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Biomedical subjects

M Ikeuchi

Publications and source records attributed to M Ikeuchi.

At least 73 records · Page 4Linked to original sources

Purification of inactivated photoresponsive nitrile hydratase.

Photoresponsive nitrile hydratase from Rhodococcus sp. N-771 was purified in its inactivated form. The enzyme had a molecular weight of approximately 60 kDa and consisted of 2 subunits each having molecular weight of 27.5 and 28 kDa. The enzyme also contained 2 iron atoms/enzyme as a cofactor. The enzyme was more stable in its inactivated form, rather than the activated during storage in the dark. The enzyme was most stable in the temperature region of 0-35 degrees C, and lost its activity above 40 degrees C. The enzyme was most stable in the pH region of 6-8. The optimum temperature and pH for the enzyme activity was 30 degrees C and 7.8, respectively. The enzyme showed wide substrate specificity, and most of the metal ions did not affect enzyme activity significantly. The absorption spectrum revealed the presence of some cofactor which changed form after photoirradiation.

Enzyme Activation↗

Polypeptide composition of higher plant photosystem I complex. Identification of psaI, psaJ and psaK gene products.

High resolution gel electrophoresis of the native photosystem I complex retaining light-harvesting chlorophyll complex revealed the presence of three low-molecular-mass proteins of 7, 4.1 and 3.9 kDa in spinach, and 6.8, 4.4 and 4.1 kDa in pea, in addition to the other well-characterized higher-molecular-mass components. Upon further detergent treatment to deplete light-harvesting chlorophyll complex, the 7 kDa and 4.1 kDa proteins were removed from the photosystem I core complex of spinach, while the 3.9 kDa protein was retained. N-terminal sequencing demonstrated that the 4.1 kDa proteins from both spinach and pea correspond to the gene product of ORF42/44 in chloroplast genome of liverwort and higher plants, which was previously hypothesized as a photosystem I gene (psaJ) based on sequence homology with the cyanobacterial photosystem I component of 4.1 kDa [(1989) FEBS Lett. 253, 257-263]. N-terminal sequence of the spinach 3.9 kDa and pea 4.4 kDa proteins fitted with chloroplast ORF36/40 (psaI) although no homologue has been found in cyanobacteria. The spinach 7 kDa and pea 6.8 kDa proteins correspond to the nuclear-encoded psaK product and significantly matched with the N-terminal sequence of the cyanobacterial 6.5 kDa subunit. The evolutional conservation of the psaJ and psaK seems to suggest their intrinsic role(s) in photosystem I.

Amino Acid Sequence↗

[Studies on porphyrin related compounds and tumor tissue affinities. I. Synthesis of a carrier for tumor imaging agent, bifunctional chelating agent coupled porphyrin (ATN-2)].

A carrier for a new tumor imaging agent, a bifunctional chelating agent (BCA)-coupled porphyrin (ATN-2), has been synthesized from protoporphyrin dimethyl ester in 4 steps. At first, the hydrobromination of protoporphyrin dimethyl ester is carried out to obtain a monobromo derivative. The derivative is treated with ethylene glycol. The resulting porphyrin has an ether group at the either 7- or 12-position of the ring. Metallation with GaCl3 of the porphyrin having a ethylene glycol residue affords Ga-metalloporphyrin. Final condensation of the metalloporphyrin with diethylenetriaminepentaacetic acid (DT-PA) gave BCA-coupled porphyrin (ATN-2). The chelation of ATN-2 with 111InCl3 easily afforded [111In]ATN-2. This agent was used for imaging transplantable pancreatic carcinoma in Syrian golden hamster at 72 h after postinjection. The efficacy of the new agent was compared with that of [67Ga]citrate. The images with [111In]ATN-2 were found to be clearer than those with [67Ga]citrate. Therefore, ATN-2, a carrier for 111InCl3, seems to be more useful for tumor imaging agents.

Animals↗

[Prevention of vitamin K deficiency in the early neonatal period--prophylactic oral administration of VK to the mother].

