Search PubMed⌕ Search

Biomedical subjects

C Sato

Publications and source records attributed to C Sato.

At least 307 records · Page 17Linked to original sources

Intranuclear appearance of the phosphorylated form of cytoskeleton-associated 350-kDa proteins in U1-ribonucleoprotein regions after growth stimulation of fibroblasts.

Cytoskeleton-associated 350-kDa and 80-kDa polypeptides, which were immunoprecipitated with polyclonal antibody against microtubule-associated protein 1 (MAP-1), were rapidly phosphorylated on mitogenic stimulation of quiescent fibroblasts with serum or growth factors. The enhanced phosphorylation was evident within 5 min and reached a maximum 2 hr after the stimulation. Phosphorylated MAP-1 analogues were first detected in the cytoplasm around the microtubule-organizing center and then in the nucleus by immunofluorescent staining with a monoclonal antibody that recognized the phosphorylated form of MAP-1. The monoclonal antibody reacted with the 350-kDa protein in immunoblot analysis and immunostained intranuclear speckles; both immunoreactions were abolished by treatment with alkaline or acid phosphatase. The nuclear speckles stained by the monoclonal antibody were also stained by anti-U1 small nuclear ribonucleoprotein antibodies on double immunofluorescence, suggesting that the stained regions are sites of maturation of messenger RNA. These results support the idea that part of the cytoskeleton-associated 350-kDa protein is phosphorylated and transferred to the nuclear region of mRNA modification as a common early process after growth stimulation.

Animals↗

Structural differences of microtubule associated proteins from brain probed by tryptic peptide mapping.

Microtubules were purified from porcine brain by two cycles of temperature-dependent assembly and disassembly, then microtubule associated proteins, MAP-1, MAP-2, and tau, were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Two-dimensional tryptic peptide maps of radioiodinated polypeptides were compared with each other by means of mixed sample experiments, and the following results were obtained. Subspecies of MAP-1 (355-345 and 325 kDa) showed about 33% homology in the tryptic peptide maps. Structural homology of MAP-1 and MAP-2 was very low; only 3 out of 40 peptide spots of MAP-2 were identical with those of MAP-1-C. Subspecies of tau proteins (65 and 60 kDa) were very closely related. Structural similarity between MAP-2 and tau was very low. MAP-1 from porcine brain and rat brain showed very high structural homology.

Animals↗

Integration of region X of hepatitis B virus genome in human primary hepatocellular carcinomas propagated in nude mice.

Tissues of human primary hepatocellular carcinoma (PHC) from six patients infected with hepatitis B virus (HBV) were propagated in nude mice, as well as a strain of hepatitis B surface antigen-positive PHC (PLC/PRF/5). Integration of viral DNA into chromosomal DNA of tumour cells was evaluated by the capacity to hybridize with radiolabelled DNA probes, each representing fundamental parts of the HBV genome, that is S and C genes and regions pre-S and X. All PHC cells possessed region X integrated in their chromosomes. However, integration of the S gene, C gene and region pre-S was found in only six of the seven PHCs. Based on these findings, the integration of region X seems to be most closely associated with carcinogenesis in HBV infection.

Animals↗

Rapid proteolysis of brain MAP-1 related cytoskeleton-associated 350kd protein by purified calpain.

Microtubule associated protein-1 of brain and its intracellular 350kd analogues were highly sensitive to purified Ca2+-dependent cysteine proteinase (calpain). After 15 second digestion, we detected intermediate degradation products of MAP-1 by immunoblotting using anti-MAP-1 antibody as 290, 260, 220, 170, 140, 112, 80, 68, and 32kd polypeptides. These values corresponded to the molecular weights of the immunoreactive polypeptides of microtubule-enriched cytoskeletons isolated from HeLa and SV-3Y1 cells, suggesting the action of endogenous calpain on intracellular MAP-1 analogues in vivo or during the course of preparation.

Animals↗

Colon carcinoma K-ras 2 oncogene of a familial polyposis coli patient.

