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S Saheki

Publications and source records attributed to S Saheki.

At least 37 records · Page 2Linked to original sources

Purification of the murine heat-stable antigen from erythrocytes.

The rat anti-mouse erythrocyte (MRBC) monoclonal antibody (mAb), R13, has been developed. The MRBC membrane protein recognized by R13 (R13-Ag) can be purified by loading the butanol-extracted MRBC membrane solution on a R13-conjugated Cellulofine column in the presence of 0.1% CHAPS followed by elution with 1% CHAPS. The amino acid sequence of the affinity-purified R13-Ag corresponded to that predicted from the cDNA for the murine heat-stable antigen. It was revealed that the actual heat-stable antigen was composed of 27 amino acids.

Amino Acid Sequence↗

Intestinal type alkaline phosphatase hyperphosphatasemia associated with liver cirrhosis.

Hyperphosphatasemia due to increased intestinal type serum alkaline phosphatase was noted in a 48-year-old male who had asymptomatic liver cirrhosis. The alkaline phosphatase activity in the serum was 828 U/l (our reference range in adults: 57-194 U/l), 94% of which was of the intestinal type as measured by an immunoprecipitation method. The intestinal component of alkaline phosphatase was separated into two major and some minor components using electrophoresis and isoelectrofocusing. One of the major components had similar mobility to that of a standard intestinal enzyme purified from adult intestine. The components were heat-labile and neuraminidase-resistant. Serial lectin affinity chromatography, however, indicated that sugar chain compositions of the alkaline phosphatase were different from those of the standard tissue intestinal enzyme. These results and further enzymological studies suggest that the patient's serum alkaline phosphatase basically consisted of several intestine-like isoforms.

Alkaline Phosphatase↗

cDNA cloning of a neural visinin-like Ca(2+)-binding protein.

A 21,000-dalton Ca(2+)-binding protein (Walsh, M.P., Valentine, K.A., Ngai, P.K., Carruthers, C.A., and Hollengerg, M.D. (1984) Biochem. J. 224, 117-127) was purified from the rat brain and through the use of oligonucleotide probe based on partial amino acid sequence, cDNA clones were obtained from rat brain cDNA library. The complete amino acid sequence deduced from the cDNA contains 191 residues and has a calculated molecular mass of 22,142 daltons. There are three potential Ca(2+)-binding sites like the EF hands in the sequence. It displays striking sequence homology with visinin and recoverin, retina-specific Ca(2+)-binding proteins. Northern blot analysis revealed that the protein is highly and specifically expressed in the brain.

Amino Acid Sequence↗

Composition of very low density lipoproteins and in vitro effect of lipoprotein lipase.

In order to clarify the relationship between composition and lipolytic responses to lipoprotein lipase (LPL), very low density lipoproteins (VLDL) from rats or humans were incubated with a commercially available LPL or with a partially purified LPL from postheparin human plasma and fatty acids released from VLDL were determined in vitro. VLDL from rats fed a diet containing 0.25% cholesterol for 6 months were rich in cholesterol and poor in triglycerides, and released less fatty acids from incubation with LPL than those from control rats. VLDL from normo-and hypertriglyceridemic human subjects were incubated with LPL. The fatty acid release poorly correlated with the apoprotein ratios of VLDL, apo C-III/C-II, B/E, and C/E with the exception of apo B/C, but it correlated well with the ratio of triglyceride/either one of the surface components including total apoproteins, free cholesterol and phospholipids in VLDL or the ratio of the triglyceride/total sum of the surface components. The correlation coefficients between fatty acid release and a ratio of triglyceride/total surface components were 0.774 (using the commercially available LPL) and 0.786 (using the partially purified human LPL). The fatty acid release increased after pretreatment of VLDL with phospholipase A2. The phospholipid content of VLDL was reduced without significant changes in other VLDL components. Thus, the responses of VLDL to LPL treatment may depend mainly upon the surface: core relationship of VLDL rather than its apoprotein composition except in rare clinical cases such as apo C-II deficiency.

Animals↗

Molecular cloning and expression of cDNAs coding for soluble guanylate cyclase from rat lung.

