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Biomedical subjects

Yuji Hara

Publications and source records attributed to Yuji Hara.

At least 19 recordsLinked to original sources

Nitric oxide activates TRP channels by cysteine S-nitrosylation.

Transient receptor potential (TRP) proteins form plasma-membrane cation channels that act as sensors for diverse cellular stimuli. Here, we report a novel activation mechanism mediated by cysteine S-nitrosylation in TRP channels. Recombinant TRPC1, TRPC4, TRPC5, TRPV1, TRPV3 and TRPV4 of the TRPC and TRPV families, which are commonly classified as receptor-activated channels and thermosensor channels, induce entry of Ca(2+) into cells in response to nitric oxide (NO). Labeling and functional assays using cysteine mutants, together with membrane sidedness in activating reactive disulfides, show that cytoplasmically accessible Cys553 and nearby Cys558 are nitrosylation sites mediating NO sensitivity in TRPC5. The responsive TRP proteins have conserved cysteines on the same N-terminal side of the pore region. Notably, nitrosylation of native TRPC5 upon G protein-coupled ATP receptor stimulation elicits entry of Ca(2+) into endothelial cells. These findings reveal the structural motif for the NO-sensitive activation gate in TRP channels and indicate that NO sensors are a new functional category of cellular receptors extending over different TRP families.

Animals↗

A critical role of TRPM2 in neuronal cell death by hydrogen peroxide.

A brief exposure to hydrogen peroxide (H2O2) induces severe deterioration of primary cultured neurons in vitro. We have investigated a link between the H2O2-induced neuronal death and Ca2+-permeable TRPM2 channels regulated by ADP-ribose (ADPR). In cultured cerebral cortical neurons from fetal rat, TRPM2 proteins were detected at cell bodies and neurite extensions. Application of H2O2 to the cultured neurons elicited an increase in intracellular Ca2+ concentration ([Ca2+]i) caused by Ca2+ influx and the Ca2+-dependent neuronal death in a similar concentration range. Molecular cloning of TRPM2 cDNA from rat brain revealed several differences in amino acid sequences within the Nudix box region as compared with those of human and mouse TRPM2. ADPR-induced current responses, H2O2-induced Ca2+ influx, and H2O2-induced cell death were induced in human embryonic kidney cells heterologously expressing rat TRPM2. Treatment of cultured neurons with small interfering RNA against rat TRPM2,which efficiently suppressed immunoreactive TRPM2 content and the H2O2-induced Ca2+ influx,significantly inhibited H2O2-induced neuronal death. These results suggest that TRPM2 plays a pivotal role in H2O2-induced neuronal death as redox-sensitive Ca2+-permeable channels expressed in neurons.

Animals↗

TRPM2 activation by cyclic ADP-ribose at body temperature is involved in insulin secretion.

There are eight thermosensitive TRP (transient receptor potential) channels in mammals, and there might be other TRP channels sensitive to temperature stimuli. Here, we demonstrate that TRPM2 can be activated by exposure to warm temperatures (>35 degrees C) apparently via direct heat-evoked channel gating. beta-NAD(+)- or ADP-ribose-evoked TRPM2 activity is robustly potentiated at elevated temperatures. We also show that, even though cyclic ADP-ribose (cADPR) does not activate TRPM2 at 25 degrees C, co-application of heat and intracellular cADPR dramatically potentiates TRPM2 activity. Heat and cADPR evoke similar responses in rat insulinoma RIN-5F cells, which express TRPM2 endogenously. In pancreatic islets, TRPM2 is coexpressed with insulin, and mild heating of these cells evokes increases in both cytosolic Ca(2+) and insulin release, which is K(ATP) channel-independent and protein kinase A-mediated. Heat-evoked responses in both RIN-5F cells and pancreatic islets are significantly diminished by treatment with TRPM2-specific siRNA. These results identify TRPM2 as a potential molecular target for cADPR, and suggest that TRPM2 regulates Ca(2+) entry into pancreatic beta-cells at body temperature depending on the production of cADPR-related molecules, thereby regulating insulin secretion.

Animals↗

A functional AMPA receptor-calcium channel complex in the postsynaptic membrane.

