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J Roth

Publications and source records attributed to J Roth.

At least 451 records · Page 25Linked to original sources

Studies on binding and mitogenic effect of insulin and insulin-like growth factor I in glomerular mesangial cells.

The mesangial cells, as part of their smooth muscle cell function, are actively involved in regulating glomerular hemodynamics. Their overlying endothelium is fenestrated; therefore, these cells are directly exposed to plasma substances, including hormones such as insulin and insulin-like growth factor I (IGF-I). These peptides may contribute to the mesangial sclerosis and cellular hyperplasia that characterize diabetic glomerulopathy. We report herein the characterization of the receptors and the mitogenic effects of IGF-I and insulin on mouse glomerular mesangial cells in culture. The IGF-I receptor was characterized on intact cells. The Kd of the IGF-I receptor was 1.47 X 10(-9) M, and the estimated number of sites was 64,000 receptors/cell. The binding was time, temperature, and pH dependent, and the receptor showed down-regulation after exposure to serum. The expression of the receptor did not change on cells at different densities. The specific binding for insulin was too low to allow characterization of the insulin receptor on intact cells. However, it was possible to identify the insulin receptor in a wheat germ agglutinin-purified preparation of solubilized mesangial cells. This receptor showed the characteristic features of the insulin receptor, including pH dependence of binding and a curvilinear Scatchard plot. The mitogenic effects of insulin and IGF-I on mesangial cells were measured by the incorporation of [3H]thymidine into DNA. IGF-I was more potent than insulin. The half-maximal response to IGF-I stimulation occurred at 1.3 X 10(-10) M, and a similar increase with insulin was observed at concentrations in the range of 10(-7) M, suggesting that this insulin action was mediated through the IGF-I receptor. These data show that the mouse microvascular smooth muscle cells of the glomerulus express a cell surface receptor for IGF-I in vitro and that this peptide is a potent mitogen for these mesangial cells. It may, therefore, play a role in glomerular proliferative lesions. The insulin receptor is present in small numbers and does not mediate mitogenesis in mesangial cells.

Animals↗

Receptors for insulin-like growth factors I and II: autoradiographic localization in rat brain and comparison to receptors for insulin.

Receptors for insulin-like growth factor I (IGF-I) in rat brain were visualized using autoradiography with [125I]IGF-I. The binding of the labeled peptide was competed for fully by high concentrations of unlabeled IGF-I. At intermediate concentrations of unlabeled peptide the binding of [125I]IGF-I was competed for by unlabeled IGF-I more effectively than by IGF-II or insulin, which is typical of receptors for IGF-I. Essentially every brain section shows specific binding of IGF-I, and the pattern of binding of IGF-I to its receptors correlated well with the cytoarchitectonic structures. In parallel studies we showed that [125I]IGF-II was bound to tissue sections of rat brain and that the binding was competed for by an excess of unlabeled IGF-II. However, intermediate concentrations of unlabeled peptides gave inconclusive results. To confirm that the binding of [125I]IGF-II was to IGF-II receptors, we showed that antibodies specific for the IGF-II receptor inhibited the binding of labeled IGF-II. Furthermore, the binding of the antibody to regions of the brain section, visualized by the application of [125I]protein-A, gave patterns indistinguishable from those obtained with [125I]IGF-II alone. Again, the binding was very widely distributed throughout the central nervous system, and the patterns of distribution corresponded well to the underlying neural structures. Densitometric analysis of the receptors enabled us to compare the distribution of IGF-I receptors with that of IGF-II receptors as well as retrospectively with that of insulin receptors.

Animals↗

Developmental regulation of insulin and type I insulin-like growth factor receptors and absence of type II receptors in chicken embryo tissues.

Chicken embryos are a suitable model for studying the role of insulin, insulin-like growth factors I and II (IGF-I and IGF-II), and their receptors in embryogenesis. We show that plasma membranes from heart, liver, and limb buds, as reported earlier for brain, each have a distinct developmental profile for insulin receptors and type I IGF receptors. In heart and limb buds, IGF binding is higher than insulin binding, but in liver, insulin receptors dominate. Expression of these receptors is, therefore, developmentally regulated and tissue specific. The wide distribution of high-affinity receptors capable of mediating insulin and IGF actions in early organogenesis further supports the possible importance of this family of peptides for differentiation and growth in vertebrates. In all chicken embryo tissues studied, both IGF-I and IGF-II appeared to bind to a type I IGF receptor. We have not detected a receptor with the peptide binding and structural characteristics of the mammalian type II IGF receptor. The type II receptor was absent in embryos, liver from newly hatched chicks, and adipocytes from older chicks, which suggests that the chicken may lack this subtype of IGF receptor.

