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Biomedical subjects

S Seki

Publications and source records attributed to S Seki.

At least 271 records · Page 15Linked to original sources

Detection of possible DNA repair enzymes on sodium dodecyl sulfate-polyacrylamide gels by protein blotting to damaged DNA-fixed membranes.

A novel method for detecting possible DNA repair enzymes on sodium dodecyl sulfate-polyacrylamide gels by blotting them onto a damaged DNA-fixed membrane is presented. To prepare the membrane, highly polymerized calf thymus DNA immobilized on a nylon membrane is damaged chemically. Enzymes, either homogeneous or crude, that are possibly involved in the priming step of DNA repair are fractionated by SDS-polyacrylamide gel electrophoresis (SDS-PAGE) and are renatured to active form by incubating the gel in an appropriate buffer. The renatured enzyme is then blotted onto the damaged DNA-fixed membrane, a process during which incision and/or excision are introduced to the damaged DNA by the enzymes. The incision and/or excision provide priming sites for repair DNA synthesis in the subsequent step in which the membrane is incubated with DNA polymerase in the presence of alpha-32P-labeled substrate. The site of substrate incorporation on the membrane reflecting the molecular weight of the repair enzyme is finally visualized by autoradiography. The present technique is established using Escherichia coli exonuclease III and a DNA-fixed membrane treated with bleomycin or acid-depurinated. By application of this method, a priming factor (an exonuclease) involved in the initiation of bleomycin-induced DNA repair is detected in the extract of mouse ascites sarcoma cells, and thus the molecular weight of the enzyme is estimated. Some apurinic/apyrimidinic endonucleases of mammals are also detected by the present procedure.

Animals↗

DNA damage by peplomycin and its repair in an in vitro system.

1. DNA damage by peplomycin, an antitumor antibiotic, and its repair by cellular enzymes were studied using pUC18 plasmid DNA. The DNA damage and repair were measured by monitoring the conformational changes of pUC18 DNA. 2. Peplomycin-induced DNA damage was enhanced by addition of ferrous ion and inhibited by deferoxamine, a specific iron chelator, suggesting iron-requirement for the DNA damage. 3. DNA damage by peplomycin was inhibited by superoxide dismutase in both native and heat-inactivated forms, possibly due to non-enzymatic interaction. 4. Peplomycin-induced, single-strand breaks in pUC18 DNA was repaired by incubating with a priming factor (an exonuclease purified from mouse ascites sarcoma cells), DNA polymerase beta, four deoxynucleoside triphosphates, T4 DNA ligase and ATP. The average repair patch size was estimated to be approximately four nucleotide length.

Adenosine Triphosphate↗

The killing effect of 4-S-cysteaminylphenol, a newly synthesised melanin precursor, on B16 melanoma cell lines.

We have examined the killing effect of 4-S-cysteaminylphenol (4-S-CAP), a newly synthesised melanin precursor, on B16 melanoma cell lines possessing different melanin-producing activities and found it to be particularly effective in heavily melanised melanoma cells, but less so in moderately melanised melanoma cells, and having no effect on amelanotic melanoma cells and nonmelanoma cells. Thus, it was found that the killing effect of 4-S-CAP is highly dependent upon the synthesis of melanin and tyrosinase in melanoma cells, suggesting that 4-S-CAP may become toxic to melanoma cells only after oxidation by tyrosinase. The killing activity of 4-S-CAP also was found to be associated with a profound inhibition of the thymidine incorporation in pigmented melanoma cells, as compared to the uridine and leucine incorporation. Further, the inhibition of DNA synthesis was most pronounced in heavily melanised melanoma cells, less so in moderately melanised melanoma cells, and not seen in amelanotic melanoma cells. As a possible mechanism that might account for this action, it may be that 4-S-CAP is oxidised by tyrosinase to the o-quinone form via the catechol derivative and that some of the quinones then conjugate with sulfhydryl enzymes including DNA polymerase, thus exerting a killing activity for pigmented melanoma cells. Thus, 4-S-CAP appears to provide a new, effective cytotoxic agent for rational chemotherapy of malignant melanomas.

Animals↗

Detection of proliferating hepatocytes in patients with acute hepatic failure by mitotic figures and a monoclonal antibody against DNA polymerase alpha.

