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T Furuya

Publications and source records attributed to T Furuya.

At least 19 recordsLinked to original sources

Modulation of the functional binding sites for TGF-beta on the type II receptor leads to suppression of TGF-beta signaling.

Transforming growth factor-beta (TGF-beta) binds to two different types of serine/threonine kinase receptors termed type II (TbetaR-II) and type I (TbetaR-I). TGF-beta is unable to bind to TbetaR-I in the absence of TbetaR-II, and initiates receptor assembly by binding with high affinity to TbetaR-II. Previous structural analysis of the TGF-beta3-TbetaR-II complex has suggested that two charged amino acid residues, D55 and E142 of TbetaR-II, are binding sites of TGF-beta. In the present study, we have shown that mutations of the amino-acid residues, D55 and E142 of TbetaR-II, resulted in loss of TGF-beta binding and downstream signaling activity. Moreover, we found that 3,5,7,2',4'-pentahydroxyflavone (Morin) inhibits TGF-beta binding to TbetaR-II, and suppresses phosphorylation of Smad2 and expression of a TGF-beta target gene Smad7 induced by TGF-beta. Our findings may thus provide useful information for designing therapeutic agents for various diseases induced by TGF-beta, including advanced cancers.

Amino Acid Sequence↗

Comparative genomic hybridization reveals genetic progression of oral squamous cell carcinoma from dysplasia via two different tumourigenic pathways.

To clarify the genetic pathway(s) involved in the development and progression of oral squamous cell carcinoma (OSCC), as well as the relationship between genetic aberrations and biological characteristics of OSCC tumours, comparative genomic hybridization was used to analyse genetic alterations in both primary OSCCs and adjacent dysplastic lesions of the same biopsy specimens from 35 patients. Gain of 8q22-23 was the most frequent alteration in both OSCC and mild dysplasia, and was considered the earliest event in the process of oral tumourigenesis. The average number of DNA sequence copy number aberrations (DSCNAs) increased with progression from mild dysplasia to invasive carcinoma (r = 0.737, n = 70, p < 0.001). OSCC samples were classified as having a large or small number of DSCNAs (OSCC-L, 21.4 +/- 4.7 DSCNAs or OSCC-S, 10.0 +/- 1.7 DSCNAs, respectively; p < 0.0001). Gains of 3q26-qter, 8q, 11q13, 14q, and 20q and losses of 4q, 5q12-22, 6q, 8p, 13q, and 18q22-qter were common to OSCC-L and OSCC-S. Gains of 5p15, 7p, 17q11-22, and 18p and losses of 3p14-21, 4p, and 9p were detected exclusively in OSCC-L. The average number of DSCNAs depended on whether the samples showed OSCC- L or dysplasia plus OSCC-L, or showed OSCC-S or dysplasia plus OSCC-S (p = 0.001). Gain of 5p15 and losses of 4p and 9p were detected even in dysplastic lesions adjacent to OSCC-L samples. Loss of 4p was associated with node metastasis by multivariate analysis (p = 0.013). OSCC-L tumours were more often T3-T4 stage tumours than T1-T2 stage tumours (p = 0.03). These findings suggest that two different types of OSCC, OSCC-L associated with high-stage cancer and OSCC-S associated with low-stage cancer, arise from different types of dysplasia via different genetic pathways.

Aged↗

Inflammation and infection in Parkinson's disease.

The hallmark of Parkinson's disease (PD) is a specific degeneration of dopaminergic neurons in the substantia nigra (SN). The cause of nigral dopaminergic neuronal cell death in PD and its underlying mechanisms remain elusive, however, involvement of inflammatory events has been postulated because inflammatory features have been described in the brain of PD patients. Some evidence also suggest that a possible deleterious effects of neuroinflammatory processes by infection in experimental models of neurodegenerative disease. In this review, we summarize and discuss the latest findings regarding inflammation in PD. Especially, we focused on the relationship between infection and PD.

Blood-Brain Barrier↗

Geranylgeranylacetone inhibits formation and function of human osteoclasts and prevents bone loss in tail-suspended rats and ovariectomized rats.