Animals↗

Alteration in sialyltransferase and sialic acid expression accompanies cell differentiation in rat intestine.

The subcellular distribution of sialyltransferase and its product of action, sialic acid, was investigated in the undifferentiated cells of the rat intestinal crypts and compared with the pattern observed in the differentiated cells present in the surface epithelium. Sialyltransferase was immunocytochemically detected with an antibody, affinity-purified on a beta-galactosidase/sialyltransferase fusion protein, which recognizes only protein epitopes of the enzyme. A similar pattern and intensity of immunolabeling were observed in the Golgi apparatus, apical and basolateral plasma membranes of both undifferentiated and differentiated absorptive cells. However, in the goblet cells, the mucus was only weakly labeled in cells present in the basal portion of the crypts but increased in intensity through the zone of migration to the surface epithelium. Sialic acid as detected with the Limax flavus lectin was observed in the Golgi apparatus and post-Golgi apparatus structures of both absorptive and goblet cells regardless of their position along the crypt-to-surface epithelium axis. However, a striking difference in the plasma membrane distribution of sialic acid existed between undifferentiated cells of the lower half of the crypts and those of the upper half and the surface epithelium: in the former, label was present in both the apical and basolateral domain, whereas in the latter it became restricted to the apical domain. These results suggest that the presence of sialyltransferase immunoreactivity in the goblet cell mucus and the polarization of sialic acid to the apical plasma membrane of both goblet and absorptive cells may be markers for the differentiated state.

Animals↗

Presence of the long chain form of polysialic acid of the neural cell adhesion molecule in Wilms' tumor. Identification of a cell adhesion molecule as an oncodevelopmental antigen and implications for tumor histogenesis.

The long chain form of polysialic acid characteristic of the low adhesive embryonic form of the neural cell adhesion molecule NCAM is temporally and spatially expressed in developing kidney but undetectable in normal adult kidney. Therefore, this molecule represents a developmentally regulated antigen in kidney contrasted with neural tissue, where it is also detectable in the adult brain. This investigation of 25 Wilms' tumors comprising all different histologic types demonstrates expression of this molecule under conditions of malignant growth. Immunostaining was observed in Wilms' tumors with both a monoclonal anti-polysialic acid antibody and a polyclonal anti-NCAM polypeptide antiserum. Intense cell surface staining sensitive to endosialidases specifically hydrolyzing alpha 2,8 linked (poly)sialic acid was detectable in blastemal regions, and weaker, variable labeling was seen over tubules and glomeruloid bodies. The stroma was not stained. This is evidence indicating that Wilms' tumor originates from the embryonic equivalent of induced metanephrogenic mesenchyme. It seems unlikely however, that the stroma is derived from the blastema. The same high molecular mass broad band typical of the embryonic form of NCAM was revealed by immunoblot analysis of homogenates from Wilms' tumor as well as from embryonic kidney and brain. In situ hybridization demonstrated the presence of mRNA for NCAM in all but stromal elements of Wilm's tumors. Thus, polysialic acid is present on NCAM and represents a new oncodevelopmental antigen in human kidney. Polysialic acid was greatly reduced or absent by immunohistochemistry and immunoblotting in necrotic tumor areas.

Adult↗

Blastemal cells of nephroblastomatosis complex share an onco-developmental antigen with embryonic kidney and Wilms' tumor. An immunohistochemical study on polysialic acid distribution.

