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Biomedical subjects

A Shimamoto

Publications and source records attributed to A Shimamoto.

At least 37 records · Page 2Linked to original sources

The role of cyclosporine A and interleukin-2 in obliterative airway disease in a rat tracheal transplant model.

The pathogenesis of obliterative bronchiolitis (OB) following lung and heart-lung transplantation remains unclear. We evaluated the role of CsA and IL-2 on the development of obliterative airway disease (OAD) by administrating exogenous IL-2 in a CsA-treated rat tracheal transplant model. Tracheal grafts were implanted into the peritoneal cavity from Brown Norway (BN) to BN rats or to Lewis (LEW) rats. Allotransplant: No treatment was given in group 1. Short-term CsA (25 mg/kg, i.m. on POD 2 and 3) was used in group 2. Group 3 was treated with long-term CsA (25 mg/kg, i.m. on POD 2 and 3, followed by 5 mg/kg on POD 4 to 27). Administration of IL-2 (300, 000 IU/kg, i.p. on POD 15 to 19 and 22 to 26) was performed to long-term CsA treated rats in group 4. Isotransplant: No treatment was given to group 5, group 6 was treated with IL-2 (same regimen as in group 4). Grafts were harvested at different time points after Tx for histological assessment. No luminal obliteration was observed in group 5 and 6. Complete luminal obliteration was noted 4 weeks after Tx in group 1. In group 2 and 3, obliterative lesion occurred 4-6 weeks after CsA withdrawal. IL-2 increased epithelial loss, lymphocytic infiltration, and obliterative changes in group 4. Our results suggest that OAD is an immune mediated disorder. Furthermore, administration of exogenous IL-2 might be able to abrogate the protection from OAD by CsA therapy.

Animals↗

Isolation and characterization of Cox17p from porcine heart by determining its survival-promoting activity in NIH3T3 cells.

We have found that the gel filtration fraction of porcine heart extract clearly promoted the survival of NIH3T3 fibroblast cells in the serum-free medium condition. A structural analysis showed that the active fraction contained a novel peptide, porcine Cox17p (p-Cox17p), which was recently reported by Chen et al. as dopuin (Z. W. Chen et al., Eur. J. Biochem. 249 (1997) 518-522). Porcine Cox17p/dopuin possesses high sequence homology to the product of human COX17 gene (h-Cox17p). Although Cox17p has been implied to be involved in copper recruitment to mitochondria and in the functional assembly of cytochrome oxidase in yeast, its role in mammalian cells is unknown. In this study, we chemically synthesized p-Cox17p to investigate its biological effects. Refolding experiments of synthesized linear p-Cox17p revealed the existence of mostly one pattern of three intrachain disulfide bridges similar to that of native p-Cox17p, because the main oxidized p-Cox17p was completely co-eluted with the natural product. The addition of heavy metal ions such as copper, zinc and cadmium significantly inhibited the formation of the oxidized form, suggesting that reduced p-Cox17p may interact directly with these metal ions. The reduced and oxidized forms of p-Cox17p were also confirmed to promote the survival of NIH3T3 cells in serum-free medium as observed with the natural product, indicating that Cox17p may be a bioactive peptide.

3T3 Cells↗

Regulation of CDK4 activity by a novel CDK4-binding protein, p34(SEI-1).

The p16(INK4a) tumor suppressor inhibits cyclin-dependent kinases (CDK4 and CDK6). Here we report the isolation of a novel gene, SEI-1, whose product (p34(SEI-1)) appears to antagonize the function of p16(INK4a). Addition of p34(SEI-1) to cyclin D1-CDK4 renders the complex resistant to inhibition by p16(INK4a). Expression of SEI-1 is rapidly induced on addition of serum to quiescent fibroblasts, and ectopic expression of p34(SEI-1) enables fibroblasts to proliferate even in low serum concentrations. p34(SEI-1) seems to act as a growth factor sensor and may facilitate the formation and activation of cyclin D-CDK complexes in the face of inhibitory levels of INK4 proteins.

