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Biomedical subjects

M Yano

Publications and source records attributed to M Yano.

At least 19 recordsLinked to original sources

Suppressive effects of the endothelin receptor (ETA) antagonist BQ-123 on ET-1-induced reduction of lipoprotein lipase activity in 3T3-L1 adipocytes.

Endothelin (ET)-1 reduced heparin-releasable lipoprotein lipase (LPL) activity in 3T3-L1 adipocytes in a concentration-dependent manner. However, a selective ETB receptor agonist, [Ala1,3,11,15]ET-1, did not act like ET-1. The ET-1-induced decrease in LPL activity was suppressed by a selective ETA receptor antagonist, BQ-123: the concentration-response curve for the ET-1 reduction of LPL activity was shifted to the right in the presence of BQ-123 in a concentration-dependent manner. This antagonistic effect of BQ-123 clarifies that the ETA receptor is responsible for the ET-1-induced reduction of LPL activity in 3T3-L1 adipocytes, which suggests that there is therapeutic potential for ETA antagonists in LPL-related lipoprotein disorders.

3T3 Cells

Protective effect of a selective endothelin receptor antagonist, BQ-123, in ischemic acute renal failure in rats.

To elucidate the pathophysiological role of endogenous endothelin (ET), we examined the effects of the newly synthesized ETA receptor-selective antagonist, BQ-123, on ischemic acute renal failure induced by bilateral clamping of renal artery and vein followed by reperfusion in rats. BQ-123, when given by i.v. infusion of 0.5 mg/kg per min for 2.5 h during the pre- and post-ischemic period, was found to prevent the decrease in creatinine clearance and increases in blood urea nitrogen, plasma creatinine and the fractional excretion of sodium. Morphological observation also showed an effect of BQ-123, i.e. prevention of proximal tubular (S3 segment) necrosis. At 2 h after the start of reperfusion, the ET-1 content in the kidney increased to its maximal level. At this time, the Ca2+ content in the mitochondrial fraction of the renal cortex increased, with a concomitant increase in blood urea nitrogen. However, these increases were limited by treatment with BQ-123. Thus, BQ-123 was effective to both prevent mitochondrial Ca2+ accumulation in the early phase of ischemic acute renal failure and protect proximal tubular cells from post-ischemic degeneration. We conclude that ET may be at least partially involved in the pathogenesis of tubular cell injury in this acute renal failure model.

Acute Kidney Injury

Endothelin-1 enhances vascular permeability in the rat heart through the ETA receptor.

Intravenous injection of endothelin-1 (ET-1, 0.1 and 1 nmol/kg) resulted in a dose-dependent increase in vascular permeability in the coronary circulation of conscious rats. The increase was almost completely abolished by the selective ETA receptor antagonist, BQ-123 (1 mg/kg). The ET-1 analogue, [Trp(For)21]ET-1, which is devoid of the depressor but not the pressor activity, evoked changes in protein extravasation similar to those with ET-1. These data indicate that the permeability effect of ET-1 is mediated through the ETA receptor.

Animals

A novel ETA antagonist (BQ-123) inhibits endothelin-1-induced phosphoinositide breakdown and DNA synthesis in rat vascular smooth muscle cells.

The effects of a novel cyclic pentapeptide (BQ-123), an endothelin (ET) antagonist selective for the ETA receptor subtype, on phosphoinositide breakdown and DNA synthesis stimulated by ET-1 were studied in cultured rat vascular smooth muscle cells (VSMC). BQ-123 competitively inhibited the binding of [125I]ET-1 to VSMC with the apparent Ki of 4 x 10(-9) M. BQ-123 dose-dependently inhibited formation of inositol-1,4,5-trisphosphate and [3H]thymidine uptake stimulated by ET-1. These data suggest that the ET-1-induced DNA synthesis in VSMC is mainly mediated by ETA receptor subtype.

Animals

Biochemical properties of endothelin converting enzyme in renal epithelial cell lines.