The DNA of a colon carcinoma-derived cell line (KMS-4) and that of skin fibroblasts from a familial polyposis coli patient were transfected into NIH3T3 cells in order to detect oncogenes associated with the disease. No transformation was observed with the normal skin fibroblast DNA, while the KMS-4 cell DNA was able to transform NIH3T3 cells. Through hybridization with known oncogene probes, the KMS-4 transforming gene was found to be a human activated c-K-ras 2 oncogene. Sequence analysis of the molecularly cloned KMS-4 c-K-ras 2 oncogene showed a single nucleotide transition from G to T at the 12th codon. This results in substitution of cysteine for glycine at this position. On using labeled synthetic oligonucleotides to detect the mutation in codon 12, we found the G to T transition in colon carcinoma cells. This suggests that activation of the c-K-ras 2 oncogene could be associated with colon carcinoma induction.

Adenomatous Polyposis Coli↗

Possible cytoskeletal association of 69,000- and 68,000-dalton heat shock proteins and structural relations among heat shock proteins in murine mastocytoma cells.

When murine mastocytoma cells (FMA 1) were heat shocked (42 degrees C for 4 h), nine heat shock proteins (HSPs) were detected by two-dimensional gel electrophoresis. Their apparent molecular weights were 100, 85, 69, 68, 32, 30, and 23 kDa (3 of 23 kDa). The structural homology of 4, 69, 68, 32, and 30 kDa, was demonstrated by two-dimensional tryptic peptide mapping. The 69- and 68-kDa HSPs were purified and rabbit antisera against these HSPs were prepared. A small fraction (less than 10%) of the 69- and 68-kDa HSPs were copurified with the microtubules and were present in the Triton X-100/KCl cytoskeletal fraction as shown by immunoblotting with the antiserum and by peptide mapping. Our results are consistent with the hypothesis of a cytoskeletal role for HSPs.

Animals↗

Neonatal malnutrition in the rat affects the delivery of sulfatides from microsomes and their entry into myelin.

Brain slices from 18 day old normal and malnourished rats were incubated in the presence of [35S]sulfate to explore its incorporation into sulfatides of a total brain homogenate and the appearance of labeled sulfatides in different subcellular fractions. While the incorporation of label into sulfatides of the total homogenate was similar in both groups of animals, in subcellular fractions separated on a linear sucrose density gradient, labeling of sulfatides in malnourished animals was relatively higher in the region corresponding to the microsomal fraction. Time course incorporation and pulse-chase experiments were carried out to explore the kinetics of labeling of microsomal and myelin sulfatides. In pulse-chase experiments, normal controls showed a decrease in the specific radioactivity of sulfatides in the microsomal fraction after the chase, which was not observed in malnourished animals, while the appearance of labeled sulfatides in the myelin fraction of the latter group of animals was found to be lower than in normals. These results suggest that in neonatal malnutrition there is a defect in the transport of de novo synthesized sulfatides towards myelin or/and a problem in the assembly of these lipids into the myelin membrane.

Animals↗

Incorporation of [3H]thymidine into DNA and of [35S]sulfate into sulfatides of oligodendroglial cells during development: effect of malnutrition.

Incorporation of [3H]thymidine into DNA and of [35S]sulfate into sulfatides of oligodendroglial cells isolated from brain slices incubated with the radioactive precursor was studied in normal and malnourished rats at different ages. The pattern and the values of incorporation of [3H]thymidine into DNA were similar in both groups of animals. The maximum value of incorporation was observed at 7 days of age decreasing rapidly thereafter and leveling off between 18-21 days. In both groups of animals labeling of sulfatides attained a maximum at 18 days of age, showing similar values of incorporation up to that age. However, at 21 days of age; the values corresponding to malnourished rats were found to be 40% lower in comparison to controls. The results suggest that (a) proliferation of oligodendroglial cells stops at similar ages in normal and malnourished rats, (b) expression of sulfatide synthesis by oligodendroglial cells is similar in both groups of animals up to 18 days, and (c) the starved rats seem to be unable to maintain a normal synthesis of these galactolipids throughout the entire period of active myelinogenesis.

