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H Sone

Publications and source records attributed to H Sone.

At least 19 recordsLinked to original sources

Pancreatic beta cell senescence contributes to the pathogenesis of type 2 diabetes in high-fat diet-induced diabetic mice.

AIMS/HYPOTHESIS: During the pathogenesis of type 2 diabetes insulin resistance causes compensatory proliferation of beta cells. As beta cells have a limited replication potential, this compensatory proliferation might accelerate cellular senescence and lead to diabetes. We examined the cellular senescence of beta cells after proliferation during lipoglucotoxicity. METHODS: Senescence-associated markers in beta cells were examined in nutrient-induced diabetic C57BL/6J mice that were fed a high-fat diet. After 4 and 12 months of the high-fat diet, intraperitoneal glucose tolerance tests (IPGTTs) and histochemical analyses of Ki-67, p38, senescence-associated beta-galactosidase, and beta cell mass were performed. RESULTS: At 4 months, the AUC for plasma insulin levels during the IPGTT (AUC(insulin)) was higher, beta cell mass was 3.1-fold greater, and the proliferation of beta cells was 2.2-fold higher than in the control group. However, at 12 months, AUC(insulin) declined, the frequency of Ki-67-positive beta cells decreased to one-third that of the control group, and the senescence-associated, beta-galactosidase-positive area increased to 4.7-fold that of the control group. Moreover, small amounts of p38, which is induced by oxidative stress and mediates cellular senescence, were found in beta cells from the high-fat diet group, but not in beta cells from the control group. Furthermore, the senescence-associated, beta-galactosidase-positive area in the high-fat diet group had a highly significant negative correlation with AUC(insulin) (r=-0.852, p<0.01). CONCLUSIONS/INTERPRETATION: Beta cell senescence occurred in diet-induced type 2 diabetes and led to insufficient insulin release. These findings suggest that cellular senescence contributes to the pathogenesis of diet-induced diabetes.

Animals↗

Acute gliclazide administration enhances glucose and ketone body utilization in the perfused hind limb of normal and streptozotocin-diabetic rats.

Sulfonylureas are the most commonly used oral hypoglycemic agents. Their hypoglycemic actions are produced not only by stimulating insulin secretion but also by extrapancreatic mechanisms. Some groups have already demonstrated the extrapancreatic actions of sulfonylureas on carbohydrate metabolism in the liver, fat and muscle. In this study, we showed in an in situ perfused hind limb preparation of STZ-diabetic rats that gliclazide has an acute effect on ketone body and glucose utilization.

Animals↗

Genetic and physiological analysis of branched-chain alcohols and isoamyl acetate production in Saccharomyces cerevisiae.

Branched-chain alcohols, such as isoamyl alcohol and isobutanol, and isoamyl acetate are important flavor components of yeast-fermented alcoholic beverages. Analysis of a null mutant of the BAT2 gene encoding cytosolic branched-chain amino acid aminotransferase, and a transformant with multi-copy plasmids containing the BAT2 gene showed that the BAT2 gene product plays an important role in the production of branched-chain alcohols and isoamyl acetate. Fermentation tests using the bat2 null mutant transformed with multi-copy plasmids carrying the ATF1 gene, which encodes alcohol acetyltransferase, indicated that modified expression of BAT2 and ATF1 genes could significantly alter the proportion of branched-chain alcohols and isoamyl acetate synthesized. Furthermore, fermentation tests using different ratios of nitrogen source and RNA blot analyses demonstrated that transcription of L-leucine biosynthetic ( LEU) and BAT genes is co-regulated by nitrogen source, that production of isoamyl alcohol depends on this transcription, and that ATF transcription increased with increased concentrations of nitrogen source. Our data suggest that changes in isoamyl alcohol production by nitrogen source are due to transcriptional co-regulation of LEU and BAT genes, and that production of isoamyl acetate is dependent on isoamyl alcohol production and ATF transcription.

Acetyltransferases↗

Effects of lifestyle modifications on patients with type 2 diabetes: the Japan Diabetes Complications Study (JDCS) study design, baseline analysis and three year-interim report.