This is the first report clearly demonstrating the presence of endothelin (ET) converting enzyme (ECE) in non-vascular cells (renal epithelial cell lines, MDCK and LLC-PK1). ECEs derived from these epithelial cells were very similar to the endothelial ECE in the following biochemical properties: 1) The optimum pH was 7.0; 2) the Km value for big ET-1 was approximately 30 microM; 3) the enzyme was potently inhibited by EDTA, o-phenanthroline and phosphoramidon; and 4) the enzyme did not convert big ET-2 or big ET-3. These data suggest that phosphoramidon-sensitive ECE is involved in the processing of big ET-1 to ET-1 in the renal tubule.

Animals

Different distribution of endothelin receptor subtypes in pulmonary tissues revealed by the novel selective ligands BQ-123 and [Ala1,3,11,15]ET-1.

We have demonstrated the different distribution of two distinct endothelin (ET) receptor subtypes in porcine pulmonary tissues using a radioligand binding assay. The clear differentiation of the subtypes was made possible by the discovery of two compounds, BQ-123 and [Ala1,3,11,15]ET-1 (4AlaET-1), that are highly selective for ETA and ETB receptors, respectively. In the bronchus and lung parenchyma, BQ-123 inhibited 65% and 30% of [125I]ET-1 binding on the sensitive sites, while 4AlaET-1 displaced 25% and 60%, respectively. The combination of the two compounds completely inhibited ET-1 binding in both tissues. An autoradiographic study of [125I]ET-1 binding using BQ-123 and 4AlaET-1 also supported the different localization of two ET receptor subtypes in pulmonary tissues. In particular, the blood vessels and bronchi are rich in ETA, but the lung parenchyma is rich in ETB.

Amino Acid Sequence

Biological profiles of highly potent novel endothelin antagonists selective for the ETA receptor.

We describe novel potent endothelin (ET) antagonists that are highly potent and selective for the ETA receptor (selective to ET-1). Of the synthetic analogs based on ETA antagonist BE-18257A isolated from Streptomyces misakiensis (IC50 value for ETA receptor on porcine aortic smooth muscle cells (VSMCs); 1.4 microM), the compounds BQ-123 and BQ-153 greatly improved the binding affinity of [125I]ET-1 for ETA receptors on VSMCs (IC50; 7.3 and 8.6 nM, respectively), whereas they barely inhibited [125I]ET-1 binding to ETB receptors (nonselective with respect to isopeptides of ET family) in the cerebellar membranes (IC50; 18 and 54 microM, respectively). Associated with the increased affinity for ETA receptors, these peptides antagonized ET-1-induced constriction of isolated porcine coronary artery. However, there was a small amount of ET-1-induced vasoconstriction resistant to these antagonists, which paralleled the incomplete inhibition of [125I]ET-1 binding in the membrane of the aortic smooth muscle layer. These data suggest that the artery has both ETA and ETB receptors responsible for ET-1-induced vasoconstriction. The antagonists shifted the concentration-response curve to the right for ET-1 in the coronary artery, and increased the apparent dissociation constant in the Scatchard analysis of [125I]ET-1 binding on the VSMCs without affecting the binding capacity, indicative of the competitive antagonism for ETA receptor. In conscious rats, pretreatment with the antagonists markedly antagonized ET-1-induced sustained pressor responses in dose-dependent fashion without affecting ET-1-induced transient depressor action, suggesting that the pressor action is mediated by ETA receptors, while the depressor action is mediated by ETB receptors. In addition, pretreatment with the potent antagonists prevented ET-1-induced sudden death in mice. Thus, these potent ETA antagonists should provide a powerful tool for exploring the therapeutic uses of ETA antagonists in putative ET-1-related disorders.

Amino Acid Sequence

Analysis of responses to endothelins in isolated porcine blood vessels by using a novel endothelin antagonist, BQ-153.

