Search PubMed⌕ Search

Biomedical subjects

Masahiro Nishi

Publications and source records attributed to Masahiro Nishi.

At least 19 recordsLinked to original sources

IA-2beta, but not IA-2, is induced by ghrelin and inhibits glucose-stimulated insulin secretion.

Ghrelin is a newly discovered peptide and an endogenous ligand for growth hormone (GH) secretagogue (GHS) receptor. It has been shown to possess various central and peripheral effects, including GH secretion, food intake, and gastric and cardiac effects. Ghrelin and the GHS receptor are expressed also in pancreatic islets. We have identified several ghrelin-induced genes by PCR-select subtraction methods, among which is a beta-cell autoantigen for type 1 diabetes, IA-2beta. Administration of ghrelin increased IA-2beta mRNA in mouse brain, pancreas, and insulinoma cell lines (MIN6 and betaTC3). However, the expression of IA-2, another structurally related beta-cell autoantigen, was not induced by ghrelin. Administration of ghrelin or overexpression of IA-2beta, but not overexpression of IA-2, inhibited glucose-stimulated insulin secretion in MIN6 insulinoma cells and, moreover, inhibition of IA-2beta expression by the RNA interference technique ameliorated ghrelin's inhibitory effects on glucose-stimulated insulin secretion. These findings strongly suggest that inhibitory effects of ghrelin on glucose-stimulated insulin secretion are at least partly due to increased expression of IA-2beta induced by ghrelin. Our data demonstrate the link among ghrelin, IA-2beta, and glucose-stimulated insulin secretion.

Animals↗

Uncoupling protein 2 promoter polymorphism -866G/A affects peripheral nerve dysfunction in Japanese type 2 diabetic patients.

OBJECTIVE: To determine genetic predispositions for diabetic polyneuropathy, we investigated the relationship between the -866G/A polymorphism of uncoupling protein (UCP) 2 and neurological manifestations in 197 type 2 diabetic patients. RESEARCH DESIGN AND METHODS: We first examined whether UCP2 mRNA had been expressed in the dorsal root ganglion (DRG) in four Long-Evans Tokushima Otsuka rats using RT-PCR and electrophoresis. Genotyping of UCP2 promoter polymorphism -866G/A was then performed in 197 unrelated Japanese type 2 diabetic patients, who were subjected to nerve conduction, quantitative vibratory perception, head-up tilt, and heart rate variability tests, by PCR restriction fragment-length polymorphism. The relationships between UCP2 genotype and various nerve functions were analyzed by uni- and multivariable analysis. RESULTS: Expression of UCP2 mRNA was confirmed in rat DRG. Multiple regression analysis clarified the hypothesis that the G/A + A/A genotype was significantly related to decreased motor nerve conduction velocity and impaired blood pressure maintenance on the head-up tilt test. Multiple logistic regression analysis revealed that the G/A + A/A genotypes are a significant risk factor for sensory nerve conduction slowing and orthostatic hypotension. CONCLUSIONS: UCP2 promoter gene polymorphism -866 G/A was significantly associated with nerve conduction slowing and vasomotor sympathetic functions. These findings suggest that the higher UCP2 activity related to the A allele has an energy-depleting effect on peripheral nerve function in type 2 diabetic patients.

Alleles↗

Peripheral nerve functions may deteriorate parallel to the progression of microangiopathy in diabetic patients.