BACKGROUND: Lifestyle modifications may affect the development of diabetes and prevent complications. However, there is no direct evidence to show that lifestyle intervention is beneficial for patients with established type 2 diabetes. OBJECTIVE: The ultimate goal is to determine whether long-term lifestyle intervention can improve glycemic control and prevent complications in patients with type 2 diabetes. This initial report on a multi-year study describes protocols and the analysis of baseline data and three-year interim results. DESIGN: The study was a randomized, controlled, multi-centre, prospective intervention trial. The trial included patients from 59 Japanese institutes specializing in diabetes care. PATIENTS: The study enrolled 2 205 patients with previously diagnosed type 2 diabetes. INTERVENTION: The lifestyle modification program included intensive lifestyle management at each outpatient clinic visit and frequent telephone counseling. The intervention group received educational materials concerning the importance of lifestyle and behavioural changes, a diary to record progress of laboratory and other data, and a pedometer. MEASUREMENTS: Parameters and indices related to glycemic control, diabetic complications, dyslipidemia, hypertension, obesity, and atherosclerosis were measured several times a year. RESULTS: Small but significant differences in HbA1c levels between the intervention (INT) and conventional (CON) therapy groups appeared as early as two years after the start of intervention and were maintained in the third year (CON group, 7.78 +/- 1.27 % vs. INT group, 7.62 +/- 1.20 %, the initial HbA1c level was 7.80 +/- 1.42 % for the CON group and 7.68 +/- 1.28 % for the INT group). Data on differences in occurrence of micro- or macrovascular complications are not yet available. CONCLUSIONS: The effect of lifestyle modification on improving the glycemic control of patients with established type 2 diabetes mellitus was small but significant three years after initiation of the intervention.

Aged↗

Changes in expression of NMDA receptor subunit mRNA by perinatal exposure to dioxin.

Since dioxin and related compounds are suspected of affecting permanently the brain function of offspring of human and experimental animals, effects of perinatal exposure to 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) on the expression of rat NMDA receptor NR2A and NR2B subunit mRNA were examined. The mRNA quantification by competitive RT-PCR clearly revealed that TCDD inhibited NR2B mRNA expression and enhanced NR2A mRNA expression in the neocortex and hippocampus on postnatal day (PND) 49, whereas these changes in mRNA expression were not found on PND 5. The results demonstrate for the first time that the perinatal exposure to TCDD can alter the molecular basis of brain of offspring in adulthood.

Animals↗

Elevated levels of vascular endothelial growth factor in the sera of patients with rheumatoid arthritis correlation with disease activity.

To evaluate vascular endothelial growth factor (VEGF) levels in relation to disease activity in rheumatoid arthritis (RA), VEGF in the serum of 155 patients with RA and 75 healthy control subjects was quantified by our highly sensitive enzyme-linked immunosorbent assay. VEGF levels were found to correlate with the articular index (AI) and Lansbury's activity index (LI). Patients with RA had a mean serum VEGF concentration of 153.5+/-111.8 pg/ml, which was significantly higher than control subjects (104.8+/-65.7 pg/ml; P<0.01). VEGF concentration was elevated significantly according to disease progression as expressed by stages I to IV and correlated with AI (r=0.530, P<0.0001) and LI (r=0.688, P<0.0001) in stages I and II as well as with the conventional erythrocyte sedimentation rate or serum C-reactive protein concentration. Serum VEGF levels may therefore be valuable as a marker of disease activity in patients with early RA, and this cytokine may play a significant role in the pathophysiology of RA.

Arthritis, Rheumatoid↗

Sterol regulatory element-binding proteins induce an entire pathway of cholesterol synthesis.

To evaluate the effects of sterol regulatory element-binding proteins (SREBPs) on the expression of the individual enzymes in the cholesterol synthetic pathway, we examined expression of these genes in the livers from wild-type and transgenic mice overexpressing nuclear SREBP-1a or -2. As estimated by a Northern blot analysis, overexpression of nuclear SREBP-1a or -2 caused marked increases in mRNA levels of the whole battery of cholesterogenic genes. This SREBP activation covers not only rate-limiting enzymes such as HMG CoA synthase and reductase that have been well established as SREBP targets, but also all the enzyme genes in the cholesterol synthetic pathway tested here. The activated genes include mevalonate kinase, mevalonate pyrophosphate decarboxylase, isopentenyl phosphate isomerase, geranylgeranyl pyrophosphate synthase, farnesyl pyrophosphate synthase, squalene synthase, squalene epoxidase, lanosterol synthase, lanosterol demethylase, and 7-dehydro-cholesterol reductase. These results demonstrate that SREBPs activate every step of cholesterol synthetic pathway, contributing to an efficient cholesterol synthesis.

Animals↗

Molecular identification and characterization of two medium-chain acyl-CoA synthetases, MACS1 and the Sa gene product.

