Search PubMed⌕ Search

Biomedical subjects

M Miwa

Publications and source records attributed to M Miwa.

At least 127 records · Page 7Linked to original sources

Determination of platelet-activating factor acetylhydrolase activity by blotting, beta-radioluminescence, and ultrahigh-sensitivity television camera detection.

A simple method for detecting the 1-alkyl-2-[3H]-acetyl-sn-glycero-3-phosphocholine ([3H]acetyl-PAF)-hydrolyzing activity of serum proteins is described. These were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and transferred to polyvinylidene difluoride (PVDF) membranes. The assay involves measurement of the beta-radioluminescence of [3H]acetyl-PAF on the PVDF membranes with an ultra-high-sensitivity TV camera system. Enzyme activity is detected as a decrease in beta-radioluminescence of [3H]-acetyl-PAF on the blotted membranes, since [3H]acetyl-PAF remains on the membrane but the [3H]acetate released by the enzyme reaction detaches from the membrane. This method has been used to identify PAF acetylhydrolase and phospholipase A2.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Development of a novel method for determination of acetyl-CoA:1-alkyl-sn-glycero-3-phosphocholine acetyltransferase activity and its application to screening for acetyltransferase inhibitors. Inhibition by magnolol and honokiol from Magnoliae cortex.

A method was developed for determining the activity of acetyl-CoA:1-alkyl-sn-glycero-3-phosphocholine acetyltransferase (EC 2.3.1.67), a key enzyme in the biosynthesis of platelet-activating factor (PAF, 1-alkyl-2-acetyl-sn-glycero-3-phosphocholine). The assay involves measurement of the radioactivity in the trichloroacetic acid (TCA)-precipitated complex of radioactive product and albumin after incubation of 1-alkyl-sn-glycero-3-phosphocholine and [3H]acetyl-CoA with rat spleen microsomes or membrane fractions of human polymorphonuclear leukocytes (PMNs). The radioactive product associated with the precipitate was identified as PAF using an ultrahigh-sensitivity TV camera system after extraction and separation by TLC. This TCA method was then used to screen the components of crude preparations that inhibited acetyltransferase activity. Major components from the cortex of Magnoliae (magnolol and honokiol), which have anti-inflammatory and anti-bacterial actions, inhibited the acetyltransferase activity in rat spleen microsomes (IC50, 150 and 150 microM, respectively) and membrane fractions of human PMNs (IC50, 70 and 60 microM, respectively). The inhibitory action of magnolol and honokiol was reversible, and similar to or higher than that of nordihydroguaiaretic acid. PAF production in human PMNs stimulated by the ionophore A23187 was also suppressed dose dependently by magnolol and honokiol. These activities may be relevant to the claimed therapeutic effects of the extract from Magnoliae cortex.

Acetyltransferases↗

Mutation of K-ras protooncogene is associated with histological subtypes in human mucinous ovarian tumors.

A series of 57 mucinous and 47 serous ovarian tumors (adenomas, tumors of borderline malignancy, and carcinomas) were examined by polymerase chain reaction-single strand conformation polymorphism analysis and direct sequencing for mutations in codons 12, 13, and 61 of K-ras gene. Higher incidence of K-ras mutations was observed in mucinous tumors compared to serous ones. Mutations were detected in 4 of 30 mucinous adenomas (13%), in 4 of 12 mucinous tumors of borderline malignancy (33%), and in 7 of 15 mucinous carcinomas (46%). Only 1 of 17 serous carcinomas (6%) had a mutation of K-ras in serous ovarian tumors. All mutations identified were in codon 12. Detailed analysis revealed that more K-ras mutations in mucinous adenomas were observed in intestinal type (identified in 4 of 13) than in endocervical type (identified in 0 of 17). Thus, K-ras gene codon 12 mutations in mucinous ovarian adenomas appear to be associated with the occurrence of intestinal type adenomas.

Adenocarcinoma, Mucinous↗

Optical imaging of human breast cancer.

