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T Saruta

Publications and source records attributed to T Saruta.

At least 145 records · Page 8Linked to original sources

Serum leptin concentrations in patients with thyroid disorders.

OBJECTIVE: Leptin, the obese gene product, is secreted exclusively by adipocytes and is thought to act as a lipostatic signal that regulates body weight homeostasis. We previously reported that thyroid hormone is one of the up-regulating factors of leptin in vitro. T3, at physiological concentrations, stimulates leptin mRNA expression and leptin secretion by 3T3-L1 adipocytes. The aim of this study was to explore the role of thyroid hormone in the regulation of leptin in humans. DESIGN AND PATIENTS: A total of 59 non-obese women aged 38.4 +/- 1.8 years (mean +/- SEM) were studied: 19 patients with hyperthyroidism, 17 patients with hypothyroidism, and 23 normal control subjects. The correlation between serum leptin concentrations and body mass index (BMI) was analyzed, and serum leptin levels were compared among the three groups. MEASUREMENTS: Serum leptin concentrations were measured by radioimmunoassay. RESULTS: Serum leptin concentrations after logarithmic transformation were correlated significantly (P < 0.05) with BMI in the hyperthyroid (r = 0.46), the hypothyroid (r = 0.84), and normal (r = 0.63) groups. Even though age, body weight, and BMI were similar in all groups, serum leptin levels in the hypothyroid patients (5.30 +/- 1.12 micrograms/l) were significantly (P < 0.05) lower than in the hyperthyroid and normal groups (6.87 +/- 0.66 and 6.58 +/- 0.68 micrograms/l, respectively). CONCLUSIONS: These results indicate that thyroid hormone may play an important role in the appropriate secretion of leptin in humans.

Adult↗

Two novel 1alpha-hydroxylase mutations in French-Canadians with vitamin D dependency rickets type I1.

BACKGROUND: Vitamin D dependency rickets type I (VDDR-I) is an autosomal recessive disorder in which 25-hydroxyvitamin D 1alpha-hydroxylase (1alpha-hydroxylase) activity in renal proximal tubules is deficient. VDDR-I is recognized throughout the world, but occurs more frequently in a subset of the French-Canadian population. We and others have recently cloned the human 1alpha-hydroxylase cDNA and gene, making it possible to screen for mutations. The first VDDR-I mutations were reported in one American and four Japanese patients. In this study, we screened for 1alpha-hydroxylase mutations in French-Canadian patients with VDDR-I. METHODS: The nine exons of the 1alpha-hydroxylase gene were amplified by polymerase chain reaction (PCR) from genomic DNA of four unrelated French-Canadian patients with VDDR-I and their parents, and sequenced. RESULTS: Three of the patients were homozygous for a single base-pair deletion (G) at position 262 in the cDNA that lies in exon 2, and causes a premature termination codon upstream from the putative ferredoxin- and heme-binding domains. The fourth patient was homozygous for a 7-bp insertion (CCCCCCA) at position 1323 of the cDNA that lies in exon 8, and causes a premature termination upstream from the putative heme-binding domain. In each family, obligate carriers have one copy of the mutant allele. These mutations, which could be detected by PCR-restriction fragment length polymorphism and polyacrylamide gel electrophoresis of the PCR products, were not found in 25 normal French-Canadians. CONCLUSION: We describe two novel 1alpha-hydroxylase mutations that are consistent with loss of function in four French-Canadian patients with VDDR-I and suggest that the 1alpha-hydroxylase mutations arise from more than one founder in this population.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase↗

Localization of inositol 1,4,5-trisphosphate receptors in the rat kidney.

Inositol 1,4,5-trisphosphate (IP3) receptors (IP3Rs) serve as intracellular calcium release channels involved in signal transduction of various hormones in the kidney. Molecular cloning studies have shown that there are three types of IP3R, designated type 1, type 2, and type 3. To characterize their localizations in the rat kidney, we employed immunohistochemical studies using type-specific monoclonal antibodies that were raised against the 15 C-terminal amino acids of each type of IP3R. Type 1 was detected in glomerular mesangial cells and vascular smooth muscle cells. Type 2 was expressed exclusively in intercalated cells of collecting ducts from the cortex to the inner medulla. Type 3 was expressed in vascular smooth muscle cells, glomerular mesangial cells, and some cells of cortical collecting ducts, probably principal cells. As to the subcellular distribution, type 1 and type 2 showed a homogenous distribution in the cytoplasm, whereas type 3 was present mainly in the basolateral portion of the cytoplasm. These results indicate that IP3R isoforms were expressed in a cell-specific manner. The heterogeneous subcellular localizations among the IP3R types suggests compartmentalization of distinct IP3-sensitive Ca2+ pools.

