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Biomedical subjects

K Tobe

Publications and source records attributed to K Tobe.

At least 127 records · Page 7Linked to original sources

Immunological detection of phosphotyrosine-containing proteins in rat livers after insulin injection.

Tyrosine-phosphorylated proteins in Triton X-100-solubilized fractions of rat livers were examined by immunoblotting with anti-phosphotyrosine antibodies. After 2 min of insulin injection via the portal vein into livers, three major bands of 170,000, 140,000, and 95,000 Mr were stimulated. Because the incubation of nitrocellulose membrane with anti-phosphotyrosine antibodies in the presence of 40 mM phosphotyrosine completely abolished these bands, the anti-phosphotyrosine antibodies appear to recognize the phosphotyrosine residues of these proteins. Insulin injection (2-2000 micrograms) very quickly stimulated the tyrosine phosphorylation of these proteins in a dose-dependent fashion. In contrast, insulinlike growth factor I or epidermal growth factor injection had little effect in stimulating the tyrosine phosphorylation of these proteins. Because anti-insulin-receptor antibodies immunoprecipitated a tyrosine-phosphorylated 95,000-Mr protein, this protein must be the beta-subunit of the insulin receptor; i.e., the beta-subunit of the insulin receptor and two other proteins were phosphorylated at tyrosine residues in vivo by insulin injection. These data suggest that the tyrosine phosphorylation and tyrosine kinase activity of the insulin receptor may have important roles in in vivo insulin action.

Animals↗

Substrates for insulin-receptor kinase.

Several studies suggest that the tyrosine-specific protein kinase activity of the beta-subunit of the insulin receptor is necessary to mediate the biological effects of insulin. This conclusion leads to the hypothesis that the effect of insulin is mediated through the tyrosine phosphorylation of cellular substrates by the insulin-receptor tyrosine kinase. In this review, the experimental evidence regarding insulin-stimulated phosphorylation of proteins both in vitro and in vivo is evaluated. In a cell-free system, tubulin, microtubule-associated protein 2, tau, fodrin, calmodulin-dependent kinase, calmodulin, and lipocortins 1 and 2 were reported to be good substrates for insulin-receptor kinase. However, none were found to be tyrosine phosphorylated in an intact-cell system. In intact-cell systems, proteins of Mr 185,000 (pp185), 120,000 (pp120), 240,000 (pp240), 15,000 (pp15), 60,000 (pp60), and 62,000 (pp62) as well as several others were reported to be tyrosine phosphorylated in an insulin-dependent fashion. However, the function or functional alteration of these proteins induced by insulin-stimulated tyrosine phosphorylation is not clear. Therefore, physiologically relevant substrates for the insulin-receptor kinase have not been established, and more work is necessary to verify the phosphorylation cascade hypothesis of insulin action.

Animals↗

Human diabetes associated with a mutation in the tyrosine kinase domain of the insulin receptor.

Insulin receptor complementary DNA has been cloned from an insulin-resistant individual whose receptors have impaired tyrosine protein kinase activity. One of this individual's alleles has a mutation in which valine is substituted for Gly996, the third glycine in the conserved Gly-X-Gly-X-X-Gly motif in the putative binding site fo adenosine triphosphate. Expression of the mutant receptor by transfection into Chinese hamster ovary cells confirmed that the mutation impairs tyrosine kinase activity.

Alleles↗

Tyrosine phosphorylation of pp185 by insulin receptor kinase in a cell-free system.

Insulin treatment of rat H-35 hepatoma cells causes rapid tyrosine phosphorylation of a high molecular weight protein termed pp185 besides autophosphorylation of the beta-subunit of the insulin receptor (IR) in an intact cell system. To elucidate the molecular basis for tyrosine phosphorylation of pp185, cell-free phosphorylation of pp185 was performed using phosphotyrosine-containing proteins (PYPs) purified from detergent-solubilized cell lysates by immunoprecipitation with anti-phosphotyrosine antibody. After insulin treatment of cells, marked increases of tyrosine phosphorylation of pp185 and IR were observed compared to noninsulin-treated cells. Site-specific antibodies that specifically inactivate IR kinase inhibited tyrosine phosphorylation of pp185 as well as the beta-subunit of IR. PYPs purified from detergent-free cell extracts contained pp185 but little IR; tyrosine phosphorylation of pp185 did not occur. Addition of IR kinase purified from human placenta to these PYPs restored insulin-dependent tyrosine phosphorylation of pp185. These results suggest that tyrosine phosphorylation of pp185 is catalyzed directly by IR kinase in this cell-free system.