Our aim was to obtain information to help in the early detection of impaired nerve function and to assess the severity of diabetic symmetric polyneuropathy (DPN). Various somatic and autonomic nerve functions in 40 diabetics and 20 age-matched healthy volunteers were evaluated using six objective examinations: nerve conduction study, quantitative vibratory perception threshold, heart rate variability, Valsalva test, head-up tilt and quantitative sudomotor axonal reflex test (QSART). The diabetics were divided into three groups according to the severity of their microangiopathy. The nerve function data and level of impairment were compared between a healthy control and three diabetic groups. The relationships between nerve function data and clinical background were also examined using multivariate analysis. Results were as follows: (1) all nerve dysfunctions seemed to develop parallel to the progression of microangiopathy, (2) reduced nerve conduction velocity and elevated vibratory perception thresholds in the feet might be early detectable signs of DPN, (3) vasomotor and sudomotor sympathetic functions and cardiovagal functions seemed to deteriorate with the appearance of microangiopathy, (4) lowered compound muscle action potential seemed to appear at the advanced microangiopathic condition, (5) hypohydrosis was closely related to diabetic foot ulcers. In conclusion, nerve dysfunction in diabetics might generally progress with microangiopathy from somatic sensory nerve dysfunction to autonomic nerve dysfunction and then to somatic motor nerve dysfunction. Sympathetic sudomotor dysfunction might be a sensitive predictor of diabetic foot ulcer.

Adult↗

Extracellular superoxide dismutase gene polymorphism is associated with insulin resistance and the susceptibility to type 2 diabetes.

Oxidative stress has been implicated in pancreatic beta-cell damage, insulin resistance and vascular function in diabetic patients and the dysfunction of antioxidant enzymes may be associated with the pathogenesis of diabetes. Extracellular superoxide dismutase (EC-SOD) is found in the extracellular matrix of tissues and the major scavenger of superoxide radical. To investigate the role of genetic variability for the pathogenesis of type 2 diabetes, we scanned the protein coding exon and flanking introns of EC-SOD gene for mutation in Japanese type 2 diabetic patients. We identified two missense mutations, Ala40Thr (GCG-->ACG) and Arg213Gly (CGG-->GGG), and a silent mutation, Leu53Leu (CTG-->TTG). For one of these variants, the Ala40Thr polymorphism, the frequency of Thr allele and the number of subjects with Thr allele (Ala/Thr+Thr/Thr) were higher in type 2 diabetic patients (n=205) than those in non-diabetic subjects (n=220) (33.2% versus 24.1%, p=0.003 and 55.6% versus 42.7%, p=0.008, respectively). The patients with Thr allele also showed earlier age at diagnosis of diabetes (42.2+/-7.8 years versus 44.4+/-6.9 years, p=0.037) and higher prevalence of hypertension (53.5% versus 38.5%, p=0.032) than those without the allele. Insulin sensitivity, furthermore, was evaluated in 71 type 2 diabetic patients with short insulin tolerance test (SITT). The patients with Thr allele showed lower insulin sensitivity (Kitt value of SITT) than those without the allele (1.78+/-0.78%/min versus 2.33+/-1.02%/min, p=0.012), although no significant differences in other clinical and biochemical characteristics were observed between two groups. These results suggest that the genetic variant of EC-SOD gene is associated with insulin resistance and the susceptibility to type 2 diabetes.

Amino Acid Substitution↗

Increased gene expression of antioxidant enzymes in KKAy diabetic mice but not in STZ diabetic mice.

Oxidative stress and the gene expression at the transcriptional level of antioxidant enzymes were investigated in two models of diabetes in mice. We used KKAy mice as a model of obese insulin-resistant diabetes, and streptozotocin-induced diabetic mice (STZ mice) as a model of insulin-deficient diabetes. C57BL mice and saline-injected ICR mice were used as the respective non-diabetic controls. To assess oxidative damage, plasma malonedialdehyde (MDA), urine 8-isoprostane and 8-hydroxy deoxyguanosine (8-OHdG) were measured. The mRNA expression of antioxidant enzymes, superoxide dismutase 1 (SOD-1) and glutathione peroxidase 1 (GPx-1) in the kidney and heart were quantified using a real-time polymerase chain reaction. The KKAy mice demonstrated moderate hyperglycemia and hyperlipidemia, and the STZ mice showed severe hyperglycemia and hypolipidemia. The KKAy mice, but not the STZ mice, showed elevated plasma MDA relative to the non-diabetic controls. Urine 8-isoprostane and 8-OHdG in both diabetic mouse groups increased significantly. The urine oxidative stress markers in the severely hyperglycemic STZ mice were higher than those in the moderately hyperglycemic KKAy mice. Although GPx-1 and SOD-1 showed elevated mRNA expression in the KKAy mice in the kidney and heart, in the STZ mice they did not increase compared to the controls. The compensatory up-regulation of the mRNA expression of antioxidant enzymes may be impaired in the insulin-deficient severely hyperglycemic state.