We studied the effect of vitamin K(MK-4) on the prevention of vitamin K deficiency in the early neonatal period. MK-4 (20 mg/day) was given orally for 1-7 days to 183 pregnant women at 37-39 weeks gestation. In the MK-4 treated group, there were no cases of melena neonatorum but there were 9 cases in the untreated group (9/757, 1.2%). To investigate the influence of MK-4 administration on liver function and the VK dependent coagulation system, maternal and umbilical venous blood were taken to measure T-Bil, GOT, GPT, gamma-GTP, LDH, and II, VII, X activity and HPT. There was no significant difference between these values in MK-treated and untreated groups. MK-4 concentrations were measured in the maternal and umbilical venous blood of 68 subjects. The level of MK-4 in umbilical venous blood was less than 0.1 ng/ml in 17 of 21 subjects not treated with MK-4 but it was over 0.1 ng/ml in 30 of 47 MK-4 treated subjects. However, no MK-4 was detected in 6 of 8 subjects who were treated for 1 day. The level of MK-4 in maternal blood was less than 0.1 ng/ml in 12 of 21 untreated subjects but it was 0.19-92.6 ng/ml in all of the 47 MK-4 treated subjects. The mean MK-4 concentration in cord blood as a percentage of that in maternal blood was 17.9%. These findings indicate that MK-4 is effectively transported from maternal to fetal blood through the placenta and its administration to pregnant women is useful in preventing melena neonatorum.

Administration, Oral↗

N-terminal sequencing of low-molecular-mass components in cyanobacterial photosystem II core complex. Two components correspond to unidentified open reading frames of plant chloroplast DNA.

We recently reported the presence of several low-molecular-mass protein components in the PS II O2-evolving core complex from the thermophilic cyanobacterium, Synechococcus vulcanus [(1989) FEBS Lett. 244, 391-396]. Here we have characterized the three components (4.1, 4.7, 5 kDa) of the same cyanobacterial core complex by N-terminal sequencing. There were two components in the 4.7 kDa region, both having a blocked N-terminus. One has a sequence highly homologous to open reading frame 34 of plant chloroplast DNA (tentatively designated psbM), while the other has a sequence partially homologous to open reading frame 43 of chloroplast DNA (designated psbN), although neither of the two gene products has yet been confirmed in chloroplasts. The cyanobacterial 4.1 kDa protein partially corresponds to the 4.1 kDa nuclear-encoded core component of higher plant PS II. The cyanobacterial 5 kDa component, however, shows a sequence that is unrelated to any other known proteins.

Amino Acid Sequence↗

Identification of photosystem I components from the cyanobacterium, Synechococcus vulcanus by N-terminal sequencing.

The photosystem I core complex isolated from a thermophilic cyanobacterium, Synechococcus vulcanus, is composed of eight low-molecular-mass proteins of 18, 14, 12, 9.5, 9, 6.5, 5 and 4.1 kDa in addition to the PS I chlorophyll protein. N-terminal amino acid sequences of all these components were determined and compared with those of higher plants. Clearly, the 9.5 kDa component corresponds to the protein which carries the non-heme iron-sulfur centers A and B. This protein is so poorly visualized by staining that it has probably been overlooked in gel electrophoresis analyses. The 18, 14, 12 and 9 kDa components show appreciable homology with respective subunits of higher plant PS I. In contrast, the 6.5, 5 and 4.1 kDa components do not correspond to any known proteins except that the sequence of the 4.1 kDa component matches an unidentified open reading frame (ORF) 42 (liverwort) or ORF44 (tobacco) of chloroplast DNA.

Amino Acid Sequence↗

Low-molecular-mass proteins in cyanobacterial photosystem II: identification of psbH and psbK gene products by N-terminal sequencing.

The O2-evolving photosystem II core complex was isolated from a thermophilic cyanobacterium, Synechococcus vulcanus Copeland. Analysis by SDS-polyacrylamide gel electrophoresis revealed that the complex contained at least seven low-molecular-mass proteins in addition to the well characterized CP47 apoprotein, CP43 apoprotein, 33 kDa extrinsic protein, D1 protein, D2 protein and large subunit of cytochrome b-559. The separation of these low-molecular-mass proteins were very similar between cyanobacterial and higher plant PS II. N-terminal sequences of the 6.5 kDa and 3.9 kDa proteins of cyanobacterial core complex were determined after blotting to a polyvinylidene difluoride membrane. The sequence of the 6.5 kDa protein showed high homology with an internal sequence of plant psbH gene product, so-called 10 kDa phosphoprotein, but did not conserve the Thr residue which is specifically phosphorylated in plants. The sequence of the 3.9 kDa protein corresponded to the K protein of higher plants (mature form of psbK gene product). These results indicate that the products of both psbH and psbK genes are present in cyanobacterial PS II as well as being associated with the O2-evolving core complex.