Complementary DNA clones corresponding to the 70- and 82-kDa subunits of soluble guanylate cyclase of rat lung have been isolated. Blot hybridization of total poly(A)+ RNA from rat tissues detected mRNA of about 3.4 kilobases for the 70-kDa subunit and about 5.5 kilobases for the 82-kDa subunit. Messenger RNA levels of both subunits were abundant in lung and cerebrum, moderate in cerebellum, heart, and kidney, and low in liver and muscle, consistent with previously described enzyme activities in these tissues. Southern blot analysis of high molecular weight genomic DNA from rat liver indicated that the genes for the 70- and 82-kDa subunits are different. The carboxyl-terminal region of the 70- and 82-kDa subunits showed a high degree of homology and also had a partial homology with the putative catalytic domain of particulate guanylate cyclase and adenylate cyclase, indicating that both the 70- and 82-kDa subunits have catalytic domains. The cDNAs were subcloned to an expression vector and transfected to L cells. The cells transfected with cDNA of the 70-kDa subunit or the 82-kDa subunit showed no guanylate cyclase activity, whereas the cells transfected with both the 70- and 82-kDa subunit cDNAs showed significant guanylate cyclase activity that was activated markedly by sodium nitroprusside. These data suggest that both subunits are required for both the basal catalytic and regulatory activity of soluble guanylate cyclase. Presumably both catalytic subunits must be present and interactive to permit synthesis of cyclic GMP and nitrovasodilator activation.

Amino Acid Sequence↗

Radiation inactivation target-size analysis of soluble guanylate cyclase.

The soluble form of guanylate cyclase, which is a heterodimer of two subunits with molecular weights of 82,000 and 70,000, was analyzed by radiation inactivation experiments to determine its functional size. Lyophilized crude extract from rat lung or the purified enzyme were irradiated with different doses from 60Co gamma-rays, and the residual activities were measured in the presence or absence of a potent activator, sodium nitroprusside. The target sizes for the basal activity and for the activity in the presence of sodium nitroprusside were calculated from the decay curve was 77 and 192 kDa, respectively, on the crude enzyme, or as 71 and 163 kDa, respectively, on the purified enzyme. The size for the activatable form of the enzyme was more than twice that of the basal activity and close to the size of the holoenzyme, implying that the enzyme activity must reside on one of the subunits and the activation by sodium nitroprusside requires interaction of both subunits.

Animals↗

[A case of holoprosencephaly with a flat electroencephalogram].

A case of alobar type of holoprosencephaly, a severe impairment of the development of central nervous system, is presented. This is a case report of 2-month-old boy who had a peculiar physiognomy with a microcephalus and an undeveloped forehead. Echoencephalography showed a defect of almost all cerebellum and a singular ventricle accompanied with severe hydrocephalus. However, his brain stem and cerebellum could be confirmed. His electroencephalogram showed complete flat waves and failed to respond to visual evoked potential test (VEP) and auditory brain stem response test (ABR). Any chromosomal abnormalities were not found.

Echoencephalography↗

Phosphorylation of the 27-kDa gap junction protein by protein kinase C in vitro and in rat hepatocytes.

We previously demonstrated that the 27-kDa major component protein in rat liver gap junctions was phosphorylated by protein kinase C in vitro (Takeda, A. et al. (1987) FEBS Lett. 210, 169-172). In this study, we examined this further and examined the phosphorylation of the 27-kDa gap junction protein in rat hepatocytes by metabolically labeling cells with [32P]orthophosphate and using a monoclonal antibody to immunoprecipitate the protein. The in vitro phosphorylation was inhibited by monoclonal antibodies recognizing the carboxyl- (C-)terminal domain of the 27-kDa protein. Protease digestion analysis revealed that phosphorylation occurred at the C-terminal domain. In rat hepatocytes, the phorbol esters, 12-O-tetradecanoylphorbol-13-acetate and phorbol-12,13-dibutyrate, stimulated the 27-kDa protein phosphorylation, whereas 4 alpha-phorbol-12,13-didecanoate did not. 1-Oleoyl-2-acetyl-sn-glycerol also stimulated the 27-kDa protein phosphorylation. In addition, norepinephrine stimulated the phosphorylation and pretreatment of hepatocytes with staurosporine, a potent inhibitor of protein kinase C, inhibited this stimulatory effect of norepinephrine. Both in vitro and in hepatocytes, analysis of chemical cleavage of the 27-kDa phosphoprotein revealed that phosphorylation occurred mainly at a 10-kDa fragment which the antibodies recognized. These results indicate that protein kinase C phosphorylates the 27-kDa gap junction protein, not only in vitro but also in hepatocytes, at the C-terminal domain of the protein.