Animals↗

Autoantibodies to the insulin receptor (B-10) can stimulate tyrosine phosphorylation of the beta-subunit of the insulin receptor and a 185,000 molecular weight protein in rat hepatoma cells.

The immunoglobulin G (IgG) fraction obtained from the serum of a patient (B-10) with type B insulin resistance and acanthosis nigricans stimulated both glucose oxidation in rat adipocytes and autophosphorylation of tyrosine residues in the beta-subunit of insulin receptors in H-35 hepatoma cells. Partially purified insulin receptor from H-35 cells, when incubated with B-10 IgG, had increased tyrosine kinase activity for a synthetic peptide sequentially similar to the site of tyrosine phosphorylation in pp60v-arc (the gene product responsible for cellular transformation by the Rous sarcoma virus). In H-35 cells, both B-10 IgG and insulin stimulated tyrosine phosphorylation in an endogenous 185,000 mol wt protein. This phosphoprotein may be similar to the cellular substrate for insulin in hepatoma and other cultured cell lines demonstrated by others. These results suggest that antiinsulin receptor antibodies (B-10) may initiate their insulin-like effects via tyrosine phosphorylation of the insulin receptor, activation of its tyrosine kinase activity, and phosphorylation of a cellular protein substrate of 185,000 mol wt.

Adipose Tissue↗

Insulin-induced tyrosine-phosphorylation in intact rat adipocytes.

Insulin-induced tyrosine-phosphorylation in intact isolated rat adipocytes was studied using immunoblotting method with antiphosphotyrosine antibodies. Insulin-stimulated adipocytes were solubilized with Triton X-100. The lysate was incubated with wheat germ agglutinin, then with hydroxylapatite. Insulin stimulated tyrosine-phosphorylation of a 95 KDa protein which adsorbs to wheat germ agglutinin and appears to be the beta-subunit of the insulin receptor. Among the proteins adsorbed to hydroxylapatite, tyrosine-phosphorylation of 170 KDa and 60 KDa proteins was stimulated. 170 KDa was also stimulated by polyclonal anti-insulin receptor antibodies B-10 Ig G, IGF-I and H2O2. The detection of these proteins in rat adipocytes may lead to the elucidation of a common signal transduction pathway in insulin-responsive cells.

Adipose Tissue↗

Alteration in growth, cell morphology, and cytoskeletal structures of KB cells induced by epidermal growth factor and transforming growth factor-beta.

Long-term biological effects of epidermal growth factor (EGF), insulin, insulin-like growth factor-I (IGF-I), and transforming growth factor-beta (TGF-beta) were examined with human epidermoid carcinoma KB cells. EGF inhibited the growth of KB cells in both serum-containing and serum-free synthetic media by reducing the growth rate and by lowering the saturation density. The cells cultured with EGF showed relatively high motility and grew dispersely as single cells, whereas the cells cultured in the absence of EGF grew in clusters. Although TGF-beta itself did not inhibit the growth of KB cells, it augmented the growth inhibition by EGF. TGF-beta also affected the cell morphology. In the presence of TGF-beta, the cells became flattened and actin stress fibers were well developed compared to those cultured in its absence. The effects of EGF on growth, cell motility, and cell morphology were reversible. Tyrosine phosphorylation of EGF receptors was continuously observed for at least 50 h in the presence of EGF. TGF-beta did not increase the phosphorylation induced by EGF. These results suggested that signals continuously transmitted through EGF receptors caused the changes in cell growth and morphology and that TGF-beta did not act on the cells by modulating binding of EGF to its receptors or activation of the receptor kinase. In contrast to EGF and TGF-beta, neither insulin nor IGF-I affected cell morphology or growth, although KB cells express their receptors and the receptor kinases were also continuously activated during exposure of the cells to insulin or IGF-I.

Actin Cytoskeleton↗

Stimulation of the phosphorylation of cytoskeletal 350-kDa and 300-kDa proteins by insulin-like growth factor-I, platelet-derived growth factor and phorbol ester in rat 3Y1 cells.

Insulin-like growth factor-I (IGF-I) stimulated the phosphorylation of cytoskeletal 350-kDa and 300-kDa proteins which were immunoprecipitated with antibodies against brain high molecular weight microtubule-associated proteins in quiescent rat 3Y1 cells. The data on the effective concentrations of IGF-I and 125I-labeled IGF-I binding indicated that type I IGF receptors mediate this IGF-I effect. Platelet-derived growth factor (PDGF) as well as phorbol ester (TPA) also stimulated the phosphorylation of these proteins. These proteins, whether immunoprecipitated from cells stimulated by insulin, IGF-I, TPA, PDGF, or epidermal growth factor, produced very similar phosphopeptide mapping patterns irrespective of the stimulant. The results suggest the possibility that these growth factors and phorbol esters may activate a common protein kinase which is responsible for the phosphorylation of the 350-kDa and 300-kDa proteins in cells.