In this study, we identified and characterized two murine cDNAs encoding medium-chain acyl-CoA synthetase (MACS). One, designated MACS1, is a novel protein and the other the product of the Sa gene (Sa protein), which is preferentially expressed in spontaneously hypertensive rats. Based on the murine MACS1 sequence, we also identified the location and organization of the human MACS1 gene, showing that the human MACS1 and Sa genes are located in the opposite transcriptional direction within a 150-kilobase region on chromosome 16p13.1. Murine MACS1 and Sa protein were overexpressed in COS cells, purified to homogeneity, and characterized. Among C4-C16 fatty acids, MACS1 preferentially utilizes octanoate, whereas isobutyrate is the most preferred fatty acid among C2-C6 fatty acids for Sa protein. Like Sa gene transcript, MACS1 mRNA was detected mainly in the liver and kidney. Subcellular fractionation revealed that both MACS1 and Sa protein are localized in the mitochondrial matrix. (14)C-Fatty acid incorporation studies indicated that acyl-CoAs produced by MACS1 and Sa protein are utilized mainly for oxidation.

Amino Acid Sequence↗

Severe hypercholesterolemia, hypertriglyceridemia, and atherosclerosis in mice lacking both leptin and the low density lipoprotein receptor.

Leptin-deficient mice (ob/ob) are an excellent murine model for obesity, insulin resistance, and diabetes, all of which are components of a multiple risk factor syndrome that, along with hypercholesterolemia, precipitates a potential high risk for atherosclerosis. In the current study, we show an unexpectedly severe hyperlipidemia in ob/ob mice on a background of low density lipoprotein receptor (LDLR) deficiency (-/-). Doubly mutant mice (LDLR-/-;ob/ob) exhibited striking elevations in both total plasma cholesterol (TC) and triglyceride (TG) levels (1715 +/- 87 and 1016 +/- 172 mg/dl, respectively), at age 3-4 months, resulting in extensive atherosclerotic lesions throughout the aorta by 6 months. Lipoprotein analyses revealed the elevated TC and TG levels to be due to a large increase in an apoB-containing broad-beta remnant lipoprotein fraction. While fasting, diet restriction, and low level leptin treatment significantly lowered TG levels, they caused only slight changes in TC levels. Hepatic cholesterol and triglyceride contents as well as mRNA levels of cholesterologenic and lipogenic enzymes suggest that leptin deficiency increased hepatic triglyceride production but did not change cholesterol production in ob/ob mice regardless of their LDLR genotype. These data provide evidence that the hypertriglyceridemia and hypercholesterolemia in the doubly mutant mice are caused by distinct mechanisms and point to the possibility that leptin might have some impact on plasma cholesterol metabolism, possibly through an LDLR-independent pathway. This model will be an excellent tool for future studies on the relationship between impaired fuel metabolism, increased plasma remnant lipoproteins, diabetes, and atherosclerosis.

Animals↗

Insulin up-regulates tumor necrosis factor-alpha production in macrophages through an extracellular-regulated kinase-dependent pathway.

Hyperinsulinemia has recently been reported as a risk factor for atherosclerotic diseases such as coronary heart disease; however, the effect of insulin on the development of atherosclerosis is not well understood. Here we have investigated the direct effect of insulin on macrophages, which are known to be important in the atherosclerotic process. We treated THP-1 macrophages with insulin (10(-7) m) and examined the gene expression using nucleic acid array systems. The results of array analysis showed that insulin stimulated gene expression of tumor necrosis factor-alpha (TNF-alpha) the most among all genes in the analysis. In addition, insulin administration to macrophages enhanced both mRNA expression and protein secretion of TNF-alpha in a dose-dependent manner. To determine the signaling pathway involved in this TNF-alpha response to insulin, we pretreated the cells with three distinct protein kinase inhibitors: wortmannin, PD98059, and SB203580. Only PD98059, which inhibits extracellular signal-regulated kinases, suppressed insulin-induced production of TNF-alpha mRNA and protein in THP-1 macrophages. These observations indicate that insulin stimulates TNF-alpha production in macrophages by regulating the expression of TNF-alpha mRNA and that the extracellular signal-regulated kinase signaling pathway may have a critical role in stimulating the production of TNF-alpha in response to insulin in macrophages.

Cell Line↗

Abnormal uterus with polycysts, accumulation of uterine prostaglandins, and reduced fertility in mice heterozygous for acyl-CoA synthetase 4 deficiency.