Vitamin K is used for protecting against osteoporosis. Recently, it has been reported that the inhibitory effect of vitamin K(2) (menatetrenone) on bone resorption may be related to its side chain. Geranylgeranylacetone (GGA), known as teprenone, an antiulcer drug, has almost the same chemical structure as that of the side chain of menatetrenone. We hypothesized that GGA also has an inhibitory effect on osteoclastogenesis both in vitro and in vivo. GGA in pharmacological concentrations directly inhibited osteoclastogenesis from human monocytes induced by soluble receptor activator of nuclear factor-kappaB ligand. In addition, GGA induced degradation of actin rings in mature osteoclasts, which was reversed by adding geranylgeranylpyrophosphatase. Moreover, GGA increased the bone mineral density of total femur, proximal metaphysis, and diaphysis of femur in ovariectomized rats. GGA also prevented bone loss induced by hindlimb unloading in tail-suspended rats. These results indicate that GGA prevents bone loss by maintaining a positive balance of bone turnover through suppression of both the formation and the activity of osteoclasts. Thus, GGA could be used to prevent and improve osteoporosis.

Animals↗

Single nucleotide polymorphisms in the gene encoding the major histocompatibility complex class II transactivator (CIITA) in systemic lupus erythematosus.

BACKGROUND: The major histocompatibility complex (MHC) class II transactivator (CIITA) is a master switch of antigen presentation and activates expression of the MHC II gene. Insufficient up regulation of MHC class II molecules is reported to be one of the major immunological mechanisms in systemic lupus erythematosus (SLE). OBJECTIVE: To examine the association between single nucleotide polymorphisms (SNPs) in the human CIITA gene (MHC2TA) and SLE. METHODS: Promoters and coding regions of MHC2TA were evaluated for polymorphisms in 100 patients with SLE and 100 healthy donors. Eight oligonucleotide primer sets that covered the coding region and each promoter region were used for genomic analysis of SNPs. RESULTS: Allele frequencies of previously reported SNPs did not differ between healthy donors and patients with SLE. Additionally, a new polymorphism in an intronic region at nt 485 (A-->A/G) was identified, which is close to the polymorphism at nt 474 that has been associated with one of the disease causing CIITA cDNA mutations in bare lymphocyte syndrome. This SNP was found in 11% of patients with SLE and in 3% of healthy donors, suggesting it may have a role in the pathogenesis of SLE. CONCLUSIONS: A newly identified polymorphism in an intronic region at nt 485 (A-->A/G) may have an important role in the pathogenesis of SLE.

Adolescent↗

Global genomic changes induced by two-stage carcinogen exposure are precancerous alterations in non-transformed human liver epithelial THLE-3 cells.

Global genomic changes, including DNA aneuploidy, may be necessary for carcinogenesis; however, such genomic changes in precancerous cells have not been studied extensively. To identify early global genotypic changes associated with precancerous lesions, a non-transformed human liver epithelial cell line, THLE-3, was treated with benzo[a]pyrene or N-methyl-N-nitro-N-nitrosoguanidine, then by 12-O-tetradecanoyl-phorbol-13-acetate, resulting in morphological transformation of cells. We examined genotypic changes of the transformed cells by laser scanning cytometry, fluorescence in situ hybridization, and comparative genomic hybridization. Transformed fusiform cells displayed tetraploidy, chromosomal instability, DNA copy number aberrations. Cells with these changes were still in the precancerous stage. However, it is suggested that these global genomic changes including tetraploidization provide cells with genetic alterations leading to cancer.

Benzo(a)pyrene↗

Estimation of physiologic ability and surgical stress (E-PASS) for a surgical audit in elective digestive surgery.

