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A Kato

Publications and source records attributed to A Kato.

At least 145 records · Page 8Linked to original sources

An RNA-binding protein, AtRBP1, is expressed in actively proliferative regions in Arabidopsis thaliana.

A cDNA clone, named XF41, that encodes an RNA-binding protein was isolated from Arabidopsis thaliana. The deduced protein, named AtRBP1, contains two conserved consensus sequence-type RNA-binding domains (CS-RBDs) in the N-terminal half, a putative PY motif (a target of a WW domain) in the center, and uncharacterized C-terminal domain. A binding assay demonstrated that the AtRBP1 can bind to single-stranded nucleic acids in vitro. Analysis of localization of the GUS activity of transgenic Arabidopsis thaliana plants that have the chimeric gene containing the upstream sequence of the AtRBP1 gene and GUS gene demonstrated that the AtRBP1 gene is expressed in meristematic tissues such as the vegetative shoot apex and root tips, developing organs such as floral buds and pistils of young flowers, abscission layers of immature siliques and junctions of pedicels. Considering the specificity of the expression, AtRBP1 may be required in the progress of cell proliferation.

Amino Acid Sequence↗

Viral mutation accelerated by nitric oxide production during infection in vivo.

Nitric oxide (NO), superoxide (O(2)(-)), and their reaction product peroxynitrite (ONOO(-)) are generated in excess during a host's response against viral infection, and contribute to viral pathogenesis by promoting oxidative stress and tissue injury. Here we demonstrate that NO and peroxynitrite greatly accelerates the mutation of Sendai virus (SeV), a nonsegmented negative-strand RNA virus, by using green fluorescent protein (GFP) inserted into and expressed by a recombinant SeV (GFP-SeV) as an indicator for mutation. GFP-SeV mutation frequencies were much higher in the wild-type mice than in those lacking inducible NO synthase, suggesting that mutation of the virus in vivo is NO dependent. High levels of NO and NO-mediated oxidative stress were induced by GFP-SeV infection in the lung of the wild-type mice, but not in the iNOS-deficient mice, as evidenced by electron spin resonance spectroscopy and immunohistochemical analysis for nitrotyrosine formation as well as histopathological examination. Furthermore, peroxynitrite, an NO-derived reactive nitrogen intermediate, enhanced viral mutation in vitro. These results indicate that the oxidative stress induced by NO produced during the natural course of viral infection increases mutation, expands the quasispecies spectrum, and facilitates evolution of RNA viruses.

Animals↗

Versatility of the accessory C proteins of Sendai virus: contribution to virus assembly as an additional role.

The P/C mRNA of Sendai virus (SeV) encodes a nested set of accessory proteins, C', C, Y1, and Y2, referred to collectively as C proteins, using the +1 frame relative to the open reading frame of phospho (P) protein and initiation codons at different positions. The C proteins appear to be basically nonstructural proteins as they are found abundantly in infected cells but greatly underrepresented in the virions. We previously created a 4C(-) SeV, which expresses none of the four C proteins, and concluded that the C proteins are categorically nonessential gene products but greatly contribute to viral full replication and infectivity (A. Kurotani et al., Genes Cells 3:111-124, 1998). Here, we further characterized the 4C(-) virus multiplication in cultured cells. The viral protein and mRNA synthesis was enhanced with the mutant virus relative to the parental wild-type (WT) SeV. However, the viral yields were greatly reduced. In addition, the 4C(-) virions appeared to be highly anomalous in size, shape, and sedimentation profile in a sucrose gradient and exhibited the ratios of infectivity to hemagglutination units significantly lower than those of the WT. In the WT infected cells, C proteins appeared to colocalize almost perfectly with the matrix (M) proteins, pretty well with an external envelope glycoprotein (hemagglutinin-neuraminidase [HN]), and very poorly with the internal P protein. In the absence of C proteins, there was a significant delay of the incorporation of M protein and both of the envelope proteins, HN and fusion (F) proteins, into progeny virions. These results strongly suggest that the accessory and basically nonstructural C proteins are critically required in the SeV assembly process. This role of C proteins was further found to be independent of their recently discovered function to counteract the antiviral action of interferon-alpha/beta. SeV C proteins thus appear to be quite versatile.

