PubMed Health⌕ Search

Biomedical subjects

N Takamura

Publications and source records attributed to N Takamura.

At least 37 records · Page 2Linked to original sources

Ceramide-induced apoptosis of human thyroid cancer cells resistant to apoptosis by irradiation.

Ionizing radiation (IR) induces apoptosis through, in part, cell membrane breakdown signals. Ceramide and diacylglycerol (DAG) are released after IR exposure, which act as second messengers to induce proapoptotic and antiapoptotic signals, respectively. We have previously shown, however, that thyroid cells are relatively resistant to IR-induced apoptosis. To investigate the mechanism of thyroid cell resistance to IR-related apoptosis, we determined the effects of ceramide and its release following exposure of human thyroid cancer cell lines to IR. Exogenous C2-ceramide (10-100 microM) activated the apoptosis process in all cell lines used. Exogenous C2-ceramide also activated a stress kinase, c-Jun N-terminal kinase UNK). The apoptotic action of ceramide was attenuated by serum or simultaneous activation of protein kinases C and A by phorbol esters and forskolin. Furthermore, 2-5 Gy IR had a differential effect on ceramide and DAG release in human thyroid cells; a weak and transient release of ceramide but a strong and sustained release of DAG. Our results indicated that the radioresistance properties of thyroid cancer cells probably reflect the dominance of anti-apoptotic signals, evoked by growth factor(s) and DAG, which override the apoptotic effect of ceramide released by human thyroid cells on exposure to IR, in spite of activation of proapoptotic pathway downstream of ceramide.

Apoptosis↗

MR imaging of the pituitary gland in children and young adults with congenital combined pituitary hormone deficiency associated with PROP1 mutations.

OBJECTIVE: The aim of this study was to clarify the relationship between morphologic changes of the pituitary gland and the genotype of Prophet of Pit-1 (PROP1), a newly discovered gene responsible for congenital combined pituitary hormone deficiency, in a series of eight humans with this disorder. CONCLUSION: Congenital hypoplasia of the anterior pituitary gland is the most common MR imaging finding in patients with combined pituitary hormone deficiency. Our findings suggest a crucial role for PROP1 in pituitary organogenesis as well as anterior pituitary cell differentiation.

Adolescent↗

Azygos venous blood flow while fasting, postprandially, and after endoscopic variceal ligation, measured by magnetic resonance imaging.

Using cine phase-contrast magnetic resonance (MR) imaging, we measured fasting and postprandial azygos blood flow in 15 cirrhotic patients with portal hypertension and 11 healthy controls. In 10 of the cirrhotics, measurements were made before and after prophylactic endoscopic variceal ligation therapy (EVL). Flow volume was measured in the azygos vein at the level of the midthoracic vertebra. Azygos blood flow was measured under basal fasting conditions and 30-40 min after ingestion of a 500 Kcal meal. Fasting azygos blood flow was 139 +/- 43 ml/min in controls vs 519 +/- 249 ml/min in cirrhotics (P < 0.01). Eating significantly increased azygos blood flow, by 38% in controls (P < 0.02) and by 27% in cirrhotics (P < 0.02), compared with fasting conditions. EVL markedly decreased azygos blood flow, by 25% compared with pre-EVL (P < 0.03). The cine phase-contrast MR velocity mapping method measured flow volume in the azygos veins. Azygos blood flow was markedly greater in the cirrhotics than in the controls. In the cirrhotics and controls, blood flow volume increased after eating. Azygos blood flow was significantly reduced by successful EVL.

Adult↗

Gene analysis of PROP1 in dwarfism with combined pituitary hormone deficiency.

The prophet of Pit-1 gene (PROP1), a novel pituitary-specific homeodomain factor, has been proved to be one of the causative genes for combined pituitary hormone deficiency (CPHD). Recently, PROP1 mutations have been identified in CPHD families, including our Russian cohort. The 2-bp deletion, 296delGA (A301G302del), is the most common mutational hot spot. Furthermore, in our cohort, PROP1 mutations are more common in comparison with human POU1F1 gene mutations. Here we review the gene analysis of PROP1 in patients with CPHD.

Amino Acid Sequence↗

Developmental and hormonal regulation of thermosensitive neuron potential activity in rat brain.