Animals↗

Kinase activation through dimerization by human SH2-B.

The isoforms of SH2-B, APS, and Lnk form a family of signaling proteins that have been described as activators, mediators, or inhibitors of cytokine and growth factor signaling. We now show that the three alternatively spliced isoforms of human SH2-B readily homodimerize in yeast two-hybrid and cellular transfections assays, and this is mediated specifically by a unique domain in its amino terminus. Consistent with previous reports, we further show that the SH2 domains of SH2-B and APS bind JAK2 at Tyr813. These findings suggested a model in which two molecules of SH2-B or APS homodimerize with their SH2 domains bound to two JAK2 molecules, creating heterotetrameric JAK2-(SH2-B)2-JAK2 or JAK2-(APS)2-JAK2 complexes. We further show that APS and SH2-B isoforms heterodimerize. At lower levels of SH2-B or APS expression, dimerization approximates two JAK2 molecules to induce transactivation. At higher relative concentrations of SH2-B or APS, kinase activation is blocked. SH2-B or APS homodimerization and SH2-B/APS heterodimerization thus provide direct mechanisms for activating and inhibiting JAK2 and other kinases from the inside of the cell and for potentiating or attenuating cytokine and growth factor receptor signaling when ligands are present.

Adaptor Proteins, Signal Transducing↗

A functional variant in the human betacellulin gene promoter is associated with type 2 diabetes.

Betacellulin (BTC) plays an important role in differentiation, growth, and antiapoptosis of pancreatic beta-cells. We characterized about 2.3 kb of the 5'-flanking region of human BTC gene and identified six polymorphisms (-2159A>G, -1449G>A, -1388C>T, -279C>A, -233G>C, and -226A>G). The G allele in the -226A>G polymorphism was more frequent in type 2 diabetic patients (n = 250) than in nondiabetic subjects (n = 254) (35.6% vs. 27.8%, P = 0.007), and the -2159G, -1449A, and -1388T alleles were in complete linkage disequilibrium with the -226G allele. The frequencies of the -279A and -233C alleles were low (7.0 and 2.0% in diabetic patients), and no significant differences were observed. In the diabetic group, insulin secretion ability, assessed by the serum C-peptide response to intravenous glucagon stimulation, was lower in patients with the -226G allele (G/G, 2.96 +/- 0.16 ng/ml; G/A, 3.65 +/- 0.18 ng/ml; A/A, 3.99 +/- 0.16 ng/ml at 5 min after stimulation; P = 0.008). Furthermore, in vitro functional analyses indicated that both the -226G and the -233C alleles caused an approximately 50% decrease in the promoter activity, but no effects of the -2159A>G, -1449G>A, -1388C>T, and -279C>A polymorphisms were observed. These results suggest that the -226A/G polymorphism of the BTC gene may contribute to the development of diabetes.

5' Untranslated Regions↗

Molecular scanning of the betacellulin gene for mutations in type 2 diabetic patients.

Betacellulin (BTC), a member of the epidermal growth factor (EGF) family, is an important factor in the growth and/or differentiation of pancreatic beta cells. In this point of view, we determined the transcriptional start site of the human BTC gene and screened the protein-coding region for mutations. The transcriptional start site was located 347 bp upstream from the translational initiation codon. After screening the protein coding exons (exons 1-5), we identified two novel missense mutations, Cys (TGC) to Gly (GGC) at codon 7 (C7G) and Leu (TTG) to Met (ATG) at codon 124 (L124M), and a single nucleotide substitution (-31c/t) in the intron 2. The C7G was located in the signal peptide and the L124M in the transmembrane domain and this Leu at codon 124 was conserved among human, bovine, rat, and mouse. The frequencies of these variants, however, were similar between type 2 diabetic patients (n = 228) and non-diabetic control subjects (n = 170). These data suggest that genetic variations in the protein-coding region of the human BTC gene are unlikely to be a major contributor to development of type 2 diabetes.