We examined the effects of a novel ETA-selective endothelin (ET) antagonist, BQ-153, on vascular responses to ET-1 and ET-3 in isolated porcine coronary and pulmonary blood vessels, to clarify the roles of ET receptor subtypes in the regulation of vascular smooth muscle tension. With endothelium-denuded vascular tissues, the concentration-contraction curve (CCC) for ET-1 appeared as a single sigmoidal shape for all types of tissue. The CCC for ET-1 was antagonized by BQ-153 (2 and 10 microM) in all tissues, but part of the contraction was resistant. The CCC for ET-3 usually consisted of two different phases with higher (first phase) and lower (second phase) sensitivities to the peptide. Only the second phase of CCC for ET-3 was completely inhibited by BQ-153 (2 microM) in all tissues, while the first phase was resistant. The BQ-153-resistant contractile phases of ET-1 and ET-3-induced vasoconstriction appeared to have similar sensitivity in all tissues, and the contractile activity varied with each type of tissue. With endothelium-intact materials, the potencies of ET-1 and ET-3 for endothelium-dependent vasorelaxation in pulmonary artery were almost equivalent. BQ-153 (10 microM) did not inhibit ET-induced vasorelaxation. These results indicate that ET-induced vasoconstriction is mediated not only through ETA but also through ETnonA (probably ETB), and that the relative proportions of the ET-receptor subtypes mediating contractions vary in different vascular areas. In addition, results showed that ET-induced endothelium-dependent vasorelaxation is mediated through ETB.

Animals

A novel radioligand [125I]BQ-3020 selective for endothelin (ETB) receptors.

A linear endothelin (ET) analog, N-acetyl-LeuMetAspLysGluAlaValTyrPheAlaHisLeu-AspIleIleTrp (BQ-3020), is highly selective for ETB receptors. BQ-3020 displaces [125I]ET-1 binding to ETB receptors (nonselective to ET isopeptides) in porcine cerebellar membranes (IC50: 0.2nM) at a concentration 4,700 times lower than that to ETA receptors (selective to ET-1) on aortic vascular smooth muscle cells (VSMC) (IC50: 940nM). BQ-3020 as well as ET-1 and ET-3 elicits vasoconstriction in the rabbit pulmonary artery. The ETA antagonist BQ-123 failed to inhibit this BQ-3020-induced vasoconstriction. Furthermore, BQ-3020 elicits endothelium-dependent vasodilation. These data indicate that BQ-3020 has ETB agonistic activity. The radioligand [125I]BQ-3020 binds to cerebellar membranes at single high affinity sites (Kd = 34.4pM), whereas it scarcely binds to VSMC. [125I]BQ-3020 binding to the cerebellum was displaced by BQ-3020, ET-1 and ET-3 in a nonselective manner (IC50: 0.07-0.17nM). However, the binding of [125I]BQ-3020 was insensitive to the ETA antagonist BQ-123 and other bioactive peptides. Both [125I]ET-1 and [125I]BQ-3020 show slow onset and offset binding kinetics to ETB receptors. These data indicate that the radioligand [125I]BQ-3020 selectively labels ETB receptors and that the slow binding kinetics of ET-1 are dependent on the peptide sequence from Leu6 to Trp21, but not on the structure formed by its two disulfide bridges.

Amino Acid Sequence

Control of feeding rhythm in the terrestrial slug Incilaria bilineata.

A modulatory neuron of feeding rhythm was newly identified in the buccal ganglia of the isolated central nervous system (CNS) of the terrestrial slug Incilaria bilineata. This neuron was termed the "feeding rhythm modulator" (FRM). Its morphological and electrical properties were compared with those of the MGC (metacerebral giant cell, a cerebral modulatory neuron of feeding rhythm). There was no direct connection between FRM and MGC. In order to investigate the control mechanism of the buccal central pattern generator, feeding rhythm was observed by varying the activities of MGC and FRM simultaneously. At a lower level of activity of MGC, feeding rhythm was not only sensitive to the activity of MGC but also to that of FRM. As the level of activity of MGC increased, feeding rhythm was exclusively controlled by the activity of MGC, and became unaffected by the activity of FRM. This indicates that cerebral neurons such as MGC primarily control feeding rhythm and modulate the contribution of FRM in a hierarchical manner.

Animals

High-yield production of recombinant endothelin-1.