Information on the ultrastructure and phenotypes of proliferative hepatocytes is scarce, so we set out to detect proliferating hepatocytes immunohistochemically by use of a monoclonal antibody against DNA polymerase alpha (DNA-PA). The findings from this method were compared with conventional features, such as mitotic figures, and hepatic regeneration after injury was considered in the light of these findings. The subjects of the basic study were 23 patients with acute hepatic failure. There were 6.8 +/- 5.5 (mean +/- SD) mitotic hepatocytes per 1,000 hepatocytic nuclei, and 209 +/- 158 hepatocytes stained for DNA-PA per 1,000 hepatocytic nuclei. By light and electron microscopy (n = 4), hepatocytes stained for DNA-PA showed various morphological features, including development of organelles, but some resembled hepatocytes in mitosis. Accordingly, this histochemical method may be useful in studies of hepatic regeneration. In acute confluent necrosis, when hepatocytic proliferation is urgently needed for survival, small hepatocytes next to necrotic areas (probably immature cells, to judge from the development of their organelles) were predominant in hepatic regeneration. These findings suggest that hepatocytes in different stages of development can easily enter the mitotic cell cycle repeatedly when rapid regeneration is needed.

Antibodies, Monoclonal↗

A repeating unit of the DYZ1 family on the human Y chromosome consists of segments with partial male-specificity.

An average-sized human Y chromosome contains about 3,000 copies of the repeating DNA family DYZ1. A major repeating unit of the family, pHY10, has been cloned and an entire 3,564-bp sequence has already been determined by Nakahori et al. (1986). In the present study, pHY10 was divided into six consecutive segments, A to F, which were independently amplified by the PCR technique to see if they were strictly male-specific. pHY10 appears to consist of segments of various male-specificity. The B segment was apparently male-specific; however, the use of additional techniques (Southern-blot analysis or second PCR amplification in combination with the standard PCR) revealed homologous sequences in some females. None of the six segments of pHY10 may be male-specific in a strict sense. Different segments appear to be conserved during evolution to different extents. The 323-bp E segment appears to be the least conserved and to be responsible for the generation of most variations within the DYZ1 family.

Base Sequence↗

Peplomycin-induced DNA repair synthesis in permeable mouse ascites sarcoma cells.

DNA repair synthesis induced in permeable mouse ascites sarcoma cells by peplomycin, an antitumor antibiotic, was studied. Mouse ascites sarcoma (SR-C3H/He) cells were permeabilized with a low concentration of Triton X-100 in an isotonic condition. Permeable cells were treated with an appropriate concentration of peplomycin to introduce single-strand breaks in permeable cell DNA. DNA repair synthesis in peplomycin-treated permeable cells was measured by incubating the cells with four deoxynucleoside triphosphates in an appropriate buffer system. The DNA repair synthesis was enhanced by ATP and NaCl at near physiological concentrations. More than 90% of DNA synthesis in the present system depended on the peplomycin-treatment. The repair nature of the DNA synthesis was confirmed by a BrdUMP density shift technique. The repair patches were largely completed and ligated in the presence of ATP. Analyses using selective inhibitors for DNA polymerases showed that both DNA polymerase Beta and aphidicolin-sensitive DNA polymerases (DNA polymerase alpha and/or delta) were involved in the repair DNA synthesis.

Animals↗

Detection of hepatitis C virus antibodies and hepatitis C virus RNA in patients with alcoholic liver disease.

The relationship between alcoholic liver disease and hepatitis C virus was studied in 80 patients by searching for hepatitis C virus RNA with the polymerase chain reaction and by measuring hepatitis C virus antibodies. By C-100 enzyme-linked immunosorbent assay, hepatitis C virus antibodies were found in 2 of 10 patients with fibrosteatosis, 8 of 20 patients with alcoholic hepatitis, 14 of 19 patients with chronic hepatitis and 19 of 31 patients with cirrhosis. Percentages of patients with antibodies found by C-100 radioimmunoassay and by enzyme-linked immunosorbent assay based on sequence peptide 42 were lower; of the 16 patients with a low titer by C-100 enzyme-linked immunosorbent assay, 10 were negative by radioimmunoassay and 6 were negative by sequence peptide 42. By a second-generation recombinant immunoblot assay, hepatitis C virus antibodies were found in 1 of 10 patients with fibrosteatosis, 2 of 20 patients with alcoholic hepatitis, 15 of 19 patients with chronic hepatitis and 18 of 31 patients with cirrhosis. Hepatitis C virus RNA was found in 1 of 10 patients with fibrosteatosis, 3 of 20 patients with alcoholic hepatitis, 13 of 19 patients with chronic hepatitis and 20 of 31 patients with cirrhosis. Of the 37 patients with hepatitis C virus RNA, 31 had antibodies by C-100 enzyme-linked immunosorbent assay (25 patients at a high titer [cut-off index greater than 6]), and 31 had antibodies by second-generation recombinant immunoblot assay. Patients with cirrhosis and hepatitis C virus RNA had higher ALT activity than such patients without hepatitis C virus RNA (p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Sevoflurane with continuous epidural anesthesia for removal of pheochromocytoma].