Aged↗

A phenylalanine zipper mediates APS dimerization.

The APS, SH2-B and LNK proteins are adapters that activate and modulate receptor tyrosine kinase and JAK/STAT signaling. We now show that a conserved N-terminal domain mediates APS homodimerization. We determined the crystal structure of the dimerization domain at a resolution of 1.7 A using bromide ion MAD phasing. Each molecule contributes two helices to a compact four-helix bundle having a bisecting-U topology. Its most conspicuous feature is a stack of interdigitated phenylalanine side chains at the domain core. These residues create a new motif we refer to as a 'phenylalanine zipper,' which is critical to dimerization. A newly developed bridging yeast tri-hybrid assay showed that APS dimerizes JAK2, insulin receptor and IGF1 receptor kinases using its SH2 and dimerization domains. Dimerization via the phenylalanine zipper domain provides a mechanism for activating and modulating tyrosine kinase activity even in the absence of extracellular ligands.

Adaptor Proteins, Signal Transducing↗

Prevalence and risk factors of erectile dysfunction in Japanese men with type 2 diabetes.

This study aimed to elucidate the prevalence and clinical risk factors of erectile dysfunction (ED) in Japanese male diabetics. Questionnaires were administered to 82 male diabetics and 25 male non-diabetics (controls), to determine the international index of erectile function (IIEF). This index consists of five parts, with questions related to erectile function (EF), intercourse satisfaction (IS), orgasmic function (OF), sexual desire (SD), and overall satisfaction (OS). IIEF scores were compared between diabetics and controls, and were also analyzed in relation to clinical factors. Although EF, IS, and OF scores (physical factors) in diabetic men were significantly lower than those of age-matched controls, no significant differences were apparent in SD and OS scores (psychological factors). All patients with EF score > or = 18 reported being able to achieve sexual intercourse, we determined the criterion for ED as EF < 18. The prevalence of ED in diabetics and age-matched controls was 60% and 20%, respectively. EF score decreased with duration of diabetes and progression of retinopathy, proteinuria, ischemic heart disease, delayed nerve conduction, orthostatic intolerance, and attenuated heart rate variability. ED was found to be common in Japanese male diabetics. Possible influences of both microangiopathy and macroangiopathy on ED are suggested.

Diabetes Mellitus, Type 2↗

History of obesity as a risk factor for both carotid atherosclerosis and microangiopathy.

As a westernized lifestyle becomes widespread in Japan, the number of individuals with obesity, as well as type 2 diabetes, is rapidly increasing. In this investigation, we studied the prevalence of obesity and its association with the development of diabetic macroangiopathy and microangiopathy. The clinical records of 634 patients in our hospital with type 2 diabetes were surveyed. The relationship between obesity and diabetic retinopathy and nephropathy and macroangiopathy (carotid artery intima-media thickness, IMT) was examined using univariate and multivariate analysis. A body mass index (BMI) > or = 25 kg/m2 was used as the diagnostic criterion for obesity. The prevalence of obesity at the time of the survey was 35% and a history of obesity was reported in 70% of the survey population. Multiple regression analysis revealed that the maximum BMI was significantly correlated with IMT thickening. The prevalence of nephropathy in previously obese patients was significantly higher than in non-obese patients. The maximum BMI was significantly associated with the development of retinopathy and nephropathy, as shown by logistic regression analysis. This suggests that a history of obesity may be an important risk factor for the development of micro- and macroangiopathy in Japanese with type 2 diabetes.

Carotid Artery Diseases↗

Rice bran extract prevents the elevation of plasma peroxylipid in KKAy diabetic mice.

