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Biomedical subjects

M Yokoyama

Publications and source records attributed to M Yokoyama.

At least 19 recordsLinked to original sources

Involvement of MAP kinase activators in angiotensin II-induced activation of MAP kinases in cultured vascular smooth muscle cells.

In cultured vascular smooth muscle cells (VSMC) angiotensin II (ang II) induces tyrosine and serine/threonine phosphorylation and activation of two mitogen-activated protein (MAP) kinases. When extracts of ang II-stimulated VSMC were fractionated by Mono Q anion-exchange column chromatography, three peaks of the activities which in vitro activate inactive MAP kinases were detected. These MAP kinase activator activities were not detected in extracts of unstimulated VSMC. In vitro activation of MAP kinases by the MAP kinase activators was accompanied by tyrosine and serine/threonine phosphorylation of MAP kinases. These results suggest that the MAP kinase activators are involved in the ang II-induced phosphorylation and activation of MAP kinases in VSMC.

Angiotensin II

Expression of Fos-like immunoreactivity by yohimbine and clonidine in the rat brain.

To elucidate the role of alpha 2-adrenoceptors in transcriptional control in the rat brain, we localized the Fos-like immunoreactivity (Fos-LI) induced by alpha 2-adrenoceptor agonists and by an antagonist. Injections of yohimbine (5 mg/kg, i.p.) into rats led to the induction of Fos-LI in areas with a dense alpha 2-adrenoceptor binding such as the locus coeruleus, the bed nucleus of stria terminalis, the central nucleus of amygdaloid complex, the paraventricular nucleus, the nucleus tractus solitarius, and ventrolateral medulla oblongata. Clonidine (500 micrograms/kg, i.p.) suppressed the Fos expression by yohimbine in these nuclei, and clonidine (100 micrograms/kg, i.p.) or guanabenz (4 mg/kg, i.p.) induced Fos-LI in oxytocin neurons in the paraventricular and supraoptic nuclei in the hypothalamus. Thus, the alpha 2-adrenoceptor is involved in transcriptional control via Fos expression in neurons related to autonomic and other functions.

Animals

Studies on the hepatotoxicity induced by bis (tributyltin) oxide.

The toxic effects of bis (tributyltin) oxide (TBTO) on the rat liver were studied with an electron microscope and the accumulation sites of tin were determined with an X-ray microanalyzer. The activities of serum enzymes and the concentration of serum bilirubin were also analyzed. Male Wistar rats received an intramuscular injection of 0.5 ml/kg of TBTO. Marked swelling of the mitochondria appeared in the hepatocytes 4 h after injection of TBTO. Cytoplasmic vacuoles, which contained degenerated mitochondria, gradually increased in number in these hepatocytes. This in turn may have caused a decrease in the volume of hepatic cell cords and an enlargement of sinusoids in the entire hepatic lobule. However, fine structures of intrahepatic bile ducts were not altered. By X-ray microanalysis, tin peaks were preferentially obtained from swollen mitochondria of the hepatocytes. By polarographic analysis of the respiratory responses of mitochondria, it was demonstrated that rates of state 4 respiration and respiratory control ratio were significantly disturbed in TBTO-treated rats in comparison with those of controls. The activities of AST (aspartate aminotransferase) and ALT (alanine aminotransferase) were significantly increased after TBTO treatment, but those of ALP (alkaline phosphatase), LAP (leucine aminopeptidase) and total bilirubin were not changed. These results indicated that parenterally administered TBTO accumulated in the liver cell mitochondria and disturbed oxidative phosphorylation. Mitochondrial dysfunction might induce severe damage of the hepatocytes. Four days after injection of TBTO, hepatic structures and chemical indices were almost restored by the regeneration of hepatocytes.

Alanine Transaminase

The role of the rat submandibular gland in the excretion of bis (tributyltin) oxide: electron microscopy, X-ray microanalysis and atomic absorption analysis.

The role of the submandibular glands in the excretion of parenterally administered bis (tributyltin) oxide (TBTO) was studied. Fine structural alterations of the submandibular glands were observed with an electron microscope. Accumulation sites of TBTO were determined with an X-ray microanalyzer and tin concentrations in saliva and blood were measured by atomic absorption spectrophotometry.