Age Factors↗

Localization of 350K molecular weight and related proteins in both the cytoskeleton and nuclear flecks that increase during G1 phase.

Monoclonal and polyclonal antibodies were raised against the highest molecular weight microtubule-associated protein (MAP-1) isolated from brain. Immunoblotting with the antibodies revealed the presence of cross-reactive protein of 350K or less on whole cells, isolated nuclei and cellular microtubules. Two-dimensional peptide maps showed substantial homology of immunoprecipitated cellular proteins of 350K, 80K and 51K with a 25K fragment of brain MAP-1. On antibody staining, immunofluorescence was seen on a cytoplasmic network, the mitotic spindle, the centrosome, and intranuclear flecks. The antibody causing immunofluorescence in all these sites was absorbed most effectively with slices of blotted membrane which contained the 350K protein. These results suggest that the cross-reactive molecules in diverse sites belong to the family of the 350K protein. The number of nuclear flecks and the amount of bound radioactivity of 125I-antibody almost doubled during G1 phase.

Animals↗

Factors controlling the appearance of the immunofluorescent nuclear dots revealed with monoclonal antibody against microtubule-associated protein-1.

A monoclonal antibody raised against microtubule-associated protein-1 (MAP-1) binds to nuclei of normal human fibroblasts, its binding site being detected as intranuclear immunofluorescent dots. The percentage of cells showing these dots increased with insulin, hydrocortisone, epidermal growth factor (EGF), and transferrin in serum-free medium, their effects decreasing in this order. The appearance of dots induced by serum or insulin plus hydrocortisone was dependent on the Ca2+ concentration of the medium. The Ca2+ ionophore A23187 increased the rate of appearance of cells containing dots. Conversely, the calmodulin inhibitor W-7 blocked their appearance and decreased the number of cells containing dots. The dose-response curves of W-7 for inhibition of the appearance of dots and of DNA synthesis were essentially identical. These results suggest that the appearance of intranuclear MAP-1 antigen is controlled mainly by insulin, Ca2+ and calmodulin and is associated with DNA replication.

Antibodies, Monoclonal↗

Isolation and characteristics of a leukemia-growth-promoting factor from calf thymus.

Leukemia-growth-promoting factor (LGPF) as we previously reported stimulates the growth of a murine leukemia subline (L17R) extensively. LGPF was isolated and 10(4) fold purified from calf thymuses by a combination of ammonium sulfate precipitation, Sephadex G-100 chromatography, hydroxylapatite chromatography, and Mono S-fast protein liquid chromatography (Mono S-FPLC). The mol. wt of LGPF was estimated to be approximately 25,000 a.m.u. from the elution pattern of Sephadex G-100 chromatography. The activity had high affinity for Mono S beads which are cation exchangers. Mono S fractions of LGPF are effective at a low concentration of 5 ng/ml. The activity was inactivated by heat (56 degrees C, 30 min), 1 mg/ml trypsin (37 degrees C, 1h), and 50 mM dithiothreitol (20 degrees C, 1h). The growth L17R leukemia cells are not only stimulated by LGPF, but also by pituitary and brain fibroblast growth factor (FGF). These data strongly suggest that LGPF is a heat sensitive cationic protein(s) acting as a member of FGF family.

Animals↗

Increased hepatotoxicity of acetaminophen by concomitant administration of caffeine in the rat.

Since caffeine is frequently co-administered with acetaminophen, it is of clinical interest to study the effect of caffeine on the hepatotoxicity of acetaminophen. In male Sprague-Dawley rats fasted for 18 h, concomitant administration of caffeine (0.1 g/kg, i.p.) as judged by increased serum enzyme activities and increased incidence of hepatic necrosis. Careful observations on hepatotoxicity are suggested when acetaminophen is prescribed with caffeine.

Acetaminophen↗