Animals↗

Rothmund-thomson syndrome responsible gene, RECQL4: genomic structure and products.

RECQL4 is the fourth gene identified as a member of the human DNA helicase RecQ gene family including the genes for Werner syndrome (WRN) and Bloom syndrome, both of which are characterized by genomic instability. Recently, RECQL4 was identified as the gene responsible for some cases of Rothmund-Thomson syndrome (RTS), a rare autosomal recessive genetic disorder that shows chromosomal instability, premature aging, and a high risk of mesenchymal tumors. In this study, we show the genomic organization of the RECQL4 gene, including the exon-intron boundaries, the transcription initiation sites, and the potential promoter sequences, which facilitates further mutation analysis of the RECQL4 gene and studies to elucidate the pathogenesis behind RTS. The RECQL4 gene is in a small genome of 6.5 kb and consists of 21 exons. In the 5' upstream region, one Sp1 site and several AP 2 sites exist near the capping site, suggesting that the expression of RECQL4 is regulated by a housekeeping-type promoter similar to WRN. By comparative Northern blot analysis, we show that the RECQL4 transcripts are severely down-regulated in the cells from RTS patients, similar to our previous observation for WRN transcripts in cells from Werner patients. Immunocytochemical analysis indicated that the RECQL4 protein expressed in HeLa cells is in the nucleus and appears to be localized mainly in the nucleoplasm similar to WRN helicase.

5' Untranslated Regions↗

Genomic structure and chromosomal localization of TCEAL1, a human gene encoding the nuclear phosphoprotein p21/SIIR.

Human p21/SIIR is a novel Ser/Arg/Pro-rich nuclear phosphoprotein that is 48% similar to transcription factor SII and modulates transcription in a promoter context-dependent fashion. We have obtained the complete sequence of TCEAL1, the gene that codes for p21/SIIR. This gene consists of three exons and two introns with the entire coding sequence in exon III. Tissue-specific expression patterns of TCEAL1 by Northern blot analysis showed the presence of an approximately 1.2-kb transcript in all normal human tissues examined, and heart and skeletal muscle contained an additional transcript of approximately 7 kb. Expression was lowest in hematopoietic cells of both normal and tumor origin. TCEAL1 was mapped to human chromosome Xq22.1 by fluorescence in situ hybridization.

Animals↗

Mutations in RECQL4 cause a subset of cases of Rothmund-Thomson syndrome.

Rothmund-Thomson syndrome (RTS; also known as poikiloderma congenitale) is a rare, autosomal recessive genetic disorder characterized by abnormalities in skin and skeleton, juvenile cataracts, premature ageing and a predisposition to neoplasia. Cytogenetic studies indicate that cells from affected patients show genomic instability often associated with chromosomal rearrangements causing an acquired somatic mosaicism. The gene(s) responsible for RTS remains unknown. The genes responsible for Werner and Bloom syndromes (WRN and BLM, respectively) have been identified as homologues of Escherichia coli RecQ, which encodes a DNA helicase that unwinds double-stranded DNA into single-stranded DNAs. Other eukaryotic homologues thus far identified are human RECQL, Saccharomyces cerevisiae SGS1 and Schizosaccharomyces pombe rqh1. We recently cloned two new human helicase genes, RECQL4 at 8q24.3 and RECQL5 at 17q25, which encode members of the RecQ helicase family. Here, we report that three RTS patients carried two types of compound heterozygous mutations in RECQL4. The fact that the mutated alleles were inherited from the parents in one affected family and were not found in ethnically matched controls suggests that mutation of RECQL4 at human chromosome 8q24.3 is responsible for at least some cases of RTS.

Adenosine Triphosphatases↗

Bloom's syndrome gene suppresses premature ageing caused by Sgs1 deficiency in yeast.

