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T Inagami

Publications and source records attributed to T Inagami.

At least 145 records · Page 8Linked to original sources

Quantitative analysis of renin gene expression in extrarenal tissues by polymerase chain reaction method.

OBJECTIVE: To evaluate the significance of locally synthesized renin in the pathogenesis of hypertension, we investigated modulation of the renin gene expression in extrarenal tissues. DESIGN: Expression levels of renin messenger (m)RNA in various tissues were determined in the genetically hypertensive rats and their control strains. Effects of salt, captopril and clonidine upon renin gene expression were also investigated. METHODS: Due to the very low expression level of renin mRNA in extrarenal tissues, a competitive polymerase chain reaction method of assessment was applied. Total RNA from various tissues combined with a synthetic deletion-mutated renin RNA were reverse-transcribed and the resultant complementary DNA mixtures were amplified in one reaction in which the same primers were used. RESULTS: Expression levels of the renin mRNA in various parts of the central nervous system of 4-week-old spontaneously hypertensive rats were approximately twofold higher than those of age-matched Wistar-Kyoto rats and expression levels in the brain were positively modulated by the administration of either captopril or clonidine. CONCLUSIONS: The importance of the brain renin angiotensin system in the pathogenesis of hypertension in spontaneously hypertensive rats was strongly suggested.

Adrenal Glands

Phospholipase D in cultured rat vascular smooth muscle cells and its activation by phorbol ester.

We determined the phospholipase D (PLD) activity in rat vascular smooth muscle cells by the formation of phosphatidylethanol in cells prelabeled with [3H] myristic acid. The enzyme was markedly activated by a phorbol ester (TPA). Down regulation of protein kinase C (PKC) resulted in almost complete inhibition indicating PKC-dependent mechanism of its activation. Depletion of calcium by EGTA and TMB-8 caused 53% inhibition. Chelator-stable association of PKC to membrane by TPA was observed in the absence of extracellular Ca2+. The mitogenic peptide PDGF also caused a marked stimulation of PLD. These results indicate that PLD in vascular smooth muscle cells is stimulated by TPA through the activation of PKC both by calcium-dependent and independent mechanisms.

Animals

Rat angiotensin II receptor: cDNA sequence and regulation of the gene expression.

The nucleotide and amino acid sequences for rat type I angiotensin II receptor were deduced through molecular cloning and sequence analysis of its complementary DNAs. The rat angiotensin II receptor consists of 359 amino acid residues and has a sequence similar to G protein-coupled receptors. The expression of this receptor gene was detected in the adrenal, liver and kidney by Northern blotting. Sodium deprivation positively modulated the expression of the receptor gene in the adrenal. No detectable change was observed in the expression levels of this receptor gene between spontaneously hypertensive rats and Wistar-Kyoto rats in the tissues examined including the adrenal, brain, kidney and liver. Interestingly the expression of this receptor gene was developmentally regulated.

Amino Acid Sequence

Cloning and expression of a complementary DNA encoding a bovine adrenal angiotensin II type-1 receptor.

Angiotensin II elicits different responses which affect cardiovascular, neuronal and electrolyte transport regulation. To understand the mechanisms responsible for its various actions, the receptor for angiotensin II has long been sought, but numerous attempts to purify the receptor have been unsuccessful owing to its instability and low concentration. We report here the expression cloning of a complementary DNA encoding a bovine angiotensin II receptor to overcome these difficulties. The receptor cDNA encodes a protein of 359 amino-acid residues with a transmembrane topology similar to that of other G protein-coupled receptors. COS-7 cells transfected with the cDNA expressed specific and high-affinity binding sites for angiotensin II, angiotensin II antagonist and a non-peptide specific antagonist for type-1 receptor. Dithiothreitol inhibited ligand binding. The concentration of intracellular Ca2+ and of inositol-1,4,5-trisphosphate increased in the transfected COS-7 cells in response to angiotensin II or angiotensin III, indicating that this receptor is the type-1 receptor for angiotensin II. Northern blot analysis revealed that the messenger RNA for this receptor is expressed in bovine adrenal medulla, cortex and kidney.

Adrenal Cortex

Immunohistochemical localization of atrial natriuretic peptide in the developing and adult mammalian kidney.

