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M Kasuga

Publications and source records attributed to M Kasuga.

At least 271 records · Page 15Linked to original sources

Effect of long-term insulin deficiency and insulin treatment on the composition of triglyceride-rich lipoproteins and triglyceride turnover in rats.

The effect of long-term (4 months) insulin deficiency on triglyceride turnover was examined using Triton WR1339 in rats. Triglyceride secretion rate was estimated in rats 2 weeks and 4 months after induction of diabetes with 40 mg/kg of streptozotocin. By the second week diabetic rats showed prominent hyperglycemia and the plasma insulin level was very low. In spite of a lower triglyceride secretion rate compared to non-diabetic control rats, diabetic rats showed normotriglyceridemia. Thus, the estimated fractional catabolic rate for plasma triglyceride was decreased in the diabetic rats of 2 weeks duration. By the fourth month diabetic rats still showed a suppressed triglyceride secretion rate but plasma triglyceride was markedly higher than in the non-diabetic control rats. Therefore, their estimated fractional catabolic rate for plasma triglyceride was severely suppressed. They also showed hyperglycemia and hypercholesterolemia. The triglyceride-rich lipoprotein particles obtained after Triton injection in long-term diabetic rats were significantly cholesterol-enriched and triglyceride-depleted compared to control rats. These changes were already present in 2-week diabetic rats but the magnitude was significantly smaller that those in long-term diabetic rats. All of these abnormalities (including triglyceride turnover and the particle composition) were almost normalized by 2 weeks of insulin treatment (6 units/day). Thus, it was concluded from the present data that duration of insulin deficiency is an important determinant of triglyceride removal rate from the circulation in rats. Further modification of lipid composition of triglyceride-rich lipoprotein particles by long-term insulin-deficiency could be one of the reasons for this removal defect.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Structural requirements for the effects of neuropeptide Y on the hypothalamic-pituitary-adrenal axis in the dog.

Neuropeptide Y (NPY), administered into the third cerebral ventricle of the dog stimulates plasma ACTH and cortisol secretion. To further investigate the structure-activity relationships of this action, we examined the effect of COOH-terminal fragment, NPY 19-36 and its analogues, NPY-(1-36)-OH (deamidated NPY) and avian pancreatic polypeptide (APP) on ACTH-cortisol secretion following intracerebroventricular (i.c.v.) injection in the dog. NPY (1.19 nmol) evoked a significant increase in the secretion of both plasma ACTH and cortisol. However, NPY 19-36 and NPY-(1-36)-OH each failed to increase plasma ACTH and cortisol secretion at doses of 1.19-11.9 nmol injected i.c.v. APP was less active than NPY. These data demonstrate that the entire NPY molecule is required for the full expression of the stimulatory effect of NPY on the secretion of ACTH and cortisol.

Adrenocorticotropic Hormone↗

Islet amyloid polypeptide (IAPP) gene analysis in a Japanese diabetic with marked islet amyloid deposition.

Islet amyloid polypeptide (IAPP) is a major constituent of pancreatic amyloid deposits in many patients with non-insulin-dependent diabetes mellitus (NIDDM). We analyzed the IAPP gene in a Japanese diabetic with marked islet amyloid deposition. Pancreatic specimens were obtained from an 87-year-old NIDDM patient who had had diabetes for 37 years. All islets (100/100) in his pancreas had IAPP-positive amyloid deposition, and 70% of the area of the islet was replaced by amyloid. We amplified the coding regions as well as the upstream region of the IAPP gene by polymerase chain reaction (PCR). The products of PCR were sequenced, and the sequences of the coding regions were identical to the Caucasian ones. However, the nucleotides of two positions of 5'-upstream and one position of intron 2 were different from the Caucasian data: the upstream region of the IAPP gene in the patient had cytosine substituted for thymine at -259, and had two alleles including cytosine and adenine at -229, respectively. The nucleotide of position 539, that is guanine, was deleted. A possible difference in the IAPP promoting region between the Japanese and Caucasian population was suggested.

Aged↗

Effects of fish and safflower oil feeding on subcellular glucose transporter distributions in rat adipocytes.