BACKGROUND: This study was undertaken to establish an equation to estimate mortality with the use of the prediction scoring system designated as the Estimation of Physiologic Ability and Surgical Stress (E-PASS), and to evaluate the system's usefulness in defining quality of care by comparing it with the Physiologic and Operative Severity Score for the enUmeration for Mortality and morbidity (POSSUM) and Portsmouth-possum (P-POSSUM) scoring systems previously generated for surgical audit. METHODS: Patients (n=5212; group A) who underwent elective gastrointestinal surgery were analyzed to establish equations for estimated 30-day and in-hospital mortality rates. The usefulness of E-PASS was evaluated in another series of 1934 patients (group B) who underwent elective digestive surgery in 6 national hospitals. The ratio of observed to estimated mortality rates (OE ratio) of each hospital was defined as a measure of quality. RESULTS: In group A, 30-day and in-hospital mortality rates increased as the Comprehensive Risk Score (CRS) increased, providing equations for estimated mortality rates. There was an excellent correlation between the estimated and observed mortality rates in individual diseases: R=0.958, N=6, P=.0027 for in-hospital mortality; R=0.937, N=6, P=.0059 for 30-day mortality. In all patients of group B, the E-PASS system estimated the 30-day mortality rates by 0.63-fold (linear analysis), whereas the POSSUM score was 11.0-fold (exponential analysis). The E-PASS system estimated the in-hospital mortality rates by 1.2-fold (linear analysis), whereas the P-POSSUM score was 4.5-fold (linear analysis). The OE ratios for 30-day mortality among the 6 hospitals defined by E-PASS correlated well with those defined by POSSUM: R=0.996, N=6, P<.0001. Similarly, the OE ratios for in-hospital mortality defined by E-PASS were also highly correlated with those defined by P-POSSUM:(R=0.929, N=6, P=.0075. CONCLUSIONS: The E-PASS scoring system may be useful in defining surgical quality and may be more accurate than existing systems in evaluating elective digestive surgery.

Digestive System Surgical Procedures↗

Migration of enhanced green fluorescent protein expressing bone marrow-derived microglia/macrophage into the mouse brain following permanent focal ischemia.

Brain ischemia induces a marked response of resident microglia and hematopoietic cells including monocytes/macrophages. The present study was designed to assess the distribution of microglia/macrophages in cerebral ischemia using bone marrow chimera mice known to express enhanced green fluorescent protein (EGFP). At 24 h after middle cerebral artery occlusion (MCAO), many round-shaped EGFP-positive cells migrated to the ischemic core and peri-infarct area. At 48-72 h after MCAO, irregular round- or oval-shaped EGFP/ionized calcium-binding adapter molecule 1 (Iba 1)-positive cells increased in the transition zone, while many amoeboid-shaped or large-cell-body EGFP/Iba 1-positive cells were increased in number in the innermost area of ischemia. At 7 days after MCAO, many process-bearing ramified shaped EGFP/Iba 1-positive cells were detected in the transition to the peri-infarct area, while phagocytic cells were distributed in the transition to the core area of the infarction. The distribution of these morphologically variable EGFP/Iba 1-positive cells was similar up to 14 days from MCAO. The present study directly showed the migration and distribution of bone marrow-derived monocytes/macrophages and the relationship between resident microglia and infiltrated hematogenous element in ischemic mouse brain. It is important to study the distribution of intrinsic and extrinsic microglia/macrophage in ischemic brain, since such findings may allow the design of appropriate gene-delivery system using exogenous microglia/macrophages to the ischemic brain area.

Animals↗

Infrainguinal arterial reconstruction for limb salvage in patients with end-stage renal disease.

OBJECTIVES: to evaluate the efficacy of infrainguinal bypass for limb-threatening ischaemia in patients with end-stage renal disease (ESRD). MATERIALS AND METHODS: from 1991 through 2000, 28 limbs in 22 patients with ESRD received 33 infrainguinal bypasses, while 65 limbs in 57 patients with functioning kidneys underwent 77 bypasses for limb salvage. The prevalence of diabetes is higher in the ESRD group (p = 0.03). RESULTS: perioperative mortality and patient survival rate in the follow-up period were significantly poorer in patients with ESRD (18% vs 0%; p = 0.001, and 45% vs 85%, p < 0.001, respectively). Most causes of death were related to atherosclerosis or respiratory diseases. In spite of no significant difference in 2-year primary and secondary graft patency rates and limb salvage between the ESRD and non-ESRD groups (76% vs 83%; p = 0.12, 85% vs 91%; p = 0.06, and 83% vs 93%; p = 0.06, respectively), two cases of early limb loss occurred as a result of uncontrolled infection in the ESRD group. In contrast to autogenous conduits, nonautogenous conduits revealed a poorer outcome in ESRD patients (p = 0.03). CONCLUSIONS: perioperative mortality and patient survival rate were significantly poorer in the ESRD group. Preoperative full evaluation of myocardial and brain ischaemia, revascularisation with autogenous conduits, appropriate treatment of wound infection, and strict follow-up for accompanying diseases may be needed in these patients.