Animals↗

Interleukin (IL)-1 and IL-4 synergistically stimulate NF-IL6 activity and IL-6 production in human mesangial cells.

BACKGROUND: While interleukin (IL)-4 inhibits pro-inflammatory cytokine expression by human monocytes, we have observed that it potentiates IL-6 production by IL-1-activated human mesangial cells (MC). To study the mechanism of this cell-type specific interaction between IL-1 and IL-4 in MC, we examined the effect of both cytokines on the activities of nuclear factor kappa B (NF-kappa B) and nuclear IL-6 NL-IL 6), transcription factors that are essential for IL-6 gene expression. METHODS: We evaluated IL-6 synthesis, mRNA expression, and mRNA stability by ELISA, Northern analysis, and the actinomycin D method, respectively. Activities of NF-kappa B and NF-IL 6 were analyzed by gel shift assay. RESULTS: IL-4 augmented the IL-1 stimulated IL-6 mRNA levels by about threefold without altering mRNA stability. IL-1 treatment rapidly induced the binding activity of NF-kappa B. In contrast, IL-4 did not affect basal and IL-1-induced NF-kappa B activities. Both IL-1 and IL-4 stimulated NF-IL6 activity as early as 30 minutes after treatment. When MC were treated with both cytokines together, marked activation of NF-IL6 was observed at five hours. CONCLUSIONS: These results suggest that simultaneous activation of NF-kappa B and NF-IL6 is essential for IL-6 gene expression and that IL-1 and IL-4 cooperatively stimulate MC IL-6 production through their synergistic activation of NF-IL6.

CCAAT-Enhancer-Binding Proteins↗

The obese gene product, leptin: possible role in obesity-related hypertension in adolescents.

OBJECTIVE: The mechanism of the association between obesity and hypertension is not clear. The recently discovered obese gene product, leptin, the levels of which increase in obese subjects, has been shown to reduce food intake and increase sympathetic nervous system activity in animal studies. The present study was undertaken to elucidate the relationship between blood pressure and factors related to obesity, including leptin, in different age groups. METHODS: The subjects were 348 Japanese male adolescents (15-17 years old) and 165 men (40-59 years old) not taking medication for hypertension, diabetes mellitus or hyperlipidaemia. Height, weight, blood pressure, heart rate, plasma glucose, lipid profiles, serum insulin and leptin levels were measured in the morning after an overnight fast RESULTS: Body mass index (BMI), serum leptin level and the homeostasis model insulin resistance index increased in the order of blood-pressure category (i.e. normotensive < high normal < hypertensive) in both the male adolescents and the middle-aged men. In addition, simple linear regressions revealed that both systolic and diastolic blood pressure correlated significantly with serum leptin and the insulin resistance index in both groups. Even after adjustment for age and BMI, the correlation of mean blood pressure with leptin remained in the obese adolescents (r2 = 0.390, P = 0.02). The heart rate also correlated with leptin in the adolescents (r = 0.18, P< 0.001), but not in the middle-aged subjects (r = 0.04). Even after adjustment for age and BMI in adolescents, serum leptin correlated significantly with heart rate. CONCLUSION: These results suggest a role for leptin in obesity-related hypertension, especially in adolescents.

Adolescent↗

EAT/mcl-1, a member of the bcl-2 related genes, confers resistance to apoptosis induced by cis-diammine dichloroplatinum (II) via a p53-independent pathway.