Ca(2+) channels play critical roles in the regulation of synaptic activity. In contrast to the well established function of voltage-activated Ca(2+) channels in the presynaptic membrane for neurotransmitter release, some studies are just beginning to elucidate the functions of the Ca(2+) channels in the postsynaptic membrane. In this study, we demonstrated the functional association of alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA) receptors with the neuronal Ca(2+) channels. A series of biochemical studies showed the specific association of Ca(v)2.1 (alpha(1A)-class) and Ca(v)2.2 (alpha(1B)-class) with AMPA receptors in the postsynaptic membrane. Our electrophysiological and Ca(2+) imaging analyses of recombinant Ca(v)2.1 and AMPA receptors also showed functional coupling of the two channels. Considering the critical roles of postsynaptic intracellular concentration of Ca(2+) ([Ca(2+)](i)) increase and AMPA receptor trafficking for long-term potentiation (LTP) and long-term depression (LTD), the functional association of Ca(2+) channels with the AMPA receptors may provide new insights into the mechanism of synaptic plasticity.

Animals↗

Intracellular-produced hydroxyl radical mediates H2O2-induced Ca2+ influx and cell death in rat beta-cell line RIN-5F.

The melastatin-related transient receptor potential channel TRPM2 is a Ca(2+)-permeable channel that is activated by H(2)O(2), and the Ca(2+) influx through TRPM2 mediates cell death. However, the responsible oxidants for TRPM2 activation remain to be identified. In the present study, we investigated the involvement of hydroxyl radical on TRPM2 activation in TRPM2-expressing HEK293 cells and the rat beta-cell line RIN-5F. In both cell types, H(2)O(2) induced Ca(2+) influx in a concentration-dependent manner. However, the addition of hydroxyl radical, which was produced by mixing FeSO(4) and H(2)O(2), to the cells, did not increase intracellular Ca(2+) concentration. Interestingly, when H(2)O(2) was added to the cells under intracellular Fe(2+)-accumulated conditions, Ca(2+) influx was markedly enhanced compared to H(2)O(2) alone. In addition, the H(2)O(2)-induced Ca(2+) influx was reduced by hydroxyl radical scavengers and an iron chelator. Under intracellular Fe(2+)-accumulated conditions, H(2)O(2)-induced RIN-5F cell death through TRPM2 activation was also markedly enhanced. Hydroxyl radical scavengers and an iron chelator suppressed the RIN-5F cell death by H(2)O(2). These results strongly suggest that the intracellular hydroxyl radical plays a key role in the activation of TRPM2 during H(2)O(2) treatment, and TRPM2 activation mediated by hydroxyl radical is implicated in H(2)O(2)-induced cell death in the beta-cell line RIN-5F.

Adenosine Triphosphate↗

The role of canonical transient receptor potential 7 in B-cell receptor-activated channels.

Phospholipase C signaling stimulates Ca2+ entry across the plasma membrane through multiple mechanisms. Ca2+ store depletion stimulates store-operated Ca2+-selective channels, or alternatively, other phospholipase C-dependent events activate Ca2+-permeable non-selective cation channels. Transient receptor potential 7 (TRPC7) is a non-selective cation channel that can be activated by both mechanisms when ectopically expressed, but the regulation of native TRPC7 channels is not known. We knocked out TRPC7 in DT40 B-cells, which expresses both forms of Ca2+ entry. No difference in the store-operated current I(crac) was detected between TRPC7-/- and wild-type cells. Wild-type cells demonstrated nonstore-operated cation entry and currents in response to activation of the B-cell receptor or protease-activated receptor 2, intracellular dialysis with GTPgammaS, or application of the synthetic diacylglycerol oleyl-acetyl-glycerol. These responses were absent in TRPC7-/- cells but could be restored by transfection with human TRPC7. In conclusion, in B-lymphocytes, TRPC7 appeared to participate in the formation of ion channels that could be activated by phospholipase C-linked receptors. This represents the first demonstration of a physiological function for endogenous TRPC7 channels.

Animals↗

The non-selective cation-permeable channel TRPC3 is a tetrahedron with a cap on the large cytoplasmic end.

