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Biomedical subjects

T Isobe

Publications and source records attributed to T Isobe.

At least 19 recordsLinked to original sources

Activation of protein kinase C by the 14-3-3 proteins homologous with Exo1 protein that stimulates calcium-dependent exocytosis.

The 14-3-3 proteins are a family of acidic proteins found mainly in the brain and are suggested to have a role in monoamine synthesis based on their ability to activate tyrosine and tryptophan hydroxylases in the presence of type II Ca2+/calmodulin-dependent protein kinase. Recently, however, it has been demonstrated that a member of the 14-3-3 family, termed Exo1, stimulates Ca(2+)-dependent exocytosis in permeabilized adrenal chromaffin cells, suggesting that this protein family may influence the protein kinase C-mediated control of Ca(2+)-dependent exocytosis. Here we show that the 14-3-3 proteins activate protein kinase C at about 2-fold more than the known level of the activated protein kinase, i.e. the activity of protein kinase C in the presence of Ca2+ and phospholipids. This raises the possibility that the cellular activity of protein kinase C is regulated by diverse members of the 14-3-3 family and that the reported ability of Exo1 to reactivate Ca(2+)-dependent exocytosis is based on its stimulatory effect on protein kinase C activity. The 14-3-3 family, therefore, appears to be a multifunctional regulator of cell signalling processes mediated by two types of Ca(2+)-dependent protein kinase, protein kinase C and type II calmodulin-dependent protein kinase.

14-3-3 Proteins

A rat cerebellar protein containing the cdc10/SWI6 motif.

Systematic analysis of soluble proteins in developing rat cerebellum by an automated two-dimensional liquid-chromatography system detected a number of proteins which increased transiently during the initial stage of postnatal development. One of the proteins, V-1, was isolated using a liquid-chromatography system, and its amino acid sequence was determined by analysis of the purified protein. The sequence showed that the V-1 protein consists of 117 amino acids with an acetylated N-terminus, and has 2.5 internal sequence repeats of 33 amino acids. Computer retrieval of the sequence indicated that the repeated sequences have a structural characteristics of the cdc10/SWI6 motif, which is found in a series of proteins, including those involved in cell-cycle control and cell-fate determination in yeast, Drosophila melanogaster and Caenorhabditis elegans. The structure of V-1, coupled with its controlled expression in early postnatal development, implies a potential role for V-1 in cerebellar morphogenesis.

Amino Acid Sequence

cDNA cloning and chromosome assignment of the gene for human brain 14-3-3 protein eta chain.

We present the nucleotide sequence of a cDNA clone of mRNA encoding human 14-3-3 protein, a protein kinase-dependent activator of tyrosine and tryptophan hydroxylases and an endogenous inhibitor of protein kinase C. The 1,730-nucleotide sequence of the cloned cDNA contains 191 bp of a 5'-noncoding region, the complete 738 bp of coding region, and 801 bp of a 3'-noncoding region containing three canonical polyadenylation signals. The 14-3-3 protein eta chain cDNA encoded a polypeptide of 246 amino acids with a predicted molecular weight 28,196. The predicted amino acid sequence of human 14-3-3 protein eta was highly homologous to that of previously reported bovine and rat 14-3-3 proteins with only two amino acid differences. The sequence carries structural features as putative regions responsible for activation of tyrosine and tryptophan hydroxylases and for inhibition of Ca2+/phospholipid-dependent protein kinase C. Northern blot analysis demonstrated widespread expression of the 14-3-3 protein eta chain in cultured cell lines derived from various human tumors. These findings suggest the conservative functions of the 14-3-3 protein among species. Spot blot hybridization analysis with flow-sorted chromosomes showed that the human 14-3-3 protein eta chain gene is assigned to chromosome 22.

14-3-3 Proteins

Rare point mutation at codon 301 and 969 of FMS/M-CSF receptor in acute myelomonocytic and monocytic leukemia.

We have investigated whether point mutations occurred at codon 301 or 969 of FMS (M-CSF receptor) in 19 patients with acute myelomonocytic (M4) and monocytic leukemia (M5). Nineteen peripheral blood and bone marrow blood samples collected from M4 and M5 patients were examined by using polymerase chain reaction and hybridization to allele specific oligonucleotide probes. Mutations at codon 301 and 969 of FMS were not detected in any samples. FMS gene mutations at codon 301 and 969 were rarely involved in M4 and M5 patients in Japan.