A 66-year-old female was scheduled for right adrenalectomy because of a pheochromocytoma. Preoperative blood pressure was well controlled with an alpha.beta blocker, amosulalol hydrochloride 40 mg per day po for 2 weeks. The patient received midazolam 2.5 mg im and scopolamine 0.4 mg im 60 minutes before induction. Anesthesia was induced with midazolam 5 mg iv, fentanyl 0.1 mg iv and vecuronium 12 mg iv, and maintained with continuous epidural infusion of 1.5% lidocaine, and inhalation of 66% nitrous oxide in oxygen and sevoflurane (0.5-3%). Blood pressure was controlled with nicardipine (1-6 micrograms.kg-1.min-1) before removal of the pheochromocytoma. After removal of the tumor blood pressure was maintained with intravenous infusion of lactated Ringer's solution, dopamine (3-8 micrograms.kg-1.min-1), dobutamine (3-8 micrograms.kg-1.min-1) and norepinephrine (0.1-0.2 micrograms.kg-1.min-1). A combination of continuous epidural block and sevoflurane anesthesia was very useful for removal of the pheochromocytoma. Swan-Ganz catheter monitoring was also very useful before and during operation to determine the optimal doses of nicardipine, catecholamine and the volume of transfusion.

Adrenal Gland Neoplasms↗

Liver is a possible site for the proliferation of abnormal CD3+4-8- double-negative lymphocytes in autoimmune MRL-lpr/lpr mice.

MRL-lpr/lpr mice develop a severe autoimmune disease that resembles systemic lupus erythematosis in humans. The predominant immunological feature in these mice is the development of peripheral lymphadenopathy due to the expansion of an unusual T cell subset (TCR-alpha/beta +5CD3+4-8-B220+), which may be related to the onset of their autoimmunity. However, it is unknown whether such abnormal lymphocytes proliferate in the specific organs or not. We demonstrated in the present study that the number of liver nonparenchymal mononuclear cells (MNC) in the diseased MRL-lpr/lpr mice was 10 times greater than that of control MRL-+/+ mice. Moreover, the freshly isolated liver MNC of MRL-lpr/lpr mice vigorously proliferated in vitro and consisted of abnormal CD3+4-8- lymphocytes. Such in vitro proliferation was not observed in the MNC of other peripheral lymphoid organs. A potent natural cytotoxicity was also confined to the liver MNC in MRL-lpr/lpr mice. In vivo injection of [3H]TdR demonstrated that liver MNC incorporated [3H]TdR; such incorporation showed a peak on day 1, and the MNC-incorporated [3H]TdR appeared in the lymph nodes as late as day 5 after the injection. These results suggest that the liver is a possible site for the proliferation of abnormal lymphocytes, which may migrate thereafter into the peripheral organs in MRL-lpr/lpr mice.

Animals↗

Effects of putrescine on D-galactosamine-induced acute liver failure in rats.

We studied the effect of putrescine on acute liver failure caused in rats by two injections of 1 gm/kg D-galactosamine. The hepatic polyamine level rose only slightly in the D-galactosamine-injected rats treated with glucagon and insulin, and [3H]thymidine incorporation into DNA increased little; these hormones did not improve the survival rate. When D-galactosamine-injected rats were given putrescine, the putrescine concentration in the liver increased and the survival rate of the rats was significantly higher than that of control rats given only D-galactosamine. Putrescine administration tended to lower the serum level of alanine aminotransferase in rats injected with D-galactosamine, so the polyamine might have a protective effect on hepatocytes. Putrescine significantly increased [3H]thymidine incorporation in the liver; thus it accelerated liver regeneration. Difluoromethylornithine decreased the level of putrescine in the liver, decreasing both [3H]thymidine uptake and the survival rate. In the rats treated with D-galactosamine, in which liver damage was so severe that treatment with glucagon and insulin was ineffective, the intraperitoneal administration of putrescine increased the survival rate in acute liver failure. This probably resulted mainly from activation of liver regeneration and possibly from a protective effect of putrescine on the liver.