A fusion protein (pETB-42P), which encodes the 42-amino acid leader peptide and the 38-amino acid peptide of human big endothelin (ET)-1, was synthesized in Escherichia coli, isolated as inclusion bodies, and purified by DEAE-chromatography. Trypsin digestion of the purified pETB-42P gave big ET-1(1-37) in a yield of 70%; then pepsin digestion of the purified big ET-1(1-37) gave ET-1(1-21) in a yield of 74% (overall yield: 52%). Sequential trypsin and pepsin digestions of the purified fusion protein in the same reaction vessel also allowed recovery of ET-1 in a yield of 60%. One milligram of ET-1 or 2.0 mg of big ET-1(1-37) was obtained from 1.8 liters of culture broth. Recombinant ET-1 thus obtained was identical to authentic ET-1 in terms of amino acid sequence and vasoconstrictor potency, and recombinant big ET-1(1-37) had almost the same in vitro and in vivo biological activities as big ET-1(1-38).

Amino Acid Sequence

In vitro biological profile of a highly potent novel endothelin (ET) antagonist BQ-123 selective for the ETA receptor.

The novel endothelin (ET) receptor antagonists BE-18257A and BE-18257B were isolated from the fermentation products of Streptomyces misakiensis. The above-mentioned compounds inhibited [125I]ET-1 binding to ETA receptors (selective for ET-1) on porcine aortic vascular smooth muscle cells (VSMCs) with IC50 values of 1.4 and 0.47 microM, respectively. [125I]ET-1 binding to ETB receptors (nonselective to ET isopeptides) in cerebellar membranes was not inhibited by either of these compounds even at 100 microM. The synthesized analogue BQ-123 induced extremely potent inhibition of [125I]ET-1 binding to ETA receptors (IC50 of 7.3 nM), but it barely inhibited [125I]ET-1 binding to ETB receptors (IC50 of 18 microM) and binding of various other peptides to their receptors. BQ-123 shifted the concentration-response curve for ET-1 toward the right in porcine isolated coronary arteries, indicative of competitive antagonism for the ETA receptor. However, there was a small amount of BQ-123-insensitive vasoconstriction that paralleled the incomplete inhibition of [125I]ET-1 binding in the membrane of the vascular smooth muscle layer. These data suggest that the artery contracts via both ETA and ETB receptors and that BQ-123 selectively inhibits ETA-mediated contraction. Furthermore, BQ-123 revealed large tissue and species differences in the distribution of ETA receptors. Thus, the potent ETA antagonist BQ-123 should be useful in clarifying the (patho)physiological roles of ETA receptors.

Amino Acid Sequence

Human big-endothelin-1 and endothelin-1 release prostacyclin via the activation of ET1 receptors in the rat perfused lung.

Although ET1 and ET2 binding sites were found in rat lung membranes, a selective ET1 receptor antagonist, BQ-123 (10 microM), did not displace [125I]-endothelin-1 ([125I]ET-1) from ET2 sites, illustrating the selectivity of the angatonist for ET1 receptors. In rat perfused lungs, BQ-123 (1 microM) markedly reduced the prostacyclin (PGI2) releasing properties of endothelin-1 (ET-1: 5 nM) and human big-ET-1 (100 nM) suggesting that both peptides induce the release of PGI2 via the selective activation of ET1 receptors.

Animals

BQ-153, a novel endothelin (ET)A antagonist, attenuates the renal vascular effects of endothelin-1.

Endothelin (ET)-1, leukotriene D4 and the thromboxane analogue, U-44069, were all shown to produce dose-dependent reductions in renal blood flow after direct injection into the renal artery of anaesthetized pigs. The effects of ET-1 differed from the other two mediators in that ET-1 caused a transient vasodilator followed by a prolonged vasoconstrictor response. The pressor response was not mediated by the secondary release of either leukotriene D4 or thromboxane A2 as evidenced by the lack of effect of appropriate receptor antagonist MK571 (3-[-2(7-chloro-2 quinolinyl) ethenyl]phenyl[3-(dimethylamino-3-oxopropyl)thio]methyl thio propionic acid) and L-670,596 respectively. This response, however, could be inhibited in a dose-dependent fashion by the selective ETA antagonist, BQ-153 (cyclo-D-sulphalanine-L-Pro-D-Val-L-Leu-D-Trp-). Following blockade by BQ-153 the vasodilator response was unaffected and a residual pressor response remained, suggesting that either or both of these effects were mediated either through an ETB or a novel, as yet undefined, endothelin receptor.