The discovery, within the last decade, of atrial natriuretic peptide (ANP), a family of peptides with natriuretic/diuretic and vasorelaxant properties, has prompted much research into the mechanisms and sites of action of ANP within the kidney. In the present study, ANP was localized in the kidneys of several mammalian species by immunohistochemical techniques 1) to identify possible sites of synthesis; 2) to compare the localization of ANP to known physiological effects; 3) to determine species differences, if any, in ANP localization; and 4) to study the development of ANP immunoreactivity in the fetal and neonatal rat kidney. Using an antibody against rat ANP, IV, ANP was localized exclusively on the proximal convoluted tubule (PCT) brush border and within intercalated cells of the outer medullary and cortical collecting tubules and ducts of adult mouse, rat, pig, monkey, and human kidneys. The development of ANP immunoreactivity paralleled the differentiation and maturation of collecting duct epithelium in rat fetal kidney. Atrial natriuretic peptide found within intercalated cells of the cortical and outer medullary collecting ducts may be the result of endogenous synthesis and, following secretion, may be available to receptors in the inner medullary collecting ducts.

Amino Acid Sequence

Effect of progesterone on renin secretion in endometrial stromal, chorionic trophoblast, and mesenchymal monolayer cultures.

Renin messenger ribonucleic acid expression has been shown in decidual tissue and endometrium, but weakly in chorion laeve, suggesting decidua as a primary source of uteroplacental renin. We proposed to confirm active renin secretion by endometrial stromal cells and examined the effect of progesterone-induced decidualization on secretion. Separate monolayer cultures of endometrial stroma, trophoblast, and mesenchymal cells were established and maintained for 10 to 15 days. Active renin concentration was measured with radioimmunoassay for angiotensin I generation and expressed as picograms per milliliter of angiotensin I generation per 10(5) cells. Active renin concentration was high in control secretory endometrial stromal cells (513 pg/ml) compared with trophoblast (none) and mesenchymal cell cultures (74 pg/ml). Marked decrease in active renin secretion occurred in control endometrial stromal cells (days 13 to 15, 86 pg/ml), whereas progesterone-induced decidualization sustained and increased secretion (days 13 to 15, 1017 pg/ml). This renin activity was quantitatively inhibited in culture fluid assays by specific human renal renin antibody in serial dilutions. Renin activity measurements before and after trypsin activation showed the majority of renin (91.15%) in the inactive form and a smaller fraction (8.85%) in the active form. Immunohistochemistry with the use of specific human renal renin antibody confirmed the presence of renin and its stimulation by progesterone in endometrial stromal cells. Progesterone had minimal effect on mesenchymal cells. These data confirmed endometrial stromal cells as a significant source of active renin and showed that progesterone induced a marked increase in this production.

Chorion

Glomerular renin synthesis and storage in the remnant kidney in the rat.

The intrarenal renin-angiotensin system can exert local control of the nephron and its circulation. In the subtotally nephrectomized model of chronic renal disease in the rat, angiotensin appears to play a prominent role in glomerular function. Glomeruli in this model demonstrate greater staining for intraglomerular renin by immunofluorescence microscopy than do those in control rats. Glomeruli from remnant nephrons contain increased renin content. Also, glomeruli from remnant nephrons contain an increased proportion of the mRNA for renin. Adriamycin-induced nephrosis did not evoke the same degree of renin staining and did not lead to increased glomerular expression of the renin gene, findings that argue against permselective defects and glomerular trapping as the sole cause of the glomerular renin in the remnant kidney model. Thus, renin synthesis and accumulation occur in the remnant glomerulus and this migration may underlie in part the dependence of glomerular function on the renin-angiotensin system in this model.

Animals

Roles of renal and vascular renin in spontaneous hypertension and switching of the mechanism upon nephrectomy. Lack of hypotensive effects of inhibition of renin, converting enzyme, and angiotensin II receptor blocker after bilateral nephrectomy.

Inhibitors of angiotensin converting enzyme, renin, and the angiotensin II (Ang II) receptor lower the blood pressure of spontaneously hypertensive rats (SHR) used as a model of essential hypertension. Since their plasma renin levels were normal or subnormal, renin in the vascular tissue was considered to play a key role in the maintenance of the hypertension. To clarify the source and localization of renin in SHR, antirenin antibodies, the converting enzyme inhibitors delapril, enalapril, and the Ang II receptor antagonist DuP 753 were administered to intact and bilaterally nephrectomized SHR and their normotensive controls. The efficient hypotensive action of the renin antibody indicated that renin of renal origin is a dominant factor. Gradual but complete disappearance of antihypertensive action of these inhibitors of the renin-angiotensin system upon bilateral nephrectomy indicated the importance of membrane-associated renin of the renal origin and angiotensin converting enzyme in the maintenance of the spontaneous hypertension.