Effects of fish oil feeding on glucose transport systems and cell size in rat adipocytes were examined and compared with those of safflower oil or carbohydrate feeding under isoenergy intake conditions. Glucose transport activity was assessed by measuring 3-O-methyl-D-glucose transport. The concentration of erythrocyte type glucose transporter (GLUT-1) and muscle/fat type transporter (GLUT-4) was measured by immunoblotting. The amount of each transporter in intact cells was estimated by the amount of transporter and protein of each membrane fraction and by the recovery of marker enzymes. In cells from safflower-fed rats compared with those from carbohydrate-fed rats, insulin-stimulated glucose transport activity per cell decreased to 51% after a 1-wk feeding, and cell size increase became larger with these effects and continued for at least 4 wk. At 1 wk of feeding, GLUT-1 and GLUT-4 per cell in plasma membrane from insulin-treated cells decreased to 62 and 35%, respectively, with concomitant transporter decreases in the low-density microsome fraction. In cells from high-fish oil-fed rats in which two-thirds of safflower oil was replaced by fish oil, when compared with those from safflower oil-fed rats, insulin-stimulated glucose transport activity increased 1.7-fold after 1 wk of feeding with concomitant cellular GLUT-1 and GLUT-4 increases, but its effect declined thereafter. Parallel with this time course, cell size increase was smaller after 1 wk, but this effect also declined thereafter.(ABSTRACT TRUNCATED AT 250 WORDS)

5'-Nucleotidase↗

Distribution of smg p25A and smg p21s, ras p21-like guanine nucleotide-binding proteins, in the rat stomach.

Existence and distribution of small guanine nucleotide binding proteins (G proteins) such as smg p25A, smg p21s, and ras p21s were examined in the rat gastric mucosa. By immunoblot analysis using the specific monoclonal antibodies against smg p25A and ras p21 and the anti-smg p21 antiserum, smg p25A and smg p21s were detected in the gastric mucosa, while ras p21s were not detected. In immunocytochemical studies, moderate fluorescence of smg p25A was homogenously seen in the cytoplasmic portions of chief cells and surface epithelial cells. smg p21 immunoreactivity was detected in glandular cells and submucosal muscle layer in the mucosa. On the other hand, the cells constituting gastric glands were unstained with the anti-ras p21 monoclonal antibody, RASK-4. These results suggest that smg p25A and smg p21s exist as in other tissues and might exert their specific actions in the rat gastric mucosa.

Animals↗

Solubilization of high affinity peptide-YY receptors from porcine brain.

We have previously characterized peptide-YY (PYY) receptors in porcine hippocampal membranes. We demonstrate here that brain PYY receptors can be extracted in the active state using digitonin. Among several detergents tested for their suitability to extract active PYY receptors, digitonin gave the most favorable results, as judged by specific binding of [125I]PYY to the solubilized receptors. The binding of [125I]PYY to digitonin extract was dependent on incubation time, temperature, and protein and magnesium ion concentrations and had a pH optimum of 6-7. Solubilized PYY receptors maintained the rank order of potencies for various related peptides and PYY fragments characteristic of the membrane PYY receptor: PYY greater than neuropeptide Y (NPY) much much greater than avian and porcine pancreatic polypeptide, and PYY greater than PYY-(22-36) much much greater than PYY-(1-22) and PYY-(22-28), respectively. Scatchard analyses of competitive binding data indicated the presence of two classes of binding sites in the digitonin extract; the high affinity component had affinities and binding capacities similar to those of the membrane PYY receptor. Solubilized PYY receptors also retained their sensitivity to guanine nucleotides. PYY was cross-linked to its receptors with disuccinimidyl suberate, solubilized with digitonin, and cross-linked to digitonin-solubilized receptors. The resulting complexes were analyzed on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, followed by autoradiography. Using these procedures, we identified a PYY receptor species with a molecular size of 50,000, which was the same size as the labeled protein in native membrane homogenates. Solubilized NPY receptors were also the same size. The solubilized cross-linked PYY receptor was adsorbed by wheat germ agglutinin-agarose and Concanavalin-A, suggesting its glycoprotein nature. These data suggest that the specific binding properties of the PYY receptor are inherent in the solubilized glycoprotein molecules. The solubilization in digitonin of PYY receptors from membranes should allow a more complete molecular and functional characterization of PYY-mediated events and purification of the receptor.

Adsorption↗

Solubilization of the receptors for avian pancreatic polypeptide in chicken, canine, and pig brains.