Amino Acid Sequence↗

N-terminal sequencing of photosystem II low-molecular-mass proteins. 5 and 4.1 kDa components of the O2-evolving core complex from higher plants.

High resolution gel electrophoresis in the low-molecular-mass region combined with electroblotting using polyvinylidene difluoride membranes enabled us to sequence the low-molecular-mass proteins of photosystem II membrane fragments from spinach and wheat. The determined N-terminal sequences, all showing considerable homology between the two plants, involved two newly determined sequences for the 4.1 kDa protein and one for the 5 kDa proteins. The sequence of the 4.1 kDa protein did not match any part of the chloroplast DNA sequence from tobacco or liverwort, suggesting that it is encoded by the nuclear genome. In contrast, the sequence of the 5 kDa protein matched ORF38, which is located just downstream of psbE and psbF in the chloroplast DNA and is assumed to be co-transcribed with them. These two components were associated with the O2-evolving core complex. Sequences of other low-molecular-mass proteins confirmed the previous identification as photosystem II components.

Amino Acid Sequence↗

Immunotherapy using the streptococcal preparation OK-432 for the treatment of uterine cervical cancer. Cervical Cancer Immunotherapy Study Group.

The efficacy of immunotherapy using a streptococcal preparation, OK-432, was evaluated in each clinical stage of uterine cervical cancer. The 382 eligible patients were stratified by clinical stage and presence/absence of surgery. Within each stratum, patient's were randomly allocated to OK-432 treatment or to control treatment. OK-432 significantly inhibited recurrence in patients with stage II cervical cancer; the recurrence-free interval and survival time were remarkably prolonged in patients with stage II disease who underwent surgery. However, OK-432 did not significantly prolong these parameters in patients with stage III disease. Retrospective analyses revealed that in patients with or without lymph node metastases who underwent surgery, the recurrence-free interval and survival time were significantly prolonged by OK-432 treatment. These results indicate that OK-432 is an effective and useful postoperative immunotherapeutic agent for uterine cervical cancer.

Biological Products↗

Tolbutamide as mimic of glucose on beta-cell electrical activity. ATP-sensitive K+ channels as common pathway for both stimuli.

It is accepted for insulin-secreting cells in culture that the closure of ATP-sensitive K+ channels causes the glucose-dependent depolarization of pancreatic beta-cells seen at subthreshold levels (less than 100 mg/dl) of glucose. The question remains for the more thoroughly studied beta-cells in freshly dissected intact islets, however, whether closure of these channels is responsible for subthreshold glucose-dependent depolarization and suprathreshold glucose-dependent regulation of membrane electrical activity. To answer this, we took advantage of the ability of tolbutamide, an orally active antidiabetic agent, to specifically inhibit ATP-sensitive K+ channels in pancreatic beta-cells to determine whether these channels are active at sub- and suprathreshold levels of glucose and whether channel closure by tolbutamide reproduces the electrophysiological effects of glucose stimulation. We recorded membrane electrical activity from freshly dissected adult mouse pancreatic islets exposed to various levels of glucose and tolbutamide. As previously found by others, tolbutamide depolarizes islet cells in the absence of glucose, but we have found that, although the depolarization can trigger Ca2+ action potentials (spikes), a glucose-dependent permissive factor may be required for the normal bursting pattern of spiking. More significantly, we found that, unlike other beta-cell stimuli, tolbutamide specifically mimics the effects of glucose stimulation on the pattern of suprathreshold electrical activity. The effects were seen with levels of tolbutamide that correspond to those required to inhibit ATP-sensitive K+ channels. These data suggest that ATP-sensitive K+ channels are active at sub- and suprathreshold levels of glucose and may be the sole pathway by which either glucose or tolbutamide depolarizes beta-cells and controls beta-cell electrical activity.