To understand the involvement of thyroid hormone on the postnatal development of hypothalamic thermosensitive neurons, we focused on the analysis of thermosensitive neuronal activity in the preoptic and anterior hypothalamic (PO/AH) regions of developing rats with and without hypothyroidism. In euthyroid rats, the distribution of thermosensitive neurons in PO/AH showed that in 3-week-old rats (46 neurons tested), 19.5% were warm-sensitive and 80.5% were nonsensitive. In 5- to 12-week-old euthyroid rats (122 neurons), 33.6% were warm-sensitive and 66.4% were nonsensitive. In 5- to 12-week-old hypothyroid rats (108 neurons), however, 18.5% were warm-sensitive and 81.5% were nonsensitive. Temperature thresholds of warm-sensitive neurons were lower in 12-week-old euthyroid rats (36.4+/-0.2 degrees C, n = 15, p<0.01,) than in 3-week-old and in 5-week-old euthyroid rats (38.5+/-0.5 degrees C, n = 9 and 38.0+/-0.3 degrees C, n = 15, respectively). The temperature thresholds of warm-sensitive neurons in 12-week-old hypothyroid rats (39.5+/-0.3 degrees C, n = 8) were similar to that of warm-sensitive neurons of 3-week-old raats (euthyroid and hypothyroid). In contrast, there was no difference in the thresholds of warm-sensitive neurons between hypothyroid and euthyroid rats at the age of 3-5 weeks. In conclusion, monitoring the thermosensitive neuronal tissue activity demonstrated the evidence that thyroid hormone regulates the maturation of warm-sensitive hypothalamic neurons in developing rat brain by electrophysiological analysis.

Aging↗

Thyrotropin regulates c-Jun N-terminal kinase (JNK) activity through two distinct signal pathways in human thyroid cells.

c-Jun N-terminal kinases (JNK) participate in cellular responses to mitogenic stimuli and environmental stresses. We investigated whether and how TSH, which promotes the proliferation and differentiation of thyroid cells, regulates JNK activity in primary cultured human thyroid cells. TSH stimulated JNK activity in cytosolic fractions of thyroid cells measured by in vitro kinase assay. A low concentration of TSH (10(-11) M) stimulated JNK activity but at a higher dose (10(-8)-10(-7) M), TSH suppressed JNK activity without any change of JNK protein level. Activation of JNK by TSH was also observed in CHO cells stably transfected with TSH receptor complementary DNA (cDNA), suggesting a ligand-receptor specific interaction. TSH stimulated JNK activity through a pertussis toxin-sensitive pathway. We next elucidated the signal transduction pathways in TSH-induced JNK activation by examining the involvement of four distinct intracellular signal molecules; protein kinase C (PKC), cAMP, Ca2+, and PI3-kinase. The stimulation of JNK by TSH was blocked by two PKC inhibitors and suppressed by 8-bromo-cAMP or forskolin. These findings demonstrate that TSH regulates JNK activity biphasically in human thyroid cells through an interaction between Gi-PKC and cAMP-PKA pathways.

8-Bromo Cyclic Adenosine Monophosphate↗

Prop-1 gene expression in human pituitary tumors.

A novel type of pituitary-specific transcription factor, Prophet of Pit-1 (Prop-1) gene (PROP1), expresses in just early embryonic stage in mouse and closely related as a causative gene in combined pituitary hormone deficiency. We studied PROP1 expression to further clarify its correlation with tumorigenesis and biological behavior in human pituitary adenomas. Eighteen pituitary adenomas and three normal pituitary glands were examined for the expression of PROP1 and POU1F1 by using RT-PCR Pituitary adenomas were diagnosed as non-functioning adenomas (n = 11), prolactinomas (n=5), GH-producing adenoma (n = 1) and ACTH-producing adenoma (n = 1). One of non-functioning adenomas was pituitary carcinoma with cerebellar metastasis and CSF dissemination. Our results demonstrated PROP1 expression in all pituitary tumors examined, in contrast, POU1F1 was detected in 14 of pituitary tumors. PROP1 was also expressed in normal pituitary gland, however, it was not in normal brain tissue, glioblastomas (cell lines and tumor tissues) and meningioma. Our data indicated that PROP1 expression was observed constantly both in the pituitary tumors and normal human adult pituitary tissues, suggesting that PROP1 is an essential transcriptional factor for pituitary specific gene expression in human. Therefore, detection of PROP1 might be a useful indicator for differentiating pituitary adenomas, regardless of their hormonal phenotypes, from other brain tumors.