When n-octyl-beta-D-glucoside was used in several detergents to extract active avian pancreatic polypeptide (APP) receptors, a specific binding of [125I]APP to the solubilized chicken cerebellar and porcine hippocampal membranes was found. The binding of [125I]APP to the solubilized receptors was dependent on incubation time, temperature, and protein concentrations and appeared to have a slightly acidic optimal pH. APP binding to chicken and porcine brain extracts showed a high specificity for APP, although the chicken receptors do not discriminate well between APP and its related peptides, neuropeptide Y and peptide YY. Scatchard analyses of competitive binding data indicated the presence of two classes of binding sites in the brain extracts as in membrane-bound receptors; however, the high affinity component of the chicken receptor showed a decreased affinity after extraction. APP receptors in chicken and porcine brain extracts retained their insensitivity to the nonhydrolyzable GTP analog guanosine 5'-O-(3-thiotriphosphate). Cross-linking studies were performed with the homobifunctional cross-linker disuccinimidyl suberate and brain membrane receptors solubilized with n-octyl-beta-D-glucoside. An APP receptor species with a M(r) of 67,000, the same size as that of the labeled protein in native membrane homogenates of chicken and pig brains, was identified. However, in the canine brain we observed a M(r) 85,000 receptor protein, suggesting that species differences exist among the structures of brain APP receptors. The solubilized cross-linked APP receptors in these species were adsorbed by wheat germ agglutinin-agarose and by concanavalin A, indicating that they are glycoprotein in nature. The availability of the solubilized receptors from vertebrate brains with n-octyl-beta-D-glucoside represents an important step toward the purification and molecular characterization of the APP receptors.

Animals↗

Evidence for further heterogeneity of the receptors for neuropeptide-Y and peptide-YY in tumor cell lines derived from neural crest.

The expression and structure of the receptors for neuropeptide-Y (NPY) and peptide-YY (PYY) were studied in 16 human and rodent tumor cell lines derived from the neural crest by ligand binding and cross-linking techniques using [125I]Bolton-Hunter-NPY, [125I]PYY, and various forms of monoiodinated NPY and PYY. Although NPY-binding sites were observed in most of the tumor cells, PYY-binding sites were found only on the human neuroblastoma cell lines SMS-MSN, SMS-KAN, SK-N-MC, and MC-IXC and the human Ewing's sarcoma cell line SK-ES. The differential labeling of the NPY/PYY receptors on these cell lines suggests that the NPY/PYY receptors are more heterogeneous than previously described as the Y1, Y2, and Y3 receptor subtypes. Cross-linking studies demonstrate that the Y1 and Y2 receptors for NPY/PYY are structurally different (mol wt, 70 and 50 kilodaltons, respectively) and that the 70- and 50-kilodalton receptor proteins are coexpressed in certain tumor cell lines. This could explain at least in part why cell lines show a relative specificity for Y1/Y2 classification, observed as the inhibition by both C-terminal fragments and Y1-specific analogs on the NPY/PYY binding to membrane receptors. Collectively, the present study suggests further heterogeneity of the NPY/PYY receptors and the existence of multiple receptor proteins in the tumor cell lines derived from the neural crest.

Animals↗

Detection of mutations in the human insulin gene by single strand conformation polymorphisms.

Single strand conformation polymorphisms (SSCP) is the method by which mutations can be detected in DNA amplified by the polymerase chain reaction (PCR). This method utilizes the fact that the electrophoretic mobility of single stranded DNA under nondenaturing condition depends not only on its size but also on its conformation. We examined whether this technique could detect five mutations that had previously been identified in the insulin genes of patients with abnormal insulin or familial hyperproinsulinemia. Five mutant insulin genes were constructed by site directed mutagenesis, and the cloned mutant insulin genes were amplified by PCR. All five mutations were detected because they were associated with shifts in the electrophoretic mobility of the DNA fragments. In addition, we analyzed amplified genomic DNA from a patient who is heterozygotes for the Insulin Wakayama mutation A3(Val----Leu). This mutation was also detected by the SSCP technique. We conclude that PCR-SSCP method is a simple, fast, and efficient method for detection of mutations in the human insulin gene.

Base Sequence↗

Genetic changes in multi-step development of colorectal cancer.