Action Potentials↗

[Study on the plasma plasminogen activators in patients with malignant gynecologic tumors].

Increased plasminogen activator (PA) secretion has been observed in malignant cells and tissue and PA is thought to be involved in the processes of tumorigenesis, cancer invasion and metastasis. Recently two types of plasminogen activator--tissue type PA(tPA) and urokinase type PA(uPA)--have been detected in human plasma. In this study, to investigate the relationship between circulating PA and the malignant state, we measured the plasma PA concentrations (PA activity, tPA and uPA antigen) in 69 women with gynecologic malignancies (cervical cancer 50, ovarian cancer 19). These concentrations were compared to those in control groups of 33 women with benign gynecologic tumors (uterine tumor 8, ovarian tumor 25). An enzyme-linked immunoassay for tPA and uPA antigens was performed by the modified method described by Takada et al. (1986). PA activity was measured by the sensitive spectrophotometric assay of Verheijen et al. (1982). The blood samples were taken from an arm vein with a minimum of venous occlusion before treatment. There was no correlation between PA activity or uPA antigen levels and the malignant state. However, in the case of uterine tumors, a significantly higher concentration of tPA antigen (10.5 +/- 5.1 ng/ml) was found in patients with cervical cancer, in stage IV, than in those in the benign group (5.2 +/- 2.0 ng/ml). Moreover the tPA antigen concentration in cervical cancer, stage IV, was higher than in stages 0-III.(ABSTRACT TRUNCATED AT 250 WORDS)

Antigens↗

[Prognostic significance of histopathological classification in patients with carcinoma of the uterine cervix].

In a retrospective study of 724 patients with histologically proven carcinoma of the uterine cervix from 1980 through 1986, the histological classification and clinical stage (FIGO) were investigated for their prognostic value. The clinical stage was very important in relation to prognosis. The histological type of the squamous cell carcinoma (keratinizing, large cell non-keratinizing, small cell non-keratinizing) did not have any value in predicting survival, but small cell non-keratinizing tumor showed a less favorable prognosis than other tumors when surgery was employed. As to survival, there was no difference between adenocarcinoma and squamous cell carcinoma when compared in all patients, but adenocarcinoma had a worse prognosis than squamous cell carcinoma when surgery was employed. The pelvic lymphnode status at operation was correlated with the clinical stage. Adenocarcinoma had more positive nodes than squamous cell carcinoma. There was no significant difference in the frequency of pelvic node involvement among cell types of squamous cell carcinoma. The present histopathological classification of the uterine cervical carcinoma was of little prognostic value in predicting patient outcome.

Adenocarcinoma↗

A new photosystem II reaction center component (4.8 kDa protein) encoded by chloroplast genome.

The photosystem II reaction center complex, so-called D1-D2-cytochrome b-559 complex, isolated from higher plants contains a new component of about 4.8 kDa [(1988) Plant Cell Physiol. 29, 1233-1239]. The partial amino acid sequence of this component from spinach was determined after release of N-terminal blockage. The determined sequence matched an open reading frame (ORF36) of the chloroplast genome from tobacco and liverwort, which is located downstream from the psbK gene and forms an operon with psbK. The predicted product consists of 36 amino acid residues and has a single membrane-spanning segment. High homology between the tobacco and liverwort genes, and its presence in the reaction center complex suggest an important role for this component in the photosystem II complex. Since this gene corresponds to a part of the formerly designated psbI gene, we propose to revise the definition of psbI as the gene encoding the 4.8 kDa reaction center component.

Amino Acid Sequence↗

Insulin binding to circulating monocytes in children with insulin-dependent and non-insulin-dependent diabetes mellitus.