Previous investigations on polysialic acid of the neural cell adhesion molecule NCAM in human kidney have demonstrated its presence during nephrogenesis in embryonic kidney, absence in normal adult kidney, and reexpression in Wilms' tumor. These data showed that polysialic acid of NCAM is an onco-developmental antigen in human kidney and provided more direct evidence for the metanephric origin of Wilms' tumor. In the present study, five cases of Wilms' tumor associated with nephroblastomatosis complexes were immunohistochemically investigated with a monoclonal antibody for the presence of polysialic acid. Regardless of the type of nephroblastomatosis complex, ie, renal nodular blastema, simple tubular metanephric hamartoma, sclerosing metanephric hamartoma with adenoma, or incipient Wilms' tumor, immunoreactivity for polysialic acid was found in the blastemal cells, but was undetectable in all other structural elements. Because only blastemal cells exhibited a characteristic feature of embryonal differentiating metanephric derivatives, it appears that Wilms' tumor has its origin not exclusively in nodular renal blastema but rather in blastemal cells present in the various forms of nephroblastomatosis complex. The presence of polysialic acid of NCAM in blastemal cells in such lesions indicates that further events in addition to the expression of the embryonic form of this cell adhesion molecule may be involved in the pathogenesis of Wilms' tumor.

Antigens, Neoplasm↗

Immunolocalization of blood group A gene specified alpha 1,3N-acetylgalactosaminyltransferase and blood group A substance in the trans-tubular network of the Golgi apparatus and mucus of intestinal goblet cells.

The subcellular distribution of blood group A gene specified alpha 1,3N-acetylgalactosaminyltransferase and its product was studied in human intestinal goblet cells by immunoelectron microscopy. The O-glycosylation step yielding blood group A-active glycoconjugates occurred in the trans region of the Golgi apparatus as indicated by the presence of immunolabel for both antigens. In the Golgi apparatus, immunoreactive alpha 1,3N-acetylgalactosaminyltransferase was detectable in trans cisternae and in the trans-tubular network which was found to be continuous with the cisternal stack and exhibited acid phosphatase activity. This demonstrates that in intestinal goblet cells (i) the trans-tubular network does not constitute a compartment distinct from trans cisternae, and (ii) structures corresponding to GERL are structurally and functionally part of the Golgi apparatus. In addition to immunolabel for transferase at the inner surface of the cisternal membranes, luminally located immunolabel indicating the presence of free, not membrane-associated transferase became first detectable in the trans-tubular network and early forming mucus droplets contained therein. Further, the content of mature mucus droplets as well as the extracellular mucus layer were labeled. Absence of immunolabel in blood group 0 subjects lacking the blood group A gene specified transferase and the apparent non-reactivity of the antibodies with carbohydrate epitopes indicates that free alpha 1,3N-acetylgalactosaminyltransferase is present in mucus droplets and becomes secreted by intestinal goblet cells.

ABO Blood-Group System↗

[Malignant hemangiopericytoma in computed tomography].

CT findings of eight malignant hemangiopericytomas are presented. CT revealed well-circumscribed mass lesions in five cases, whereas three tumors showed invasive growth. Cystic areas were found in four hemangiopericytomas, and a dystrophic calcification was seen in one case. Following intravenously injected contrast material, all tumors demonstrated a distinct enhancement.

Adult↗

Occurrence and distribution of sialic acid residues in developing rat glomerulus: investigations with the Limax flavus and the wheat germ agglutinin.

Evidence has accumulated suggesting that cell surface sialic acid is required for the development and maintenance of the specialized shape of glomerular podocytes in kidney. We have investigated the occurrence and distribution of plasma membrane sialic acid residues during glomerulus development in newborn rat kidney with special attention to the differentiating podocytes. Terminal sialic acid residues were detected with a high resolution cytochemical lectin technique applying the Limax flavus agglutinin in conjunction with the fetuin-gold complex. In addition, the wheat germ agglutinin/ovomucoid-gold technique was performed. Lectin binding, indicative of the presence of terminal sialic acid residues in glycoconjugates, was found in the plasma membrane of the cells of the nephrogenic cap, the earliest stage of glomerulus development. Label of similar intensity was found in the apical, lateral and basal plasma membrane of all cell types in later developmental stages such as renal vesicle, S-shaped body, capillary loop stage and maturing glomeruli. Considering the podocytes, already the presumptive podocytes clearly identifiable in the S-shaped body and early capillary loop stage exhibited binding sites for the Limax flavus and the wheat germ agglutinin along their plasma membrane domains irrespective of the position of the tight junctions and before foot process and slit diaphragm formation occurred. These results demonstrate that in the plasma membrane of all cell types during the different stages of glomerulus development sialylated glycoconjugates are present. They indicate that the general occurrence of sialic acid residues does not coincide with the development of foot processes and slit diaphragms of glomerular podocytes.

