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Biomedical subjects

T Uno

Publications and source records attributed to T Uno.

At least 19 recordsLinked to original sources

Structural flexibility and functional versatility of mammalian P450 enzymes.

P450 enzymes have evolved into a large superfamily that displays great diversity in substrate and product specificities by fixing the natural amino acid substitutions with high frequency. Site-directed mutagenesis has been used to correlate the substitutions with the diverse specificities in various P450s. As a result, the common residues that determine the specificities of various mammalian P450s have been identified and aligned to the corresponding residues in the substrate-heme pocket of the 3-dimensional structures of bacterial P450s. The substrate-heme pocket appears to be structurally variable so that only a minor substitution (Ala -> -> Val, for example) at the critical positions is enough to define the altered specificity. Thus, the structural variability of the P450s provides the inherent versatility in acquiring a novel activity. Recent mutational studies indicate that the side chain size is the major determining factor of specificity, outweighing other factors such as polarity. Further understanding of the paradoxical characteristics observed may provide us with the underlying principles that determine P450 activities, and may lead to the ability to predict P450 activities based on the types of key amino acid residues.

Amino Acid Sequence

Nitrergic innervation of the rat larynx measured by nitric oxide synthase immunohistochemistry and NADPH-diaphorase histochemistry.

We evaluated the involvement of nitric oxide (NO) in the laryngeal innervation of rats using NADPH-diaphorase (NADPH-d) histochemistry and neuronal nitric oxide synthase (nNOS) immunohistochemistry. The findings obtained by NADPH-d histochemistry were identical with those obtained by nNOS immunohistochemistry, indicating that NADPH-d is nNOS in the laryngeal innervation system. We found NADPH-d-positive nerve fibers in every region of the larynx. In the epithelia of the mucosa, a small number of NADPH-d-positive nerve fibers were detected. The plexus of NADPH-d-positive nerve fibers was commonly found in the lamina propria, and some of these fibers were clearly associated with blood vessels. We also noted NADPH-d-positive nerve fibers in the region of laryngeal glands. Some of these fibers appeared to terminate in the glandular cells. We found NADPH-d-positive nerve fibers with varicosities in the intrinsic laryngeal muscle and free-ending nerve fibers on the muscle fiber. Motor end plate-like structures were positive for NADPH-d histochemistry. The NADPH-d-positive nerve fibers appeared to terminate at motor end plate-like structures in two of nine rats examined. A cluster of NADPH-d-positive neurons were occasionally present in the lamina propria of the laryngeal mucosa, in the connective tissue between the thyroid cartilage and intrinsic laryngeal muscle, and in the connective tissue near the cricoarytenoid joint. The present findings suggest that NO participates in the autonomic, sensory, and motor innervation of the larynx.

Animals

NADPH-diaphorase and nitric oxide synthase in the canine superior cervical ganglion.

By means of NADPH-diaphorase (NADPH-d) histochemistry and nitric oxide synthase (NOS) immunohistochemistry, we demonstrate that considerable numbers of NADPH-d-positive neurons are distributed throughout the canine superior cervical ganglion (SCG). These neurons also show NOS immunoreactivity. This finding indicates that NADPH-d histochemistry, a simple and reliable technique, can be used as a reliable marker of NOS activity in the sympathetic innervation of canine head and neck. The present findings suggest that the participation of nitric oxide in the SCG differs greatly between species.

Amino Acid Oxidoreductases

Neurotransmitters for the canine inferior pharyngeal constrictor muscle.

The inferior pharyngeal constrictor muscle plays an important role at the pharyngeal phase of deglutition and is anatomically composed of the thyropharyngeal muscle and cricopharyngeal muscle. In this study we investigated the distribution pattern of neuropeptidergic and catecholaminergic nerve fibers in the thyropharyngeal muscle and cricopharyngeal muscle of seven puppies by immunohistochemistry. Some of the calcitonin gene-related peptide-, substance P-, vasoactive intestinal polypeptide-, and tyrosine hydroxylase-immunoreactive nerve fibers were found to lie parallel to the muscle fibers in both the thyropharyngeal muscle and cricopharyngeal muscle. Nerve fibers with immunoreactivity to all substances examined were found to be associated with blood vessels in both the thyropharyngeal muscle and cricopharyngeal muscle, and the number of calcitonin gene-related peptide, neuropeptide Y, and tyrosine hydroxylase nerve fibers was higher than the number of substance P, vasoactive intestinal polypeptide, and galanin nerve fibers. Motor end plate-like structures with calcitonin gene-related peptide immunoreactivity were found in both the thyropharyngeal muscle and cricopharyngeal muscle. These structures in the cricopharyngeal muscle were clearly less than those in the thyropharyngeal muscle. Some clusters of neurons were detected only in the cricopharyngeal muscle of all dogs examined. Substance P-, vasoactive intestinal polypeptide-, galanin-, and neuropeptide Y-immunoreactive neurons were found in this ganglion, and the vasoactive intestinal polypeptide-immunoreactive neurons were the most abundant. Abundant calcitonin gene-related peptide- and vasoactive intestinal polypeptide-immunoreactive nerve fibers, and some substance P- and galanin-immunoreactive nerve fibers were distributed in the ganglion.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