This study describes insulin binding to circulating monocytes in 24 children with insulin-dependent diabetes mellitus (IDDM), five children with non-insulin-dependent diabetes mellitus (NIDDM), and 10 healthy and 12 obese control children. Insulin binding to monocytes was greatly increased in untreated IDDM children with obvious ketoacidosis (5.51 +/- 3.49 vs. 1.91 +/- 0.47 pg/10(6) cells, P less than 0.01), whereas it was decreased in those without obvious ketoacidosis (1.39 +/- 0.30 vs. 1.91 +/- 0.47 pg/10(6) cells, P less than 0.01). Insulin treatment restored insulin binding almost to the level of control children in both ketoacidotic and non-ketoacidotic patients. Insulin binding to monocytes was markedly decreased in untreated NIDDM children with hyperinsulinemia compared with healthy control children (0.73 +/- 0.27 vs. 1.91 +/- 0.47 pg/10(6) cells, P less than 0.01) or obese control children (0.73 +/- 0.27 vs. 1.33 +/- 0.35 pg/10(6) cells, P less than 0.01). These data indicate that changes in insulin secretion and metabolic conditions might be involved in the fluctuation of the number of insulin receptors in IDDM children as well as in NIDDM children.

Adolescent↗

Insulin action on glucose uptake by soleus muscles of nonobese diabetic mice and streptozotocin diabetic mice.

To elucidate the insulin action in skeletal muscles in insulin-dependent diabetes, the glucose uptake by isolated soleus muscles was studied in streptozotocin (STZ)-diabetic mice and nonobese diabetic (NOD) mice that develop insulinopenic diabetes spontaneously. The maximally insulin-stimulated uptake of 2-deoxyglucose was significantly decreased in spontaneously diabetic NOD mice with 3 to 6 weeks duration of diabetes (10.18 +/- 0.58 v 12.80 +/- 0.44 nmol/muscle/20 min, P less than .005), while basal 2-deoxyglucose uptake was not significantly altered in them. The net insulin-stimulated uptake measured individually was also significantly reduced in spontaneously diabetic NOD mice (1.33 +/- 0.23 v 4.07 +/- 0.40 nmol/muscle/20 min, P less than .001). This was the case with STZ-diabetic ICR mice with 6 weeks duration of diabetes and STZ-diabetic NOD mice with 2 weeks and 6 weeks durations of diabetes as well. The submaximal effect of insulin on 2-deoxyglucose uptake by the soleus muscle, defined as the percent of the maximal effect achieved at 10 ng/mL of insulin, was not significantly altered in STZ-diabetic NOD mice. These data suggest that a prolonged insulinopenic state might reduce the insulin-stimulated glucose uptake in skeletal muscles by diminishing the insulin responsiveness and cause the insulin resistance in diabetic animals.

Animals↗

Chlorophyll antenna proteins of photosystem I: topology, synthesis, and regulation of the 20-kDa subunit of Chlamydomonas light-harvesting complex of photosystem I.

The light-harvesting complex of photosystem I (LHCI) was isolated from wild-type cells of Chlamydomonas reinhardtii; the Chl a/b-protein complex contains four major polypeptides of approximately 27, 26, 24, and 20 kDa (polypeptides 14, 15, 17.2, and 22, respectively, in the nomenclature for Chlamydomonas thylakoid proteins). Antiserum against the 20-kDa subunit of LHCI was prepared and used to determine the membrane topology, subcellular site of synthesis, and cell-cycle regulation of this polypeptide. The results indicate that the 20-kDa subunit as well as the other major LHCI polypeptides are integral membrane proteins. Moreover, protease digestion experiments reveal that the 20-kDa polypeptide is completely protected by the membrane bilayer but the 27- and 26-kDa LHCI polypeptides are exposed at the membrane surface. In vivo synthesis of the 20-kDa polypeptide is sensitive to cycloheximide but not to chloramphenicol; the form of the polypeptide recovered from in vitro translations of polyadenylated RNA is approximately 24 kDa, 4 kDa larger than the mature polypeptide. It is concluded that this LHCI polypeptide is nuclear encoded and synthesized in the cytoplasm as a higher molecular weight precursor. Synthesis of the 20-kDa polypeptide is restricted to the light period in light-dark synchronized cells. Translatable mRNA for this polypeptide accumulates during the light but levels are dramatically reduced during the dark period. Thus, synthesis of the 20-kDa subunit of LHCI appears to be transcriptionally regulated during the cell cycle.

Cell Cycle↗