Since an increasing number of breast cancers have been reported in recent years, there is a need for improving techniques for early detection of the breast cancer. Here we tested a time gated optical imaging technique as a tool for imaging human breast. Pulsed laser light at wavelengths of 780 and 830 nm are transmitted through human breast tissues and time spectra of the diffused light through the tissue are recorded over nanoseconds. Data from different locations are acquired and used to reconstruct a two dimensional image as a set of spectra in pixel form. The imaging consists of absorption and scattering coefficients, and the absorption coefficients at the two wavelengths are related to oxygen concentration and blood volume. The analysis of these coefficients is based upon the early arrival photons, therefore allowing construction of a better image than those from the current diaphanography. We demonstrate images of breast cancer, cysts created after lumpectomy, and consequences of radiation therapy. Results show that time gated optical imaging can image oxygen concentration in the cancerous and fibrotic breasts. Resolution of the imaging for smaller tumor size needs to be improved.

Adult↗

Poly(ADP-ribose): historical perspective.

The early historical background of the discovery of poly(ADP-ribose) and the following development of science on poly(ADP-ribose) are reviewed. Fundamental knowledge on the natures of poly(ADP-ribose), poly(ADP-ribose) polymerase and enzymes degrading poly(ADP-ribose) are summarized with brief description on the methodology for their purification and characterization. Future prospect of research on biological significance of poly(ADP-ribose) has also been discussed briefly.

History, 20th Century↗

Poly(ADP-ribose) polymerase: structural conservation among different classes of animals and its implications.

Poly(ADP-ribose) polymerase cDNAs have been isolated from different classes of animals. Cloning of genes from lower eukaryotes has allowed us to investigate directly the biological functions of poly(ADP-ribosyl)ation in vivo. The conservation of specific regions among mammals, chicken, Xenopus laevis, and Drosophila melanogaster reveals the essential structural elements required for recognition of breaks in DNA and for catalytic activity. Cys, His and basic residues in the zinc-finger consensus region are conserved. The carboxyl terminal region corresponding to an NAD-binding domain is strongly conserved. The dinucleotide-binding consensus sequence and beta 1-alpha A-beta 2, Rossmann fold structure, and beta-sheet structures are completely conserved from mammals to insect. In Drosophila, a putative leucine-zipper motif has been identified, and other poly(ADP-ribose) polymerases also contain an alpha-helical, amphipathic structure in the auto-modification domain. In this article, we review the recent structural analyses of the functional domains of poly(ADP-ribose) polymerase in phylogenetically divergent species, and discuss the implications of structural conservation for its biological functions.

Amino Acid Sequence↗

CD30-positive lymphoma in human T-cell leukaemia virus type 1 carrier without monoclonal integration of HTLV-1.

CD30, Ki-1 antigen, an activated T-cell antigen, is a member of the nerve growth factor receptor family. This antigen is expressed on the lymphoma cells of some adult T-cell leukaemia/lymphoma (ATL/L) patients and some patients with Epstein-Barr virus infection. CD30-positive large cell cutaneous T-cell lymphomas occasionally integrate a defective HTLV-1 provirus. We describe here an HTLV-1 carrier who developed Ki-1 lymphoma with no evidence of monoclonal integration of the HTLV-1 proviral sequence.

Blotting, Southern↗

Role of adenosine in dialysis-induced hypotension.

First, this investigation showed that plasma levels of inosine, hypoxanthine, and xanthine, which are metabolites of adenosine, rose sharply when blood pressure dropped suddenly along with symptoms during a hemodialysis session (sudden hypotension), but not when it decreased gradually with eventual symptoms (gradual hypotension). Because adenosine has an action to dilate vessels, this result indicates the possibility that the increased release of adenosine would be a cause of sudden hypotension. Second, it was found that the frequency of sudden hypotension decreases with the administration of caffeine, which is an adenosine-receptor antagonist, whereas the frequency of gradual hypotension did not change. This result supports the above-mentioned hypothesis that adenosine may well be a mediator of sudden hypotension, but not of gradual hypotension. Third, our investigation demonstrated no significant differences in plasma norepinephrine level, in plasma renin activity, or in mean blood pressure between the hemodialysis session in which caffeine was administered and the session in which a placebo was given. These findings suggest that the effect of caffeine administration to prevent sudden hypotension is not mediated by the stimulation of the sympathetic nervous system or activation of the renin-angiotensin system, but by the adenosine-receptor antagonism.