Animals↗

Heart valve replacement with St. Jude Medical valve prosthesis. Long-term experience in 743 patients in Switzerland.

Between November 1978 and June 1986, 828 St. Jude Medical valves were implanted in 743 patients whose mean age was 57 years (range, 1-83 years) and who had been admitted to the University Hospitals in Basel, Berne, and Lausanne, Switzerland. Aortic valve replacement was performed in 456 patients, mitral valve replacement in 200, tricuspid valve replacement in six, double valve replacement in 77, and triple valve replacement in four. In 187 patients, additional surgical interventions were performed. Operative mortality was 1.6%, and the 4-week postoperative mortality was 4.0%. During a mean follow-up period of 2.6 years, the annual mortality rate was 3.1%, and the annual cardiac mortality rate was 2.1%. The thromboembolic rate per 100 patient-years was 1.3 after aortic valve replacement, 3.0 after mitral valve replacement, and 1.0 after multiple valve replacement. The incidence of major bleeding was 1.3 per 100 patient-years. Valve dysfunction attributable to thrombotic obstruction occurred in three patients, and that attributable to leaflet dislocation in one (annual dysfunction rate, 0.2%). Twelve patients developed infectious endocarditis, six of whom died. However, in four patients, reoperation and, in two patients, antibiotic treatment alone were successful in treating the infection. A paravalvular leak necessitating reoperation developed in 10 patients. In three patients, the leak was caused by infectious endocarditis. Reoperation had no operative mortality. In three patients (0.4%), a mild hemolytic anemia was found.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Partial purification and characterization of an insulin-like material from spinach and Lemna gibba G3.

The existence in invertebrates, unicellular eukaryotes, and prokaryotes of materials that resemble several vertebrate peptide hormones led to the suggestion that these peptide messengers may have arisen earlier in evolution than had previously been thought. Consistent with this hypothesis, we describe here material in two plants, spinach and Lemma gibba G3, that is very similar to mammalian insulin, yet distinctive. In each of the early purification steps, which consisted of acidic methanol chloroform extraction and sequential chromatography on C-18 hydrophobic resin, Sephadex G-50, CM-Sepharose, and a short C-3 high performance liquid chromatography column, the immunoactive material from plants resembled the common vertebrate insulins. The protein nature of the material was suggested by its destruction by Pronase but not by the inactivated enzyme. In addition, on TSK chromatography it eluted in a position similar to that of insulin, i.e. equivalent to a protein of 6000 daltons. Using an isocratic high performance liquid chromatography system, the plant immunoactivity eluted earlier, and thus was more hydrophilic, than most of the common mammalian insulins, including pork insulin. The interaction of the plant material with anti-insulin antibodies in a radioimmunoassay was confirmed by using an affinity column of anti-insulin antibodies which adsorbed the plant immunoactivity at neutral pH, and released the material with acid elution. Using a quantitative double radioimmunoassay, the plant insulin-like material was distinguished immunologically from chicken insulin. Although the plant insulin-like material is clearly distinct from pork insulin chromatographically, and from chicken insulin immunologically, it resembles vertebrate insulins in its overall configuration. The plant insulin-like material bound to insulin receptors on IM-9 lymphocytes and stimulated glucose oxidation and lipogenesis in isolated adipocytes from young rats. The bioactivity was neutralized in the presence of anti-insulin antibodies, but not in the presence of normal guinea pig IgG. The role of this insulin-like material in plants is unknown but its existence is consistent with an early evolutionary origin of the insulin messenger peptide family. Alternatively we cannot exclude a later convergent development of this family or introduction of vertebrate DNA into plants.

Biological Assay↗

Characterization of an endogenous substrate related to insulin and insulin-like growth factor-I receptors in lizard brain.

Lizard insulin receptors are evolutionarily highly conserved. Wheat germ agglutinin-purified brain membranes demonstrate the presence of an endogenous substrate (pp 105) for both the insulin and insulin-like growth factor-I receptors. Both insulin and I-insulin-like growth factor-I stimulate the phosphorylation of this endogenous substrate in a dose-dependent manner. Following insulin-stimulated autophosphorylation of the beta subunit, there is a lag period of about 5 min prior to observable phosphorylation of the endogenous substrate. Phosphoamino acid analysis of both the beta subunit as well as pp 105 reveal primarily phosphotyrosine in both the basal as well as the stimulated state.

Amino Acids↗