Animals↗

A cytoplasmic RNA vector derived from nontransmissible Sendai virus with efficient gene transfer and expression.

We have recovered a virion from defective cDNA of Sendai virus (SeV) that is capable of self-replication but incapable of transmissible-virion production. This virion delivers and expresses foreign genes in infected cells, and this is the first report of a gene expression vector derived from a defective viral genome of the Paramyxoviridae. First, functional ribonucleoprotein complexes (RNPs) were recovered from SeV cloned cDNA defective in the F (envelope fusion protein) gene, in the presence of plasmids expressing nucleocapsid protein and viral RNA polymerase. Then the RNPs were transfected to the cells inducibly expressing F protein. Virion-like particles thus obtained had a titer of 0.5 x 10(8) to 1. 0 x 10(8) cell infectious units/ml and contained F-defective RNA genome. This defective vector amplified specifically in an F-expressing packaging cell line in a trypsin-dependent manner but did not spread to F-nonexpressing cells. This vector infected and expressed an enhanced green fluorescent protein reporter gene in various types of animal and human cells, including nondividing cells, with high efficiency. These results suggest that this vector has great potential for use in human gene therapy and vaccine delivery systems.

Animals↗

Involvement of the zinc-binding capacity of Sendai virus V protein in viral pathogenesis.

The V protein of Sendai virus (SeV) is nonessential to virus replication in cell culture but indispensable to viral pathogenicity in mice. The highly conserved cysteine-rich zinc finger-like domain in its carboxyl terminus is believed to be responsible for this viral pathogenicity. In the present study, we showed that the cysteine-rich domain of the SeV V protein could actually bind zinc by using glutathione-S-transferase fusion proteins. When the seven conserved cysteine residues at positions 337, 341, 353, 355, 358, 362, and 365 were replaced individually, the zinc-binding capacities of the mutant proteins were greatly impaired, ranging from 22 to 68% of that of the wild type. We then recovered two mutant SeVs from cDNA, which have V-C(341)S and V-C(365)R mutations and represent maximal and minimal zinc-binding capacities among the corresponding mutant fusion proteins, respectively. The mutant viruses showed viral protein synthesis and growth patterns similar to those of wild-type SeV in cultured cells. However, the mutant viruses were strongly attenuated in mice in a way similar to that of SeV V(DeltaC), which has a truncated V protein lacking the cysteine-rich domain, by exhibiting earlier viral clearance from the mouse lung and less virulence to mice. We therefore conclude that the zinc-binding capacity of the V protein is involved in viral pathogenesis.

Amino Acid Sequence↗

Angiotensin II increases vasopressin-stimulated facilitated urea permeability in rat terminal IMCDs.

Angiotensin II receptors are present along the rat inner medullary collecting duct (IMCD), although their physiological role is unknown. Because urea is one of the major solutes transported across the terminal IMCD, we measured angiotensin II's effect on urea permeability. In the perfused rat terminal IMCD, angiotensin II had no effect on basal urea permeability but significantly increased vasopressin-stimulated urea permeability by 55%. Angiotensin II, both without and with vasopressin, also increased the amount of (32)P incorporated into urea transporter (UT)-A1 in inner medullary tissue exposed to these hormones ex vivo. Because angiotensin II activates protein kinase C, we tested the effect of staurosporine (SSP). In the absence of angiotensin II, SSP had no effect on vasopressin-stimulated urea permeability in the perfused terminal IMCD. However, SSP completely and reversibly blocked the angiotensin II-mediated increase in vasopressin-stimulated urea permeability. SSP and chelerythrine reduced the angiotensin II-stimulated (32)P incorporation into UT-A1 in inner medullary tissue exposed ex vivo. We conclude that angiotensin II increases vasopressin-stimulated facilitated urea permeability and (32)P incorporation into the 97- and 117-kDa UT-A1 proteins via a protein kinase C-mediated signaling pathway. These data suggest that angiotensin II augments vasopressin-stimulated facilitated urea transport in the rat terminal IMCD and may play a physiological role in the urinary concentrating mechanism by augmenting the maximal response to vasopressin.