Adenosine↗

Acute torn meniscus combined with acute cruciate ligament injury. Second look arthroscopy after 3-month conservative treatment.

The purpose of this study was to evaluate arthroscopically the natural healing of an acute torn meniscus combined with an acute cruciate ligament injury treated nonoperatively. There were 30 lateral and 10 medial meniscus tears associated with 25 acute anterior cruciate ligament and 7 posterior cruciate ligament injuries in 32 patients. There was more than 1 tear on some menisci for a total of 51 tear sites. Injuries to the menisci and ligaments were allowed to heal without surgery, but were given protective mobilization immediately in order to stimulate stress oriented healing of injured collagen fibers and promote circulation of synovial fluid to the meniscus and ligament. A Kyuro knee brace with a coil spring traction system was used to add adequate but not excessive stress to the associated injured cruciate ligament. All knees were examined and arthroscoped before and after a 3-month treatment period. Results indicated that 69% of the lateral menisci healed completely and 18% healed partially, whereas 58% of the medial menisci healed completely and none healed partially. Twenty of 25 anterior cruciate ligaments and 3 of 7 posterior cruciate ligaments healed satisfactorily. This study indicated that acute tears of the meniscus, even when they occur in association with a cruciate ligament injury, can heal morphologically with nonsurgical treatment.

Adolescent↗

[Influence of the yellow-tinted intraocular lens on spectral sensitivity].

One of the complaints of patients with aphakic eyes or pseudophakic eyes implanted with UV or non-UV intraocular lenses (IOLs) is chromatopsia. To determine the extent of color distortion, we measured the spectral sensitivity curve of normal subjects with visual acuity above 1.0 with correction, if any, including subjects implanted with the yellow-tinted IOL (UVCY IOL: HOYA Co.). We found that color sensitivity in the blue range (400-440 nm) declined rapidly with subjects age. We drew a regression line plotting age against sensitivity for 66 normal subjects. Sensitivity for pseudophakic eyes implanted with UVCY and UV IOLs at 400 nm corresponds to that of subjects in their early 20's. That of pseudophakic eyes implanted with non-UV IOLs and aphakic eyes corresponded to that of infants. In summary, compared to UV IOL and non-UV IOLs, the UVCY IOL was found to best approximate the color sensitivity of healthy eyes.

Adolescent↗

Isolation of the poly(ADP-ribose) polymerase-encoding cDNA from Xenopus laevis: phylogenetic conservation of the functional domains.

The complete nucleotide (nt) sequence of the Xenopus laevis poly(ADP-ribose) polymerase (PARP)-encoding cDNA was determined. The putative X. laevis PARP protein consists of 1008 amino acids (aa) with a molecular weight of 113 kDa. X. laevis PARP shares 74, 83, 73, 78 and 42% aa sequence homology with the human, bovine, mouse, chicken and Drosophila melanogaster PARPs, respectively. Comparison of the PARP aa sequences among these species showed conservation of two zinc-finger motifs in the DNA-binding domain, and an NAD-binding motif and a Rossmann fold in the catalytic domain. The first Leu of the putative leucine zipper of D. melanogaster PARP is substituted to Lys in X. laevis PARP. All the Glu residues in the leucine zipper are conserved in these six species.

Amino Acid Sequence↗

Successful treatment of a patient with adult T-cell leukemia by daily oral administration of low-dose etoposide. Decrease in the amount of HTLV-I proviral DNA revealed by the polymerase chain reaction method.