Amino Acid Sequence

14-3-3 proteins: a highly conserved, widespread family of eukaryotic proteins.

A family of proteins known as 14-3-3 is currently receiving increased attention by investigators studying a broad range of biological systems, including plants and invertebrates. The outstanding feature of this family is the extraordinarily high sequence conservation observed. Current thinking indicates that these proteins may function as regulators in signal transduction/phosphorylation mechanisms.

14-3-3 Proteins

[Percutaneous transhepatic intraportal administration of amphotericin B to a patient with multiple liver abscesses due to Candida albicans: with monitoring by fungal index as a parameter of Candida volume].

A 59-year-old female with acute promyelocytic leukemia in remission was admitted to our center because of an episode of incidental high fever with general fatigue. She was found to have hepatomegaly. Abdominal CT revealed multiple liver abscesses and a positive culture was obtained for candida albicans from an aspirated abscess. She was treated with percutaneous transhepatic intraportal administration of amphotericin B in addition to oral and intravenous administration. We confirmed the remission of these abscesses by means of the fungal index which is the difference between the values of the limulus test and endotoxin specific test. The fungal index appears to be useful for early diagnosis and treatment of fungal infection.

Amphotericin B

[Monitoring of cyclosporin A concentration in whole blood with fluorescence polarization immunoassay after bone marrow transplantation].

Cyclosporin A, a strong immunosuppressive agent, has been used to prevent rejection or graft-versus-host disease (GVHD) after organ transplantations including bone marrow transplantations. Monitoring of cyclosporin A concentration in whole blood is necessary for its high frequency of side effects. The authors to measured its concentration by means of radioimmunoassay (RIA) as well as fluorescence polarization Immunoassay (FPIA) a cases after bone marrow transplantation. There was a good correlation between these two methods. FPIA is less specific for cyclosporin A than RIA, but it is an easier method. It is important to measure the concentration of cyclosporin with FPIA because there are metabolites of cyclosporin A which cannot be measured with RIA. Thus FPIA can be applied to the routine monitoring of cyclosporin.

Bone Marrow Transplantation

[Clinical feature of the diabetic patients with recurrent pulmonary tuberculosis].

We investigated the clinical feature of 22 diabetic patients diagnosed as having recurrent pulmonary tuberculosis. More than half of the patients relapsed within five years after discharge from the hospital. The mean serum albumin concentration of those patients who experienced relapses within three years was significantly lower than that of the patients who experienced relapses a period of time greater than three years. We recognized a significant negative correlation between the recurrent period and body mass index or fasting plasma glucose values. Among these patients, 50% of them ceased treatment for diabetes mellitus personally or had not been diagnosed as having diabetes mellitus before the relapse. All of the patients who ceased treatment for diabetes mellitus before readmission were able to obtain good plasma glucose control only through diet therapy during their first hospital admission for pulmonary tuberculosis. From this study, We concluded that strict plasma glucose control is important for the prevention of a relapse of the mycobacterial infection in patients with diabetes mellitus.

Adult

Automated two-dimensional liquid chromatographic system for mapping proteins in highly complex mixtures.

An automated two-dimensional liquid chromatographic system was developed for systematic protein separations which could serve for analytical mapping and preparative separations of proteins. The system applies the principles of the column-switching technique, and consists of two different columns connected in tandem through an electrical column switching valve, two pumping systems to operate each column independently and a system controller to perform sequential chromatography on the two columns. A protein mixture is applied to the first-dimensional anion-exchange column and is separated by stepwise elution with an increasing sodium chloride concentration. The eluent is introduced directly to the second-dimensional reversed-phase column, and is further separated by gradient elution with an increasing acetonitrile concentration. The two elution stages are synchronized by a computer program. By this system, very complex protein mixtures such as crude cerebellar extracts were resolved reproducibly into ca. 200 peaks within 12 h. The method can be used for the total analysis of proteins in various tissues and cells without complicated premanupulation of samples, and allows the simultaneous analysis of a protein isolated by chromatography. The isolated protein is most suitable for use in the strategy of protein and gene sequence analysis.