Adenoma↗

Protection against cis-diamminedichloroplatinum-induced nephrotoxicity by 2,3-dimercaptosuccinic acid in rats.

The present study was designed to examine the usefulness of 2,3-dimercaptosuccinic acid (DMSA) for the purpose of reducing cis-diamminedichloroplatinum (DDP)-induced nephrotoxicity and effective clinical use of DDP and safe. The effectiveness of DMSA on the DDP-excretion in rat kidney was observed by measuring the platinum concentration using Atomic Absorption Instrument. Co-administration of DMSA (1.0 or 2.0 mmol/kg) 1 hour after DDP injection (20 mumol/kg) showed more decrease in the platinum concentration than that immediately after DDP injection. The alleviating effect of DMSA on DDP toxicity was evaluated by lipid peroxidation, enzymatic antioxidants, and glutathione levels. The administration of DDP alone caused a significant increase in lipid peroxidation and significant decreases in enzymatic antioxidants and glutathione levels in the kidney. Co-administration of DMSA (2.0 mmol/kg) 1 hour after DDP injection showed the most effective reduction of these enzymatic damages caused by DDP. These findings suggested that the co-administration of DMSA (2.0 mmol/kg) 1 hour after DDP injection leads DDP to effective excrete from renal tissue and suppresses the lipid peroxide reaction and results in reduction of nephrotoxicity.

Animals↗

[Genes for autoantigens].

Thyroid autoantigens have been well studied in view of the identification corresponding to respective autoantibodies in circulation, which are utilized as a diagnostic or follow-up marker of autoimmune thyroid diseases. There are several thyroid autoantigen genes cloned, such as thyroglobulin (TG), thyroid peroxidase (TPO), thyrotropin receptor (TSHR) and iodine transporter (NIS). Recent progress of the molecular study on thyroid autoantigens has allowed us to examine the characteristic features of these genes. Here we introduce the four representative thyroid autoantigens (TG, TPO, TSHR and NIS) and summarize the specific findings of genetic alteration and the sites of antigenicity corresponding to autoantibodies.

Autoantigens↗

Rarity of PIT1 involvement in children from Russia with combined pituitary hormone deficiency.

To ascertain the molecular background of combined pituitary hormone deficiency, screening for mutations in the pituitary-specific transcription factor (Pit-1/GHF-1) gene (PIT1) was performed on a cohort of 15 children from Russia with combined growth hormone (GH)/prolactin (Prl)/thyroid-stimulating hormone (TSH) deficiency. The group of patients, suspected of PIT1 mutations, consisted of four familial cases (seven patients) and eight sporadic cases. All had complete GH deficiency and complete or partial Prl and TSH deficiency. Direct sequencing of all six exons of PIT1 and its promoter region showed a C to T transition mutation at codon 14 of exon 1 in a 3 8/12-year-old girl. This novel PIT1 mutation results in a proline to leucine substitution (P14L). The patient was heterozygous for mutant and normal alleles. The heterozygous P14L mutation was also present in her mother as well as in her maternal aunt and grandmother, all of whom were phenotypically normal. There was no mutation in the father's DNA, suggesting the need for reevaluation of genomic imprinting. In other children of our series, no mutation in PIT1 or in its promotor region was identified. This is the first report on the analysis of PIT1 and its promoter region in Russian children with GH/Prl/TSH deficiency. However, as the involvement of PIT1 mutation is rare in Russia, the other negative cases need to be analyzed for another candidate gene responsible for combined GH/Pr/TSH deficiency.

Adolescent↗

A mutational hot spot in the Prop-1 gene in Russian children with combined pituitary hormone deficiency.