Angiotensin II

Angiotensin converting enzyme inhibitors suppress the vascular renin-angiotensin system of spontaneously hypertensive rats.

The effects of angiotensin converting enzyme (ACE) inhibitors on the release of angiotensin II (Ang II) from isolated mesenteric arteries of spontaneously hypertensive rats (SHRs) were examined. Delapril, enalapril, and captopril suppressed Ang II release in a dose-dependent manner. After oral treatment with delapril (10 mg/kg/day), enalapril (10 mg/kg/day), and captopril (50 mg/kg/day) for 1 week, the blood pressure of SHRs was significantly reduced in the three groups and 54%, 46%, and 36% decreases in basal Ang II release were observed, respectively, compared with control. However, low-dose captopril (10 mg/kg/day) had no effect on blood pressure or basal Ang II release. These results provide clear evidence that ACE inhibitors suppress vascular renin-angiotensin activity of SHRs, and the possible contribution of the tissue renin-angiotensin system to spontaneous hypertension is suggested.

Angiotensin II

The antihypertensive mechanism of delapril, a newly developed converting enzyme inhibitor, is related to the suppression of vascular angiotensin II release in the spontaneously hypertensive rat.

Accumulating evidence suggests an important role of vascular renin-angiotensin system (RAS) in the local control of arterial tone. To further gain insight into the significance of vascular RAS in hypertension, we investigated the relationship between the antihypertensive action of delapril, a newly developed converting enzyme inhibitor (CEI), and its effects on vascular angiotensin II (Ang II) release in spontaneously hypertensive rats (SHR). Male SHRs were given delapril or its active metabolite (5-hydroxydelapril diacid; 5-hydroxy-DPD) orally (10 mg/kg/day) for 2 weeks. Isolated hind legs of these rats were perfused with angiotensinogen-free Krebs-Ringer solution, and Ang II released into the perfusate was directly determined by extraction with Sep-Pak C18 cartridges connected to the perfusion system. Both delapril and 5-hydroxy-DPD produced a sustained antihypertensive action. The spontaneous release of Ang II from isolated perfused hind legs of control SHRs was about 50 to 110 pg during the first 30 min of perfusion, and it remained stable up to 3 h. Another active metabolite, delapril diacid (DPD), when added to the perfusion medium (10(-9) to 5 x 10(-5) mol/L), suppressed the Ang II release in a dose-dependent manner. The maximal percent inhibition of Ang II released evoked by DPD (5 x 10(-6) mol/L) was approximately 51%. Oral pretreatment of either delapril or 5-hydroxy-DPD for 2 weeks suppressed the Ang II release by 61% and 73% for delapril and 5-hydroxy-DPD, respectively. These results suggest the presence of a functional RAS in vascular tissues, and that delapril exerts its antihypertensive effect through inhibition of vascular Ang II release in SHRs.

Administration, Oral

Direct proof for local generation and release of angiotensin II in peripheral human vascular tissue.

Previously we reported that immunoreactive angiotensin II (Ang II) release from isolated perfused human umbilical veins was inhibited by the angiotensin-converting enzyme inhibitor captopril. To further investigate the mechanism by which Ang II is generated in the blood vessels of humans, we examined the effects of various inhibitors of the renin-angiotensin system (captopril, delapril, N-acetyl-pepstatin, and human renin inhibitor KRI-1314) on Ang II release from perfused human umbilical cord veins in vitro. Isolated human umbilical veins were perfused with Krebs-Ringer solution, and immunoreactive Ang II released into the perfusate was measured directly by using a Sep-Pak C18 cartridge connected to the perfusion system. Both captopril and delapril diacid (10(-9) to 5 x 10(-6) mol/L), an active metabolite of delapril hydrochloride, suppressed the Ang II release in a dose-dependent fashion; the maximal percent suppression of Ang II release evoked by these inhibitors (5 x 10(-6) mol/L) was 56% and 64%, respectively, for captopril and delapril. Both N-acetyl-pepstatin (10(-9) to 10(-5) mol/L) and KRI-1314 (10(-9) to 10(-6) mol/L) suppressed Ang II release in a dose-related manner. At a 10(-6) mol/L concentration, KRI-1314 produced a 74% reduction in the basal rate of Ang II release, and a reduction threefold greater than the maximal reduction in basal Ang II release produced by N-acetyl-pepstatin.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II

Atrial natriuretic factor and hypertension. A review and metaanalysis.