Adult↗

Thermophilic biodesulfurization of naphthothiophene and 2-ethylnaphthothiophene by a dibenzothiophene-desulfurizing bacterium, Mycobacterium phlei WU-F1.

Naphtho[2,1-b]thiophene (NTH) is an asymmetric structural isomer of dibenzothiophene (DBT), and NTH derivatives can be detected in diesel oil following hydrodesulfurization treatment, in addition to DBT derivatives. Mycobacterium phlei WU-F1, which possesses high desulfurizing ability toward DBT and its derivatives over a wide temperature range (20-50 degrees C), could also grow at 50 degrees C in a medium with NTH or 2-ethylNTH, an alkylated derivative, as the sole source of sulfur. At 50 degrees C, the resting cells of WU-Fl degraded 67% and 83% of 0.81 mM NTH and 2-ethylNTH, respectively, within 8 h. By GC-MS analysis, 2-ethylNTH-desulfurized metabolites were identified as 2-ethylNTH sulfoxide, 1-(2'-hydroxynaphthyl)-1-butene and 1-naphthyl-2-hydroxy-1-butene, and it was concluded that WU-F1 desulfurized 2-ethylNTH through a sulfur-specific degradation pathway with the selective cleavage of carbon-sulfur bonds. Therefore, M. phlei WU-Fl can effectively desulfurize asymmetric organosulfur compounds, NTH and 2-ethylNTH, as well as symmetric DBT derivatives under high-temperature conditions, and it may be a useful desulfurizing biocatalyst possessing a broad substrate specificity toward organosulfur compounds.

Mycobacterium phlei↗

Association between adult-onset Still's disease and interleukin-18 gene polymorphisms.

Recently, we reported that serum concentration of IL-18 is strikingly high in patients with adult-onset Still's disease (AOSD). The aim of the present study was to screen for genetic polymorphisms in the human IL-18 (hIL-18) gene and to determine the association of polymorphisms with susceptibility to AOSD. We investigated the 6.7 kb region upstream of exon 2 of hIL-18 gene, in which a promoter activity had been reported. Sixteen AOSD patients, 144 rheumatoid arthritis (RA) patients and 92 healthy control individuals were studied. We found seven single nucleotide polymorphisms and a single 9 bp insertion which were frequently present in the AOSD patients. Three haplotypes including a unique combination of these polymorphisms were also determined. Of them, haplotype S01 contained all eight of these polymorphisms. The frequency of individuals carrying a diplotype configuration, ie a combination of two haplotypes, of S01/S01 was significantly higher in the AOSD patients than in the healthy controls (P=0.00059, Fischer's exact probability test, odds ratio [OR]=7.81, 95% confidence interval [95% CI]=2.48-24.65) and the RA patients (P=0.015, Fischer's exact probability test, OR=4.0, 95% CI=1.39-11.54). We therefore conclude that possession of the diplotype configuration of S01/S01 is a major genetic risk factor for susceptibility to AOSD.

Female↗

Thermophilic biodesulfurization of dibenzothiophene and its derivatives by Mycobacterium phlei WU-F1.

Dibenzothiophene (DBT) derivatives can be detected in diesel oil following hydrodesulfurization treatment, and they are widely recognized as target compounds for more efficient desulfurization. The moderately thermophilic bacterium Mycobacterium phlei WU-F1 was isolated for its ability to grow at 50 degrees C in a medium with DBT as the sole source of sulfur. At 50 degrees C, resting cells of WU-F1 degraded 0.81 mM DBT within only 90 min to produce 2-hydroxybiphenyl as a desulfurized metabolite through the selective cleavage of carbon-sulfur bonds, and also degraded 0.81 mM of derivatives such as 2,8-dimethylDBT, 4,6-dimethylDBT and 3,4-benzoDBT within 8 h. In addition, the resting cells exhibited high DBT-desulfurizing ability over a wide temperature range from 20 to 50 degrees C. Because M. phlei WU-F1 possesses higher desulfurizing ability toward DBT and the derivatives over a wider temperature range than any other microorganisms previously reported, it may have useful practical applications for biodesulfurization.

Biodegradation, Environmental↗

Examination of oncogene amplification by genomic DNA microarray in hepatocellular carcinomas: comparison with comparative genomic hybridization analysis.