Animals

Iron- and manganese-containing superoxide dismutases from Methylomonas J: identity of the protein moiety and amino acid sequence.

Mn-superoxide dismutase (SOD) and Fe-SOD were isolated from Methylomonas J, an aerobic methylotrophic bacterium, grown in methylamine media containing either manganese (Mn-rich medium) or iron (Fe-rich medium), respectively. The specific activity of the Mn-SOD was 2250 units mg-1 (mol of Mn)-1 (mol of dimer)-1, and the metal content of the enzyme was 0.98 mol of Mn and 0.12 mol of Fe per mole of dimer, while those of Fe-SOD were 88.5 units mg-1 (mol of Fe)-1 (mol of dimer)-1 and 1.04 mol of Fe and 0.02 mol of Mn. The electrophoretic mobilities in the presence of sodium dodecyl sulfate, with or without urea, and the chromatographic behavior on an HPLC column using an octadodecyl silicated column and a gel permeation column were identical. Amino acid compositions were practically indistinguishable in both SODs. The enzyme activity was restored by dialysis of an apoprotein obtained from the Mn-enzyme with either manganese sulfate or ferrous ammonium sulfate up to an activity level similar to that for the native Mn-SOD and the native Fe-SOD, respectively. The same result has been reported with the reconstitution using an apoprotein obtained from the Fe-enzyme [Yamakura, F., Matsumoto, T., & Terauchi, K. (1990) Free Radical Res. Commun. (in press)]. These results suggest the possibility that both types of SODs are composed of a single apoprotein synthesized in cells grown in either the Fe-rich medium or the Mn-rich medium.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Distinct forms of the protein kinase-dependent activator of tyrosine and tryptophan hydroxylases.

Tyrosine and tryptophan hydroxylases are the key enzymes in the regulation of catecholamine and serotonin levels in neurons and other endocrine cells. Among the mechanisms proposed for the modulation of activity, phosphorylation of the enzyme is believed to be of functional significance with respect to the stimulus-response coupling, but the precise mechanism is unknown. Here, we show the existence of multiple, distinct forms of the 14-3-3 activator protein, a neuronal protein essential for activation of tyrosine and tryptophan hydroxylases by Ca2+/calmodulin-dependent protein kinase type II. Bovine brain 14-3-3 protein was resolved by reversed-phase chromatography into seven polypeptides (alpha to eta), all of which were active towards tryptophan hydroxylase when the renatured preparations were assayed in the presence of Ca2+, calmodulin and the protein kinase. Determination of the amino acid sequences of the beta and gamma chains and comparison of the sequences with the previously determined sequence of the eta chain revealed that these molecules are highly homologous, and share a common structural feature in containing an extremely acidic C-terminal region predicted as a domain for interaction with the phosphorylated hydroxylases. Northern blot analysis indicated that the beta, gamma and eta chain are expressed abundantly in the brain; however, these polypeptides appear to be expressed with different tissue specificities because gamma mRNA is found only in the brain, while lower levels of beta and eta mRNAs are detected in several other tissues. These findings suggest the involvement of a diverse family of the activator protein in the stimulus-coupled, Ca2(+)-dependent regulation of monoamine biosynthesis.

14-3-3 Proteins

Immunoglobulin production stimulating factor-II alpha (IPSF-II alpha) is glyceraldehyde-3-phosphate dehydrogenase like protein.

Amino acid sequence of the 36 KD protein which is the active subunit of immunoglobulin production stimulating factor-II alpha (IPSF-II alpha) derived from Burkitt's lymphoma Namalwa cells was analyzed for the 20 amino acids from N-terminus. The N-terminal amino acid sequence of this protein coincided very closely with glyceraldehyde-3-phosphate dehydrogenase (GPD; EC 1.2.1.12) derived from various origins. Especially, it was completely homologous with that of human liver GPD. Several GPD's derived from human erythrocyte, rabbit muscle and Bacillus stearothermophilus also stimulated IgM production of hybridomas, as well as IPSF-II alpha. Conversely, IPSF-II alpha had GPD enzymic activity as strong as rabbit muscle and B. stearothermophilus, and stronger than human erythrocyte GPD. These results suggested that 36 KD subunit of IPSF-II alpha was a GPD, or GPD like protein. The level of mRNA for IgM was not enhanced by IPSF-II alpha in hybridoma cells, though the IgM productivity of the cell was remarkably stimulated by the protein, indicating that IPSF-II alpha does not stimulate immunoglobulin production by enhancement of transcription.