Amino Acids↗

Molecular cloning of a cDNA coding for 70 kilodalton subunit of soluble guanylate cyclase from rat lung.

A complementary DNA clone corresponding to the 70 kDa subunit of soluble guanylate cyclase (EC 4.6.1.2) of rat lung has been isolated. The primary structure of the cDNA consisted of 3063 nucleotides including a 1857-nucleotide coding region for 619 amino acids, and the calculated molecular weight was 70476. Blot hybridization of total poly(A)+RNAs from rat tissues detected a mRNA of about 3.4 kilobases. The amount of mRNA was abundant in lung, cerebrum and cerebellum, moderate in heart and kidney, and low in liver and muscle. Southern blot analysis of high molecular weight genomic DNA from rat liver indicated the presence of one gene in the rat haploid genome. The amino acid sequence of the 70 kDa subunit has partial homology with particulate guanylate cyclase from sea-urchin sperm, and protein phosphatase inhibitor I.

Amino Acid Sequence↗

Soluble guanylate cyclase from rat lung exists as a heterodimer.

The soluble form of guanylate cyclase (EC 4.6.1.2) from rat lung has been purified to homogeneity by a one-step immunoaffinity chromatographic procedure. The purified soluble guanylate cyclase has specific activities of 432 and 49.1 nmol of cyclic GMP formed per min/mg protein with manganese and magnesium ions as a cofactor, respectively. This represents a purification of approximately 2,000-fold with a 50% recovery. The native enzyme has a molecular weight of 150,000 and a Stokes radius of 4.8 nm as determined on Spherogel TSK-G3000SW gel permeation chromatography. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis results in two protein-staining bands with molecular weights of 82,000 and 70,000. The purified soluble guanylate cyclase was also subjected to native polyacrylamide gel electrophoresis, isoelectric focusing electrophoresis, ion exchange chromatography, and GTP-agarose affinity chromatography. These additional purification procedures confirmed the presence of a single protein peak coincident with enzyme activity. The two subunits separated on sodium dodecyl sulfate-polyacrylamide gel electrophoresis were shown to have different primary structures by immunoblotting with monoclonal and polyclonal antibodies prepared against purified soluble guanylate cyclase and by peptide mapping with papain or Staphylococcus aureus V8 protease treatment. These data demonstrate that soluble guanylate cyclase purified from rat lung is a heterodimer composed of 82,000- and 70,000-dalton subunits with different primary structures.

Animals↗

Co-purification of an atrial natriuretic factor receptor and particulate guanylate cyclase from rat lung.

An atrial natriuretic factor (ANF) receptor from rat lung was solubilized with Lubrol-PX and purified by sequential chromatographic steps on GTP-agarose, DEAE-Sephacel, phenyl-agarose, and wheat germ agglutinin-agarose. The ANF receptor was enriched 19,000-fold. The purified receptor has a binding profile and properties that correspond to the affinity and specificity found in membranes and crude detergent extracts. Polyacrylamide gel electrophoresis of the purified preparation in the presence of sodium dodecyl sulfate and dithiothreitol showed the presence of one major protein band with a molecular mass of 120,000 daltons. When purified preparations were incubated with 125I-ANF, then cross-linked with disuccinimidyl suberate, the 120,000-dalton protein was specifically radiolabeled. This high affinity binding site for ANF co-purified with particulate guanylate cyclase. Particulate guanylate cyclase was purified to a specific activity of 19 mumol cyclic GMP produced/min/mg of protein utilizing Mn-GTP as substrate. This represented a 15,000-fold purification compared to the initial lung membrane preparation with Lubrol-PX. Gel permeation high performance liquid chromatography and glycerol density gradient sedimentation studies of the purified preparation also resulted in co-migration of specific ANF binding and guanylate cyclase activities. The co-purification of these activities suggests that both ANF binding and guanylate cyclase activities reside in the same macromolecular complex. Presumably ANF binding occurs at the external membrane surface and cyclic GMP synthesis at the internal membrane surface of this transmembrane glycoprotein.