Angiotensin II↗

Application of a newly developed photoluminescence glass dosimeter for measuring the absorbed dose in individual mice exposed to low-dose rate 137Cs gamma-rays.

A photoluminescence glass dosimeter, GD-301, was applied to the measurement of low absorbed doses in mice exposed to low-dose rate 137Cs gamma-rays. The dosimeter system consists of small rod-shaped glass chip detectors capable of embedded in the body of a mouse and an automatic readout device equipped with a standard detector irradiated with 137Cs gamma-source. The measured absorbed doses were compared with the "exposure" estimated by an ionization chamber and with the doses measured by a BeO:Na thermoluminescence system. The results clearly demonstrate the superiority of the glass dosimetry regarding simplicity of operation, stability of long-term dose accumulation and good detector uniformity, which allow accurate tissue dosimetry.

Animals↗

Transcription of emrKY is regulated by the EvgA-EvgS two-component system in Escherichia coli K-12.

Spontaneous mutations have been isolated in Escherichia coli that result in the constitutive expression of an emrKY promoter. These mutations were found to be single-nucleotide substitutions within the linker region of the sensor protein EvgS, which is part of a two-component regulatory system along with EvgA. In the linker mutants (evgSI and evgS4), emrKY expression became constitutive and MIC against sodium deoxycholate was 20 mg/ml, eight-fold higher than in the wild type. Furthermore, the start site of transcription from the promoter of emrKY was identified; EvgA was shown to bind at the -52 to -84 region by the footprinting experiment.

Amino Acid Sequence↗

Green fluorescent protein gene insertion of Sendai Virus infection in nude mice: possibility as an infection tracer.

The green fluorescent protein (GFP) marker from jellyfish Aequorea victoria is considered to have potential use in the study of host-pathogen relationships, by tracing infections in living cells, organs and animals. We compared the pathogenicity of Sendai virus with an inserted GFP gene (GFP-SeV) with that of its wild-type (Wt-SeV) to determine the usefulness of the recombinant virus in long-term infection of BALB/c nude (nu/nu) mice. The results indicated that the presence of GFP in infected cells could be analyzed easily and sensitively. GFP helped in identifying and in understanding the cellular sites of viral replication in vitro and in vivo. However, the GFP insertion into the Wt-SeV genome, led to decreased pathogenicity, altering the in vivo viral kinetics.

Animals↗

Transport of peroxisomal proteins synthesized as large precursors in plants.

Plant peroxisomes contain at least four proteins, namely, citrate synthase, malate dehydrogenase, long-chain acyl-CoA oxidase, and 3-ketoacyl-CoA thiolase, which are synthesized as large precursors with an N-terminal cleavable presequence. Each presequence has a conserved domain (R[I/L/Q]-X5-HL) that is homologous to peroxisomal targeting signal 2 from mammals and yeasts. In addition, a cysteine residue is found at the C-terminal ends of the presequences, whose function has not yet been described. The authors analyzed the function of the presequences and the conserved amino acids using transgenic Arabidopsis plants, which accumulate beta-glucuronidase carrying the presequence of the peroxisomal proteins from plants. Immunological and immunocytochemical studies on the transgenic plants showed that a conserved sequence in the extrapeptides is essential for targeting to peroxisomes, and a cysteine residue at the cleavage site is involved in the processing of the presequence. These results suggest that the presequences of the peroxisomal proteins function as targeting signals, and are necessary for the recognition of the processing.

Amino Acid Sequence↗

Functional transformation of plant peroxisomes.

Peroxisomes in higher plant cells are known to differentiate into at least three different classes, namely, glyoxysomes, leaf peroxisomes, and unspecialized peroxisomes, depending on the cell types. In germinating fatty seedlings, glyoxysomes that first appear in the etiolated cotyledonary cells are functionally transformed into leaf peroxisomes during greening. Subsequently, the organelles are transformed back into glyoxysomes during senescence of the cotyledons. Flexibility of function is a distinct feature of plant peroxisomes. This article briefly describes recent studies of the regulatory mechanisms involved in the changes of the function of plant peroxisomes.