A high degree of sequence homology in the putative carbohydrate recognition domains of pokeweed mitogen and wheat germ agglutinin: poly-N-acetyllactosamine-binding lectins from different species.

The complete amino acid sequence of a poly-N-acetyllactosamine-binding pokeweed mitogen 4 (Pa-4) was determined using a protein sequencer. After digestion of Pa-4 with endoproteinase Lys-C, Asp-N, Arg-C or Glu-C, the resulting peptides were separated by reversed-phase high-performance liquid chromatography (HPLC) and then subjected to sequence analysis using a protein sequencer. The complete amino acid sequence of Pa-4 was found to exhibit a high degree of homology with that of wheat germ agglutinin (WGA) regarding their overall sequences and the spatial arrangement of cysteine-glycine. Furthermore, the amino acid residues of WGA directly involved in carbohydrate-binding sites were found in the homologous region in Pa-4. This is the first report to show that lectins from different plant families (Phytolaccaceae for Pa-4 and Gramineae for WGA) possess homologous primary sequences.

Amino Acid Sequence

Synthesis of 2(1H)-quinolinone derivatives and their inhibitory activity on the release of 12(S)-hydroxyeicosatetraenoic acid (12-HETE) from platelets.

A search for potent inhibitors of release of 12(S)-hydroxyeicosatetraenoic acid (12-HETE), which plays an important role in the pathogenesis of various circulatory disorders and arteriosclerosis, led us to 6-[4-(1-cyclohexyl-5-tetrazolyl)butoxy]-3,4-dihydro-2(1H)-quinolinone (cilostazol) and 2(1H)-quinolinone derivatives having an azole group in the side chain. Many 2(1H)-quinolinone derivatives were synthesized and tested in vitro for the inhibitory activity in human platelets. 3,4-Dihydro-6-[3-(1-o-tolylimidazol-2-yl)sulfinylpropoxy]-2( 1H)-quinolinone (5k) was found to be one of the most potent inhibitors of 12-HETE release, being more potent than esculetin. In addition, the sulfoxide 5k showed in vivo inhibitory activity on platelet adhesion in rats. Since 5k is racemic, the enantiomers were prepared and their potencies were compared in vitro and in vivo. (S)-(+)-5k had the best pharmacological profile and was selected as a candidate drug for further development. The structure-activity relationships are discussed.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Molecular characteristics of porcine thymus histone H1 variants.

We constructed an assay system to measure the annealing activity that is one of the functional features of nuclear proteins, using ssDNAs derived from M13 phage recombinants which contained a complementary 406-bp portion each. Histone H1 variants were purified from porcine thymus by separation of chromatin, extraction with 5% perchloric acid, and reversed-phase HPLC. Three types of histone H1 variants were found by analysis of amino acid composition and on SDS-PAGE. All of these could promote the annealing. According to Hill's analysis all had similar numbers of binding sites to DNA strands but dissociation constants and annealing activity were different. The number of binding sites, dissociation constants, and annealing activity were changed by dephosphorylation of histone H1 variants. This result suggests that histone H1 variants have different affinities for DNA molecules and ssDNA-annealing activity, which is regulated by phosphorylation.

Amino Acids

[Evaluation of compression radiotherapy in pelvic treatment].

In pelvic irradiation, the volume of irradiated small intestine is one of the major factors responsible for both acute and late gastrointestinal complications. In this study, exclusion of the small intestine from the pelvic radiation field was attempted with lower abdominal wall compression and bladder distention in the prone position. The mobility of intrapelvic and several problems associated with this technique were investigated. In our results, the small intestine was effectively moved outside of the whole pelvic radiation field in all but two patients. Treatment interruption of 2 days was observed in only two patients. With the AP/PA opposing field method the abdominal skin dose near the compression pillow was revealed to be higher and the dose at the isocenter was inhomogeneous; thus, a three- or four-field technique is recommended if abdominal wall compression is used.

Adult

Expanding the scope of RNA catalysis.