Animals↗

Assay of inorganic phosphate in the mild pH range, suitable for measurement of glycogen phosphorylase activity.

A spectrophotometric assay of orthophosphate at mild pH is described. Phosphomolybdate complex is reduced by ascorbic acid at pH 5.0 in the presence of Zn2+. The chromophore produced is measured at 850 nm. The method is simple and sensitive, and the reaction proceeds normally in the presence of "interfering substances" such as metal-chelating agents and thiol compounds. The method could be widely employed for the assay of phosphate-releasing reaction from labile organic phosphates, such as for the assay of glycogen phosphorylase.

Acetates↗

Peptide structures of pyruvate kinase isozymes: 2. Origins of types M1 and M2 isozymes suggested from species-variations in their peptide maps.

Pyruvate kinase (ATP:pyruvate 2-O-phosphotransferase, EC 2.7.1.40) isozymes were purified: type M1 and M2 isozymes from rat, mouse and rabbit, type M1 from bull frog and type L from rat and mouse. The amino acid composition of type M1 and M2 isozymes from various species were very similar and those of type L isozymes from rat and mouse also very similar. The NH2-terminals to type M1 and M2 from rat and mouse were (Pro-Lys-Pro-), but those of the other enzymes appeared to be blocked. The COOH-terminals of type M1 and M2 from rat, mouse and rabbit were (-Val-Pro). Comparison of tryptic peptide maps of type M1 and M2 from rat, mouse and rabbit indicated that type M1 and M2 could not be produced by post-synthesis modification, but could be encoded by different type-specific mRNAs. Comparative studies on type M1 and M2 of different species showed that type M1-specific peptide spots were highly variable, whereas type M2-specific peptide spots were highly conserved. The type L isozyme showed marked species variation, indicating that this differentiated isozyme evolved more rapidly than type M2, which may be a prototype or undifferentiated isozyme.

Amino Acid Sequence↗

Novel and sensitive activity stains on polyacrylamide gel of serine and threonine dehydratase and ornithine aminotransferase.

A sensitive activity stain for serine and threonine dehydratase is described. After electrophoresis on thin-layer polyacrylamide gel, a reaction mixture containing L-serine or L-threonine as a substrate, NADH, lactate dehydrogenase and agar was solidified on the gel. The oxidation of NADH was recorded by contact printing on photographic paper with UV light. A novel activity stain for ornithine aminotransferase in the gel is also described. A reaction mixture containing substrates, o-aminobenzaldehyde and agar was solidified on the gel. A yellow color developed in a reaction between pyrroline-5-carboxylate and o-aminobenzaldehyde. The photograph was taken by contact printing. Both of the methods are highly sensitive and can detect less than 0.01 unit (mumol product/min at 37 degrees C) of each enzyme.

Animals↗

Isozyme patterns of pyruvate kinase and differentiation of Friend leukemia cells.

The isozyme patterns of glycolytic enzymes of Friend leukemia cells (FLC) were compared with those of erythrocytes and erythroblasts. Erythrocyte-specific R types of pyruvate kinase (PK) were clearly observed in phenylhydrazine-induced mouse erythroblast, and much less amount of them was also observed in Friend leukemia cells. When FLC were induced to differentiate by hexamethylene-bisacetamide (HMBA), the R types were slightly reduced. When the induction of differentiation was inhibited by 12-O-tetradecanoylphorbol 13-acetate (TPA), the R types and M2-R hybrids rather increased. These results are reverse of those obtained when hemoglobin production is used as a marker of differentiation. Isozyme patterns of lactic dehydrogenase and aldolase did not change during differentiation of FLC induced by HMBA, and were the same as those of mouse erythroblasts and erythrocytes.

Acetamides↗

Changes in pyruvate kinase isozymes of rat small intestine during development and the synergistic effect on them of thyroid and glucocorticoid hormones.

Pyruvate kinase isozymes in rat small intestine changed markedly during the postnatal period. The activities of type M2 subunits rapidly increased before weaning, while those of type L subunits decreased slightly. The administration of hydrocortisone induced normal changes prematurely, whereas the administration of thyroxine increased their extent. On simultaneous administration, the two hormones had synergistic effects.

Aging↗