TRPC3 plays important roles in neuronal differentiation and immune cell maturation by mediating the cationic current in response to phospholipase C activation, Ca2+ depletion, and diacylglycerol stimulation. Here, we purified the TRPC3 channel using a glycosylated tetramer and observed the structure using electron microscopy. Negatively stained specimens demonstrate homogeneous protein particles containing an internal cavity-like structure. These particle images were picked up by automated pick-up programs, aligned, and classified by the growing neural gas network method. Similarly oriented projections were averaged to decrease the signal-to-noise ratio. The averaged images progress from the top view to the side views, which are representative of their raw images. The top view confirmed the hypothesis of a four-domain structure, and the side view demonstrates a large cytoplasmic domain with a capped structure at the bottom, which is near a predicted locus of ion release. The total image of the protein is a blunt-edged trapezoid of 200 x 200 x 235 A. This large dimension of TRPC3 is also supported by the Stokes radius (92 A) obtained from gel filtration chromatography.

Chromatography, Gel↗

Effect of beta-blocker therapy on myocardial perfusion defects in thallium-201 scintigraphy in patients with dilated cardiomyopathy.

BACKGROUND: The beneficial effects of beta-blocker therapy in patients with heart failure have been confirmed. However, the effects of beta-blockers on myocardial perfusion defects are unclear. The aim of this study was to evaluate the effect of beta-blockers on myocardial perfusion defects estimated by thallium-201 myocardial scintigraphy in patients with dilated cardiomyopathy (DCM) and to investigate the relationships between beta-blocker treatment and myocardial damage and cardiac function. METHODS: 201Tl and echocardiography were performed in 37 patients before and after 6 months of beta-blocker therapy. Extent score (ES) by 201Tl was used to quantitate myocardial perfusion defects before and after treatment. RESULTS: ES was significantly decreased by beta-blocker therapy. According to the change in ES, DCM patients were classified into three groups, patients who improved, patients showing no change and patients who deteriorated. In the improvement and no-change groups, beta-blocker therapy induced a reduction in left ventricular dimensions and an associated increase in ejection fraction. However, in the deterioration group, left ventricular dimensions and ejection fraction were unchanged. There was a significant relationship between the change in left ventricular dimension at end-diastole and the change in ES. CONCLUSIONS: beta-Blocker therapy could attenuate myocardial perfusion defects in some patients with DCM. The improvement in left ventricular function associated with beta-blocker therapy may be related to the attenuation in myocardial perfusion defects.

Adolescent↗

Comprehensive analysis of the ascidian genome reveals novel insights into the molecular evolution of ion channel genes.

Ion fluxes through membrane ion channels play crucial roles both in neuronal signaling and the homeostatic control of body electrolytes. Despite our knowledge about the respective ion channels, just how diversification of ion channel genes underlies adaptation of animals to the physical environment remains unknown. Here we systematically survey up to 160 putative ion channel genes in the genome of Ciona intestinalis and compare them with corresponding gene sets from the genomes of the nematode Chaenorhabditis elegans, the fruit fly Drosophila melanogaster, and the more closely related genomes of vertebrates. Ciona has a set of so-called "prototype" genes for ion channels regulating neuronal excitability, or for neurotransmitter receptors, suggesting that genes responsible for neuronal signaling in mammals appear to have diversified mainly via gene duplications of the more restricted members of ancestral genomes before the ascidian/vertebrate divergence. Most genes responsible for modulation of neuronal excitability and pain sensation are absent from the ascidian genome, suggesting that these genes arose after the divergence of urochordates. In contrast, the divergent genes encoding connexins, transient receptor potential-related channels and chloride channels, channels involved rather in homeostatic control, indicate gene duplication events unique to the ascidian lineage. Because several invertebrate-unique channel genes exist in Ciona genome, the crown group of extant vertebrates not only acquired novel channel genes via gene/genome duplications but also discarded some ancient genes that have persisted in invertebrates. Such genome-wide information of ion channel genes in basal chordates enables us to begin correlating the innovation and remodeling of genes with the adaptation of more recent chordates to their physical environment.

Animals↗

Endothelial nitric oxide synthase gene polymorphism (Glu298Asp) in patients with coexistent hypertrophic cardiomyopathy and coronary spastic angina.