Animals

Detection of human papillomavirus genome and analysis of expression of c-myc and Ha-ras oncogenes in invasive cervical carcinomas.

Invasive carcinomas of the uterine cervix of 38 patients were examined for the presence of human papillomavirus (HPV) genomes and for the state of the c-myc and Ha-ras oncogenes. A combination of Southern blot hybridization and polymerase chain reaction revealed the presence of the genome of HPV type 16 in 17 tumors (45%), that of HPV type 18 in 3 tumors (8%), and that of unknown types in 16 others (42%), while no viral DNA sequences were detected in 2 tumors. Of the 38 tumors, c-myc amplification was found in only 1 tumor, while there was no Ha-ras amplification. Overexpression of the c-myc gene was observed in 15 (44%) of the 34 tumors analyzed, while there was no overexpression of Ha-ras. Of the 23 squamous cell carcinomas analyzed, relapse-free rates at 24 months were 55% in tumors with c-myc overexpression and 100% in case of tumors with no c-myc overexpression, respectively. The results suggest the possibility that activation of the c-myc oncogene is involved in tumor progression.

Base Sequence

Analysis of the human tyrosine hydroxylase promoter-chloramphenicol acetyltransferase chimeric gene expression in transgenic mice.

To investigate cis-elements responsible for catecholaminergic (CAnergic) neuron-specific expression of the tyrosine hydroxylase (TH) gene, we produced lines of transgenic mice carrying 5.0-kb, 2.5-kb and 0.2-kb fragments from the 5'-flanking region of the human TH gene fused to a reporter gene, chloramphenicol acetyltransferase (CAT), and designated them as TC 50, TC 25, and TC 02, respectively, and reporter gene expression in transgenic mice was analyzed by CAT assay by immunocytochemistry with anti-CAT antibody. High-level CAT expression was observed in the brain and adrenal gland using the 5.0-kb promoter of the TC 50 mice, but ectopic expression was consistently observed in several somatic tissues, e.g. thymus, colon, and testis. In brain, expression was achieved in CAnergic neurons with the largest construct (5.0 kb), but not with 2.5 kb or 0.2 kb of 5' flanking sequence. However, TC 50 mice also expressed CAT immunoreactivity in non-CAnergic neurons. In the TC 25 line CAT immunoreactivity was detected only in some non-CAnergic neurons. In the TC 02 line no CAT immunoreactivity was detected in any of the tissues examined. These results indicate that the 5.0-kb DNA fragment of the TH gene upstream region contains activity to express CAT in CAnergic neurons and surprisingly, lacks some regulatory elements attenuating ectopic expression, and that the 2.5-kb and 0.2-kb fragment are not sufficient for the proper expression. We discuss the presence of the tissue-specific regulatory elements in the structure portion of the TH gene and/or 3'-flanking region.

Animals

Regional differences of phospholipase A2 activity in the rabbit oviductal epithelium.

To evaluate the biosynthesis of prostaglandins in the oviducts, phospholipase A2 (EC 3.1.1.4) activities were first measured in the epithelial cells obtained from rabbit oviducts. At least four kinds of phospholipase A2 (PLA2) activities with respect to calcium dependency and pH requirement were observed. There were two calcium-dependent, pH optima of 7.5 and 8.5 activities, and two calcium-independent, pH optima of 4.0 and 8.0 activities. One of those activities, a calcium-dependent and alkaline active PLA2 activity of the epithelial cells was then compared between the ampullary portion and the isthmic portion of the oviducts. The activity was significantly higher in the ampullary epithelium than in the isthmic epithelium (223.2 +/- 57.2 or 103.8 +/- 32.3 pmol/min/mg, p < 0.05). These results support the idea that the production of prostaglandins, which is dependent upon the activity of the arachidonate cascades, was higher in the ampullary portion of oviduct than that in the isthmic portion. The PLA2 activity of the ampullary epithelium may thus play an important role in the regulation of smooth muscle contractility and ciliary movement.