Combined pituitary hormone deficiency (CPHD), including growth hormone (GH), prolactin (Prl) and thyroid-stimulating hormone (TSH) in children is now considered a heterogeneous syndrome. Recent findings on expression of mouse pituitary-specific homeodomain factors demonstrate dependence of adenopituitary ontogeny on interactive expression of these factors, suggesting their involvement in etiology of CPHD. Prophet of Pit-1 (Prop-1) gene, a novel pituitary-specific homeodomain factor, was analyzed in 14 Russian children with CPHD, in whom Pit-1 gene was intact. We found a mutational hot spot in three patients from two families in homeodomain part of the second exon of Prop-1 gene. The common 2-base pair deletion (GA296) in the homozygous state resulted in a Serine to Stop codon (S109X) substitution and generated a truncated Prop-1 protein. Parents were phenotypically normal and heterozygous for GA296 deletion, indicating an autosomal recessive inheritance. These results demonstrate a novel type of Prop-1 gene mutation as one of the causes of CPHD in Russian patients.

Amino Acid Sequence↗

Chronic splanchnic hemodynamic effects of spironolactone with unrestricted sodium diet in patients with compensated cirrhosis.

The purpose of this study is to determine the hemodynamic effects of spironolactone administration associated with an unrestricted sodium diet (salt 10 g) in patients with compensated cirrhosis and portal hypertension. We studied the hemodynamic changes following eight weeks of administration of either placebo (N = 6) or spironolactone (100 mg/day) (N = 6 Pugh-Child's A and 6 B). No significant changes were observed after the administration of the placebo. Spironolactone induced a significant reduction in the hepatic venous pressure gradient (HVPG) (-10.1 +/- 13.3%, P < 0.05), which was associated with a significant reduction of cardiac output (-11.5 +/- 9.3%, P < 0.01), plasma volume (-8.1 +/- 4.7%, P < 0.01), and wedged hepatic venous pressure (-10.5 +/- 11.6%, P < 0.05). There was no significant change in hepatic blood flow and there was no significant correlation between the change in the HVPG and the change in circulating plasma volume. A decrease in the HVPG greater than 10% was observed in eight of 12 patients (67%), defined as responders, at eight weeks. Six of six (100%) grade A patients and two of six (33%) grade B patients responded. This study demonstrated that spironolactone with an unrestricted sodium diet decreased the HVPG in grade A patients but did not significantly decrease the HVPG in grade B patients.

Diuretics↗

Expression profile of receptor-type protein tyrosine kinase genes in the human thyroid.

Protein tyrosine kinases (PTKs) play a role in regulating the growth and differentiated functions of thyroid cells and are probably involved in tumorigenesis of papillary-type thyroid carcinoma. To better understand the roles of PTKs in the physiology and pathophysiology of the thyroid, we analyzed the expression profile of receptor-type PTKs in normal human thyroid tissues. Highly conserved regions in the catalytic domains of receptor-type PTKs were amplified by RT-PCR using degenerate oligonucleotide primers. Nucleotide sequencing of about 100 clones identified 21 PTKs, including 16 receptor type and 5 nonreceptor type; no novel PTK was identified. Insulin-like growth factor I receptor, platelet-derived growth factor receptor (PDGFR), TrkE, Axl, epidermal growth factor receptor, etc., appear to be the most abundant receptor-type PTKs in the thyroid; many of which (PDGFR, TrkE, Axl, etc.) have never previously been demonstrated to be expressed in the thyroid. The expression of messenger RNAs (mRNAs) for PDGFR, axl, and trkE in normal thyroid cells was confirmed by Northern blot analysis, and interestingly, the expression levels of PDGFR and trkE mRNAs were decreased in all three thyroid carcinoma cell lines examined (FRO, WRO, and NPA), whereas axl mRNA and protein were overexpressed in 2 of 3 thyroid carcinoma cell lines (FRO and WRO) compared with that in normal tissue. The axl gene was, however, neither amplified nor rearranged. The biological activity of the ligand for Axl, the product of growth arrest-specific gene 6 (Gas6), was then evaluated, demonstrating modest mitogenic activity in thyroid carcinoma cells overexpressing Axl. Furthermore, gas6 mRNA was expressed in FRO cells. Thus, we here identify a variety of PTKs expressed in the thyroid gland, many of which may participate in the regulation of thyroid cell function. Variable expression levels of some PTKs in normal and cancerous cells suggest that there may be an imbalance and disarray of phosphorylation events in thyroid carcinoma cells. Furthermore, Gas6 is identified as a novel growth factor for thyroid carcinoma cells overexpressing Axl receptor tyrosine kinase.

Amino Acid Sequence↗