BACKGROUND: Oral administration of low-dose etoposide is known to be effective against various malignancies, including malignant lymphoma. However, the effectiveness of low-dose etoposide as a treatment for adult T-cell leukemia (ATL) has not been established. METHODS: A 74-year-old woman with ATL in acute phase was treated by daily oral administration of low-dose etoposide (25 mg/m2). The authors assayed changes in the surface markers and the amount of human T-cell lymphotropic virus type I (HTLV-I) proviral DNA in peripheral blood mononuclear cells (PBMC) by using flow cytometry and the polymerase chain reaction (PCR) method, respectively. RESULTS: Before treatment, generalized lymphadenopathy and hepatomegaly were observed. In laboratory examination, the leukocyte count was 13.7 x 10(3)/microliters, with 65% abnormal lymphocytes. The percentages of CD3-, CD4-, and CD25-positive cells in PBMC were 84.4%, 84.4%, and 76.5%, respectively. The serum lactic dehydrogenase (LDH) level was 1376 IU/l (normal range, less than 520 IU/l). After the initiation of treatment, lymph-adenopathy and hepatomegaly disappeared, and the serum LDH level was reduced to the normal level before the 20th day of the treatment. On the 55th day of the treatment, CD25-positive cells had virtually disappeared. In addition, the amount of the proviral DNA in PBMC was reduced to approximately one-tenth by this treatment. Subsequently, the patient was in remission for more than 16 months. No side effects were observed. CONCLUSIONS: Daily oral administration of low-dose etoposide can be a safe and effective treatment for patients with ATL. The authors believe this to be the first report of a patient with ATL in whom complete remission (CR) was achieved by this treatment.

Administration, Oral↗

Quantitative analysis of platelet-activating factor in human plasma. Application to patients with liver cirrhosis and disseminated intravascular coagulation.

A simple and reliable analytical procedure was developed for determination of platelet-activating factor (PAF) in human plasma using radioimmunoassay (RIA). The assay system consisted of lipid extraction with 2-propanol, lipid separation by Amprep octadecyl minicolumn chromatography and thin-layer chromatography and RIA (charcoal method), and was suitable for quantitation of 30-1000 pg of PAF. The sensitivity of RIA for PAF was notably higher than that for sn-2-short-chain PAF-like phosphatidylcholines. This assay system was then applied for measurement of PAF in human plasma. The normal level of plasma PAF was 54 +/- 40 pg/ml (n = 35), whereas plasma PAF levels in patients with liver cirrhosis (LC) and disseminated intravascular coagulation (DIC) were significantly elevated to 238 +/- 314 pg/ml (n = 14) and 591 +/- 328 pg/ml (n = 14), respectively. The values obtained using this assay system were comparable to those obtained by gas chromatography/mass spectrometry analysis and bioassay. These results indicate that our new assay system is useful for determining changes in the level of plasma PAF associated with diseases such as LC and DIC.

Chemistry Techniques, Analytical↗

Modulation by drugs acting on the autonomic nervous system of platelet-activating factor in the stomach of rats.

Platelet-activating factor (PAF), an ether linked choline glycerophospholipid, is a potent initiator of diverse physiological and pathological processes. We have reported that gastric endogenous PAF levels were reduced and the contents of each of its molecular species changed during water-immersion stress in rats (Sugatani J et al., FASEB J 3: 65-70, 1989 and Sugatani J et al., Lipids 26: 1347-1353, 1991). In this study, we determined the effects of autonomic drugs on the level of gastric PAF, its molecular heterogeneity and formation of gastric erosions in unstressed rats and those subjected to water-immersion stress. Atropine, an anticholinergic drug, suppressed both the stress-induced changes and development of gastric lesions. 6-Hydroxydopamine-induced sympathectomy induced a small decrease in the gastric PAF levels and the addition of stress further decreased the PAF levels and development of gastric lesions. Carbamylcholine induced a transient decrease in the gastric PAF level of normal rats, which was not associated with gastric erosion formation. In contrast, the endogenous gastroprotective factor dopamine evoked transient dose- and time-dependent increases in the gastric PAF levels. These observations indicate that cholinergic muscarinic-receptor activation in rats led to decreases in gastric PAF levels and a prolonged and marked decrease in its level was associated with the development of gastric lesions, and that dopamine increases gastric PAF levels. Gastric endogenous PAF levels are closely associated with the autonomic nervous system and should be considered further in investigations of gastric function.

Animals↗

Isolation of cDNAs encoding the catalytic domain of poly(ADP-ribose) polymerase from Xenopus laevis and cherry salmon using heterologous oligonucleotide consensus sequences.