Oxidative stress is now considered to be a key factor in the development of diabetes and its complications. In this study, we examined the anti-oxidative effects of a crude lipophilic rice bran extract, Ricetrienol, which contains alpha-tocopherol, tocotrienol and phytosterol, in obese diabetic KKAy mice. We used KKAy mice fed a normal diet (DM group) or a diet including 0.1% Ricetrienol (RT group), and non-diabetic C57BL mice (C group). After 6 weeks, body weight, HbA1c, plasma glucose, lipids, peroxylipid (malonedialdehyde, MDA), alpha-tocopherol and glutathione peroxidase 1 (GPx) mRNA expression in the kidney were measured. At 1 week and at the end of the experimental period, urine 8-isoprostane and 8-hydroxy deoxyguanosine (8-OHdG) were also measured. Ricetrienol administration did not affect hyperglycemia, body weight or hyperlipidemia. Plasma MDA, urine 8-isoprostane and 8-OHdG in the DM group were significantly increased compared with the C group and the elevation of plasma MDA was significantly suppressed by 0.1% Ricetrienol. GPx mRNA expression was significantly increased in the RT group when compared with the C group. Plasma alpha-tocopherol in the RT group was significantly higher than that in the DM group. These findings suggest that Ricetrienol exerts a protective effect against oxidative damage in diabetes mellitus.

8-Hydroxy-2'-Deoxyguanosine↗

Neurosarcoidosis with spinal root pain as the first symptom.

We report a 60-year-old woman with neurosarcoidosis. She was referred to our hospital for examination of the cause of pain in left Th4-6 dermatome. Chest X-ray and computed tomography (CT) revealed bilateral hilar and mediastinal lymphadenopathy, and her serum angiotensin converting enzyme (ACE) level was elevated. Histological finding of mediastinal lymph nodes consisted with sarcoidosis. Therefore, her pain was thought to be spinal root pain caused by neurosarcoidosis. With the administration of prednisolone, her symptom and bilateral hilar lymphadenopathy disappeared, and serum ACE level became normal. It is important to pay attention to neurosarcoidosis when patients show unknown spinal root symptom, although it is rare.

Back Pain↗

Uncoupling protein 2 promoter polymorphism -866G/A affects its expression in beta-cells and modulates clinical profiles of Japanese type 2 diabetic patients.

Common uncoupling protein 2 (UCP2) promoter polymorphism -866G/A is reported to be associated with its expression in adipose tissue and the risk of obesity in Caucasians. On the other hand, several studies suggested that UCP2 expression in beta-cells is an important determinant of insulin secretion. In the Japanese population, morbid obesity is very rare, and insulin secretion capacity is relatively low as compared with Caucasians. Because UCP2 would link to insulin secretion and obesity, it might explain this ethnic difference. Here, we report that the UCP2 promoter with the A allele showed higher promoter activity in the INS-1 beta-cell line. The frequency of the A allele is higher in our Japanese study than that in Caucasians. Type 2 diabetic patients with the A allele need insulin therapy earlier and showed higher frequency of insulin treatment. Moreover glucose-induced early insulin secretion is significantly lower in patients with the A allele. However, there was no difference in allele frequency between obese and lean type 2 diabetic patients. In conclusion, UCP2 promoter polymorphism -866G/A does not affect obesity in Japanese type 2 diabetic patients but affects its transcription in beta-cells and modulates glucose-induced insulin secretion and eventually insulin requirement in Japanese type 2 diabetic patients. Higher A allele frequency in the Japanese population might partly explain the ethnic difference of insulin secretion capacity.

Aged↗

Functional variants in the glutathione peroxidase-1 (GPx-1) gene are associated with increased intima-media thickness of carotid arteries and risk of macrovascular diseases in japanese type 2 diabetic patients.