Animals↗

Ultrasonographic characteristics of small hepatocellular carcinoma.

The ultrasonographic characteristics of hepatocellular carcinomas (HCC) were investigated. Four typical features of HCCs, "mosaic internal echo pattern", "halo", "lateral shadow" and "posterior echo enhancement", were not recognized in minute HCCs smaller than 2 cm in diameter. These characteristics developed as the tumors grew. Only hypoechoic space-occupying lesions can be considered as small HCCs. In differentiating small HCCs from hypoechoic non-malignant space-occupying lesions in the cirrhotic liver, the ratios of short to long dimensions of the lesions seemed to be important since the ratios of HCCs were significantly larger than those of non-malignant lesions. The fact that 3 hyperechoic small HCCs could not be diagnosed even by celiac arteriography has suggested to us that ultrasonically guided biopsies should be performed in order to differentiate from small hemangiomas. Serum alpha-fetoprotein (AFP) levels of 1/3 of the patients with HCCs were below 100 ng/ml, indicating that it is impossible to detect small HCCs only by measuring serum AFP.

Carcinoma, Hepatocellular↗

Tyrosine phosphorylation of common and specific sets of cellular proteins rapidly induced by insulin, insulin-like growth factor I, and epidermal growth factor in an intact cell.

KB cells respond to insulin and insulin-like growth factor I (IGF-I) in a closely similar way (induction of membrane ruffling, stimulation of pinocytosis, and amino acid transport) but respond to epidermal growth factors (EGF) in a similar but distinct way. In the KB cells, using phosphotyrosine-specific antibody we have found that: the receptors for insulin (beta subunit), IGF-I (beta subunit), and EGF undergo tyrosine phosphorylation as early as 10 s after addition of their respective ligands; a 185-kDa protein is rapidly (less than 10 s) tyrosine phosphorylated by insulin and IGF-I through their respective receptor kinases but not EGF; tyrosine phosphorylation of a 190-kDa glycoprotein is rapidly (less than 10 s) induced by EGF through EGF receptor kinase; and tyrosine phosphorylation of a 240-kDa protein is stimulated within 30 s by all three growth factors. These patterns of tyrosine phosphorylation could be causally related to biological responses induced by the three growth factors.

Carcinoma, Squamous Cell↗

Differential effects of DNA tumor virus nuclear oncogene products on adipocyte differentiation.

We have introduced SV40 and polyoma large T antigen- and adenovirus-type 12 E1A genes into mouse 3T3-L1 preadipocyte cells to study the ability of various nuclear oncogene products to modulate cell differentiation. Clones expressing E1A products could differentiate into adipocytes faster than the control in spite of the absence of adipogenic inducers, as measured by the appearance of lipid droplets microscopically and by staining accumulated triglycerides with oil red O. However, clones expressing SV40 and polyoma large T antigens could not differentiate even if they were exposed to the inducers.

Adenoviridae↗

A Mr = 190,000 glycoprotein phosphorylated on tyrosine residues in epidermal growth factor stimulated KB cells is the product of the c-erbB-2 gene.

In human epidermoid carcinoma KB cells, a glycoprotein of Mr = 190,000 (gp190) has been shown to be phosphorylated on tyrosine residues upon EGF stimulation (Kadowaki et al., 1987, J. Biol. Chem. in press). Using a specific antibody to the c-terminal portion of the human c-erbB-2 gene product, we have found that gp190 is the human c-erbB-2 gene product which is structurally closely related to the epidermal growth factor (EGF) receptor. Since monoclonal antibody specific for the EGF receptor abolished both EGF binding to its receptor and tyrosine phosphorylation of the c-erbB-2 gene product, we have concluded that activation of EGF receptor tyrosine kinase activity upon EGF binding leads to the phosphorylation of the c-erbB-2 gene product on its tyrosine residues.

Epidermal Growth Factor↗

Binding properties and proliferative potency of insulin-like growth factor I in fetal mouse liver cells.

Specific high-affinity receptor(s) for insulin-like growth factor I have been identified in fetal mouse liver cells (FMLC) rich in late erythroid progenitors (CFU-E). Competition for [125I]IGF-I binding by IGFs and insulin demonstrated the presence of Type-I IGF receptors. Scatchard analysis of the binding data revealed a single class of receptors (Kd, 1.2 nM; R0, 600 sites per cell). Erythroid colony formation and DNA synthesis by these cells were enhanced by IGF-I alone or in combination with erythropoietin (Epo). Subfractionations of FMLC using Percoll density gradients showed that a significant part of [125I]IGF-I binding was observed in the CFU-E-enriched fraction and that the erythroid colony formation was mostly enhanced by IGF-I in the same fraction. IGF-I stimulated the phosphorylation of the beta-subunit of the Type-I receptors. These results indicate that IGF-I modulates the Epo-stimulated proliferation and differentiation of erythroid progenitors via its specific receptors.