We have isolated and sequenced cDNAs encoding the catalytic domain of poly(ADP-ribose) polymerase (PARP) from Xenopus laevis and Oncorhyncus masou (cherry salmon). The cDNAs were amplified by polymerase chain reaction using heterologous oligonucleotides corresponding to the conserved sequences of mammalian cDNAs as primers. The deduced amino acid sequences of Xenopus laevis and cherry salmon cDNA showed 84.4% and 75.6% similarities to that of human PARP, respectively. In both species, mRNA for PARP was identified as a single band of 4 kb, and PARP mRNA was abundant in ovary and brain. Thus, mixed oligonucleotide-primed amplification is a useful method in the cloning of cDNAs from different species, and the catalytic domain of PARP is conserved structurally among phylogenetically different species, suggesting an importance of poly(ADP-ribosyl)ation.

Amino Acid Sequence↗

Cloning of cDNA encoding Drosophila poly(ADP-ribose) polymerase: leucine zipper in the auto-modification domain.

We have isolated cDNA clones for a Drosophila poly(ADP-ribose) polymerase (PARP; EC 2.4.2.30) by screening a lambda gt11 cDNA library with a Drosophila partial cDNA fragment. The Drosophila PARP probe was obtained by the polymerase chain reaction with heterologous primers deduced from conserved amino acids in the mammalian, chicken, amphibian, and fish sequences. The Drosophila PARP mRNA is 3.2 kb in length and is expressed in the early stages of development. The PARP protein of 994 amino acids contains two zinc-finger motifs and an NAD-binding motif, which are conserved among different species. Interestingly, the heptad leucine repeat in an alpha-helix was found in Drosophila PARP. Alignments of the auto-modification domains of various species showed the repeated hydrophobic amino acids on the same face of the helix that make the coiled-coil configuration in the mammalian and chicken sequences. The presence of a leucine-zipper motif in the auto-modification domain suggests that this motif might be responsible for protein-protein interaction between PARP and physiological acceptors. PARP may have novel functions, possibly involving its homo- and/or heterodimerization with other nuclear leucine-zipper proteins and its regulation by ADP-ribosylation.

Amino Acid Sequence↗

Preferential degradation of protein-bound (ADP-ribose)n by nuclear poly(ADP-ribose) glycohydrolase from human placenta.

Poly(ADP-ribose) glycohydrolase, extensively purified to homogeneity from nuclei of human placenta, is composed of a single polypeptide with a molecular mass of 71,000 daltons on sodium dodecyl sulfate-polyacrylamide gel. Judging from its physico-chemical and catalytic properties, the enzyme is similar to the nuclear glycohydrolase (glycohydrolase I), but not to the cytoplasmic glycohydrolase (glycohydrolase II) that has been purified from guinea pig liver (Tanuma, S., Kawashima, K., and Endo, H. (1986) J. Biol. Chem. 261, 965-969; Maruta, H., Inageda, K., Aoki, T., Nishina, H., and Tanuma, S. (1991) Biochemistry 30, 5907-5912). The rates of hydrolysis of (ADP-ribose)n bound to various proteins by the purified nuclear glycohydrolase were higher than those of the corresponding free polymers. Kinetic analyses revealed that the enzyme had more activity toward poly(ADP-ribose) bound to histone H1 or to poly(ADP-ribose) polymerase than toward oligo(ADP-ribose) bound to cytoplasmic proteins from mitochondria or mRNA ribonucleoprotein although the Km and Vmax values were dependent on the chain length (n). In contrast, cytoplasmic glycohydrolase purified from human erythrocytes was more active toward oligo(ADP-ribose) (n = 2.6 or 4.2) bound to the cytoplasmic proteins than to poly(ADP-ribose) (n = 14.6) bound to histone H1, and their kinetic parameters of glycohydrolase II were rather dependent on the acceptor molecules for (ADP-ribose)n. These results suggest that poly(ADP-ribose) glycohydrolase I may play an important role in regulation of poly(ADP-ribosyl)ation levels on chromosomal proteins in nuclei.

Amino Acids↗