EAT/mcl-1 showed increased expression during the differentiation of a multipotent human embryonic carcinoma cell line, NCR-G3, and of myeloblastic cells "ML-1," and has sequence similarity to Bcl-2. In this present study, we determined whether the apoptotic cell death induced by chemotherapeutic agents could be inhibited by EAT/mcl-1, as has been found with Bcl-2. Cells transfected with EAT/mcl-1 showed higher resistance to cis-diammine dichloroplatinum (II) (CDDP) and carboplatin compared with the parental line (10)1 and neomycin-resistance gene-transfected clone, (10)1/neo. There was, however, no difference in sensitivity to etoposide, N,N-bis-(2-chloroethyl)-N'-(3-hydroxypropyl) phosphordiamidic acid cyclic ester monohydrate, adriamycin or other chemotherapeutic agents tested. DNA fragmentation of the parental cells following treatment with CDDP and carboplatin was observed in a concentration-dependent manner. In contrast, cells transfected with EAT/mcl-1 did not show DNA fragmentation following treatment with the same concentration of these drugs. EAT/mcl-1 was capable of delaying the onset of p53-independent apoptosis, although it could not inhibit apoptosis completely. Since CDDP and carboplatin damage DNA and then activate c-abl and the JNK/SAPK pathway, EAT/mcl-1 may inhibit p53-independent apoptosis through a c-abl/JNK (SAPK)-dependent mechanism. EAT/mcl-1 has functional homology to Bcl-2 in that it can enhance cell viability under conditions which otherwise cause apoptosis and increase resistance to chemotherapeutic agents.

Animals↗

Differential effects of thyroid hormone on renin secretion, content, and mRNA in juxtaglomerular cells.

The effects of thyroid hormone on renin secretion, renin content, and renin mRNA levels in juxtaglomerular (JG) cells harvested from rat kidneys were determined by radioimmunoassays and reverse transcriptase-polymerase chain reaction. Despite a lack of immediate effect, incubation with triiodothyronine dose dependently increased renin secretion during the first 6 h and elevated renin content and renin mRNA levels during the subsequent period. Simultaneous incubation with triiodothyronine and the calcium ionophore A-23187 abolished the increase in renin secretion and attenuated the increase in renin content but did not affect the increase in renin mRNA levels. During simultaneous incubation with triiodothyronine and the adenylate cyclase inhibitor SQ-22536 or membrane-soluble guanosine 3',5'-cyclic monophosphate (cGMP), the increases in renin secretion, content, and mRNA were similar to those observed in the presence of triiodothyronine alone, except for a cGMP-induced attenuation of the increase in renin secretion. These findings suggest that thyroid hormone stimulates renin secretion by JG cells through the calcium-dependent mechanism, whereas the stimulation of renin gene expression by thyroid hormone does not involve intracellular calcium or cyclic nucleotides.

Adenine↗

Biophysical signals underlying myogenic responses in rat interlobular artery.

-To assess cellular mechanisms mediating myogenic responses of interlobular artery (ILA), experiments were performed with the use of isolated perfused hydronephrotic kidneys. ILAs were divided into 3 groups according to their basal diameters: proximal (>60 microm), intermediate (40 to 60 microm), and distal (<40 microm) ILAs. Myogenic responses were obtained by stepwise increase in perfusion pressure. Greater myogenic responsiveness was observed in ILAs with smaller diameters. Diltiazem (10 micromol/L) inhibited myogenic responses of all segments of ILAs. Furthermore, gadolinium (10 micromol/L), a mechanosensitive cation channel blocker, abolished myogenic responses of distal but not proximal ILA. In contrast, 2-nitro-4-carboxyphenyl-N, N-diphenyl-carbamate (200 micromol/L), an inhibitor of phospholipase C, prevented myogenic responses of proximal but not distal ILA. Finally, basal proximal ILA diameters were increased by treatment with 50 nmol/L of staurosporine (P<0.05), and subsequent addition of thapsigargin (1 micromol/L) blocked myogenic contraction of proximal ILAs. Myogenic responses of intermediate ILAs exhibited characteristics between those of distal and proximal ILAs. Our data indicate that underlying mechanisms for myogenic responses differ in distinct segments of ILAs. The present results suggest that mechanosensitive cation channels are involved in myogenic constriction of distal ILAs. Finally, our findings provide evidence that the stimulation of phospholipase C mediates myogenic contraction of proximal ILAs.

Animals↗

COUP-TFI expression in human adrenocortical adenomas: possible role in steroidogenesis.