Animals

Blood pressure changes following extracorporeal shock wave lithotripsy for urolithiasis.

Hypertension after extracorporeal shock wave lithotripsy (ESWL) has been a controversial subject. Changes in blood pressure were studied in 262 patients (mean age 47.8 years) 18.6 months after ESWL. According to World Health Organization criteria the number of patients who showed a decrease exceeded those who showed an increase in blood pressure. The patients who have been on antihypertensive therapy showed a significantly greater decrease in blood pressure than those without medication. Of 192 normotensive patients diastolic pressure increased 1.2 mm. Hg and 2 (1.0%) had hypertension 18.4 months after ESWL. Annualized increase in diastolic pressure and new onset of hypertension were calculated to be 0.78 mm. Hg and 0.65%, respectively. Significant elevation of diastolic pressure was noted in the patients who received a larger number of shock waves. Blood pressure should be carefully followed after ESWL especially in patients who have been treated by a greater number of shock waves.

Adult

Determination of left ventricular volume using a conductance catheter in the diseased human heart.

To validate the accuracy of human left ventricular (LV) volume measured by the conductance catheter method, conductance volume was compared with LV volume measured by biplane angiography in 19 patients with ischaemic heart disease. Angiographic LV volumes were calculated frame by frame and matched with instantaneous conductance volumes. Calibration was determined by both gain constant, 1/alpha, and parallel conductance, alpha V c. The gain constant, 1/alpha, was the ratio of stroke volume measured by the thermodilution method to that measured by the conductance catheter. The parallel conductance, alpha Vc, was estimated by the saline injection method. There was a good correlation between the corrected conductance volume (Vcc) and the angiographic volume (V angio) such that Vcc = 0.94 V angio + 5.3 ml, r = 0.94, P < 0.001. There were no differences in the correlation coefficients between normal and depressed hearts. Compared with the angiographic data, LV end-diastolic volume, end-systolic volume and ejection fraction were determined accurately by the conductance catheter. We conclude that the conductance catheter method, corrected for gain constant and parallel conductance, can accurately and continuously estimate the LV volume throughout the cardiac cycle in the diseased human heart.

Aged

Comparison between preload recruitable stroke work and the end-systolic pressure-volume relationship in man.

We compared linearity, inotropic sensitivity (using dobutamine) and afterload dependency (using captopril) of contractile indices derived from the end-systolic pressure-volume relationship (ESPVR) and preload recruitable stroke work (PRSW) in man. We investigated 60 patients, 39 with normal (EF > or = 50%, group 1) and 21 with decreased ventricular function (EF < 50%, group 2). Variably loaded P-V loops were constructed by conductance catheters with vena caval occlusions. The slopes of the ESPVR (Emax) and PRSW (Mw) were assessed by linear regression analysis. The correlation coefficients of the ESPVR (r = 0.964) and PRSW (r = 0.976) were both very high, but the Z-value of the ESPVR was lower than for PRSW. During the control period, normalized Emax and Mw were significantly higher in group 1 than group 2 (Emax: 4.6 +/- 2.3 vs 2.8 +/- 0.8 mm Hg ml-1 m-2, Mw: 109 +/- 31 vs 86 +/- 28 10(3) dyn cm-2. After dobutamine, Emax and Mw increased significantly both in group 1 (128% and 124% vs control respectively) and in group 2 (132% and 130% respectively). After captopril, the ESPVR tended to shift to the right with a decrease in afterload; PRSW was unchanged. We conclude that PRSW may be a more linear and reliable index for evaluation of contractility in man.

Administration, Oral

Assessment of myocardial oxygen consumption (Vo2) and systolic pressure-volume area (PVA) in human hearts.