To identify amplified oncogenes involved in hepatocellular carcinomas (HCC), we applied a genomic DNA microarray spotted with 57 oncogenes to 20 HCCs. Aberrations in DNA copy number also were analyzed by comparative genomic hybridization (CGH) using an aliquot of DNA samples. In 5 of 20 HCCs, only 6 oncogenes (CCND1, FGF3/FGF4, SAS/CDK4, TERC, MET, and MYC) were amplified, whereas in the remaining 15 tumors no oncogenes were amplified. A comparison of DNA microarray and conventional CGH analyses showed that, although 5 of 6 amplified oncogenes shown by microarray were located in chromosomal regions shown by CGH to have increased DNA copy numbers, not all genes located in such chromosomal regions were affected. One of the amplified oncogenes (SAS/CDK4) was found in a chromosomal region that was undetected by CGH. We, therefore, conclude that amplification of the oncogenes examined in this series is not directly implicated in hepatocellular carcinogenesis.

Adult↗

Expression of p21(WAF1/CIP1) and p53 proteins in gastric carcinoma: its relationships with cell proliferation activity and prognosis.

The expressions of p21(WAF1/CIP1), p53 proteins, and Ki-67 antigen were investigated immunohistochemically in 190 primary gastric carcinomas. Of the 190 tumors, 40.5% positively expressed p21(WAF1/CIP1) and 42.1% positively expressed p53. The expression of p21(WAF1/CIP1) was significantly associated with clinicopathological factors including gender, tumor size, status of lymph node, and clinicopathological stage (P<0.05 for all), but p21(WAF1/CIP1) expression showed no clear correlation with Ki-67 labeling index. The mean Ki-67 labeling index was significantly higher in p53-positive cases than p53-negative cases (P<0.0001). However, among the clinicopathological factors examined, expression of p53 correlated only with age. Univariate and multivariate survival analyses revealed that clinicopathological stage (P<0.001) and expression status of p21(WAF1/CIP1) (P<0.05) were independent prognostic factors. Neither the expression status of p53 nor the Ki-67 labeling index, however, influenced the prognosis of patients with gastric cancer.

Adult↗

Resistance of CD4-positive T lymphocytes to etoposide-induced apoptosis mediated by upregulation of Bcl-xL expression in patients with HTLV-I-associated myelopathy.

Human T-lymphotropic virus type I (HTLV-I)-associated myelopathy (HAM) is characterized by chronic inflammation of the spinal cord. The exact mechanisms that enhance the development of chronic myelopathy remain to be determined. One such mechanism could be an altered response of peripheral blood CD4(+) T lymphocytes to apoptotic stimuli. We examined the sensitivity of these cells to apoptosis in HAM patients and control. Apoptosis was induced by etoposide, which induces mitochondria-dependent apoptosis through the release of cytochrome c from the mitochondria. The percentage of apoptotic cells that expressed hypodiploid DNA among etoposide-treated CD4(+) T lymphocytes was significantly lower in HAM patients than in the control. Western blot analysis of cell lysates derived from CD4(+) T lymphocytes demonstrated that the expression level of Bcl-xL protein was significantly higher in HAM patients than in the control. Our results indicate that peripheral blood CD4(+) T lymphocytes of HAM patients are resistant to apoptosis triggered through mitochondrial death pathway through upregulation of expression of anti-apoptotic protein, Bcl-xL. This phenomenon might contribute to the prolongation and perpetuation of the chronic inflammatory process in the spinal cord of HAM patients.

Adult↗

De novo-designed peptide transforms Golgi-specific lipids into Golgi-like nanotubules.

Cellular organelles, such as the Golgi apparatus and the endoplasmic reticulum, adopt characteristic structures depending on their function. While the tubular shapes of these structures result from complex protein-lipid interactions that are not fully understood, some fundamental machinery must be required. We show here that a de novo-designed 18-mer amphipathic alpha-helical peptide, Hel 13-5, transforms spherical liposomes made from a Golgi-specific phospholipid mixture into nanotubules on the scale of and resembling the shape of the nanotubules that form the Golgi apparatus. Furthermore, we show that that the size and the shape of such nanotubules depend on lipid composition and peptide properties such as length and the ratio of hydrophobic to hydrophilic amino acids. Although the question of precisely how nature engineers organellar membranes remains unknown, our simple novel system provides a basic set of tools to begin addressing this question.

Circular Dichroism↗