Amino Acid Sequence

A novel protein induced in cortical epileptic focus of rat cerebrum: a possible linkage to epileptogenesis.

To precisely evaluate a protein-related mechanism of epileptogenesis, we quantitatively analyzed the 70-kDa protein (namely, P70), a specific protein found in the cobalt-induced epileptic focus, and examined its effect on the electrocorticogram (ECoG) and cortical neurons in cerebral slices and its immunocytochemical localization in rats. Cobalt-induced cortical epileptogenic cortex exhibited a marked induction of P70. Its initiation time was ahead of the generation of epileptogenic activities. The anticonvulsant phenytoin (PHT) attenuated the cobalt-induced epileptogenic activities, but failed to suppress protein induction. Injection of this protein into the motor region of normal rat cerebral cortex elicited an epileptic ECoG and behavioral seizures. It also caused epileptiform activity with paroxysmal depolarization shifts in cortical neurons. These epileptogenic phenomena elicited by P70 were abolished by prior treatment with PHT or phenobarbital. Immunocytochemical analysis with an antiserum against P70 revealed that the reactivity was confined to pyramidal cells only in the region of the focus and was mainly localized on somatic, dendritic, and nuclear membranes and microtubles. These findings suggest that P70 may be linked to epileptogenesis.

Animals

Molecular cloning of cDNA to rat 14-3-3 eta chain polypeptide and the neuronal expression of the mRNA in the central nervous system.

Activation of tyrosine and tryptophan hydroxylases, key enzymes for the catecholamine and serotonin biosynthesis, requires Ca2+/calmodulin-dependent protein kinase II and 14-3-3 protein which comprises a family of, at least, seven polypeptides in the bovine. Here we show that the amino acid sequence of the rat 14-3-3 eta chain deduced from the nucleotide sequence is completely identical to that of bovine counterpart. Using in situ hybridization the expression of mRNA for this protein is detected not only in the monoamine-synthetic neurons but also in many other discrete nuclei which synthesize neither catecholamine nor serotonin. The highly conservative structure between mammalian species and wider expression of this protein than expected in the central nervous system suggest that the 14-3-3 protein exerts some, though yet to be defined, functions fundamental to neuronal activities other than activation of the monoamine biosynthesis.

14-3-3 Proteins

Widespread distribution of the 14-3-3 protein in vertebrate brains and bovine tissues: correlation with the distributions of calcium-dependent protein kinases.

A highly specific antiserum was prepared against bovine brain 14-3-3 protein, a protein kinase-dependent activator of tyrosine and tryptophan hydroxylases. The immunoassay using this antiserum proved the presence of 14-3-3 protein in various bovine tissues and in brains of various vertebrate species. The quantitative analysis indicated that the tissue distribution of 14-3-3 protein is more closely related to the known distributions of the Ca2(+)-dependent protein kinases, i.e., Ca2+/calmodulin- and Ca2+/phospholipid-dependent protein kinases, rather than those of tyrosine and tryptophan hydroxylases. This result, together with the available data on this protein, suggests potential roles of the 14-3-3 protein in more diverse kinase-mediated processes than the predicted role in monoamine synthesis.

14-3-3 Proteins

[Ectopic salivary amylase-producing IgA- lambda-type multiple myeloma with expression of MDR-1/P-glycoprotein].

We report a case of ectopic salivary amylase-producing IgA- lambda-type multiple myeloma. A 70-year-old man was admitted because of anemia and renal failure. After chemotherapy for eight months, the serum amylase markedly increased. Amylase activity in the supernatant of cultured myeloma cells, which were obtained from the bone marrow, also increased. The myeloma cells expressed MDR-1/P-glycoprotein). The case implies the association of drug resistance and the ectopic amylase production in a case of multiple myeloma.

ATP Binding Cassette Transporter, Subfamily B, Mem