Chicken ovalbumin upstream promoter-transcription factor I (COUP-TFI) is an orphan nuclear receptor essential for neurogenesis, organogenesis, and cell fate determination. CYP17 gene transcription has recently been shown to be activated by SF-1 (steroidogenic factor-1) binding to a cyclic AMP-responsive sequence within the promoter region of the gene, and inhibited by COUP-TF binding to the sequence. Thus, COUP-TF and SF-1 act as a transcriptional repressor and activator, respectively, of CYP17 gene expression. Transcriptional repression by COUP-TFI is mediated by corepressors, N-CoR (nuclear receptor-corepressor) and SMRT (silencing mediator for retinoid and thyroid hormone-receptor), whereas transcriptional activation by SF-1 is mediated by coactivator SRC-1 (steroid receptor coactivator-1). We therefore examined the expression of COUP-TFI, SF-1, SRC-1, N-CoR, and SMRT in a variety of adrenocortical adenomas and compared the results with CYP17 mRNA levels. We found significantly high COUP-TFI mRNA expression in nonfunctional adenomas (n=8: 220+/-16%; normal 96+/-4%), a deoxycorticosterone-producing adenoma (n=1: 200%), and a pre-clinical Cushing's adenoma (n=1: 280%), intermediate COUP-TFI expression in cortisol-producing adenomas (n=8: 63+/-5%), and low COUP-TFI expression in aldosterone-producing adenomas (n=8: 49+/-4%). In contrast to COUP-TFI, SF-1 mRNA expression did not vary significantly among adrenals. We did not detect the expected negative correlation between COUP-TFI and CYP17 mRNA levels in adrenocortical adenomas. High COUP-TFI expression was associatedwith a nonfunctioning phenotype. Interestingly, the pattern of COUP-TFI expression was similar to the profile of N-CoR expression, but not of SMRT expression. These results indicate that COUP-TFI and N-CoR may play a role in steroidogenesis by human adrenocortical adenomas.

Adenoma↗

A functional thyrotropin- and growth hormone-secreting pituitary adenoma with a ultrastructurally monomorphic feature: a case study.

A 38-yr-old female with a TSH- and GH-secreting pituitary adenoma is described, who had both overt symptoms, hyperthyroidism and acromegaly. Her serum TSH was not suppressed despite high concentrations of free T3 and free T4, and her alpha-subunit/TSH molar ratio was high. Her serum GH was consistently high, and was not suppressed by an oral glucose tolerance test. Preoperative testing revealed that, although the TSH response was impaired, TSH, alpha-subunit and GH were increased by TRH injection, and that these hormones were reduced by bromocriptine or somatostatin analog. Although she did not have hyperprolactinemia, the in vitro culture and immunohistochemical studies revealed that the adenoma cells produced and released PRL, in addition to TSH, alpha-subunit and GH. Immunohistochemical studies showed the presence of GH in the cytoplasm of many adenoma cells. TSH beta-positive adenoma cells were less frequently seen than GH-positive adenoma cells. No cells showed the coexistence of GH and TSH beta, and a few cells were positive for PRL. By electron microscopy, the adenoma was found to be composed of a single cell type resembling thyrotrophs, and did not have any characteristics of somatotrophs. This case was considered to be of interest, because the adenoma was ultrastructurally monomorphous, but immunohistochemically polymorphous.

Acromegaly↗

Mechanism of hyperthyroidism-induced renal hypertrophy in rats.

It is well known that renal hypertrophy is induced by hyperthyroidism; however, the mechanism is not fully understood. We recently reported that cardiac hypertrophy in hyperthyroidism is mediated by enhanced cardiac expression of renin mRNA. The present study addresses the hypothesis that renal hypertrophy in hyperthyroidism is mediated by amplification of renal expression of renin mRNA. Twenty Sprague-Dawley rats were divided into control (n=5) and hyperthyroid groups by daily intraperitoneal injections of saline vehicle or thyroxine. The hyperthyroid group was subdivided further into hyperthyroid-vehicle (n=5), hyperthyroid-losartan (n=5), and hyperthyroid-nicardipine (n=5) groups by daily intraperitoneal injections of saline vehicle, losartan, or nicardipine. All rats were killed at 4 weeks, and the blood and kidneys were collected. The kidney-to-body weight ratio increased in the hyperthyroid groups (+34%). Radioimmunoassays and reverse transcriptase-polymerase chain reaction revealed increased renal renin (+91%) and angiotensin II (+65%) levels and enhanced renal renin mRNA expression (+113%) in the hyperthyroid groups. Losartan and nicardipine decreased systolic blood pressure to the same extent, but only losartan caused regression of thyroxine-induced renal hypertrophy. These results suggest that thyroid hormone activates the intrarenal renin-angiotensin system via enhancement of renal renin mRNA expression, which then leads to renal hypertrophy.