BACKGROUND: Bloom's syndrome (BS) is an autosomal recessive disorder causing short stature, immunodeficiency, and an increased risk of cancer. Increased rates of sister chromatid exchange and chromosomal aberration have been observed in cells having defects in the BLM gene. Among five kinds of human RecQ helicases cloned, the mutations in WRN and RecQL4 have been known as the causes of premature ageing. Little is, however, known about the function of BLM helicase in ageing. RESULTS: We show that human BLM, but not WRN can prevent the premature ageing and the increased homologous recombination at the rDNA loci caused by sgs1 mutation. Unexpectedly, the levels of ERCs (extrachromosomal rDNA circles), the products of homologous recombination, formed in 7-generation cells of the wild-type or the sgs1:BLM strain were comparable with those of the sgs1 or the sgs1:WRN age-matched-old cells. CONCLUSION: These results imply that BLM helicase may have an important role in human ageing. In addition, these data suggest that the accumulated ERCs per se may be not the cause of premature ageing in yeast, inconsistent with the model proposed by Sinclair & Guarente. We discuss a new model, which explains how Sgs1 or BLM helicase suppresses premature ageing in yeast.

Aging, Premature↗

[Completion pneumonectomy combined with graft replacement of thoracic aortic aneurysm by simple clamping].

A 59-years-old male patient who had left upper lobe partial resection 30 years ago. He was seen at the family physician because of cough. A chest X-ray was showing an abnormal mass shadow measuring 3 x 4 cm in left lower lobe like honey comb. And squamous cell carcinoma (SCC) was detected in his sputum. He was diagnosed as primary lung cancer and introduced to our department to have operation. Chest CT-scan was showing lung tumor suspected SCC measuring 4.3 x 2.6 cm in segment 8 faced chest wall. At the same time, we detected thoracic aortic aneurysm and subcarinal lymph node, but could not see where the boundary is, so it was hard to distinguish between parietal thrombus with thoracic aortic aneurysm and swelling subcarinal lymph node. We decided it swelling subcarinal lymph node by three-dimensional treated CT-scan. Aortic angiography was showing proximal descending aortic aneurysm measuring diameter was 4.5 cm. Abdominal CT-scan was showing infrarenal abdominal aortic aneurysm measuring diameter was 5.5 cm. He was diagnosed as primary lung cancer (It. S8, SCC) (cT2N2M0, Stage IIIB), thoracic aortic aneurysm, abdominal aortic aneurysm, and idiopathic pulmonary fibrosis, and had completion pneumonectomy (R 2 b) for primary lung cancer and graft replacement with aneurysm dissection for thoracic aortic aneurysm without extracorporeal circulation. In this operation, we could find swelling subcarinal lymph node measuring 5 x 3 cm instead of parietal thrombus with thoracic aortic aneurysm. Pathological examination diagnosed middle differential SCC and no metastasis from dissected lymph node (PT2N0M0, Stage I A).

Aorta, Thoracic↗

Age- and sex-related changes in toluene metabolism by rat hepatic microsomes in vitro.

Age- and sex-related changes in toluene metabolism by hepatic microsomes of male and female Sprague-Dawley (SD) rats (1 to 20 weeks) were investigated. A major metabolite of toluene, benzyl alcohol (BA), was measured by high-performance liquid chromatography (HPLC). At low substrate toluene concentrations (0.4 mM), in male rats, BA increased dramatically with development, reaching a peak at 5 weeks of age, rapidly decreasing thereafter. In female rats, BA increased dramatically with development at 3 to 5 weeks of age, and then declined gradually to a low level. Gender differences were obtained at 5 and 20 weeks of age, with BA products being higher in males than in females. At high substrate toluene concentrations (5.0 mM), in male rats, the BA formation pattern was similar to that at the low substrate concentration, although the rate of increase with age was slower. In female rats, a peak was obtained at 3 weeks of age, and then declined gradually to a low level. Gender differences were obtained at 5, 15 and 20 weeks of age, with BA products being higher in males than in females. These results indicate that toluene metabolism exhibits age and gender differences.

Aging↗

Cloning of two new human helicase genes of the RecQ family: biological significance of multiple species in higher eukaryotes.