The basic notions of transition state theory have been exploited in the past to generate highly selective catalysts from the vast library of antibody molecules in the immune system. These same ideas were used to isolate an RNA molecule, from a large library of RNAs, that catalyzes the isomerization of a bridged biphenyl. The RNA-catalyzed reaction displays Michaelis-Menten kinetics with a catalytic rate constant (kcat) of 2.8 x 10(-5) per minute and a Michaelis constant (Km) of 542 microM; the reaction is competitively inhibited by the planar transition state analog with an inhibition constant (Ki) value of approximately 7 microM. This approach may provide a general strategy for expanding the scope of RNA catalysis beyond those reactions in which the substrates are nucleic acids or nucleic acid derivatives.

Base Sequence

Resonance Raman and Fourier transform infrared studies on the subunit I histidine mutants of the cytochrome bo complex in Escherichia coli. Molecular structure of redox metal centers.

The cytochrome bo complex is a heme-copper terminal ubiquinol oxidase in the aerobic respiratory chain of Escherichia coli. Site-directed mutagenesis studies were greatly successful in identifying ligands of the redox centers in the oxidase (Minagawa, J., Mogi, T., Gennis, R. B., and Anraku, Y. (1992) J. Biol. Chem. 267, 2096-2104). In the present study, resonance Raman and Fourier transform infrared spectroscopies were applied to the subunit I histidine mutant oxidases, and the active-site structure was studied in detail. In the dithionite-reduced state, the wild-type oxidase and the His-284-->Ala and His-333-->Ala mutant oxidases showed two Raman lines (v3) at approximately 1492 and 1472 cm-1, which are attributable to low- and high-spin heme components, respectively. The Ala substitutions at His-106 and His-421 reduced the low-spin line, whereas the His-419-->Ala mutation eliminated the high-spin line. This indicates that His-106 and His-421 are the axial ligands of the low-spin heme B, while His-419 acts as a proximal ligand of the high-spin heme O. The v(Fe-CO) stretching frequency in the wild-type oxidase down-shifted from 523 to 498 cm-1 in the CuB-deficient mutant oxidase (His-333-->Ala), while the v(C-O) stretching frequency up-shifted from 1960 to 1970 cm-1. These frequency differences were ascribed to the contribution from the reduced CuB at the binuclear center. It may indicate that delocalization of electrons at the CuB center toward the heme O iron is facilitated by a bridge ligand structure at the binuclear center and is essential for driving dioxygen reduction chemistry, and therefore, redox-coupled proton pumping.

Alanine

Investigation of melena and hematochezia as the chief complaint of gastrointestinal bleeding in pediatric surgical patients.

The causes of melena or hematochezia in 48 pediatric patients were examined. Malrotation with volvulus was an important cause of hemorrhage during the newborn period, and intussusception was very typical in patients aged from 1 month to 1 year. Polyps of the rectum and colon were the most common causes of melena or hematochezia in patients older than 1 year. No cause of melena or hematochezia could be identified in 11 children. Ten patients have remained in good health with no further episodes of melena or hematochezia. Localized multiple polyps of the rectum with focal carcinoma were detected in only one patient. In general, although no further investigation is required after detection of the cause of bleeding and its successful treatment, it should be kept in mind that gastrointestinal malignancy can occur in children.

Adolescent

Neuropeptide participation in canine laryngeal sensory innervation. Immunohistochemistry and retrograde labeling.

We investigated the quantitative participation of calcitonin gene-related peptide (CGRP), substance P (SP), and leu-enkephalin (ENK) in canine laryngeal sensory innervation by immunohistochemistry in combination with retrograde labeling using the recently introduced retrograde tracer cholera toxin subunit B-conjugated gold (CTBG). In the nodose ganglion, neurons labeled from the internal branch of the superior laryngeal nerve with CTBG were investigated immunohistochemically by means of antisera against CGRP, SP, and ENK. The percentages of neurons immunoreactive to each neuropeptide were as follows: CGRP 81.5%, SP 24.5%, and ENK 7.0%. These results suggest that CGRP is the main sensory neurotransmitter in canine laryngeal sensory innervation.

Animals

Hemin binding to DNA with bis-dentate acridine intercalator.

Hemin was covalently connected to two 9-aminoacridines (9AA) through its two propionates, and the binding properties of this bis-dentate compound (hemin(9AA)2) to DNA were examined by visible absorption spectroscopy. The binding affinity of the hemin(9AA)2 was found to be higher than that of the hemin, and this should be attributed to the two linked acridine moieties. The binding constant (K) and the number of binding sites per nucleotide (n) were estimated by Scatchard plot analyses. Though the order of the K value of hemin(9AA)2 was similar to that of 9AA, the hemin(9AA)2 was analyzed to have a smaller n value, the order of which was of about 10(-4). The small n value may reflect the sequence specificity of the bis-dentate hemin(9AA)2 on binding to the DNA.