Analysis of Variance↗

Vector autoregressive modeling analysis of frequently sampled oral glucose tolerance test results. 2. Insulin resistance and secretion after gastrectomy.

Using the method of vector autoregressive modeling (VAR) analysis of frequently sampled oral glucose tolerance test (OGTT) results, we evaluated abnormalities in the feedback relationships between plasma glucose and insulin in gastrectomized patients to assess insulin secretion capacity and insulin resistance following gastrectomy. VAR modeling analysis was applied to the plasma glucose and insulin level data from the frequently-sampled 75g-OGTT results of 38 subjects who had undergone total or subtotal gastrectomy and 977 controls without gastrectomy. After gastrectomy, the predicted response of insulin to a glucose challenge was excessive in normal subjects and those with slightly impaired glucose tolerance. Furthermore, the glucose response to insulin was clearly positive in gastrectomized subjects with moderately to severely impaired glucose tolerance, i.e., diabetics, indicating strong insulin resistance. The insulin resistance in this situation cannot be explained by decreased peripheral glucose disposal. Our results suggest that the lowered glucose tolerance which follows gastrectomy results from disturbance of the hormonal relationship between pancreas and intestine (entero-insular axis), which causes increased intestinal glucose absorption, and the insulin resistance which occurs in response to hyperinsulinemia in patients with normal fasting plasma glucose. Disturbance of the entero-insular axis may cause not only increased glucose absorption but also hyperglucagonemia, both of which contribute to hyperglycemia in diabetic patients after gastrectomy.

Administration, Oral↗

Renal protective effects of efonidipine in partially nephrectomized spontaneously hypertensive rats.

We investigated the effects of a calcium antagonist, efonidipine, which was reported to dilate not only afferent arterioles but also efferent alterioles, on progression of renal failure in salt-loaded partially nephrectomized spontaneously hypertensive rats (SHR). Forty-four SHR's with 5 of 6 nephrectomy were divided into four groups: group 1 as control (n=20); group 2, efonidipine-treated (n=8); group 3, enalapril-treated (n=8); and group 4, nifedipine-treated (n=8). The rats were given these drugs and a high-salt diet (5% NaCl) for 8 weeks. During the experiment, systolic blood pressure (SBP) and daily urinary protein excretion were measured every 2 weeks. At the end of the study, serum creatinine was determined, and renal tissues were obtained for light microscopic examination. SBP was markedly reduced by 8-week antihypertensive treatment. (control, 267+/-7 mmHg; efonidipine, 181+/-7 mmHg; enalapril, 200+/-12 mmHg; nifedipine, 184+/-6 mmHg). Glomerular sclerosis developed markedly in the control group, but was partially prevented in all treated groups. Similarly, urinary protein excretion (UPE) was suppressed by efonidipine (180+/-16 mg/day) and enalapril (186+/-16 mg/day vs. 301+/-28 mg/day for control). In contrast, nifedipine failed to prevent the increase in urinary protein excretion (258+/-22 mg/day). In conclusion, efonidipine attenuates SBP increase and ameliorates glomerular injury as well as nifedipine and enalapril. Furthermore, beneficial effects of efonidipine, but not nifedipine, on proteinuria suggest that different mechanisms mediate the improvement of proteinuria; one possible mechanism could be efferent arteriolar dilation, not reported in nifedipine.

Animals↗

Long-term changes in clinic blood pressure in patients with white-coat hypertension.