Atrial natriuretic factor (ANF) is a recently discovered, volume responsive hormone with multiple potent antihypertensive actions. This article reviews data supporting hypothetical associations between ANF and essential hypertension, examines reports of plasma ANF concentrations in hypertension, discusses the efficacy of ANF and its analogs in the treatment of hypertension, and reviews future issues in ANF research. ANF has been shown to elicit vasodilatation, suppress plasma renin activity, inhibit the synthesis and release of aldosterone, antagonize sympathetically-mediated release of norepinephrine, and promote diuresis and natriuresis. A metaanalysis of plasma ANF concentrations reported in normal and hypertensive subjects reveals a 5 +/- 19 pg/mL (pooled, weighted mean and standard deviation) higher ANF level in age-matched, untreated hypertensives without evidence of end-organ damage. This difference may be inappropriately low given the increase in atrial filling pressures found in hypertension. Low doses of ANF elicit greater reductions in blood pressure in hypertensive subjects than in normals. Recently, inhibitors of the ANF-degrading enzyme, neutral endopeptidase, and of the ANF "clearance" receptor have enhanced the antihypertensive actions of endogenous or exogenously administered ANF. Human studies are currently in progress testing the antihypertensive efficacy of orally administered neutral endopeptidase inhibitors. The discovery of ANF has led to the elucidation of a family of natriuretic peptides from brain, heart, and kidney, and promises to enlarge our understanding of volume regulation in normal and pathophysiological states. The possibility that essential hypertension is associated with inappropriately low plasma ANF levels or altered responsiveness to ANF may offer new insights into the pathogenesis and treatment of hypertension.

Amino Acid Sequence

Atrial natriuretic peptide and brain natriuretic peptide coexist in the secretory granules of human cardiac myocytes.

To elucidate the intracellular localization of atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) in human cardiac myocytes, an immunocytochemical study was carried out by a double immunogold technique using antisera highly specific for ANP and BNP. Surgical and autoptic tissue specimens of human heart were studied. In the atrial myocytes, ANP was localized in almost all of the secretory granules, whereas BNP was colocalized with ANP in some of the granules. Although very few secretory granules were observed in ventricular myocytes, colocalization of ANP and BNP was basically the same as in atrial myocytes. No immunoreactive products were found in the control studies. These results suggest that secretion of BNP is under a regulatory mechanism similar to that of ANP.

Atrial Natriuretic Factor

Differential response of renin secretion to vasoconstrictors in the isolated perfused rat kidney.

1. We have examined whether an increase of renal vascular resistance is generally accompanied by an inhibition of renin secretion. The effects of vasoconstriction produced by angiotensin II (Ang II), arginine-vasopressin (AVP), and potassium (KCl) depolarization on vascular resistance and on renin release from isolated rat kidneys perfused at constant pressure of 100 mmHg were investigated. 2. Histological examination performed on some representative kidneys revealed that the tubular lumina of all segments within the cortex were patent and the brush borders of the proximal tubules were well preserved. The renal vasculature and the juxtaglomerular region appeared to be morphologically intact. By immunocytochemistry, renin-positive cells were found exclusively in the wall of the afferent arterioles. 3. Basal flow rate through isolated kidneys was 14.5 +/- 2.0 ml min-1 (g kidney weight (gkw))-1 (mean +/- S.E.M., n = 10). Under control conditions renin secretory rates were in the range of 30-40 (ng Ang I h-1) min-1 gkw-1. 4. Ang II (100 pM) caused a decrease of renal flow rate to 42 +/- 2% of control which was accompanied by a reduction of renin secretion rates by a factor of 4. 5. AVP (10 pM to 1 nM) reduced renal perfusate flow in a dose-dependent fashion to a minimum of 25 +/- 3% of control. The vasoconstrictor effect of AVP was paralleled by a concentration-dependent increase of renin secretory rates reaching a factor of maximally 5 when AVP was used at a concentration of 1 nM. The stimulatory effect of AVP on renin release could be mimicked by [deamino-Cys1, D-Arg8]-vasopressin (dDAVP), a vasopressin analogue with prevalent V2 receptor agonistic properties. In the presence of dDAVP (100 nM, 1 microM) renal flow rate reversibly increased by 8 and 12% of control values, respectively. 6. Depolarizing concentrations of KCl (30 mM) decreased perfusate flow to 20 +/- 4% of control. The vasoconstrictor effect of KCl was paralleled by an increase of the arterio-venous difference of perfusate renin activity to such an extent that the rate of renin release remained unaltered. 7. Our findings suggest that there exists no general inverse relationship between renal arteriolar resistance and renin secretion. Our study, moreover, does not support a functional role of potential operated calcium channels in the control of renin secretion. Finally, we conclude that V2 receptors are present on juxtaglomerular epithelioid cell membranes and mediate the stimulatory effect of AVP on renin release from isolated rat kidneys.

