacles hindered the study of decubitus calcifications in soft tissues--i.e., poor prognosis, difficult patients investigation due to their poor health and, finally, unsufficient information yielded by conventional radiology. However, special radiographic techniques and US (with 7.5 MHz probes) allowed satisfactory results to be obtained. US permits the more accurate definition of the site of calcifications, better demonstration of the calcifications with poor calcium content and optimal depiction of structural changes of the muscular bundles following denervation or edema and of skin trophism changes. US limitations, besides those strictly related to the method itself, are: gross calcifications with large posterior shadowing not allowing the deep layers to be investigated, the need of an extremely qualified operator and of a detailed description and, finally, the fact that the exam is long, difficult and stressful to the operator and painful to the patient. In conclusion, US provides both the surgeon and the clinician with useful information and can thus be employed as a routine test, with the additional advantage of not employing ionizing radiations.

Calcinosis↗

Biphasic changes in NCAM level after an NMDA lesion to the hippocampal formation: a quantitative dot-immunobinding assay.

With a quantitative dot-immunobinding assay, the time course changes of neuronal cell adhesion molecule (NCAM) concentrations and total tissue content were monitored in the rat hippocampus after a 40 nmol NMDA injection. A biphasic alteration was observed; a decrease occurred at day 3, an increase at day 30. The time course of changes differed from that of the glial fibrillary acidic protein (GFAP), a marker for reactive astroglial cell, but was similar to that for the markers of sprouting neurites, i.e., low (L) and high (H) molecular weight subunits of the neurofilament polypeptides. It is suggested that NCAM is implicated in the onset of neurite sprouting in the hippocampus after an excitotoxic trauma.

Animals↗

NCAM as a differentiation marker of postmigratory immature neurons in the developing human nervous system.

The regional distribution and cellular localization of the neural cell adhesion molecule were investigated in the developing nervous system of human embryos and fetuses, by using immunocytochemistry with antibodies against the human neural cell adhesion molecule. Embryos and fetuses with crown-rump lengths ranging from 15 to 80 mm (corresponding approximately to 6-12 ovulation weeks) were examined. In the telencephalon, immunoreactivity was found in the primordial plexiform layer and in the early cortical plate. During later stages, immunoreactivity was present in the marginal zone, cortical plate, developing subplate zone and radiations of the internal capsule. In the mesencephalon and rhombencephalon, neuronal perikarya were outlined and strong staining was present in fiber bundles. In the spinal cord, strong immunostaining was present in fiber tracts and in dorsal and ventral roots. Immunostaining outlined perikarya of dorsal and ventral gray columns; the neuropil of the developing gray matter was also stained. Contrary to findings in some other species, precursor cells in the proliferating zones, i.e. all cells of ventricular zones and the external granular layer in the proliferation were not stained. Reactivity, however, was also observed in single mature-looking nerve cell bodies and their processes, which were localized in proliferating zones. All peripheral nervous structures including nerve fibers and peripheral nervous tissue components derived from the neural crest (i.e. sensory and autonomic ganglia) expressed the neural cell adhesion molecule. At the cellular level staining always appeared to be associated with the entire cell membrane of a given neuron including its outgrowing processes. Immunocytochemical staining for neural cell adhesion molecule is an excellent method for the identification of single nerve fibers, nerves and nerve cell bodies in situ in the developing peripheral and early central nervous system. The neural cell adhesion molecule is suggested as a marker of postmigratory immature neurons in the developing human nervous system.

Biomarkers↗

Expression of cadherin and NCAM in human small cell lung cancer cell lines and xenografts.

Tumour cell adhesion, detachment and aggregation seem to play an important part in tumour invasion and metastasis, and numerous cell adhesion molecules are expressed by tumour cells. Several families of cell-cell adhesion molecules have been described, of which two groups are particularly well characterised, the cadherin family and the Ig superfamily member, neural cell adhesion molecule (NCAM). We investigated expression of these two adhesion molecule families in small cell lung cancer (SCLC) cell lines and xenografts by immunoblotting. Nineteen tumours established from 15 patients with SCLC were examined. All tumours but one expressed both cadherin and NCAM. The tumours expressed one, two or rarely three cadherin bands, and different combinations of two major isoforms of NCAM with M(r)'s of approximately 190,000 and 135,000. Polysialylation of NCAM, a feature characteristic of NCAM during embryonic development, which may play a role in connection with tumour invasion and metastasis, was found in 14/18 NCAM expressing SCLC tumours. Individual tumours grown as cell lines and as nude mouse xenografts showed no qualitative differences in cadherin or NCAM expression.

Animals↗

Characterization of soluble neural cell adhesion molecule in rat brain, CSF, and plasma.

The polypeptide composition and glycosylation of soluble isoforms of neural cell adhesion molecule (NCAM) in developing rat brain, CSF, and plasma were characterized. Soluble NCAM in rat brain consisted of several glycosylated isoforms. The degree of glycosylation was developmentally regulated. After desialylation, four polypeptides of M(r) values of approximately 190,000 (s1), 135,000 (s2), 115,000 (s3), and 110,000 (s4) were observed. Polypeptides s1, s2, and s3 were also present in CSF, whereas only s3 and s4 were observed in plasma. Treatment of soluble brain NCAM with N-glycosidase F, which removes N-linked carbohydrates, produced polypeptides of M(r) values of approximately 190,000, 125,000, and 108,000-97,000. The monoclonal antibody OB11, which recognizes an epitope on the cytoplasmic part of transmembrane forms of NCAM, did not react with any of the soluble isoforms. Purified soluble NCAM, consisting mainly of s3, contained an N-terminal sequence identical to that of membrane-associated NCAM. Gel filtration of s3 indicated that it was present as a dimer under the chosen conditions. NCAM-expressing glioma cells adhered specifically to immobilized soluble NCAM. This implies that functionally significant soluble forms of NCAM are present in the extracellular fluid.

Aging↗

Differential expression of neural cell adhesion molecule and cadherins in pancreatic islets, glucagonomas, and insulinomas.

The endocrine cells of the pancreas develop from the endoderm and yet display several characteristics of a neuronal phenotype. During embryonic life, ductal epithelial cells give rise to first the glugagon-producing cells (alpha-cells) and then cells that express insulin (beta-cells), somatostatin (delta-cells), and pancreatic polypeptide (PP-cells) in a sequential order. The endocrine cells are believed to arise from a stem cell with neuronal traits. The developmental lineage from a common neuron-like progenitor is evidenced by: transient coexpression of more than one cell type-specific hormone in immature cells, expression of neuronal markers during islet cell development, and the pluripotentiality of clones of insulinoma cells to develop into cells expressing other islet cell hormones. The four mature endocrine cell types assume a particular organization within the islets of Langerhans in a process where cell adhesion molecules are involved. In this study we have analyzed the expression of neural cell adhesion molecule (NCAM) and cadherin molecules in neonatal, young, and adult rat islet cells as well as in glucagonomas and insulinomas derived from a pluripotent rat islet cell tumor. Whereas primary islet cells at all ages express unsialylated NCAM and E-cadherin, as do insulinomas, the glucagonomas express the polysialylated NCAM, which is characteristic for developing neurons. The glucagonomas also lose E-cadherin expression and instead express a cadherin which is similar to N-cadherin in brain. Insulinoma cells express E-cadherin but differ from primary islet cells by expressing a second cadherin molecule, which is similar to N-cadherin. The expression of NCAM and cadherin isoforms in the glucagonoma suggest that this transformed alpha-cell type has converted to an immature phenotype with strong neuronal traits, reflecting the early palce of glucagon-producing cells in the islet cell lineage. In contrast, insulinoma cells are more islet-like in their phenotype and show less neuronal traits.

Animals↗

Glycosylation of neural cell adhesion molecules of the immunoglobulin superfamily.

Cell adhesion molecules (CAMs) are believed to play key roles during morphogenesis. In this review we focus on neural CAMs belonging to the immunoglobulin superfamily. Data concerning distribution, expression pattern, structure and function of these CAMs are accumulating these years. In general, little is known about the importance of glycosylation for the function of these CAMs. The neural cell adhesion molecule, NCAM, is probably the best described CAM, and this molecule exhibits special carbohydrate characteristics, e.g. NCAM is polysialylated. Glycosylation of NCAM seems to be regulated during development and to influence the adhesive function of the molecule. Structure, function and glycosylation of NCAM are described in detail.

Animals↗

Diagnostic accuracy of 99mTc-anti-CEA immunoscintigraphy in patients with liver metastases from colorectal carcinoma.

17 patients with 43 liver metastases from colorectal carcinoma were studied by immunoscintigraphy (IS) using a 99mTc-labelled monoclonal anti-CEA antibody (BW 431/26). Sensitivity and diagnostic accuracy were 21% for all liver lesions, but 47% considering the number of patients (at least one positive finding out of multiple metastases) and 77% in patients with a single metastasis. SPECT imaging did not improve sensitivity markedly in this series. There was no correlation with CEA serum levels. Liver metastases of intermediate size with moderate tumour necrosis seem to be favourable to IS. Major reason for the low sensitivity is the poor tumour-to-background ratio caused by high unspecific uptake of 99mTc-labelled antibodies in the RES of the liver. At the moment, IS seems be only a supplementary method to conventional diagnostic procedures.

Adenocarcinoma↗

Demonstration of L1-related mRNAs in rat brain using DNA oligonucleotide probes.

Only one copy of the cell adhesion molecule L1 gene is present in the mouse genome, and only one mRNA of 6 kilobases (kb) is expressed in mouse brain [1987, Neurosci. Lett. 82, 89-94]. We have constructed 5 synthetic oligonucleotide probes covering different parts of the published mouse L1 cDNA sequence. Using these probes 3 distinct mRNAs of 9.0, 7.0 and 6.0 kb in rat brain could be demonstrated. Hybridizations performed at different stringency conditions indicated that the 9.0 and 7.0 kb mRNAs were highly related to the L1 mRNA of 6.0 kb expressed in rat brain. The 7.0 kb mRNA is possibly coding for a rat homologue of chicken Nr-CAM, whereas the 9.0 kb mRNA may code for a new member of the L1 family.

Animals↗

Characterization of NCAM expression and function in BT4C and BT4Cn glioma cells.

The neural cell adhesion molecule, NCAM, plays an important role in cell-cell adhesion. Therefore, we have studied NCAM expression in the glioma cell lines BT4C and BT4Cn. We demonstrate that the 2 cell lines differ in their metastatic ability; while BT4C cells have a very low capacity for producing experimental metastases, that of BT4Cn cells is high. In BT4C cells NCAM is synthesized as 4 polypeptides with Mr's of 190,000, 140,000, 115,000 and 97,000. The 140,000, 115,000 and 97,000 polypeptides are glycosylated and for the 140,000 and 115,000 polypeptides sulfatation is observed. Conversely, no NCAM protein synthesis is observed in BT4Cn cells, even though NCAM mRNA is expressed. Thus, development of an increased metastatic capacity is accompanied by the disappearance of NCAM protein expression in this model system. The functional importance of NCAM expression was studied by a cell-substratum binding assay in which the binding of BT4C and BT4Cn cells to NCAM immobilized to glass was assessed. We found that BT4C cells adhere specifically to NCAM, and that adhesion is inhibited by anti-NCAM Fab'-fragments, while no specific binding of BT4Cn cells to NCAM was observed. The BT4C and BT4Cn cell lines thus constitute an important new model system for the study of tumor invasion and metastasis and of the role of cell adhesion molecules in these processes.

Animals↗

NCAM in developing mouse gonads and ducts.

The expression of the Neural Cell Adhesion Molecule, NCAM, in mouse gonads and ducts was studied from fetal life to maturity. The methods used were immunocytochemical staining and Western blotting. The immunocytochemical studies showed that the only structures that remain NCAM-positive throughout life were the mesonephric-derived rete ovarii and rete testis. Also in the fetal gonads some somatic cell lining the groups of differentiating germ cells were stained. In the immature as well as in the mature ovary the granulosa cells and oocytes of growing and large follicles--but not of small follicles--were stained. A particularly strong staining of the cytoplasm of the oocyte, healthy as well as atretic, was seen. All cells of the testis remained negative except for weakly stained residual bodies and late spermatids. At all ages the male ducts showed only weak staining, whereas in the female Müllerian duct the epithelium became strongly positive at puberty. The stroma of the Müllerian duct was positive during a transitory period around day 16 of fetal life in both sexes. One-dimensional gel immunoblotting of total protein from gonads, rete and ducts from immature and mature mice showed that only the two largest isoforms of NCAM (NCAM-A and NCAM-B) were present. The gonads and the rete of both sexes and the adult uterus expressed only NCAM-B, whereas NCAM-A was also detected in the adult epididymis. The present findings suggest that NCAM may be involved in the normal development and formation of both the gonads and ducts.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