Several studies have recently reported that the relationship between myocardial oxygen consumption per beat (Vo2) and left ventricular (LV) systolic pressure-volume area (PVA), which represents total mechanical energy generated by contraction, is linear and independent of loading conditions in excised, supported, and intact hearts. We assessed the Vo2-PVA relationship in nine patients with heart disease. LV volume and pressure were measured simultaneously by conductance catheter and tip-micromanometer. Vo2 was calculated from the difference between arterial and coronary sinus oxygen content, and coronary sinus blood flow measured by the thermodilution method. We obtained the linear relationship between Vo2 and PVA by dextran infusions (median r = 0.917). The slope of the Vo2-PVA relationship was (1.82 +/- 0.66) x 10(-5) mlO2 mmHg-1 ml-1 and the contractile efficiency, the reciprocal of the slope of the Vo2-PVA relationship, was 40 +/- 13%. The Vo2 intercept, which reflects Vo2 for non-mechanical work, was 0.0284 +/- 0.0286 ml O2 beat-1. These results suggest that PVA is a good predictor of myocardial oxygen consumption and a powerful tool to evaluate the coupling of LV mechanical performance to energy use in human hearts.

Angina Pectoris

Endothelin-1 stimulates tyrosine phosphorylation and the activities of two mitogen-activated protein kinases in cultured vascular smooth muscle cells.

OBJECTIVE: Endothelin-1 (ET-1) has been reported to stimulate the expression of the proto-oncogenes c-fos and c-myc, and to cause DNA synthesis in vascular smooth muscle cells (VSMC). The purpose of this study was to clarify the signalling pathway from ET receptors to the nucleus. DESIGN: Mitogen-activated protein (MAP) kinase, which is activated by various growth factors via phosphorylation of tyrosine and threonine residues, plays important roles as an intermediate in the signalling pathways from growth factor receptors to the ribosomes and nucleus. We examined the effect of ET-1 on the phosphorylation and activation of MAP kinase in cultured VSMC. METHODS: Extracts of ET-1-stimulated VSMC were analysed by one- and two-dimensional gel electrophoresis and anion-exchange column chromatography. Tyrosine-phosphorylated proteins and MAP kinases were detected by immunoblot analyses with anti-phosphotyrosine and anti-MAP kinase antibodies, respectively. The MAP kinase activity was measured using myelin basic protein as a substrate. The MAP kinases were isolated from 32P-labelled VSMC and subjected to phosphoamino acid analysis. RESULTS: ET-1 induced tyrosine phosphorylation of at least five proteins of about 79, 77, 73, 45 and 40 kDa in VSMC. The mobilities of the tyrosine-phosphorylated 45- and 40-kDa proteins were identical with those of the two proteins that were recognized by anti-MAP kinase antibody upon one- and two-dimensional gel electrophoresis. ET-1 stimulated MAP kinase activity in a time-course similar to that of the tyrosine phosphorylation of the 45- and 40-kDa proteins. The ET-1-stimulated MAP kinase activity was resolved almost equally into two peaks upon Mono Q column chromatography (kinase 1 and kinase 2). Kinase 1 and kinase 2 were co-eluted with the tyrosine-phosphorylated 40- and 45-kDa proteins, respectively. The apparent molecular masses of kinase 1 and kinase 2 estimated by MAP kinase assay in polyacrylamide gel were identical with those of tyrosine-phosphorylated 40- and 45-kDa proteins, respectively. Upon phosphoamino acid analysis, ET-1 stimulated phosphorylation of MAP kinases not only on tyrosine but also on threonine residues. CONCLUSIONS: ET-1 induces tyrosine and threonine phosphorylation and the activation of two species of MAP kinases of 40 and 45 kDa in VSMC.

Animals

Impaired vasodilatory response to atrial natriuretic peptide during atherosclerosis progression.