Angiotensin II

Renal sympathetic nerves modulate glomerular ANP receptors and filtration.

We examined characteristics of atrial natriuretic peptide (ANP) receptors in glomeruli isolated from subacutely (3-5 days) denervated (DNX) and contralateral nondenervated (non-DNX) kidneys of normal rats (NL) and rats subjected to water deprivation for 48 h (WD). Total ANP receptor density in DNX kidneys of WD rats, measured by competitive inhibition binding between 125I-labeled ANP and ANP, was twofold higher than non-DNX kidneys (726 +/- 96 vs. 384 +/- 32 fmol/mg protein, P less than 0.05). Equilibrium association constant (Ka) was not significantly different (2.33 +/- 0.43 vs. 3.34 +/- 0.78 x 10(9) M-1). In NL rats, there was no difference in ANP receptor density between DNX and non-DNX kidneys (244 +/- 20 and 264 +/- 16 fmol/mg protein). Production of guanosine 3',5'-cyclic monophosphate (cGMP), a putative second messenger of ANP, in response to ANP (10(-7) M) in glomeruli isolated from DNX was significantly larger than non-DNX kidneys of WD rats. To determine whether these changes in ANP receptors have functional consequences in vivo, glomerular capillary ultrafiltration coefficient (Kf) was assessed by micropuncture technique in WD Munich-Wistar rats. In DNX kidneys, ANP infusion (4 micrograms.kg-1.h-1) significantly increased whole kidney glomerular filtration rate (GFR) and single-nephron (SN) GFR (0.64 +/- 0.06 to 0.89 +/- 0.17 ml/min and 25 +/- 2 to 33 +/- 2 nl/min, respectively; n = 7) and Kf (1.26 +/- 0.29 to 2.18 +/- 0.41 nl.min-1.mmHg-1).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Role of vascular wall renin: intracellular and extracellular mechanism.

Inhibitors of angiotensin-converting enzyme, renin and angiotensin II receptor lower the blood pressure of spontaneously hypertensive rats (SHRs) used as a model of essential hypertension. Since their plasma renin levels were normal or subnormal, renin in the vascular tissue was considered to play a key role in the maintenance of the hypertension. To clarify the source and localization of vascular renin in SHRs, the effects on blood pressure of antirenin antibodies, the converting enzyme inhibitors delapril and enalapril, and the angiotensin II receptor antagonist DuP 753 were examined in intact and bilaterally nephrectomized SHRs and their normotensive controls. The efficient hypotensive action of the renin antibody indicated that renin of the renal origin is a dominant factor. The gradual but complete disappearance of the antihypertensive action of these inhibitors of the renin-angiotensin system upon bilateral nephrectomy indicated the importance of membrane-associated renin of the renal origin and angiotensin-converting enzyme in the maintenance of the spontaneous hypertension.

Animals

Isolation of preferentially expressed genes in the kidneys of hypertensive rats.

By differential hybridization, three complementary DNAs designated as S3, S2, and SA were isolated, and the corresponding messenger RNAs (mRNAs) were differentially expressed between the kidneys of spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto (WKY) rats. S3 is identical to cytochrome P450 IV A2. SA encoded a protein of 546 amino acid residues, and its carboxyl terminal region had a slight homology to luciferase. No homologous sequence has been reported in S2 sequences. S3 mRNA was about four times more abundantly expressed in the kidneys of 28-day-old SHR than in those of age-matched WKY rats, but there was no difference at age 16 weeks. A low NaCl diet positively modulated the expression of the S3 gene. S2 mRNA was almost undetectable in the kidneys of 28-day-old WKY rats but was clearly detected in those of age-matched SHR. The expression level of S2 mRNA in the livers of 16-week-old SHR was about five times higher than that of age-matched WKY rats. The expression of S2 mRNA in the livers was modulated by dietary NaCl and captopril. SA mRNA was more than 10 times more abundantly expressed in the kidneys of SHR than in those of WKY rats from age 4 weeks. With the administration of captopril, the expressions of SA mRNA in the livers of SHR were positively modulated. Because these three genes are not only differentially expressed between SHR and WKY rats but also related to sodium metabolism or blood pressure control, the identification of these genes may provide important probes to examine the mechanisms of hypertension.

Amino Acid Sequence