Two new human DNA helicase genes, RecQ4 and RecQ5, that belong to the RecQ helicase family were cloned and characterized. The addition of these genes increases the total to five helicase genes in the human RecQ family, which includes helicases involved in Bloom and Werner syndromes, the genetic diseases manifesting the distinctive but overlapping clinical phenotypes of immunodeficiency, premature aging, and an enhanced risk of cancer. The RecQ4 helicase is as large as the Bloom (BLM) and Werner (WRN) helicases, and its gene expression profile is organ-specific, resembling that of BLM helicase. In contrast, the RecQ5 helicase has a low molecular weight, similar to the human progenitor RecQ1 helicase, and is expressed in all the organs examined. All five human helicase genes are expressed in cultured K562 leukemia and fibroblast cells. Synchronized K562 cell cultures showed that the genes RecQ4 and BLM, and RecQ1 and WRN, seem to be upregulated at the G1/S and G2/M phases, respectively, of the cell cycle. The biological significance of multiple species of human RecQ helicases, which are apparently nonessential for life but may be related to distinct diseases, is discussed in light of the fact that unicellular organisms, like Escherichia coli and yeast, contain only one species of helicase of this particular family.

Adenosine Triphosphatases↗

Cloning and characterization of human Sep1 (hSEP1) gene and cytoplasmic localization of its product.

We isolated and sequenced a human cDNA (designated as hSEP1) encoding both a homologue of mouse Dhm2 and budding yeast SEP1. The gene was shown to be located on the long arm of chromosome 3 (3q25-26.1). The putative hSEP1 product (hSEP1p) consisted of 1694 amino acid residues with a molecular mass of about 190 kDa. Northern blot analysis showed a major 10-kb mRNA expressed ubiquitously in various organs as well as a minor 5.5-kb mRNA expressed relatively highly in the testis and placenta. hSEP1p is localized in the cytoplasm as examined by cytochemical and Western blot analyses of fractionated cellular extracts. The biological function of hSEP1p was discussed in correlation with its cytoplasmic localization.

Amino Acid Sequence↗

Bloom's and Werner's syndrome genes suppress hyperrecombination in yeast sgs1 mutant: implication for genomic instability in human diseases.

Bloom's syndrome (BS) and Werner's syndrome (WS) are genetic disorders in which an increased rate of chromosomal aberration is detected. The genes responsible for these diseases, BLM and WRN, have been found to be homologs of Escherichia coli recQ and Saccharomyces cerevisiae SGS1 genes. Here we show that yeast Sgs1 helicase acts as a suppressor of illegitimate recombination through homologous recombination and that human BLM and WRN helicases can suppress the increased homologous and illegitimate recombinations in the S. cerevisiae sgs1 mutant. The results imply a role of BLM and WRN helicases to control genomic stability in human cells. Similar to Sgs1 helicase, BLM helicase suppressed the cell growth in the top3 sgs1 mutation background and restored the increased sensitivity of the sgs1 mutant to hydroxyurea, but the WRN helicase did not. We discussed differential roles of BLM and WRN helicases in human cells. BLM- and WRN-bearing yeasts provide new useful models to investigate human BS and WS diseases.

Base Sequence↗

Physical map of the human chromosome 8p12-p21 encompassing tumor suppressor and Werner's syndrome gene loci.

Detailed physical maps of the human genome are important resources for identification and isolation of genes responsible for diseases and for the study of their structure and function. We constructed a 2.0-Mb high-resolution physical map within the human chromosome 8p12-p21 region extending from marker D8S131 to D8S283. The map comprises a series of contigs mostly P1/PAC clones, which span the loci of potential tumor suppressor genes and the Werner's syndrome gene. Each P1/PAC DNA was defined by its size, restriction sites, terminal sequences, intermarker distances and location relative to major genes and markers. The genes on these P1/PAC DNAs were analyzed by an exon amplification method to determine their locations. The genes newly found by the exon amplification method together with other known genes, including those of glutathion reductase, a general transcription factor, protein phosphatase 2A beta subunit and Werner's syndrome, were precisely mapped within the contigs. These P1/PAC DNAs are useful reagents for the generation of new microsatellite markers to narrow the candidate region of the tumor suppressor gene(s) and/or genes responsible for other diseases, which are believed to exist in this region by linkage analysis.