We studied activated mutations of K-ras gene in three forms of colorectal tumors, i.e., 45 specimens of colorectal adenoma (CA), 10 of 'cancer in adenoma' (CIA), and 24 of colorectal cancer (CC), and in 15 of gastric cancer (GC) as controls. Chromosome aberrations were also examined in 7 specimens of CA, 3 of CIA, 8 of CC, and 7 of GC. Mutation of K-ras Codon 12 was observed in 12 (26.7%) of the 45 specimens of CA, 6 (60.0%) of the 10 specimens of CIA, 6 (25.0%) of the 24 specimens of CC, and 1 (6.7%) of the 15 specimens of GC. In CA, its frequency increased with the degree of histological atypism. In CA and CIA, its frequency increased with the increase in short diameter. The most frequent chromosome aberration was the numerical excess of chromosome 7. Numerical deficiencies of chromosomes 17 and 18 or structural abnormalities of 17p+ and 18q+ were noted in 1 specimen each of CA and CIA, and 2 of CC. Thus, aberrations of these two chromosomes were concurrent. 5q--was observed in 1 specimen each of CA and CC. These findings were not contradictory to the multi-step carcinogenesis model of the colorectum based on the hypothesis that carcinogenesis requires activation of an oncogene by mutation accompanied by defects of several genes that might normally inhibit tumorigenesis.

Adenoma↗

[Insulin receptor Arg1131-->Gln: a novel mutation in the catalytic loop of insulin receptor observed in insulin resistant diabetes].

A novel mutation Arg1131-->Gln in the catalytic loop of insulin receptor (IR) associated with insulin resistant diabetes was detected. A 56-year-old male with hyperinsulinemia (fasting IRI 92 microU/ml) showed moderate impairment in glucose tolerance (HbAlc 7.0%, fructosamine 258 mumol/l, fasting glucose 119 mg/dl, maximum value of blood glucose during 75 g OGTT 220 mg/dl). While insulin binding to erythrocytes IR was normal, the insulin-induced autophosphorylation of the patient's erythrocytes IR in vivo showed marked decrease, suggesting this patient had some defect in the kinase domain (exon 17-21) of IR. PCR-SSCP analysis of kinase domain with a genomic DNA obtained from the patient's leucocytes indicated the presence of some mutations in exon 19. Sequencing analysis in M13 revealed a heterozygous mutation at a position 1131 (CGG-->CAG) substituting Gln for Arg. Four people of patient's family analyzed are revealed to have an identical missense mutation at the same position with the patient.

DNA↗

Cholecystokinin inhibits phosphatidylcholine synthesis via a Ca(2+)-calmodulin-dependent pathway in isolated rat pancreatic acini. A possible mechanism for diacylglycerol accumulation.

The effects of cholecystokinin (CCK) and other pancreatic secretagogues on phosphatidylcholine (PC) synthesis were studied in isolated rat pancreatic acini. When acini were incubated with [3H]choline in the presence of 1 nM CCK-octapeptide (CCK8) for 60 min, the incorporations of [3H]choline into both water-soluble choline metabolites and PC in acini were reduced by CCK8 to 74 and 41% of control, respectively. Pulse-chase study revealed that CCK8 reduced both the disappearance of phosphocholine and the synthesis of PC. Other Ca(2+)-mobilizing secretagogues such as carbamylcholine, bombesin, and Ca2+ ionophore A23187 also reduced PC synthesis to the same extent as did CCK8. When combined with 1 nM CCK8, A23187 or carbamylcholine did not further inhibit PC synthesis. Furthermore, W-7 or W-5, a calmodulin antagonist, reversed the inhibition by CCK8 of PC synthesis, suggesting that a Ca(2+)-calmodulin-dependent pathway may be involved in CCK-induced inhibition of PC synthesis in acini. By contrast, neither cAMP-dependent secretagogues such as secretin and dibutyryl cAMP nor a phorbol ester had any effect on PC synthesis in acini. Staurosporine or H-7, a protein kinase C inhibitor, did not affect the inhibition by CCK of PC synthesis. The analysis of enzyme activity involved in PC synthesis via CDP-choline pathway showed that CCK treatment of acini reduced CTP:phosphocholine cytidylyltransferase activity in both cytosolic and particulate fraction, a finding consistent with the delayed disappearance of phosphocholine induced by CCK in pulse-chase study. By contrast, CCK treatment of acini did not alter the activities of choline kinase and phosphocholine transferase in acini. The extent of inhibition by CCK of cytidylyltransferase activity became much larger when subcellular fractions of acini were prepared in the presence of phosphatase inhibitors. In addition, W-7 reversed the inhibitory effect of CCK treatment on cytidylyltransferase activity in acini. When acini were labeled with [3H]myristic acid and chased, CCK8 (1 nM) reduced the synthesis of [3H]myristic acid-labeled PC to 27% of control after a 60-min chase period. This inhibition of PC synthesis induced by CCK was accompanied by a delayed disappearance of [3H]diacylglycerol, the radioactivity of which was 225% of control at 60 min. These results indicate that CCK inhibits PC synthesis by inducing both the reduction of choline uptake into acini and the inhibition of CTP:phosphocholine cytidylyltransferase activity. Furthermore, the results suggest the possibility that the activation of Ca(2+)-calmodulin-dependent kinase in response to CCK may phosphorylate cytidylyltransferase thereby decreasing this enzyme activity in pancreatic acinar cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Alkaloids↗

Lecithin-cholesterol acyltransferase (LCAT) deficiency with a missense mutation in exon 6 of the LCAT gene.