Arachidonate released by various stimuli is rapidly reesterified into membrane phospholipids initiated by acyl-CoA synthetase (ACS) and subsequent acyl-transfer reactions. ACS4 is an arachidonate-preferring enzyme abundant in steroidogenic tissues and postulated to modulate eicosanoid production. Female mice heterozygous for ACS4 deficiency become pregnant less frequently and produce small litters with extremely low transmission of the disrupted alleles. Striking morphological changes, including extremely enlarged uteri and lumina filled with numerous proliferative cysts of various sizes, were detected in ACS4+/- females. Furthermore, marked accumulation of prostaglandins was seen in the uterus of the heterozygous females. These results indicate that ACS4 modulates female fertility and uterine prostaglandin production.

6-Ketoprostaglandin F1 alpha↗

Gastric distension-induced pyloric relaxation: central nervous system regulation and effects of acute hyperglycaemia in the rat.

1. The pylorus plays an important role in the regulation of gastric emptying. In addition to the autonomic neuropathy associated with long-standing diabetes, acute hyperglycaemia per se has effects on gastric emptying. In this study, the role of the central nervous system in modulating the effects of hyperglycaemia on gastric distension-induced pyloric relaxation was investigated. 2. Gastric distension-induced pyloric relaxation was significantly reduced by subdiaphragmatic vagotomy, hexamethonium (20 mg kg(-1)) and N (G)-nitro-L-arginine methyl ester (L-NAME; 10 mg kg(-1)), a nitric oxide synthase (NOS) biosynthesis inhibitor, in anaesthetized rats. In contrast, neither splanchnectomy nor guanethidine (5 mg kg(-1)) had an effect. 3. An intravenous (I.V.) infusion of D-glucose (20 %) for 30 min, which increased blood glucose concentrations from 5.4 to 12.8 mM, significantly inhibited gastric distension-induced pyloric relaxation. 4. An intracerebroventricular (I.C.V.) injection of D-glucose (3 micromol) also significantly inhibited gastric distension-induced pyloric relaxation without affecting peripheral blood glucose concentrations. 5. I.V. infusion of D-glucose significantly elevated hypothalamic neuropeptide Y (NPY) concentrations. 6. Intracerebroventricular (I.C.V.) administration of NPY (0.03--3 nmol) and a Y1 receptor agonist, [leu(31), pro(34)] NPY (0.03--3 nmol), significantly inhibited gastric distension-induced pyloric relaxation in a dose-dependent manner. 7. I.C.V. administration of a Y1 receptor antagonist, BIBP 3226 (30 nmol), and of a NPY antibody (titre 1:24 000, 3 microl) abolished the inhibitory effects of hyperglycaemia on gastric distension-induced pyloric relaxation. 8. Taken together, these findings suggest that gastric distension-induced pyloric relaxation is mediated via a vago-vagal reflex and NO release. Acute hyperglycaemia stimulates hypothalamic NPY release, which, acting through the Y1 receptor, inhibits gastric distension-induced pyloric relaxation in rats exposed to acute elevations in blood glucose concentrations.

Acute Disease↗

Neutralization of vascular endothelial growth factor prevents collagen-induced arthritis and ameliorates established disease in mice.

Vascular endothelial growth factor (VEGF) is implicated in the pathogenesis of inflammatory joint diseases, including rheumatoid arthritis (RA). To determine the importance of this cytokine in vivo, the effect of administering VEGF-neutralizing antibodies to mice with collagen-induced arthritis (CIA), which has many immunological and pathological similarities to human RA, has been investigated. Either saline, normal rabbit immunoglobulin or anti-human VEGF121 rabbit polyclonal antibody was administered to mice subcutaneously either before the onset of arthritis or after the establishment of clinical disease. Anti-VEGF antibody administered prior to disease onset significantly delayed the development of arthritis and decreased clinical score and paw thickness as well as histological severity. On the other hand, the frequency of occurrence of disease compared to either the control group administered saline or normal rabbit immunoglobulin was not altered. Anti-VEGF antibody also significantly ameliorated clinical and histological parameters even when administered after disease onset. These results indicate a possible therapeutical potential for anti-VEGF treatment in human arthritis.

Animals↗

Kinematic approach to gait analysis in patients with rheumatoid arthritis involving the knee joint.