Coronary vasospasm appears to play a significant role in the etiology of myocardial ischemia in patients with hypertrophic cardiomyopathy (HCM). Furthermore, the management of patients with coexistent HCM and coronary spastic angina (CSA) presents a therapeutic challenge. The purpose of this study was to examine the Glu298Asp variant of the endothelial nitric oxide synthase (eNOS) gene to determine whether this polymorphism was associated with susceptibility to CSA in patients with HCM. The eNOS gene polymorphism (Glu298Asp) was genotyped in 150 HCM patients by the TaqMan chemical method. Patients were classified into group A (n=12) if they had CSA provoked by intracoronary acetylcholine, and group B (n=138) if they did not. In group A, the frequency of Glu/Glu, Glu/Asp, and Asp/Asp genotypes was 5 (41.7%), 6 (50%), and 1 (8.3%), respectively. In group B, it was 119 (86.2%), 17 (12.3%), and 2 (1.5%), respectively. The frequency of the Asp298 variant was significantly higher in group A than in group B (P<0.001). Multivariate logistic regression analysis showed that the Asp298 variant was a significant risk factor for CSA (odds ratio 11.8; P<0.001) that was independent of age, gender, smoking status or body mass index. Significantly more drugs were used by the patients in group A than those in group B and the patients with the Asp298 variant were treated with significantly more drugs than those without it. In conclusion, the Asp298 variant of the eNOS gene may be associated with CSA in HCM patients. HCM patients with CSA or the Asp298 variant may need more drugs to relieve their symptoms.

Amino Acid Substitution↗

Relation of genetic predisposition and insulin resistance to left ventricular hypertrophy in hypertension.

BACKGROUND: The aim of the study was to determine whether genetic predisposition to hypertension and insulin resistance are related to left ventricular (LV) hypertrophy in essential hypertension. METHODS: The study included 72 nondiabetic patients with essential hypertension and 15 normotensive control (NC) subjects. The 72 patients were divided into two groups according to genetic predisposition to hypertension. The family history (FH)(+) group included 33 patients with at least one essential hypertensive parent or sibling. The FH(-) group included 39 patients with weak genetic predisposition to hypertension. Insulin resistance was estimated using the homeostasis model assessment (HOMA). Echocardiographically determined LV mass (LVM) and relative wall thickness (RWT) were measured as markers of LV hypertrophy. RESULTS: The HOMA values in the FH(+) group (2.00 +/- 0.89) were significantly higher than those in either the FH(-) group (1.21 +/- 0.44) or NC subject group (0.91 +/- 0.24). The HOMA values in the FH(-) group were significantly higher than those in NC subjects. The LVM and RWT were greatest in the FH(+) group, followed by those in the FH(-) group and NC subjects. There were no significant differences in LVM and RWT between the FH(-) group and NC subjects. By multivariate analysis, HOMA value (P = .0011), male sex (P = .0032), body mass index (P = .0061), systolic blood pressure (P = .0245), and genetic predisposition to hypertension (P = .0441) remained determinants of LVM in nondiabetic patients with essential hypertension. CONCLUSIONS: Genetic predisposition to hypertension and the HOMA value appear to have additive impact on LV hypertrophy. This relation is independent of well-known determinants of LVM such as male sex, overweight, and high blood pressure.

Adult↗

Serum markers of angiogenesis and myocardial ultrasonic tissue characterization in patients with dilated cardiomyopathy.

BACKGROUND AND AIMS: It has been proven that a disturbance in angiogenesis contributes to the progression of myocardial interstitial fibrosis in idiopathic dilated cardiomyopathy (DCM). This study was designed to evaluate the relationship between serum activity of angiogenic factors and myocardial ultrasonic tissue characterization in patients with DCM. METHODS AND RESULTS: We studied 30 patients with DCM and 15 healthy control subjects. Serum levels of vascular endothelial growth factor (VEGF), interleukin (IL)-4 and IL-13 were measured using enzyme-linked immunosorbent assay. We determined calibrated myocardial integrated backscatter (IB) as the value of myocardial interstitial fibrosis using ultrasonic tissue characterization and also quantified the magnitude of cyclic variations in IB (CV-IB). Serum levels of VEGF and IL-13 were significantly higher in patients with DCM than in control subjects (both P<0.05). Calibrated IB was significantly higher and CV-IB was markedly lower in patients with DCM than in control subjects (both P<0.01). In patients with DCM, the levels of IL-13 significantly correlated with calibrated IB (r=0.520, P=0.018). In addition, there was a significant negative correlation between levels of VEGF and CV-IB (r=-0.611, P=0.007). CONCLUSION: The increase in serum VEGF and IL-13 may be closely related to alterations in myocardial texture in DCM.

