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Biomedical subjects

N Seki

Publications and source records attributed to N Seki.

At least 145 records · Page 8Linked to original sources

Characterization of cDNA clones in size-fractionated cDNA libraries from human brain.

To evaluate the size-fractionated cDNA libraries of human brain previously constructed (O. O'hara et al. DNA Research, 4, 53-59, 1997), the occurrence of chimeric clones and the content of clones with coding potentiality were analyzed using the randomly sampled clones with insert sizes of 5 to 7 kb. When the chromosomal location of 30 clones was determined by the radiation-hybrid mapping method, the map positions assigned from the 3'- and 5'-end sequences separately were coincident for 29 clones, suggesting that the occurrence of chimeric clones is at most 1/30. Using 91 clones mapped to chromosome 1, the content of clones that have the potentiality coding for proteins larger than 100 amino acid residues was estimated to be approximately 50% (46 out of 91 clones) on the basis of nucleotide sequence analysis and coding potentiality assay in vitro. No significant open reading frames were detected in the remaining clones. Although the clones coding for short peptides may not have been included in the above estimation, the libraries constructed from the whole brain mRNA fraction appear to contain a considerable amount of clones corresponding to the 5'-truncated transcripts in an unprocessed form and/or those with long 3'-untranslated regions.

Animals↗

Identification and chromosome assignment of a human gene encoding a novel phosphatidylinositol-3 kinase.

We identified a novel phosphatidylinositol (PI) 3-kinase by screening human brain cDNA libraries with probes designed from the conserved kinase-domain sequence. Analysis of cDNAs indicated that two different forms of transcripts are present: one is the full-length form composed of 1,044 amino acid residues and the other is the short form that the N-terminal 216 amino acid residues including a putative p85 binding domain has been truncated (828 amino acid residues). Database search revealed the sequence of the full-length form to be identical to that recently registered by D. Chantry et al. (Accession No. U86453 in GenBank release, August 1997). Northern blot analysis showed this mRNA to be ubiquitously expressed in various tissues, with relatively higher expression was observed in spleen, thymus and leukocytes. Based on fluorescence in situ hybridization and PCR-based analyses with both human/rodent mono-chromosomal hybrid cell panels and radiation hybrid mapping panels, this gene was localized to chromosome region 1p36.2. This region is frequently lost in a variety of human malignancies, including neuroblastoma. The novel PI3K could be a candidate target of the 1p36 alteration that occurs in neuroendocrine tumors.

Animals↗

Complementary DNA cloning and chromosomal mapping of a novel phosphatidylinositol kinase gene.

A cDNA for a putative new member for phosphatidylinositol kinase family was cloned from an adult human whole brain cDNA library. The predicted translation product was composed of 961 amino acid residues and contained a sequence feature characteristic for lipid/protein kinases. The messenger RNA was ubiquitously expressed in various tissues, while relatively higher expression was observed in heart, skeletal muscle and testis. The chromosomal location of the gene was determined by fluorescence in situ hybridization and PCR-based analyses with both a human/rodent monochromosomal hybrid cell panel and a radiation hybrid mapping panel.

1-Phosphatidylinositol 4-Kinase↗

The structure and organization of the human NPAT gene.

Ataxia telangiectasia (AT) is an autosomal recessive gene disorder, and ATM, a housekeeping gene, has been identified as the gene responsible for AT. Recently we found that another housekeeping gene, NPAT, is located upstream of ATM on human chromosome 11. The two housekeeping genes are transcribed in opposite directions and share a 0.5-kb 5' flanking sequence. The structure and organization of NPAT were determined by direct sequencing of cosmid clones carrying the gene and by application of the long and accurate (LA)-PCR method to amplify regions encompassing the exon/intron boundaries and all of the exons. The gene spans at least 44 kb and consists of 18 exons and 17 introns. It has been suggested that AT heterozygotes have an increased risk of developing cancer, especially breast cancer in women. Frequently, loss of heterozygosity at loci on 11q22-q24 has been observed in DNA isolated from tumors of the breast, uterine cervix, and colon, perhaps suggesting the location of a tumor suppressor gene in 11q22-q24. For investigation of the role of NPAT in AT and these tumors with allelic loss of 11q22-q24, appropriate primer sequences and PCR conditions for amplification of all the NPAT exons from genomic DNA were determined. We previously reported that no recombinations are found among Atm, Npat, and Acat1 (acetoacetyl-CoA thiolase) loci as determined by fine genetic linkage mapping of the mouse AT region. The results of the LA-PCR analysis using NPAT- and ACAT-specific primers and human genomic DNA allowed us to map ACAT 12 kb centromeric to NPAT.

Animals↗

HLA class I-restricted and tumor-specific cytotoxic T lymphocytes from metastatic lymph nodes of esophageal cancers.

This paper investigates the presence of HLA class I-restricted and tumor-specific cytotoxic T lymphocytes (CTL) in tumor sites of esophageal cancers. Five CTL lines were established from the metastatic lymph nodes or pleural effusion by incubation with interleukin-2 of tumor-infiltrating lymphocytes: cases 1 and 5, HLA-A26- and HLA-A33-restricted and squamous cell carcinoma (SCC)-specific CTL; case 2, HLA-Cw0102-restricted and esophageal SCC-specific CTL; case 3, HLA-A24- and HLA-A26-restricted CTL recognizing histologically different tumor cells; and case 4, HLA-A26-restricted and esophageal SCC-specific CTL. These results suggest the existence of HLA class I-restricted and tumor-specific CTL in metastatic esophageal SCC.

Aged↗

Prediction of the coding sequences of unidentified human genes. VII. The complete sequences of 100 new cDNA clones from brain which can code for large proteins in vitro.

In this series of projects of sequencing human cDNA clones which correspond to relatively long transcripts, we newly determined the entire sequences of 100 cDNA clones which were screened on the basis of the potentiality of coding for large proteins in vitro. The cDNA libraries used were the fractions with average insert sizes from 5.3 to 7.0 kb of the size-fractionated cDNA libraries from human brain. The randomly sampled clones were single-pass sequenced from both the ends to select clones that are not registered in the public database. Then their protein-coding potentialities were examined by an in vitro transcription/translation system, and the clones that generated proteins larger than 60 kDa were entirely sequenced. Each clone gave a distinct open reading frame (ORF), and the length of the ORF was roughly coincident with the approximate molecular mass of the in vitro product estimated from its mobility on SDS-polyacrylamide gel electrophoresis. The average size of the cDNA clones sequenced was 6.1 kb, and that of the ORFs corresponded to 1200 amino acid residues. By computer-assisted analysis of the sequences with DNA and protein-motif databases (GenBank and PROSITE databases), the functions of at least 73% of the gene products could be anticipated, and 88% of them (the products of 64 clones) were assigned to the functional categories of proteins relating to cell signaling/communication, nucleic acid managing, and cell structure/motility. The expression profiles in a variety of tissues and chromosomal locations of the sequenced clones have been determined. According to the expression spectra, approximately 11 genes appeared to be predominantly expressed in brain. Most of the remaining genes were categorized into one of the following classes: either the expression occurs in a limited number of tissues (31 genes) or the expression occurs ubiquitously in all but a few tissues (47 genes).

Blotting, Northern↗

HLA class-I-restricted and tumor-specific CTL in tumor-infiltrating lymphocytes of patients with gastric cancer.

Immune recognition of human cancers except melanoma is not well understood at either the cellular or the molecular level. We demonstrate in this study the existence of HLA class-I-restricted and tumor-specific CTL in IL-2-activated TIL (tumor-infiltrating lymphocytes) of all 4 gastric cancer patients tested. We established HLA A2-restricted and adenocarcinoma-specific CTL in 2 HLA A0201+ patients, and HLA A2402-restricted CTL recognizing both adenocarcinoma and squamous-cell carcinomas (SCC) in the 2 remaining HLA A2402+ patients. Further, HLA A3101-restricted and adenocarcinoma-specific CTL were established in 1 of the 2 HLA A2402+ patients who had HLA A3101 allele. HLA A2-, A2402- and A3101-restricted CD8+ CTL clones were established from these parental CTL lines. The 2 HLA A2-restricted CTL lines lysed 8 of 13 HLA A2+ adenocarcinoma cell lines established from different organs (stomach, colon, lung and breast) with different subtypes (HLA A0201, A0206 and A0207). The HLA A2-restricted CTL line recognized 9 and 6 different HPLC fractions of peptides eluted from the HLA A0201+ breast and HLA A0201+ colon adenocarcinoma cell lines, respectively. Allele-specific deletion of HLA A2 or A24 molecules was observed in some tumor lines that were not susceptible to lysis by the CTL lines. These results suggest that TIL of gastric cancer possess CTL recognizing different peptide antigens binding to different HLA-A alleles that are widely expressed on adenocarcinomas and also, to some extent, on SCC from different organs.

Adenocarcinoma↗

Construction and characterization of human brain cDNA libraries suitable for analysis of cDNA clones encoding relatively large proteins.

Analysis of proteins registered in the PIR protein database implied that most of relatively large proteins are related to important functions in higher multicellular organisms, but not many large proteins have been registered to date. To establish a protocol for efficient analysis of cDNA clones coding for large proteins, we constructed a series of strictly size-fractionated cDNA libraries of human brain, where the average insert sizes of cDNA clones ranged from 3.3 kb to 10 kb. As judged by hybridization analysis with probes derived from mRNAs of known sizes, the libraries with insert sizes up to 7 kb, at least, contained the clones corresponding to full-length transcripts in addition to truncated products of longer transcripts, but few chimeric clones. Using one of the fractionated libraries with an average insert size of 7 kb, the single-pass sequences from both the ends of randomly sampled clones were determined and sarched against DNA databases. Approximately 90% of the clones were found to be new with respect to their 5'-sequences while their 3'-sequences were frequently similar to the registered expression sequence tags. Examination of the protein-coding capacity in an in vitro transcription/translation system showed that about 20% of the clones direct the synthesis of proteins with apparent molecular masses larger than 50 kDa. The set of libraries constructed here should be very useful for the accumulation of sequence data on large proteins in the human brain.

Brain↗

HLA-A locus-restricted and tumor-specific CTLs in tumor-infiltrating lymphocytes of patients with non-small cell lung cancer.

HLA class I restriction and tumor specificity of cytotoxicity in the IL-2-activated tumor-infiltrating lymphocytes from 16 patients with non-small cell lung cancer were investigated. Six HLA class I-restricted and tumor-specific CTL lines were established: (i) HLA A2-restricted and adenocarcinoma-specific CTLs in three (two A0201+ and one A0206+) patients with adenocarcinoma, (ii) HLA A3101- and A3302-restricted and adenocarcinoma-specific CTLs in an HLA A3101/3302+ patient with adenocarcinoma, and (iii) HLA A3302-restricted CTLs and (iv) HLA A2402-restricted CTLs recognizing tumors with different types of histology in an HLA A3302+ patient with adenocarcinoma and an HLA A2402+ patient with squamous cell carcinoma (SCC), respectively. The three HLA A2-restricted CTL lines recognized 4, 4, or 6 of 15 HLA A2+ adenocarcinoma cell lines that originated from lung, stomach, colon, and breast with different subtypes (HLA A0201, A0206, and A0207), respectively. Furthermore, the CTLs of an HLA A0206+ patient recognized five different fractions of peptides eluted from an HLA A0201+ adenocarcinoma cell line. These results showed evidence of the existence of HLA class I-restricted and tumor-specific CTLs recognizing peptide antigens on HLA-A alleles of adenocarcinoma or SCC in tumor sites of a substantial number of patients with non-small cell lung cancer.

Adenocarcinoma↗

Identification of a human cDNA clone for lysosomal type Ca2+-independent phospholipase A2 and properties of the expressed protein.

A Ca2+-independent phospholipase A2 (PLA2) maximally active at pH 4 and specifically inhibited by the transition-state analogue 1-hexadecyl-3-trifluoroethylglycero-sn-2-phosphomethanol (MJ33) was isolated from rat lungs. The sequence for three internal peptides (35 amino acids) was used to identify a 1653-base pair cDNA clone (HA0683) from a human myeloblast cell line. The deduced protein sequence of 224 amino acids contained a putative motif (GXSXG) for the catalytic site of a serine hydrolase, but showed no significant homology to known phospholipases. Translation of mRNA produced from this clone in both a wheat germ system and Xenopus oocytes showed expression of PLA2 activity with properties similar to the rat lung enzyme. Apparent kinetic constants for PLA2 with dipalmitoylphosphatidylcholine as substrate were Km = 0.25 mM and Vmax = 1.89 nmol/h. Activity with alkyl ether phosphatidylcholine as substrate was decreased significantly compared with diacylphosphatidylcholine. Significant lysophospholipase, phospholipase A1, or 1-O-alkyl-2-acetyl-sn-glycero-3-phosphocholine acetylhydrolase activity was not observed. Enzyme activity was insensitive to p-bromophenacyl bromide, bromoenol lactone, trifluoromethylarachidonoyl ketone, mercaptoethanol, and ATP, but was inhibited by MJ33 and diethyl p-nitrophenyl phosphate, a serine protease inhibitor. SDS-polyacrylamide gel electrophoresis with autoradiography of the translated [35S]methionine-labeled protein confirmed a molecular mass of 25.8 kDa, in good agreement with the enzyme isolated from rat lung. By Northern blot analysis, mRNA corresponding to this clone was present in both rat lung and isolated rat granular pneumocytes. These results represent the first molecular cloning of a cDNA for the lysosomal type Ca2+-independent phospholipase A2 group of enzymes.

Amino Acid Sequence↗

Partial purification and characterization of six transglutaminases from ordinary muscles of various fishes and marine invertebrates.

Six transglutaminases were prepared from ordinary muscles of scallop (Patinopecten yessoensis), botan shrimp (Pandalus nipponensis), squid (Todarodes pacificus), carp (Cyprinus carpio), rainbow trout (Oncorhynchus mykiss), and atka mackerel (Pleurogrammus azonus), and their physicochemical and enzymatic properties were compared with each other. The Km value of carp transglutaminase for monodansyl cadaverine, a kind of primary amines, was 0.33 mM, while the other enzymes had Km values of 0.01-0.03 mM. The Km, values for succinylated casein of scallop, botan shrimp, squid, carp, rainbow trout, and atka mackerel enzymes were 1.2, 0.3, 1.8, 0.3, 0.2, and 0.1 mg/ml, respectively. In the presence of 0.5 M NaCl, the activities of scallop, botan shrimp, and squid transglutaminases were further enhanced about 11-, 2-, and 6-fold, respectively. There was no effect of NaCl on the activities of fish enzymes. These increment in the activities were dependent of NaCl concentrations and could be exhibited by using KCl instead of NaCl. To date there are no reports on types of transglutaminases whose activities are stimulated by salts. These findings suggest there exist a novel type of TGase in marine invertebrate muscles in which the osmotic pressure is isotonic to sea water.

Amines↗

Familial aggregation and covariation of diseases in a Japanese rural community: comparison of stomach cancer with other diseases.

PURPOSE: We investigated familial aggregation as well as familial covariation of diseases by means of a questionnaire survey dealing with family histories of stomach cancer, stroke, hypertension, diabetes and tuberculosis as well as life style among 2,769 inhabitants of a rural community (84% of census population). METHODS: The strength of familial aggregation was shown by an odds ratio (OR) that compared the number of families in which siblings suffered from one of the above diseases among families in which at least one parent suffered from it, and among families in which neither did. Probands were divided into two groups for analysis: an under-55 "young group," and a 55-and-older "old group." RESULTS: The OR for stomach cancer was lowest and insignificant in the young group, and significant (2.2, p < 0.05) only in the old group. The OR for stroke, hypertension, and tuberculosis was 4.5-5.1 (p < 0.05) in the young group but decreased to 2.3-3.2 in the old group. Diabetes increased from 3.9 to 5.7 (p < 0.05) with advancing age. Age-related OR trends were not affected by exposure to cigarette smoke in the past. Stomach cancer showed a borderline familial covariation with diabetes and a borderline inverse covariation with hypertension. Hypertension showed a familial covariation with stroke and diabetes. CONCLUSIONS: Among the investigated diseases, familial aggregation was weakest for stomach cancer. The results suggest that stomach cancer may share a common familial etiologic factor with diabetes and hypotension.

Adult↗

The genomic analysis of human DAN gene.

DAN gene is shown to be localized at human chromosome 1p36.11-p36.13, which resides within the consensus deletion observed in neuroblastoma. In the present study, we have isolated the genomic DNA containing the entire human DAN gene and determined its nucleotide sequence. Structural analysis revealed that DAN gene is composed of four exons and spans approximately 15 kb. Its overall structure was basically the same as that of rat DAN gene. Two distinct transcription initiation sites (major and minor) were identified by the primer extension experiment. Putative TATA and CAAT-like elements are present 38 and 366 bp upstream from the major transcription start site, respectively, however, no apparent TATA-like sequence was found in the upstream region of the minor transcription start site. The 400-bp region immediately upstream from the major transcription initiation site was strongly GC-rich (79% GC). Genomic Southern experiments demonstrated that the allelic loss of DAN gene might occur in neuroblastoma. Interestingly, there exist two dinucleotide repeats, (CA)7 and (CA)8, in the first intron of DAN gene, raising the possibility to distinguish two alleles of DAN gene in some of the cancer cells.