The plasma enzyme, human lecithin-cholesterol acyltransferase (LCAT) is responsible for the majority of cholesterol ester formation in human plasma and is a key enzyme of the reverse transport of cholesterol from peripheral tissue to the liver. We sequenced genomic DNA of the LCAT gene from a Japanese male patient who was clinically and biochemically diagnosed as a familial LCAT deficiency. Analysis of all exons and exon-intron boundaries revealed only a single G to A transition within the sixth exon of both allele of the gene, leading to the substitution of methionine for isoleucinle at residue 293 of the mature enzyme. This mutation creates a new hexanucleotide recognition site for the restriction endonuclease Ndel. Familial study of Ndel digestion of the genomic DNA and determination of plasma LCAT activity established that the patient and his sister whose plasma LCAT activity were extremely reduced were homozygous and his children whose plasma LCAT activity were about half of normal controls were heterozygous for this mutation.

Base Sequence↗

Diabetic retinopathy in non-insulin-dependent diabetes mellitus patients: the role of gliclazide.

Diabetic retinopathy is the most common cause of human blindness between the ages of 30 and 67 in the industrialized world. Retinopathy has a multifactorial etiology. Standard treatment has aimed at correcting only disturbed glucose metabolism, but this may lead only to the partial amelioration of certain hemobiologic factors. In addition to its metabolic action, gliclazide has been shown to have specific hemobiologic properties; studies with gliclazide in animals and humans have shown significant improvements of platelet abnormalities, stimulation of prostaglandin I2 synthesis, and enhancement of fibrinolytic activity. In humans, open-label studies have shown that gliclazide treatment leads to stabilization of background retinopathy in non-insulin-dependent diabetics and, more recently, these beneficial effects have been confirmed in controlled studies lasting up to 37 months in which other sulfonylureas were used. The Japanese Diabetic Retinopathy Program studied the progression of retinopathy over a 5-year period, comparing gliclazide with other sulfonylureas and with placebo. This study showed that, with equivalent metabolic control, there was a trend toward a lower rate of deterioration and a significantly lower incidence of preproliferative retinopathy in the group receiving gliclazide compared with those receiving other sulfonylureas. Overall, the specific hemobiologic actions of gliclazide appear to offset or retard the progression of diabetic retinopathy and may have the advantage of lowering the incidence of preproliferative retinopathy.

Diabetes Mellitus, Type 2↗

Insulin and platelet-derived growth factor stimulate phosphorylation of the c-raf product at serine and threonine residues in intact cells.

We have examined the phosphorylation of the serine threonine kinase, the product of c-raf proto-oncogene in response to insulin or platelet-derived growth factor in intact cells. Both insulin and platelet-derived growth factor stimulated phosphorylation of the c-raf protein about 2- to 3-fold. The phosphorylation occurred exclusively on serine and threonine residues; phosphotyrosine was not detected. In immune-complex kinase assays, treatment with insulin, and platelet-derived growth factor increased autophosphorylation of the c-raf kinase, suggesting activation of its kinase activity. To investigate whether the phosphorylation of the c-raf protein in intact cells results from an autophosphorylation event or from the phosphorylation by other cellular kinase(s), we replaced lysine 375 in the putative ATP-binding domain of the c-raf protein with alanine using oligonucleotide site-directed mutagenesis and expressed the mutated protein in NIH3T3 cells. The substitution resulted in the inactivation of the serine/threonine-specific autophosphorylation in immune-complex kinase assays. In intact cells, however, although phosphorylation of the mutant protein in response to insulin and platelet-derived growth factor occurred to a lesser extent than that of the wild-type protein, the phosphopeptide maps were indistinguishable. These results suggest that serine threonine phosphorylation might be responsible for the activation of c-raf kinase upon treatment of cells with insulin and platelet-derived growth factor, and most of the phosphate associated with the c-raf protein results from its phosphorylation by as yet uncharacterized cellular serine/threonine kinase(s).

Base Sequence↗