Adult↗

Antiarrhythmic drug cibenzoline attenuates left ventricular pressure gradient and improves transmitral Doppler flow pattern in patients with hypertrophic obstructive cardiomyopathy caused by midventricular obstruction.

BACKGROUND: Recent interventional and surgical therapies to attenuate left ventricular pressure gradient (LVPG) can be difficult to perform in patients with hypertrophic obstructive cardiomyopathy (HOCM) caused by midventricular obstruction (MVO), owing to the risk of inducing or deteriorating mitral regurgitation. METHODS AND RESULTS: The effects of the antiarrhythmic drug, cibenzoline, on LVPG and left ventricular (LV) diastolic function estimated by the change in the transmitral Doppler flow pattern were examined in 23 patients with HOCM and MVO. Hemodynamic changes 2 h after a single dose of 200 mg of cibenzoline and 3 months after oral administration of 300-450 mg of cibenzoline per day were examined. At 2 h after the treatment, LVPG decreased from 79+/-37 mmHg to 24+/-21 mmHg (p < 0.0001). E-wave velocity significantly increased and A-wave velocity significantly decreased, and thus the E/A ratio increased from 0.83+/-0.39 to 1.36+/-0.50 (p < 0.0001). After 3 months of treatment, LVPG remained decreased, and the E-wave and A-wave velocities and the E/A ratio remained improved. CONCLUSIONS: Cibenzoline can attenuate LVPG and ameliorate LV diastolic dysfunction in patients with HOCM caused by MVO, which suggests a new strategy for the management of this condition.

Aged↗

[Repeated changes of electrocardiogram caused by Takotsubo-type cardiomyopathy: a case with hypertrophic nonobstructive cardiomyopathy].

A 67-year-old woman had been examined due to abnormalities on electrocardiography (ECG) at a medical checkup three years previously. When a negative T-wave was seen in leads I, aVL, and V1 to V4, but the abnormal findings were improved at consultation. Echocardiography revealed apical hypertrophy and hypertrophic nonobstructive cardiomyopathy was diagnosed. She felt chest discomfort in September, 2003 and an ECG showed a negative T-wave in leads I, II, III aVL, aVF and V2 to V6 and an elongation of QT interval Left ventriculography revealed myocardial hypertrophy at the left ventricular apex and left ventriclar wall motion was normal. Coronary angiography did not show any significant luminal narrowing. I-123 metaiodobenzyl-guanitidine scintigraphy showed marked perfusion defects at the left ventricular apex. After five months, ECG showed an improvement of the QT interval and a decrease in the negative T-wave. We considered that the repeated changes of ECG were caused by Takotsubo-type cardiomyopathy.

Aged↗

[A 73-year-old man with primary pulmonary hypertension].

A rare case of primary pulmonary hypertension was observed in a 73-year-old man. Angina pectoris was diagnosed at the age of 67 and he received several percutaneous coronary interventions because of refractory restenosis. He also had coronary artery bypass surgery at the age of 69. After 4 years, he again suffered from dyspnea and chest pain upon physical exertion. On admission to our hospital, a chest radiograph showed dilatation of bilateral pulmonary arteries. Moreover, echocardiography showed right ventricular dilatation and tricuspid regurgitation. Continuous wave Doppler imaging revealed a pressure gradient of 82.1 mmHg. Pulmonary capillary wedge pressure was normal, but pulmonary artery pressure was elevated upon cardiac catheterization. Because there was no apparent etiology of pulmonary hypertension, primary pulmonary hypertension was diagnosed and appropriate conventional therapy was started.

Aged↗

Separate origins of three coronary arteries arising from the right sinus of Valsalva.

A 58-year-old woman underwent coronary angiography because of chest pain on exertion. Her three coronary arteries arose from separate ostia in the right sinus of Valsalva. The left anterior descending coronary artery coursed between the great vessels, and the circumflex coronary artery coursed anterior to the pulmonary artery. Angiographic and clinical data of this rare anomaly are described.

Adrenergic beta-Antagonists↗