Animals↗

Studies on cellular immunity against bile proteins in primary biliary cirrhosis by the leukocyte migration inhibition test (microdroplet method).

Cellular immunity against human bile proteins was investigated by the leukocyte migration inhibition test (LMIT) with 13 primary biliary cirrhosis (PBC) patients, 10 chronic aggressive hepatitis (CAH) patients and 21 healthy adults. Hepatic bile taken from patients operated on for lithiasis of the biliary tract was fractionated into five fractions with Sepharose 6B gel. A subtoxic dose of each fraction was determined in the healthy adults, and used as the antigen for LMIT. Out of the 5 fractions, only the third fraction led to an LMIT positive response in 8 out of 11 (73%) PBC patients and in 1 out of 10 (10%) CAH patients. The difference between PBC and CAH was significant (p less than 0.005). The remaining 3 PBC patients with LMIT negative responses were all under D-penicillamine treatment. Antibody to each fraction was prepared in rabbits. Using the antibodies after absorption with human serum, the localization of the antigens which were present in each fraction was investigated immunohistochemically using human liver sections. The antigen to the anti-first fraction antibody was detected specifically in the epithelial cells of the bile ducts and the ductules, and the antigen to the anti-third fraction antibody was detected specifically on the membrane of the bile canalicules. The third fraction was fractionated into three fractions by Sephadex G-200 gel. Only the first of the 3 fractions showed an LMIT positive response in 3 PBC patients, and its molecular weight was determined to be about 500,000. It is concluded that PBC patients develop cellular immunity against canalicular-antigen-containing fractions but not ductal-antigen-containing ones.

Antigens↗

Electron microscopy of granulomatous lesions of the liver in primary biliary cirrhosis.

Three granulomas in the portal tract and 9 bile ducts with typical features of chronic non-suppurative destructive cholangitis (CNSDC) associated with dispersed epithelioid cells were examined by electron microscopy in 10 patients with primary biliary cirrhosis (PBC). Vesicular epithelioid cells, which contained numerous single-membrane bound vesicles, predominated in the granulomas. On the other hand, immature epithelioid cells and activated macrophages were more often observed near epithelial cells of the bile ducts with CNSDC than in the granulomas. These macrophages seemed to be activated by epithelial cells of the bile ducts and develop into epithelioid cells. Honeycomb-like membranous labyrinths containing electron dense substances were frequently observed in epithelioid cells and were likely a special form of phagosome. The substances in the labyrinths seemed to be derived from organellae of necrotic cells and extracellular interstitial tissues. Subplasmalemmal linear densities (SPLD) were observed at the cytoplasmic boundary and at intracytoplasmic membranous labyrinth. The roles of SPLD were discussed.

Epithelium↗

Scanning electron microscopy and the study of Fc and C3b receptors of cultured fat-storing cells from rat liver.

Non-parenchymal fat-storing cells (FSCs) were isolated from rat liver by Metrizamide density centrifugation after liver perfusion with media containing pronase and/or collagenase. These cells were cultured in Williams' E medium with 20% fetal calf serum under the usual conditions. FSCs, identified by vitamin A-specific fluorescence (VAF), were viewed under conventional light microscopy 24, 48 and 72 h after seeding. At 24 h, some FSCs remained hemispheric; at 48 h all FSCs were well spread out, and at 72 h the number of FSCs had increased and the VAF intensity had become weaker. Scanning electron microscopy revealed that the features of the FSCs clearly differed from those of the other non-parenchymal cells. The in vitro FSC features closely resembled the in vivo features. FSCs cultured for 48 h had flattened, triangular or oval shapes with fairly smooth surfaces that showed scattered microvilli 0.1 micron long. Two types of processes, long slender (130 microns maximum length) and short broad ones, protruded from the cell body. These processes had smaller projections 0.2 micron wide that looked like fern leaves. Many lipid droplets could be seen under the cell surface. IgG-coated sheep erythrocytes (EAs) and IgM-C3-coated ox erythrocytes (EACs) were used to investigate whether there are Fc and C3b receptors on the FSCs. No rosette-formation characteristic of EAs or EACs was present on the FSCs; proof that FSCs have neither receptor.

Animals↗