Amino Acid Sequence

Role of the liver-enriched transcription factor DBP in expression of the cytochrome P450 CYP2C6 gene.

The CYP2C6 gene becomes maximally transcriptionally activated in livers of postpubertal rats. We examined the role of upstream DNA and liver-specific transcription factors in regulation of this promoter by use of transient transfection of heterologous chloramphenicol acetyltransferase gene constructs and vectors containing cDNAs encoding the liver-enriched transcription factors HNF-1 alpha, C/EBP, and DBP. Only DBP was able to activate the CYP2C6 promoter in HepG2 cells. Transactivation was not observed in one mouse and two human nonhepatic origin cell lines tested. Analysis of various constructs in which CYP2C6 upstream DNA was deleted revealed that DNA between -38 to -103 was involved in DBP-mediated activation. A partially purified preparation of DBP produced a footprint between -43 and -64 bp upstream of the transcription start site. A 32P-labeled double-stranded oligonucleotide, containing sequence information corresponding to -40 to -65, bound to both partially pure DBP and extracts from livers of rats as young as 1 week and as old as 25 weeks of age, as assessed by gel mobility shift analysis. This binding was eliminated by coincubation with excess unlabeled -40/-65 double-stranded oligonucleotide and by an oligonucleotide corresponding to the D site of the rat albumin gene. A gel mobility shift-Western immunoblot analysis revealed that the -40/-65 sequence bound to DBP only in liver nuclear extracts from rats older than 3 weeks; maximal binding was observed by 7 weeks of age, and no binding was detected from 1-week-old rat liver extracts. Interestingly, the DBP-binding regions of both CYP2C6 and albumin bind to C/EBP, but this factor is capable of transactivating only the latter gene. Although the DBP-binding regions in these two genes share no obvious sequence similarities, the CYP2C6 region contains consensus palindromic half sites for DBP-related binding proteins and affinity for recombinant DBP of 17-fold greater than that of the D site of albumin. This difference in affinity is probably responsible for the markedly lower amounts of DBP required for half-maximal activation of the CYP2C6 promoter, as compared with the albumin promoter, in transactivation transfection assays. These data indicate that the CYP2C6 gene may be regulated, at least in part, by DBP, a liver transcription factor produced when rats reach puberty that may also be involved in maintenance of albumin gene transcription.

Age Factors

Effect of changing afterload and inotropic states on inner and outer ventricular wall thickening.

Effect of changing afterload and inotropic states on inner and outer ventricular wall thickening. Am. J. Physiol. 263 (Heart Circ. Physiol. 32): H109-H116, 1992.--To study the differing behaviors of the inner (IH) and outer halves (OH) of the left ventricular (LV) free wall during an increasing afterload and changing inotropic states, we determined the LV pressure (LVP) and transmural (TM) and OH wall thickness (WTTM and WTOH) by sonomicrometry in 11 anesthetized dogs. The percent systolic wall thickening (% delta WT) and the fractional contribution (FC) were calculated. At rest, % delta WT of TM, IH, and OH were 22 +/- 1 (mean +/- SE), 33 +/- 3, and 13 +/- 2 (P less than 0.01 vs. IH), respectively. The FC of IH and OH were 74 +/- 5 and 29 +/- 4% (P less than 0.01 vs. IH), respectively. During increasing afterload by aortic constriction (AC) without drugs, % delta WT in IH was reduced to 22 +/- 2%, associated with unchanged % delta WT in OH (12 +/- 3%), whereas the FC of IH and OH were not altered from resting values. During AC with dobutamine infusion (3 micrograms.kg-1.min-1), the % delta WT and FC in each layer were not reduced from resting values. On the other hand, during AC with propranolol (2 mg bolus iv), the reduction of % delta WT in IH was greater (from 29 +/- 4 to 15 +/- 6%, P less than 0.01) than that in OH (from 11 +/- 2 to 10 +/- 3%; P less than 0.01 vs. IH). The FC in the IH was decreased (56 +/- 16%) by AC with propranolol, so that the difference in FC between IH and OH became insignificant (FCOH 40 +/- 13%, P greater than 0.1 vs. FCIH).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals