Search PubMed⌕ Search

Biomedical subjects

M Sekiguchi

Publications and source records attributed to M Sekiguchi.

At least 271 records · Page 15Linked to original sources

Artificial control of nuclear translocation of DNA repair methyltransferase.

We constructed a recombinant plasmid carrying a chimeric cDNA that encodes a fusion protein, ER:MGMT, composed of the ligand-binding domain of the human estrogen receptor and the human O6-methylguanine-DNA methyltransferase. By introducing this plasmid into the methyltransferase-deficient human cell line HeLa MR, a system was established in which nuclear translocation of the ER:MGMT fusion protein can be controlled by estrogen. On in situ immunostaining using anti-MGMT, the cytoplasm of ER:MGMT-carrying cells was preferentially stained and nuclear staining occurred only when the cells were exposed to estrogen. The estrogen-dependent nuclear translocation of ER:MGMT was confirmed by Western blotting analysis of fractionated cell extracts. The fusion protein was translocated into the nucleus within 1 h after estrogen treatment and remained there unless estrogen was removed. The methyltransferase activity of the fusion protein was as active as the authentic methyltransferase enzyme, regardless of the presence or absence of estrogen. The ER:MGMT-producing cells were sensitive to 1-(4-amino-2-methyl-5-pyrimidinyl)methyl-3-(2-chloroethyl)-3-nitrosourea (ACNU) in the absence of estrogen, and estrogen treatment rendered the cells as resistant to ACNU as the ordinary Mer+ cell line, HeLa S3, thereby indicating that translocation of the methyltransferase into the nucleus is a prerequisite for repair of the chromosomal DNA damaged by alkylating agents. Taking advantage of the artificial control of cellular localization of the fusion protein, we examined the timing of the nuclear translocation required to execute efficient DNA repair. We obtained evidence that the methyltransferase must repair the DNA damage as soon as the DNA is exposed to ACNU, in order to avoid cell cycle arrest at the G2 phase.

Amino Acid Sequence↗

Effect of single DNA lesions on in vitro replication with DNA polymerase III holoenzyme. Comparison with other polymerases.

In the present work, we have studied in vitro replication of N-2-acetylaminofluorene (AAF) or cis-diamminedichloroplatinum II (cis-DDP) single modified DNA templates. We used the holoenzyme (pol III HE) or the alpha subunit of DNA polymerase III, which is involved in SOS mutagenesis, and other DNA polymerases in order to compare enzymes having different biological roles and properties. Single-stranded oligonucleotides (63-mer) bearing a single AAF adduct at one of the different guanine residues of the NarI sequence (-G1G2CG3CC-) have been used in primer extension assays. Site-specifically platinated 5'd(ApG) or 5'd(GpG) oligonucleotides were constructed and similarly used in primer extension assays. In all cases, irrespective of both the chemical nature of the lesion (i.e. AAF or cis-DDP) and its local sequence context (i.e. the 3 different sites for AAF adducts within the NarI site) replication by pol III HE and pol I Klenow fragment (pol I Kf) stops one base prior to the adduct site. Removal of the 3'-->5' proofreading activity alone was not sufficient to trigger bypass of DNA lesions. Indeed, when proofreading activity of pol I is inactivated by a point mutation (pol I Kf (exo-)), the major replication product corresponds to the position opposite the adduct site showing that incorporation across from the AAF adduct is possible. These results suggest that a polymerase with proofreading activity is actually found to stop one nucleotide before the adduct not because it is unable to insert a nucleotide opposite the adduct but most likely because elongation past the adduct is strongly impaired, giving thus an increased time frame for the proofreading exonuclease to remove the base inserted across from the adduct. These results are discussed in terms of their implications for error-free and error-prone bypass in vivo.

2-Acetylaminofluorene↗

Disruption of neuronal migration in the neocortex of the dreher mutant mouse.

To analyze developmental abnormalities related to neuronal migration in the dreher mutant mouse, the neocortical cytoarchitecture of dreher and control mice were examined in Nissl-stained serial sections by light microscopy. In general, the dreher neocortex has six layers which are similar in size and thickness to those observed in normal mouse neocortex. However, in dreher neocortex, three types of abnormalities were found: (1) an increase in the number of diffusely distributed neurons in layer I, (2) small, ectopic collections of neurons in layer I, and (3) isolated disturbances of local cytoarchitecture characterized by neuron-free space distributed in areas between layer II to IV. The occurrence of small, punctate deficits in the dreher neocortex may be secondary to disruptions of the radial glial fiber system and neuronal migration. The fact that cytoarchitectonic abnormalities of several types were found in the dreher neocortex may be useful in analyzing the relationship between radial glial fibers and migrating young neurons, the synaptic connections which are formed by ectopically situated neurons, and the mechanism of formation of sporadically distributed neocortical abnormalities.

Animals↗

Genomic structure and chromosome location of the human mutT homologue gene MTH1 encoding 8-oxo-dGTPase for prevention of A:T to C:G transversion.

8-Oxo-dGTP (8-oxo-7,8-dihydrodeoxyguanosine triphosphate) is produced by active oxygen species in the nucleotide pool of the cell and can be incorporated into cellular DNA. Human cells contain enzyme activity that hydrolyzes 8-oxo-dGTP to 8-oxo-dGMP, thereby preventing occurrence of mutations, caused by misincorporation. When the cDNA for human 8-oxo-dGTPase was expressed in Escherichia coli mutT- mutant cells devoid of self 8-oxo-dGTPase activity, the elevated level of spontaneous A:T to C:G mutation frequency reverted to normal. We isolated the genomic sequence encoding the enzyme and named the gene MTH1 (for mutT human homologue). This gene is composed of at least 4 exons, spans approximately 9 kb, and is located on human chromosome 7p22.

Amino Acid Sequence↗

A targeting model of boron neutron-capture therapy to hepatoma cells in vivo with a boronated anti-(alpha-fetoprotein) monoclonal antibody.

We described previously that 10B atoms delivered by monoclonal antibody (mAb) exerted a cytotoxic effect on AH66 cells in a dose-dependent manner upon thermal neutron irradiation in vitro. In the present study, the delivering capacity of boronated anti-(alpha-fetoprotein) (AFP) mAb to carry 10B atoms to AFP-producing tumor xenografts in nude mice was determined. Boronated mAb was prepared by conjugating 50 mM 10B compound to an anti-AFP mAb (2 mg/ml) using N-succinimidyl-3-) (2-pyridyldithio) propionate. The number of 10B atoms conjugated directly to the mAb was estimated to be 459/antibody by prompt gamma-ray spectrometry. Boron concentrations in tumor tissue obtained 12, 24, 72, and 120 h after injection of 3.0 mg 10B-conjugated anti-AFP mAb were 11.10 +/- 3.12 (SD, n = 6). 29.30 +/- 5.11, 33.02 +/- 11.8, and 12.91 +/- 5.62 ppm respectively. For control 10B-conjugated anti-dinitrophenol (DNP) mAb, the values were 9.59 +/- 0.99, 10.37 +/- 2.86, 10.00 +/- 2.95, and 8.83 +/- 4.71 ppm respectively. The concentrations in blood were less than 0.40 +/- 0.10 ppm with anti-AFP mAb and less than 0.51 +/- 0.15 ppm with anti-DNP mAb at each sampling time (12, 24, 72, and 120 h). The number of 10B atoms delivered to the tumor cells was calculated to be 0.62 x 10(9), 1.63 x 10(9), 1.84 x 10(9) and 0.72 x 10(9) at each sampling time after injection of 10B-anti-AFP mAb. The amount of 10B atoms necessary for effective boron neutron-capture therapy was estimated to be 10(9)/tumor cell. We were able to carry 1.84 x 10(9) 10B atoms to AH66 tumor cells by using 10B-anti-AFP mAb. The accumulation reached its peak 72 h after injection. These data indicated that the 10B-conjugated antitumor mAb could deliver a sufficient amount of 10B atoms to the tumor cells to induce cytotoxic effects 72 h after injection upon thermal neutron irradiation.

Animals↗

Effects of heart rate on phasic coronary blood flow pattern and flow reserve in patients with normal coronary arteries: a study with an intravascular Doppler catheter and spectral analysis.

To assess the effects of pacing-induced tachycardia on phasic coronary blood flow pattern and flow reserve of left anterior descending artery, we examined 16 patients with chest pain and angiographically normal coronary arteries by using an intravascular Doppler catheter with spectral analysis of the velocity signal. The heart rate was increased from a mean of 68 +/- 11 beats/min during sinus rhythm to 100 beats/min and again to 120 beats/min. Cross-sectional area of the epicardial artery and resting systolic and diastolic coronary blood flows increased progressively, resulting in an elevation of total coronary flow from 142 +/- 54 ml/min during sinus rhythm to 190 +/- 66 ml/min at 100 beats/min (p < 0.05) and to 219 +/- 69 ml/min at 120 beats/min (p < 0.01). During maximal hyperemia with intracoronary injection of 10 to 12 mg of papaverine, there was an increase in the systolic coronary blood flow with a decrease in the diastolic flow, resulting in no significant change in the total flow. These alterations led to progressive reductions in coronary flow reserve from 3.9 +/- 0.7 during sinus rhythm to 2.9 +/- 0.9 at 100 beats/min (p < 0.01) and to 2.3 +/- 0.3 at 120 beats/min (p < 0.001). Thus careful consideration should be given to the effects of heart rate when phasic coronary blood flow pattern and flow reserve are assessed.

Adult↗

Localization of mRNA for protein phosphatase 2A in the brain of adult rats.

The gene expression for alpha and beta isoforms of type 2A protein phosphatase (PP2A-alpha and -beta) in the adult rat brain was examined by in situ hybridization analysis. No marked difference in the gene expression was discerned between the two isoforms in large portions of brain, except for the thalami in which the expression level for the alpha isoform was similar to that in the cerebral neocortex whereas that for the beta was lower than that in the neocortex. The gene expression was observed intensely in the piriform cortex, the cerebellar Purkinje and granule cell layers, and the hippocampal pyramidal and dentate granule cell layers, and the locus ceruleus, whereas the moderate levels of its expression were observed in the olfactory mitral cells and the pontine nuclei. The cerebral neocortex expressed the mRNA moderately to weakly without any laminar patterns, whereas the expression level in the caudate-putamen was very low. This expression pattern is basically similar to that of PP2C reported previously, except for the plexus choroideus and ependyma having no significant expression for PP2A.

Animals↗

Intracellular localization and function of DNA repair methyltransferase in human cells.

An antibody preparation specific for human O6-methylguanine-DNA methyltransferase (EC 2.1.1.63) was obtained by immunoaffinity purification on two types of affinity columns with the purified human and mouse methyltransferase proteins as ligands. The antibodies were used in Western blotting analysis of fractionated cell extracts. More than 90% of the methyltransferase protein was recovered in the cytoplasmic fractions with both human HeLa S3 cells and MR-M cells, the latter overproducing the enzyme 36 times as much as the former. Cytoplasmic localization of the methyltransferase in HeLa S3 cells was further confirmed by in situ immunostaining. By Western blotting analysis of fractionated cell extracts from HeLa S3 cells treated with alkylating agents, we found that amounts of the enzyme decreased more rapidly in the nuclear fraction than in the cytoplasmic fraction, and recovery of the enzyme level in the cytoplasmic fraction was slower than that in the other. These results suggest that the methyltransferase protein is degraded in the nucleus after it commits the repair reaction and that the cytoplasmic enzyme is transported into the nucleus as the nuclear methyltransferase is used up in this manner.

Biological Transport↗

Roles of transcription and repair in alkylation mutagenesis.

Mutations occurring in Escherichia coli cells exposed to alkylating agents have been analyzed using an assay for forward mutations in the E. coli rpsL gene cloned on a high copy number plasmid. N-Methyl-N'-nitro-N-nitrosoguanidine (MNNG)-induced mutations were recovered from wild-type and O6-methylguanine methyltransferase-deficient mutant (ada- ogt-) cells and their sequence alterations determined. We found that the mutations recovered from the wild-type strain were predominantly G:C to A:T transitions located at several hot spots in the rpsL sequence. A vast majority of the mutations were found at guanine residues preceded by thymine on the transcribed strand of the target gene. Although the methyltransferase mutant showed hypersensitivity to the alkylating reagent in terms of mutagenic effect and cell killing effects, the class and site distributions of the rpsL- mutations recovered from MNNG-treated ada- ogt- cells were similar to those observed with MNNG-treated wild-type cells. Therefore, the site preference of MNNG-induced rpsL- mutations seems to be due not to the specificity of methyl-transferring repair enzymes but probably to the distribution of the mutagenic lesions (O6-methylguanine) in the target sequence. Mutations induced by methyl methanesulfonate, an SN2 alkylating agent, showed similar class and site distributions in the rpsL system. The site preference of MNNG-induced mutations was significantly changed when the level of transcription of the rpsL gene was decreased to 120-fold lower than that promoted by the authentic rpsL promoter. Under these conditions, 78% of mutations were induced at the central guanine of 5'-GG(A or C)-3' and 2/3 of them were on the non-transcribed strand of the rpsL gene. These results suggested that the site preference of MNNG-induced mutations is determined by at least three factors: (i) a flanking-base effect on the chemical reactivity of a guanine residue, (ii) transcribed strand-specific repair, probably by the UvrABC system, and (iii) the effects of transcription of the target gene on the alkylation of DNA and the strand-specific repair.

Alkylation↗

A unique structural feature of rabbit DNA repair methyltransferase as revealed by cDNA cloning.

cDNA encoding rabbit O6-methylguanine-DNA methyltransferase that repairs DNA damaged by alkylating agents was isolated, using as a probe a fragment of mouse cDNA coding for a region containing the active site of the enzyme. The nucleotide sequence of the cDNA revealed that the rabbit methyltransferase is a 181-amino acid polypeptide with a mol. wt of 19,385. Expression of the cDNA in a methyltransferase-deficient Escherichia coli mutant resulted in appearance of a 23 kDa polypeptide with methyltransferase activity, and this rendered the E.coli cells resistant to N-methyl-N'-nitro-N-nitrosoguanidine, in terms of both cell killing and induction of mutation. The rabbit methyltransferase is highly homologous to this enzyme in human, mouse, rat and hamster, but is 26-30 amino acid residues shorter as compared with methyltransferases in other mammalian species. Based on a comparison of the nucleotide sequences for the C-terminal regions of these proteins, we propose that a single base substitution, which would generate a TGA termination codon, was introduced into the sequence for the rabbit enzyme during the process of evolution. Existence of the naturally occurring truncated form of methyltransferase suggests that the longer C-terminal tails of other mammalian methyltransferases may have no significant role in exerting functions of the enzyme in vivo.

Amino Acid Sequence↗

Effects of ONO-5046, a specific neutrophil elastase inhibitor, on endotoxin-induced lung injury in sheep.

The purpose of the present study was to assess the role of polymorphonuclear leukocyte (neutrophil) elastase in endotoxin-induced acute lung injury in sheep with lung lymph fistula. We studied the effects of ONO-5046, a specific inhibitor of neutrophil elastase, on the lung dysfunction induced by the intravenous infusion of 1 microgram/kg of Escherichia coli endotoxin. Endotoxin alone produced a biphasic response as previously reported. Early (0.5-1 h) after endotoxin, pulmonary arterial pressure increased from 19.5 +/- 0.9 cmH2O at baseline to a peak of 46.8 +/- 2.4 cmH2O (P < 0.05). Pulmonary vascular resistance increased from 3.03 +/- 0.17 cmH2O.l-1.min at baseline to a peak of 9.77 +/- 0.70 cmH2O.l-1.min (P < 0.05). Circulating neutrophils decreased from 7,355 +/- 434/mm3 at baseline to a nadir of 1,762 +/- 32/mm3 (P < 0.05). Thromboxane B2 and 6-ketoprostaglandin F1 alpha concentrations in plasma and lung lymph were significantly increased. Late (3-5 h) after endotoxin, pulmonary arterial pressure and pulmonary vascular resistance returned to baseline levels, but lung lymph flow remained increased from 4.2 +/- 0.3 ml/0.5 h at baseline to 7.3 +/- 0.7 ml/0.5 h (P < 0.05), with a slight increase in lung lymph-to-plasma protein concentration ratio, suggesting increased pulmonary vascular permeability. The histopathological features of the lungs during the early period in sheep treated with endotoxin alone revealed a large increase in neutrophils per 100 alveoli and changes of pulmonary edema such as thickening of the interstitium of the lung and alveolar flooding.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha↗

Cytokine production in patients with mite-sensitive bronchial asthma.

We examined the eosinophil viability-enhancing activity (EVEA) of peripheral blood mononuclear cells (PBMNCs) obtained from mite-sensitive bronchial asthma (BA) and normal control subjects. Mite concentrations of 1 and 10 micrograms/ml significantly increased EVEA in BA patients as compared with normal controls (p < 0.05 and p < 0.05, respectively). The level of IFN-gamma in PBMNC culture supernatants was higher in BA patients than in normal controls. Dexamethasone, cyclosporin A and FK506 significantly inhibited EVEA in BA patients (p < 0.05 to p < 0.001).

Allergens↗

Radiographic and hemodynamic changes during recovery from high-altitude pulmonary edema.

It has been suggested that accentuated pulmonary hypertension is a contributing factor in the development of high-altitude pulmonary edema (HAPE). The purpose of this study was to evaluate the chest radiographic features associated with pulmonary hemodynamic changes in HAPE. We studied 16 patients with HAPE using posteroanterior chest roentgenograms taken in the standing position both on admission and following recovery. The cardiothoracic ratio (CTR) as well as the area and volume of the main pulmonary artery were measured. During HAPE, we found slight enlargement of the CTR, especially the right ventricle, and prominence of the main pulmonary artery. These abnormalities significantly improved in the recovery state. The changes in area and volume of the main pulmonary artery were closely correlated with a decrease in CTR during recovery from HAPE, and correlated with the pulmonary hemodynamic changes observed by right heart catheterization (n = 4). Radiographic changes reflect the alterations in pulmonary hemodynamics in patients with HAPE.

Adolescent↗

Eosinophil viability-enhancing activity in mite-sensitive bronchial asthma.

We examined the eosinophil viability-enhancing activity (EVEA) of peripheral blood mononuclear cells (PBMNCs) obtained from 6 patients with mite-sensitive bronchial asthma (BA) and 9 normal control subjects. Mite concentrations of 1 microgram/ml and 10 micrograms/ml significantly increased EVEA in PBMNC culture supernatants from BA patients compared with PBMNCs from normal control subjects (76.1 +/- 11.0% at 10 micrograms/ml and 56.3 +/- 16.0% at 1 microgram/ml vs 20.6 +/- 12.6% at 10 micrograms/ml and 7.4 +/- 2.3% at 1 microgram/ml; p < 0.05). The level of IFN-gamma in PBMNC culture supernatants in BA patients was 2.3 +/- 0.9 IU/ml and in normal control subjects 0.7 +/- 0.3 IU/ml. A combination of mAbs (anti-IL-3, anti-IL-5 and anti-GM-CSF, with or without anti-IFN-gamma) neutralized the EVEA (p < 0.001, p < 0.001, respectively). Dexamethasone (10(-8) M to 10(-5) M), cyclosporin A (10(-7) M to 10(-5) M) and FK506 (10(-8) M to 10(-6) M) significantly inhibited EVEA in BA patients (p < 0.05 to p < 0.001). The release of eosinophil cationic protein (ECP) from eosinophils in the presence of mite-stimulated PBMNC culture supernatants was higher in patients with bronchial asthma (569 +/- 147 micrograms/l) than in normal control subjects (203 +/- 99 micrograms/l; p < 0.05).