Alanine Transaminase↗

Changes in interferon receptors on peripheral blood mononuclear cells from patients with chronic hepatitis B being treated with interferon.

We studied the binding of 125I-labeled human interferon-alpha to peripheral blood mononuclear cells and the activity of 2',5'-oligoadenylate synthetase in peripheral blood mononuclear cells obtained from 21 patients with chronic hepatitis B who were treated with human interferon-alpha or interferon-beta. Fourteen patients were given interferon daily for 4 wk. Interferon receptors per cell decreased to about 50% of baseline but increased to baseline by 2 wk after therapy ended. The activity of 2',5'-oligoadenylate synthetase rose about fivefold during therapy, decreasing to baseline by 1 wk after the end of therapy. The seven other patients were given interferon daily for 2 wk, no interferon for 2 wk and then interferon daily for 2 wk more. During both periods of therapy on this schedule, interferon receptors decreased to about 50% but returned to baseline 1 wk after the interferon was stopped. The activity of 2',5'-oligoadenylate synthetase increased about fivefold during both the first and second periods of therapy and decreased to baseline 1 wk after interferon was stopped. Close negative correlation existed between the number of interferon receptors and the 2',5'-oligoadenylate synthetase activity. The results of interferon therapy could not be predicted by either the numbers of interferon receptors before therapy or by the decrease in this number during therapy.

2',5'-Oligoadenylate Synthetase↗

In vivo dynamics of pulmonary lymphoid cell subpopulations generated against pulmonary metastasis: evaluation by bronchoalveolar lavage fluid.

The dynamics of lymphoid cell subpopulations in bronchoalveolar lavage fluid (BALF) and the systemic lymphoid organs of mice after intravenous injection of B16 melanoma cells were examined with a fluorescence-activated cell sorter. The lymphoid cell subpopulations of BALF and mediastinal lymph nodes showed significant changes in numbers and proportions, while those of other lymphoid organs including inguinal lymph nodes, thymus and spleen, showed little change. In week 1, the cells with a Thy-1.2+, Lyt-1+, L3T4-, Lyt-2- phenotype and asialo-Gm1+ cells in BALF significantly increased and L3T4+ cells slightly increased in number. By week 3, the numbers of Lyt-2+ cells in BALF markedly increased in number (by about 90 times) compared with controls. The number of Thy-1.2+ cells in mediastinal lymph nodes also increased significantly by week 3. Mice that had been pretreated with an immunosuppressive dose of cyclophosphamide were also inoculated intravenously with B16 melanoma cells. In these mice, a significantly increased number of pleural tumors developed and the number of Thy-1.2+ cells in BALF was markedly reduced from week 1 to 3. The results indicate that L3T4 and Lyt-2 double negative T-cells and natural killer (NK) cells may be generated and/or mobilized to the lung in an early phase of experimental metastasis of B16 melanoma cells and that at a later stage, when multiple metastases develop, T-cells with a Lyt-2+ phenotype markedly increase, probably as an expression of a host reaction against proliferating metastatic tumor cells.

Animals↗

Identification and fine structure of proliferating hepatocytes in malignant and nonmalignant liver diseases by use of a monoclonal antibody against DNA polymerase alpha.

To analyze the process of liver regeneration and the initiation of hepatocellular carcinoma (HCC), we studied histochemically the morphologic features of proliferating parenchymal cells stained for DNA polymerase alpha (DPA), in 31 patients with various diseases, by use of a monoclonal antibody against DPA. In specimens from patients with acute viral hepatitis with confluent necrosis, most stained hepatocytes were small, with basophilic cytoplasm, and were located next to the necrotic areas. Under electron microscopy, stained granules were seen in the nucleus. Most stained hepatocytes had immature organelles. In specimens from patients with cirrhosis of the liver, the number of stained hepatocytes greatly differed in different pseudolobules. In specimens from patients with adenomatous hyperplasia, stained hepatocytes, mostly small and basophilic, were found diffusely; electron microscopy showed slightly indented nuclei with a few organelles and less condensed chromatin than normal. In specimens from patients with HCC, most stained cancer cells were small and basophilic; electron microscopy showed indented nuclei with a few organelles and less than normal condensed chromatin. Staining showed that during regeneration, immature hepatocytes reentered the cell cycle and repaired a large necrotic area. It was conceivable that in the initiation of HCC, some small hepatocytes with indented nuclei and less condensed chromatin might become HCC cells.

Antibodies, Monoclonal↗

The effect of L-dopa on the potentiation of radiation damage to human melanoma cells.

Since L-dopa (L-3,4-dihydroxyphenylalanine) has been shown to possess a selective toxicity for melanoma cells both in vitro and in vivo, we have examined the combined effect of L-dopa and radiation on human melanoma cells. It was found that the combined use of L-dopa potentiated the radiation cytotoxicity to HMV-I human melanoma cells, compared with the response seen in non-melanoma HeLa S3 cells. In HMV-I cells during their exponential phase, L-dopa decreased the shoulder width of the radiation survival curve significantly. In addition, L-dopa significantly inhibited the repair of potentially lethal damage (PLD) in HMV-I cells during their plateau phase. When the distributions of the G1, S, and G2-M cells were measured 24 h after combined L-dopa and radiation treatment, there was significant increase in the accumulation of cells in the G2-M phase of the cell cycle, compared to cells that received either L-dopa or radiation treatment only.

Cell Cycle↗

Repair of X-ray-induced single-strand breaks by a cell-free system.

Repair of X-ray-induced single-strand breaks of DNA was studied in vitro using an exonuclease purified from mouse ascites sarcoma (SR-C3H/He) cells. X-ray-dose-dependent unscheduled DNA synthesis was primed by the exonuclease. Repair of X-ray-induced single-strand breaks in pUC19 plasmid DNA was demonstrated by agarose gel electrophoresis after incubating the damaged DNA with the exonuclease, DNA polymerase (Klenow fragment of DNA polymerase I or DNA polymerase beta purified from SR-C3H/He cells), four deoxynucleoside triphosphates, ATP and DNA ligase (T4 DNA ligase or DNA ligase I purified from calf thymus). The present results suggested that the exonuclease is involved in the initiation of repair of X-ray-induced single-strand breaks in removing 3' ends of X-ray-damaged DNA.

Animals↗

Induction of human TCR gamma delta + and TCR gamma delta-CD2+CD3- double negative lymphocytes by bacterial stimulation.

When human blood mononuclear cells (MNC) were incubated with heat-killed bacteria, proliferation of MNC was observed 5 days after stimulation, showing a peak on day 7. Interestingly, the bioassay of the culture supernatant and Northern blot analysis of mRNA demonstrated that no IL-2 production was associated with these proliferative responses. The induced lymphoblasts consisted predominantly of TCR gamma delta + (22.4 +/- 9.3%) and TCR gamma delta-CD2+CD3-(33.2 +/- 11.8%) double negative lymphocytes (n = 10), which were initially minor populations (less than 10%) in freshly isolated MNC. The prominent induction of TCR gamma delta + cells was confirmed by Northern blot analysis. TCR gamma delta + cells induced by bacterial stimulation seemed to generate from lymphocytes lacking the apparent expression of gamma delta TCR. The inducing capability for double negative cells is present in a large number of species of bacteria, especially Gram-positive bacteria. Gel filtration analysis of ultrasonicated filtrates of Staphylococcus aureus and Streptococcus pyogenes revealed that a substance with an Mr of 25-26 kd could be substituted for whole bacterial particles in the cell proliferative responses. In contrast to the purified protein derivative (PPD)-induced response, the response described here was inducible in the cord blood of neonates who had not yet been exposed to the corresponding bacterial infection. The physicochemical properties of the sonicated filtrates were different from those of PPD. These results suggested that the present phenomenon may be nonspecific, polyclonal (or oligoclonal) activation of TCR gamma delta + and TCR gamma delta -CD2+CD3- cells by bacterial stimulation.

Adult↗