This study was undertaken to examine the alterations in vascular relaxation responsiveness to endothelium-dependent or -independent vasodilators, including atrial natriuretic peptide (ANP) and acetylcholine, in aortas of Watanabe heritable hyperlipidemic (WHHL) rabbits during the progression of the atherosclerotic plaque. WHHL rabbits were divided into two groups according to age: group 1, 6-11 months, and group 2, 12-18 months. The isolated thoracic aortas obtained from both normal (control) and WHHL rabbits were suspended in a bath containing oxygenated Krebs' buffer for recording of isometric force. The endothelium-dependent relaxation evoked by acetylcholine was reduced in group 1 WHHL rabbits and decreased progressively in proportion to the degree of atherosclerosis progression when compared with age-matched control rabbits. ANP-induced relaxation was not significantly decreased in group 1 WHHL rabbits. However, ANP-induced relaxation was markedly impaired in group 2 WHHL rabbits. Thoracic aortas with severe atherosclerosis were less sensitive to ANP, with a significant increase in the median effective dose, although maximum relaxation induced by ANP was not reduced. Accumulation of cyclic GMP induced by ANP and acetylcholine was markedly reduced in atherosclerotic arteries obtained from group 2 WHHL rabbits compared with control rabbits. Vascular relaxation elicited by nitroglycerin or isoproterenol was not significantly impaired in atherosclerotic arteries from either group 1 or group 2 WHHL rabbits. From these results, we suggest that ANP-induced cyclic GMP formation and vascular relaxation via particulate guanylate cyclase in vascular smooth muscle cells are impaired in severely atherosclerotic arteries.

Acetylcholine

P2-purinoceptor activation stimulates phosphoinositide hydrolysis and inhibits accumulation of cAMP in cultured ventricular myocytes.

Extracellular ATP modulates cardiac contraction through P2-purinoceptors on cardiac myocytes. To elucidate the molecular mechanism of this response, we examined the effects of P2-purinoceptor activation on phosphoinositide (PI) hydrolysis and the cAMP system in cultured ventricular myocytes of fetal mice. In a concentration-dependent manner, ATP stimulated accumulations of [3H]inositol monophosphate, bisphosphate, and trisphosphate with the half-maximum effective concentration of approximately 1 microM in the myocytes labeled with [3H]inositol. The order of efficacy of a series of adenyl compounds for stimulation of PI hydrolysis was adenosine 5'-O-(3-thiotriphosphate) (ATP gamma S), ATP greater than ADP, 5'-adenylylimidodiphosphate (APPNP) greater than alpha,beta-methyleneadenosine 5'-triphosphate (APCPP) greater than beta,gamma-methyleneadenosine 5'-triphosphate, AMP greater than adenosine. On the other hand, 100 microM ATP gamma S inhibited isoproterenol-induced accumulation of cAMP by approximately 70% without decreasing the time to maximal cAMP levels, as measured by radioimmunoassay. This response was also concentration dependent, with a half-maximum inhibitory concentration (IC50) of approximately 1 microM. All of the tested ATP, ADP, and ATP analogues inhibited the cAMP system, and the responses to ATP gamma S, APPNP, and APCPP were insensitive to an A1-purinoceptor antagonist, 8-cyclopentyl-1,3-dipropylxanthine. Pertussis toxin attenuated the ATP-induced PI hydrolysis by no more than 25% at 100 ng/ml but completely suppressed the ATP gamma S-induced inhibition of the cAMP system.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

Angiotensin II stimulates two myelin basic protein/microtubule-associated protein 2 kinases in cultured vascular smooth muscle cells.

In cultured vascular smooth muscle cells, angiotensin II (Ang II) stimulated a cytosolic protein kinase activity toward myelin basic protein (MBP) in a time- and dose-dependent manner. Phorbol 12-myristate 13-acetate (PMA) and phorbol 12,13-dibutyrate also increased the MBP kinase activity. Downregulation of protein kinase C by prolonged treatment of the cells with phorbol 12,13-dibutyrate markedly attenuated the Ang II- and PMA-induced MBP kinase activation. The Ang II- and PMA-stimulated MBP kinase activities were resolved almost equally into two distinct fractions on Mono-Q HR5/5 column chromatography (kinase 1 and kinase 2). The kinase assay in polyacrylamide gel revealed that apparent molecular masses of kinase 1 and kinase 2 were 40 and 45 kd, respectively. Microtubule-associated protein 2 also served as a substrate for both the kinases. Immunoblot analysis with an antiphosphotyrosine antibody suggested that both the kinases were tyrosine-phosphorylated during the action of Ang II. Phosphoamino acid analysis revealed that Ang II and PMA induced phosphorylation of both the kinases on serine/threonine as well as tyrosine residues. Phosphopeptide mapping patterns of kinase 1 and kinase 2 isolated from Ang II-stimulated cells were almost identical with those from PMA-stimulated cells. These results indicate that in vascular smooth muscle cells Ang II activates two species of MBP/microtubule-associated protein 2 kinases mainly through the protein kinase C-signaling pathway and suggest that tyrosine and serine/threonine phosphorylation may be involved in this process.