Adolescent↗

Effects of various drugs (staurosporine, herbimycin A, ketotifen, theophylline, FK506 and cyclosporin A) on eosinophil viability.

Eosinophils are known to play an important role in the pathogenesis of asthma and other allergic diseases. This study demonstrated the effects of various drugs on eosinophil viability in vitro, which might help clinicians and researchers in treating and studying eosinophilic diseases. Staurosporine, a protein kinase C inhibitor, and herbimycin A, a tyrosine kinase inhibitor, at 10(-6) M and 10(-7) M significantly lowered eosinophil viability in a dose-dependent fashion (p < 0.002, p < 0.02 and p < 0.001, p < 0.002, respectively). Both staurosporine and herbimycin A reduced eosinophil survival in a time-dependent fashion at 10(-6) M and 10(-7) M. Ketotifen at 10(-4) M and theophylline at 10(-3) M, significantly decreased eosinophil viability (p < 0.001 and p < 0.001, respectively) in the presence of 100 pg/ml of recombinant human interleukin-5 (rhIL-5). Both FK506 and cyclosporin A at 10(-4) M significantly reduced eosinophil viability (p < 0.001 and p < 0.005, respectively) in the presence of 100 pg/ml of rhIL-5. Our data show that ketotifen, theophylline, FK506, cyclosporin A reduced eosinophil viability at a high concentration. Furthermore, it is suggested that protein kinase C and tyrosine kinase are involved in eosinophil survival.

Alkaloids↗

Biological characteristics of a continuous cultured cell line derived from a human malignant fibrous histiocytoma.

A continuous cultured cell line, NATO, was established from a human malignant histiocytoma of bone. The cultured cells consisted of at least 3 types of tumor cells; polygonal, long spindle and occasionally giant cells, which were primarily observed in the original tumor of the patient. Ultrastructurally, they were mostly immature cells that had poorly developed cell organelles and a few lysozomal granules. The cultured cells had phagocytotic activity and were positive for acid phosphatase, transferrin receptor, alpha 1-antitrypsin, alpha-naphthyl acetate esterase and HLA-DR, but negative for Fc- and C3-receptors. Allotransplantation of the cells into athymic nude mice produced tumors at early passages, but did not 3 years later. Four cloned sublines isolated from the parent line also showed essentially an identical morphology with that of the parent cell line, indicating that the 3 cell types were interchangeable.

Animals↗

Biventricular endomyocardial biopsy findings in essential hypertension of graded severity.

We performed endomyocardial biopsies from both ventricles in 29 patients with graded severities of hypertension. The patients (53.8 +/- 8.1 (mean +/- s.d.) years old) were either symptomatic or asymptomatic, and were grouped into three grades according to the severity of hypertension, that is, slight, moderate and severe. Breadth of the left ventricular myocytes (expressed as mean +/- s.d. microns) were 14.6 +/- 2.0 in Group I (n = 5), 15.5 +/- 1.4 in Group II (n = 15) and 18.7 +/- 2.4 in Group III (n = 9) showing a gradual increase. A noteworthy increase in the right ventricular myocyte breadth was also observed (12.5 +/- 0.9 microns in Group I, 13.6 +/- 1.7 microns in Group II and 14.7 +/- 1.4 microns in Group III, respectively). Increase in the interstitial fibrosis which was determined by the point counting method and expressed in percentage was also observed in both ventricular myocardiium (14.2 +/- 2.4 microns in Group I, 15.7 +/- 1.8 microns in Group II, and 16.2 +/- 3.1 microns in Group III in the left ventricle and 12.7 +/- 2.4 microns in Group I, 14.6 +/- 2.7 microns in Group II, and 17.5 +/- 3.5 microns in Group III in the right ventricle). It is concluded that, in the hypertensive heart, increase in the breadth of the myocytes as well as the interstitial fibrosis occurs in both the left and the right ventricle, and both changes progress in accordance with the severity of hypertension and electrocardiographic abnormalities.

Biopsy↗