Base Composition↗

Gene identification in 1.6-Mb region of the Down syndrome region on chromosome 21.

The Down syndrome (DS) region has been defined by analyses of partial trisomy 21. The 2.5-Mb region between D21S17 and ERG is reportedly responsible for the main features of DS. Within this 2.5-Mb region, we focused previously on a distal 1.6-Mb region from an analysis of Japanese DS patients with partial trisomy 21. Previously we also performed exon-trapping and direct cDNA library screening of a fetal brain cDNA library and identified a novel gene TPRD. Further screening of a fetal heart cDNA library was performed and a total of 44 possible exons and 97 cDNA clones were obtained and mapped on a BamH1 map. By rescreening other cDNA libraries and a RACE reaction, we isolated nearly full-length cDNAs of three additional genes [holocarboxylase synthetase (HCS), G protein-coupled inward rectifier potassium channel 2 (GIRK2), and a human homolog of Drosophila minibrain gene (MNB)] and a coding sequence of a novel inward rectifier potassium channel-like gene (IRKK). The gene distribution and direction of transcription were determined by mapping both ends of the cDNA sequences. We found that these genes, except IRKK, are expressed ubiquitously and are relatively large, extending from 100 kb to 300 kb on the genome. These nearly full-length cDNA sequences should facilitate understanding of the detailed genome structure of the DS region and help to elucidate their role in the etiology of DS.

Amino Acid Sequence↗

Seasonal variation in the incidence of sudden death according to occupation of householder in Japan.

To examine the relationship between overwork and the occurrence of sudden death, the relation between occupation and seasonal variation in sudden death was studied. A total of 8481 cases of sudden death (among subjects aged over 24 years) were selected from all deaths between 1984 and 1986 in the Niigata Prefecture, Japan, based on a death certificate survey. Sudden death was defined as death within 24 h of the onset of the underlying disease. We divided subjects into 4 groups according to the occupation of the householder: agricultural workers, employees, the self-employed, and other occupations. As the incidence of sudden death in the 'other occupation' group did not show any significant seasonal variation, this group was considered to be a control group. Among young to middle-aged men (25-65 year old), the incidence of sudden death was higher than in the control group for agricultural workers in April and September and for employees in March and September. However, in older men (over 65) the incidence for agricultural workers was higher only in April. Among women, there was no such spring rise in the incidence of sudden death in any occupational group. The months featuring a high incidence of sudden death coincided with the busiest occupational months only for people who were actually working and not for those who had already retired.

Adult↗

HPC-1/syntaxin-1A activity in the enteric nervous system of developing rat gastrointestinal tract.

The HPC-1/syntaxin-1A antigen was originally identified as a neuron-specific membrane protein in the central nervous system. The presence of HPC-1 antigen in the nervous system of the fetal rat gastrointestinal tract was immunohistochemically demonstrated using the antibody against HPC-1 to clarify the role of this protein in the development of the enteric nervous system. Rat gastrointestinal tract from 14-, 16-, 18-, and 20-day fetuses and adults were immunohistochemically examined for HPC-1 antigen by light microscopy. Acetylcholinesterase (AchE) activity was also examined as a comparison. HPC-1 activity was first detected on 18th day of gestation. AchE activity was first detected at the Auerbach's plexus of the esophagus on the 16th day of gestation. The presence of HPC-1 in the developing rat intestine revealed that the HPC-1 antigen may be a good indicator for expressing the maturation of enteric nervous system in the development of the enteric nervous system.

Acetylcholinesterase↗

Placenta growth factor is abundantly expressed in human cervical squamous cell carcinoma.

Tumor angiogenesis is essential for solid tumor growth. The object of this study was to investigate the presence of newly identified angiogenic factor, placenta growth factor (P1GF) in human cervical cancers. The expression of P1GF mRNA was assessed by RT-PCR in 29 patients with cervical cancer. Fifteen out of 29 cervical cancers expressed a certain level of P1GF mRNA. In addition, the expression levels of P1GF mRNA in squamous cell carcinomas were significantly higher than those in adenocarcinomas. There was no correlation between the expression of P1GF mRNA and FIGO stage. These results indicate that the expression of P1GF may be implicated in the promotion of angiogenesis in human cervical squamous cell carcinomas, but not in human cervical adenocarcinomas.

Carcinoma, Squamous Cell↗