BACKGROUND: White-coat hypertension, defined as hypertensive blood pressure values in a clinical setting but normal self-measured blood pressures, is relatively common among young patients but long-term spontaneous changes in clinic blood pressure in these patients with white-coat hypertension have not been assessed. DESIGN: A prospective study, with two clinical examinations (with a 5-year interval between the examinations).METHODS: We examined 188 male patients (mean age 16 years) with clinic blood pressures > 140/90 mmHg at baseline by determining clinic and home blood pressures, heart rates, heights and weights. These parameters were re-examined 5 years later. White-coat hypertension (n = 139) was defined as an average home blood pressure < 130/90 mmHg.RESULTS: A decrease in clinic systolic blood pressure to < 140 mmHg during the 5-yea follow-up was observed in 101 of the 139 patients with white-coat hypertension (73%) and 26 of the 49 patients with sustained hypertension (53%, P < 0.02). There was no difference between clinic heart rates and body mass indices at baseline of the patients who remained hypertensive in the clinic and those who became normotensive. Both the white-coat and the sustained hypertensive patients who remained hypertensive had higher baseline home blood pressures and an increase in body mass index during the 5-year period and maintained the baseline clinic heart rate, whereas those who became normotensive exhibited a reduction in clinic heart rate and maintained the baseline body mass indexd. The clinic systolic blood pressure at 5-year follow-up was correlated significantly to the clinic and home systolic blood pressures at baseline, the heart rate and body mass indexd at 5-year follow-up and the changes in bodyh mass index during the 5-year period. CONCLUSION: The prevalence of clinic systolic blood pressures < 140 mmHg during the 5-year period among patients with white-coat hypertension was higher than that among those with sustained hypertension. The clinic and home blood pressures at baseline and body mass indices and clinic heart rates at 5-year follow-up were related to the clinic systolic blood pressures at 5-year follow-up. These results suggest that control of body weight is important in the management both of young patients with white-coat hypertension and of those with sustained hypertension.

Journal Article↗

Cloning and expression of rat 25-hydroxyvitamin D3-1alpha-hydroxylase cDNA.

A full-length cDNA for the rat kidney mitochondrial cytochrome P450 mixed function oxidase, 25-hydroxyvitamin D3-1alpha-hydroxylase (P4501alpha), was cloned from a vitamin D-deficient rat kidney cDNA library and subcloned into the mammalian expression vector pcDNA 3.1(+). When P4501alpha cDNA was transfected into COS-7 transformed monkey kidney cells, they expressed 25-hydroxyvitamin D3-1alpha-hydroxylase activity. The sequence analysis showed that P4501alpha was of 2,469 bp long and contained an ORF encoding 501 amino acids. The deduced amino acid sequence showed a 53% similarity and 44% identity to the vitamin D3-25-hydroxylase (CYP27), whereas it has 42.6% similarity and 34% identity with the 25-hydroxyvitamin D3-24-hydroxylase (CYP24). Thus, it composes a new subfamily of the CYP27 family. Further, it is more closely related to the CYP27 than to the CYP24. The expression of P4501alpha mRNA was greatly increased in the kidney of vitamin D-deficient rats. In rats with the enhanced renal production of 1alpha,25-dihydroxyvitamin D3 (rats fed a low Ca diet), P4501alpha mRNA was greatly increased in the renal proximal convoluted tubules.

Amino Acid Sequence↗

Molecular cloning of cDNA and genomic DNA for human 25-hydroxyvitamin D3 1 alpha-hydroxylase.

The 25-hydroxyvitamin D3 1 alpha-hydroxylase (1 alpha-hydroxylase) is a cytochrome P450 enzyme that catalyzes the conversion of 25-hydroxyvitamin D3 to 1 alpha,25-dihydroxyvitamin D3. This enzyme plays an important role in calcium homeostasis. Here we report the molecular cloning of cDNA and gene for human 1 alpha-hydroxylase. The cDNA clone was obtained from a human kidney cDNA library by cross-hybridization with a previously cloned rat cDNA probe. The cDNA consists of 2469 bp and encodes a protein of 508 amino acids that shows 82.5% sequence identity with the rat enzyme. A computer-aided homology search revealed that 1 alpha-hydroxylase shares a relatively high homology with vitamin D3 25-hydroxylase (about 40% amino acid identity). Northern blot analysis showed that the 2.5-kb mRNA is most abundant in kidney. The gene for human 1 alpha-hydroxylase spans approximately 6 kb, is composed of nine exons, and is present as a single copy. This molecular cloning makes it possible to investigate the genetic mechanism of diseases related to calcium metabolism, including vitamin D-dependency rickets type I.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase↗