Aminacrine

Calcitonin gene-related peptide-like immunoreactive motoneurons innervating the canine inferior pharyngeal constrictor muscle.

The percentage of the calcitonin gene-related peptide-immunoreactive motoneurons (Mn) in the nucleus ambiguus (NA) innervating the canine inferior pharyngeal constrictor muscle was examined using the cholera toxin B subunit-gold (CTBG) as a retrograde tracer and by immunohistochemistry. Labeled neurons with CTBG (CTBG MNs) from the thyropharyngeal muscle (TP) were located in the dorsomedial division of the rostral part of the NA and the average percentage of neurons with CGRP immunoreactivity was 70.3%. CTBG MNs from the cricopharyngeal muscle (CP) were located in the dorsal division of the rostral part of the NA and the average percentage of neurons with CGRP immunoreactivity was 21.2%. This low percentage of CGRP immunoreactivity is noteworthy and supports the idea that the CP is a particular striated muscle in function and innervation manner.

Animals

[Intra-ocular pressure changes during laparoscopic cholecystectomy].

Intra-ocular pressure (IOP) was measured during laparoscopic cholecystectomy (n = 20) under continuous epidural block and nitrous oxide-oxygen anesthesia. There was a slight but significant increase in IOP and peak airway pressure when the abdominal CO2 insuffration was started, and the IOP recovered to the preoperative level after the postural change to the head-up position. It was not associated with any significant change in mean arterial pressure and end-tidal CO2. In one ocular hypertension case undergoing laparoscopic chorecystectomy and appendectomy, however, there was profound increase in IOP during abdominal CO2 insuffration with head down position. We speculate that it was due to the effect of increased CVP with abdominal CO2 insuffration and postural change on the IOP. Thus the laparoscopic operation with head-down position should be avoided in patients with ocular hypertension.

Anesthesia, Epidural

Intracranial blood flow measured with single photon emission computer tomography (SPECT) during transient -6 degrees head-down tilt.

Regional cerebral blood flow (CBF) during a transient head-down tilt of -6 degrees (-6 degrees HDT) was measured with single photon emission computer tomography (SPECT). CBF was measured and averaged for both sides of the brain areas; e.g., the bilateral anterior cerebral artery (bACA) area, the middle cerebral artery (bMCA) area, the posterior cerebral artery (bPCA) area, bilateral basal ganglia, and the cerebellum. Among these areas, a significant increase in CBF was observed in the basal ganglia and the cerebellum during -6 degrees HDT compared to pre-HDT. When CBF was measured separately in the left or right brain area, these significances disappeared, although a trend of increase or decrease was still observable. A trend of increase was observed in the left anterior cerebral artery (IACA) area, the right middle cerebral artery (rMCA) area, the right posterior cerebral artery (rPCA) area, the left and right basal ganglia, and the cerebellum. In rACA, IMCA and IPCA areas, a slight decrease in CBF was observed. At the same time, cardiac parameters were measured. Heart rate (HR), stroke volume (SV) and cardiac output (CO) did not change significantly, although SV slightly increased and HR slightly decreased during -6 degrees HDT.

Adult

Cytochrome d axial ligand of the bd-type terminal quinol oxidase from Escherichia coli.

Using various spectroscopic techniques, we studied the structure of the dioxygen reduction site of the bd-type terminal quinol oxidase in the aerobic respiratory chain of Escherichia coli. Resonance Raman and FT-IR spectroscopies identified the v(Fe(2+)-CO) and v(C-O) stretching frequencies at 471 and 1980.7 cm-1, respectively, at the cytochrome d center of the dithionite-reduced CO-bound enzyme. The CO ligation in the cytochrome bd complex is considerably different from those of the heme-copper terminal oxidases. Anaerobic addition of NO to the air-oxidized enzyme caused an exchange of cytochrome d-bound dioxygen with NO leading to an appearance of cytochrome d-NO EPR signal. But there is no superhyperfine structure originating from the cytochrome d proximal 14N ligand in the central resonance of the NO EPR signal. These results suggest that cytochrome d axial ligand of the cytochrome bd complex is likely a histidine residue in an anomalous condition or other than a histidine residue and, therefore, the molecular structure around the dioxygen-binding site is different from that of the heme-copper terminal oxidases.

Binding Sites