Animals↗

Human stanniocalcin (STC): genomic structure, chromosomal localization, and the presence of CAG trinucleotide repeats.

Stanniocalcin (STC) is a glycoprotein hormone that is secreted by the corpuscle of Stannius, an endocrine gland of bony fish. It prevents hypercalcemia via mechanisms including inhibition of calcium uptake across the gills. Mammalian homologues have recently been reported but their function is unknown. Here we report the genomic organization and the transcription start site of the human STC gene and the existence of a polymorphic CAG trinucleotide repeat complex within the 5' untranslated region (UTR) of the mRNA and a smaller [CAG]6 repeat in the 3' UTR. As CAG repeats are associated with various human diseases, we used dual-color fluorescence in situ hybridization to localize the STC gene near markers D8S131 and D8S339 on chromosome 8p11.2-p21. STC should be considered a candidate gene for hereditary diseases mapped to this region.

Base Sequence↗

Sp1-mediated transcription of the Werner helicase gene is modulated by Rb and p53.

The regulation of Werner's syndrome gene (WRN) expression was studied by characterizing the cis-regulatory elements in the promoter region and the trans-activating factors that bind to them. First, we defined the transcription initiation sites and the sequence of the 5' upstream region (2.8 kb) of WRN that contains a number of cis-regulatory elements, including 7 Sp1, 9 retinoblastoma control element (RCE), and 14 AP2 motifs. A region consisting of nucleotides -67 to +160 was identified as the principal promoter of WRN by reporter gene assays in HeLa cells, using a series of WRN promoter-luciferase reporter (WRN-Luc) plasmids that contained the 5'-truncated or mutated WRN upstream regions. In particular, two Sp1 elements proximal to the transcription initiation site are indispensable for WRN promoter activity and bind specifically to Sp1 proteins. The RCE enhances WRN promoter activity. Coexpression of the WRN-Luc plasmids with various dosages of plasmids expressing Rb or p53 in Saos2 cells lacking active Rb and p53 proteins showed that the introduced Rb upregulates WRN promoter activity a maximum of 2. 5-fold, while p53 downregulates it a maximum of 7-fold, both dose dependently. Consistently, the overexpressed Rb and p53 proteins also affected the endogenous WRN mRNA levels in Saos2 cells, resulting in an increase with Rb and a decrease with p53. These findings suggest that WRN expression, like that of other housekeeping genes, is directed mainly by the Sp1 transcriptional control system but is also further modulated by transcription factors, including Rb and p53, that are implicated in the cell cycle, cell senescence, and genomic instability.

Base Sequence↗

[Selection criterion of limited operation for lung cancer as a radical operation].

We reviewed partial resection and segmentectomy for 75 cases (6.5%) out of 1,212 cases treated surgically for primary lung cancer between 1957 and 1996. The surgical results of limited operation in radicality group and risk group was comparable to that of standard operation for the stage I lung cancer. Five-year survival of clinical stage I non-small cell lung cancer patients that tumor size is 2.0 cm or less was excellent (88.9%). Although risk group may be the best candidates for limited surgery, careful patient selection and theoretical operative procedure could make limited operation a standard procedure in radicality group.

Adenocarcinoma↗

[Surgical treatment for primary lung cancer in octogenarians: the role of limited operations].

34 octogenarians out of 1,214 cases treated surgically for primary lung cancer in our unit between 1957 and 1996. 12 patients underwent limited operation because they had one or more risk factors besides their age actor. We could suppress postoperative complications in octogenarians. 5-year survival rate in octogenarians was comparable to that in younger patients. The octogenarians underwent limited operations were better than those had lobectomies in 5-year survival rate and postoperative quality of life. So our surgical strategy for primary lung cancer in octogenarians was evaluated to be appropriate. However, we should improve the radicality of limited operation furthermore because 5-year survival rate for stage I non-small cell lung cancer was poor in octogenarians than in younger patients.

Adenocarcinoma↗