OBJECTIVE: To analyze abnormal gait patterns in patients with rheumatoid arthritis involving the knee joint. METHODS: In 2 patient groups with rheumatoid arthritis, changes in relevant angular parameters in the sagittal plane were analyzed by an electromagnetic tracking instrument. One group consisted of patients with knee joint involvement and severe inflammation without progressive destruction; the other group had knee joint involvement with progressive destruction and low disease activity. Knee angle was measured as the projected angle in the sagittal plane formed by 3 sensors (hip-knee-ankle); the changing mean angle, angular velocity, and angular acceleration were displayed. Furthermore, the angle formed by the vector element's endpoints for each sensor's displacement (designated alpha angle) was measured continuously. RESULTS: Compared with age-matched controls, patients with severe inflammatory knee joint involvement showed limitation of alpha angle change in the stance phase, and patients with knee joint destruction had shortened swing phase duration and decreased alpha angle change in the swing phase. A sharpened alpha angular velocity change curve was observed in the latter. Characteristic differences between groups with inflammation and destruction were more clearly evident from the alpha angle than from the knee angle itself. CONCLUSION: We observed gait differences between rheumatoid arthritis patients with active inflammatory arthritic knee joint involvement without progressive destruction and those with joint destruction and minimal inflammation. Features of gait disturbance in rheumatoid arthritis were not simple, even with a single major site. Therefore, techniques such as biokinetic gait analysis can provide practical information about functional joint integrity in this patient population that could aid in therapeutic decision making.

Adult↗

Disease model: hyperinsulinemia and insulin resistance. Part A-targeted disruption of insulin signaling or glucose transport.

Insulin resistance and hyperinsulinemia are common pathophysiological features of several metabolic diseases, obesity and diabetes being two notable examples. In this article we review how the use of animal models has increased our understanding of insulin resistance and hyperinsulinemia, with a particular emphasis on the use of mice with targeted disruptions of the insulin signaling pathway.

Animals↗

Disease model: hyperinsulinemia and insulin resistance. Part B--polygenic and other animal models.

Deficiency of leptin or its receptor produces hyperinsulinemia with marked obesity. Paradoxically, severe insulin resistance also accompanies lipodystrophy. Animal models of these contrasting conditions have enabled us to observe the profound and complicated aspects of the underlying pathologies. In addition, conventional polygenic rodents with known genetic backgrounds, such as the spontaneously hypertensive rat and the Goto-Kakisaki rat, have also been used to investigate these abnormalities.

Animals↗

Maternal exposure to a low dose of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) suppressed the development of reproductive organs of male rats: dose-dependent increase of mRNA levels of 5alpha-reductase type 2 in contrast to decrease of androgen receptor in the pubertal ventral prostate.

To assess the health risks associated with exposure to 2,3,7,8-tetrachlorodebenzo-p-dioxin (TCDD), we studied the effects of a relatively low dose of TCDD on the male reproductive system of rats, using the experimental protocol of T. A. Mably et al. (1992, Toxicol. Appl. Pharmacol. 114, 97-107, 108-117, 118-126), and searched for the most sensitive and reliable among several indices of TCDD toxicity. Pregnant Holtzman rats were given a single oral dose of 0, 12.5, 50, 200, or 800 ng TCDD/kg body weight on gestational day (GD) 15, and male offspring were sacrificed on postnatal day (PND) 49 or 120. GC-MS analysis of the abdominal fat tissue and testis clearly showed increased amounts of TCDD in these offspring. However, there was no TCDD effect on body weight of offspring. There were no changes on testicular or epididymal weights by TCDD administration, even at the 800-ng/kg dose in rats sacrificed on either PND 49 or 120. In addition, TCDD administration resulted in no changes in daily sperm production or sperm reserve at any of the doses used. However, the weight of the urogenital complex, including the ventral prostate, was significantly reduced at doses of 200 and 800 ng TCDD/kg in rats sacrificed on PND 120. Moreover, the anogenital distance (AGD) of male rats sacrificed on PND 120 showed a significant decrease in the groups receiving doses greater than 50 ng TCDD/kg. TCDD administration resulted in no apparent dose-dependent changes in levels of either serum testosterone or luteinizing hormone. Interestingly, reverse transcription-polymerase chain reaction (RT-PCR) analysis revealed that, in the ventral prostates of the PND 49 group, TCDD administration resulted in both a dose-dependent increase in 5alpha-reductase type 2 (5alphaR-II) mRNA level and a dose-dependent decrease in androgen receptor (AR) mRNA level. These results suggest that low-dose TCDD administration had a greater effect on the development of the external genital organs and ventral prostate than on development of the testis and other internal genital organs. Moreover, it is highly suggested that the decrease in the size of the ventral prostate by maternal TCDD exposure might be due to decreased responsiveness of the prostate to androgen due to an insufficient expression level of androgen receptor during puberty.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