Angiotensin II

Lysophosphatidylcholine inhibits bradykinin-induced phosphoinositide hydrolysis and calcium transients in cultured bovine aortic endothelial cells.

Vascular endothelium, which produces endothelium-derived relaxing and constricting factors, plays an important role in regulating the vascular tone. We recently demonstrated that oxidized low density lipoprotein inhibited endothelium-dependent relaxation and that lysophosphatidylcholine accumulated during the oxidative modification of low density lipoprotein was the essential substance for the inhibition of endothelium-dependent relaxation. To clarify the mechanisms of the inhibitory effect of lysophosphatidylcholine, we used a bioassay system to investigate the effect of lysophosphatidylcholine on the production and/or release of endothelium-derived relaxing factor and its effect on the cytosolic Ca2+ level ([Ca2+]i) and phosphoinositide hydrolysis in cultured bovine aortic endothelial cells. [Ca2+]i was monitored by the fura 2 method, and the accumulation of inositol phosphates in cells labeled with myo-[2-3H]inositol was measured. Bioassay experiments showed that lysophosphatidylcholine inhibited the production and/or release of endothelium-derived relaxing factor from cultured endothelial cells. Lysophosphatidylcholine (5-20 micrograms/ml) induced a biphasic increase in [Ca2+]i, which consisted of a rapid increase followed by a sustained increase, and the initial component was a result of mobilization from intracellular Ca2+ stores without detectable synthesis of inositol 1,4,5-trisphosphates. Furthermore, lysophosphatidylcholine (5-20 micrograms/ml) dose-dependently inhibited both phosphoinositide hydrolysis and the increases in [Ca2+]i evoked by bradykinin. These results indicate that the impairment of endothelium-dependent relaxation induced by lysophosphatidylcholine is due to the inhibition of phosphoinositide hydrolysis and the subsequent increases in [Ca2+]i in endothelial cells. Lysophosphatidylcholine that accumulates in oxidized low density lipoprotein and atherosclerotic arteries may play an important role in the modification of endothelial function.

Animals

Effects of flumazenil on intravenous lidocaine-induced convulsions and anticonvulsant property of diazepam in rats.

We investigated the effect of flumazenil on intravenous (IV) lidocaine-induced convulsions with and without diazepam pretreatment in rats. Wistar rats (200-250 g) were divided into four groups of seven each and were pretreated with IV diazepam or normal saline solution at 6 min and flumazenil or normal saline solution at 3 min before lidocaine infusion. The control group received normal saline solution; the diazepam group received 0.2 mg/kg of diazepam and normal saline solution; the diazepam+flumazenil group received 0.2 mg/kg of diazepam and 0.1 mg/kg of flumazenil; and the flumazenil group received normal saline solution and 0.1 mg/kg of flumazenil. After surgical preparation and recovery from anesthesia, all groups received a continuous IV infusion of lidocaine (15 mg/mL) at a rate of 4 mg.kg-1.min-1 until tonic/clonic convulsions occurred. The values of pH and blood gases were maintained within physiologic ranges. Heart rate was significantly decreased after 5 min of lidocaine infusion, but arterial blood pressure did not change until convulsions occurred in all groups. Pretreatment with diazepam alone increased both cumulative convulsant doses and plasma concentrations of lidocaine at the onset of convulsions. Flumazenil reversed these effects of diazepam. Pretreatment with flumazenil alone changed neither cumulative convulsant doses nor plasma concentrations of lidocaine at the onset of convulsions. Our data show that IV flumazenil reverses the anticonvulsant property of IV diazepam against lidocaine-induced convulsions and that flumazenil itself has no effect on lidocaine-induced convulsions in rats.

Animals