Atherosclerosis in type 2 diabetic patients has been linked to increased oxidative stress. Glutathione peroxidase-1 (GPx-1) plays an important role in the antioxidant defense of the vascular wall. To assess the association between variants in the GPx-1 gene and atherosclerosis, we screened the gene in 184 Japanese type 2 diabetic patients and identified four polymorphisms (-602A/G, +2C/T, Ala(5)/Ala(6), and Pro198Leu). Among these polymorphisms, -602G, +2T, Ala(6), and 198Leu were in strong linkage disequilibrium with each other. The patients were divided into two groups on the basis of the codon 198 polymorphism, Pro/Pro (n = 151) and Pro/Leu (n = 33), to analyze clinical characteristics. The mean intima-media thickness (IMT) of common carotid arteries (P = 0.0028) and the prevalence of cardiovascular disease (P = 0.035) and peripheral vascular disease (P = 0.027) were significantly higher in the Pro/Leu group than in the Pro/Pro group. In vitro functional analyses indicated that the combination of polymorphisms (Ala(6)/198Leu) of the GPx-1 gene had a 40% decrease in enzyme activity, and the combination of polymorphisms (-602G/+2T) had a 25% decrease in transcriptional activity. These results suggest that functional variants in the GPx-1 gene are associated with increased IMT of carotid arteries and risk of cardiovascular and peripheral vascular diseases in type 2 diabetic patients.

Adult↗

A rare case of autoimmune polyglandular syndrome type 3.

A 57-year-old female was admitted to our hospital suffering from a lower lip tumor, small ulcers in the arms and alopecia of the head. Because she had type 2 diabetes mellitus (DM) for the past 3 years, she was referred to our department of internal medicine for its treatment. Her endogenous insulin secretion was much decreased despite the short duration of diabetes. Glutamic acid decarboxylase antibodies (GADA) and islet cell antibodies (ICA) were both positive. Therefore, she was diagnosed as having slowly progressive form of type 1 DM. Type 1 DM is sometimes complicated with autoimmune disorders. After further examinations, she was diagnosed as having Sjögren's syndrome, Graves' disease and autoimmune neutropenia (AIN). According to the histological examinations of the lip tumor and peripheral site of the skin ulcer, the patient was diagnosed as having carcinoma spinocellulare and chronic cutaneous lupus erythematosus. The examination also showed positive anti-intrinsic factor and anti-ribonucleoprotein (RNP) antibodies. She is a rare case of an autoimmune polyglandullar syndrome (APS) type 3 simultaneously manifesting these seven diseases with multiple autoimmune antibodies.

Alopecia↗

Nonsense and missense mutations in the human hepatocyte nuclear factor-1 beta gene (TCF2) and their relation to type 2 diabetes in Japanese.

Mutations in transcription factors expressed in the pancreatic beta-cell are a major cause of maturity-onset diabetes of the young (MODY). They have also been found in patients diagnosed with type 1 and type 2 diabetes mellitus, which may highlight the difficulty in diagnosing these forms of diabetes or perhaps indicate a direct role in the development of multiple forms of diabetes. We have screened the hepatocyte nuclear factor-1 beta (HNF-1 beta/MODY5) gene for mutations in a group of 126 unrelated Japanese patients with type 2 diabetes and a family history of at least one first degree relative with diabetes. We identified one patient with a nonsense mutation (R276X) and another with a missense mutation (S465R). These mutations were present in the heterozygous state and were not found in 132 nondiabetic subjects (264 normal alleles). We identified a second patient with the S465R mutation on screening a second group of 272 randomly selected type 2 diabetic patients but not in another 122 nondiabetic subjects. Functional studies indicated that R276X-HNF-1 beta was inactive and S465R-HNF-1 beta exhibited a 22% reduction in activity compared with the wild-type protein. The S465R mutation may function in a dominant-negative manner. The subject with the R276X mutation had MODY5 misdiagnosed as common type 2 diabetes. He was diagnosed with diabetes at 13 yr of age and also had small kidneys with multiple bilateral renal cysts and decreased urinary concentrating ability. The two subjects with the S465R mutation had typical late-onset type 2 diabetes and no evidence of kidney disease. We have identified two novel mutations in human HNF-1 beta gene. The prevalence of MODY5 among our population of Japanese diabetes patients with a strong positive family of disease is 0.8%. The S465R mutation was found in 0.5% of our patients with common type 2 diabetes and thus may be a rare genetic risk factor contributing to the development of type 2 diabetes rather than MODY5.

Adolescent↗