Adaptation, Biological↗

Collaborative work to evaluate toxicity on male reproductive organs by repeated dose studies in rats 11). Testicular toxicity of 2- or 4-week repeated or single-dose administration of a novel platinum complex.

A novel platinum complex, compound C, developed as an antitumor agent, was intravenously administered at 10 mg/kg/day to 6-week-old and 8-week-old rats. After 4 weeks of administration to the former, testicular enlargement was observed at a similar incidence as testicular atrophy and dilatation or atrophy of the seminiferous tubules was observed. Degeneration/necrosis of the seminiferous epithelium, decrease of seminiferous epithelium, formation of multinucleated giant cells, and vacuolar degeneration of Sertoli cells were also seen. These lesions were more marked in seminiferous tubules with atrophy than in those without atrophy. After 2-week administration to 8-week-old rats, slight initial-phase findings such as dilatation of seminiferous tubules and degeneration/necrosis of the seminiferous epithelium were noted in all rats. In rats administered 20 mg/kg/day, for which the administration period was shortened to 1 week due to marked weight loss, very slight initial lesions were similarly observed. However, these lesions were not easy to detect in these rats. Following single administration of a sublethal dose (80 mg/kg), testicular lesions were clearly observed 14 days after administration, but the incidence and grade of lesions were very low at 7 days. In conclusion, testicular toxicity of compound C can be clearly detected after 2-week administration, although the progression of lesions differed from the case with 4-week administration.

Animals↗

Identification and characterization of the gene encoding the mitochondrial elongation factor G in rice.

A plant nuclear gene coding for a mitochondrial elongation factor G (mEF-G) was cloned from a cDNA library and genomic library of rice (Oryza sativa L.). This DNA sequence predicts a 757-amino-acid protein exhibiting 79%, 55% and 49% homology to Arabidopsis thaliana, Saccharomyces cerevisiae and rat mEF-G respectively, 53% homology to the elongation factor G in Escherichia coli and 43% homology to soybean chloroplast elongation factor G. The deduced amino acid sequence contains the characteristic motifs shared by all GTP binding proteins. Comparison of the sequence of the genomic clone to that of the cDNA clone revealed that this gene is split nineteen times by introns, although the gene of Arabidopsis is split seventeen times by introns. Some of the introns found in the rice genome are relatively long and they result in a long gene with a size of approximately 15 kb.

Amino Acid Sequence↗

[Parathyroid function after total or subtotal thyroidectomy].

Postoperative parathyroid function was evaluated in 24 total thyroidectomy and 8 subtotal thyroidectomy patients seen by our department between January 1995 and July 1997. Parathyroid function was assessed by measuring the level of serum intact parathyroid hormon (intact-PTH). Hypoparathyroidism was avoided in 23 patients (95.8%) who received a total thyroidectomy and in 7 patients (87.5%) who received a subtotal thyroidectomy. Supplementary therapy for hypoparathyroidism was not required as long as the blood supply to more than two parathyroid glands was preserved. Half of the patients in this study did not require any postoperative supplementary therapy. Thus, the preservation of more than two parathyroid glands is essential for the prevention of hypoparathyroidism. In cases where the parathyroid glands had been resected, parathyroid gland transplantation were performed. In all cases, supplementary therapy was eventually no longer required. In two cases requiring supplementary therapy, a normal range of parathyroid activity was observed 30 months after surgery. The administration of vitamin D3 may suppress the recovery of parathyroid function in patients recieving parathyroid transplantations.

Biomarkers↗

Use of a temporary caval filter in a young man with pulmonary embolism to prevent migration of massive caval thrombus during an attempt of caval thrombolysis.

A 33 year old male with no known risk factors for hypercoagulability developed a massive thrombi in the inferior vena cava (IVC). The patient had a history of both pulmonary embolism and embolism related syncope. The thrombus which extended proximally to the level of the renal vein and distally to the left superficial femoral vein did not respond to anticoagulant therapy or thrombolysis. Thirteen days after admission, we decided to use a temporary caval filter to provide protection from migration of the thrombus while attempting invasive thrombolytic therapy, which was performed using a tissue type plasminogen activator through a coaxial catheter of the temporary filter. This resulted in a marked decrease in the size of the thrombus, and multiple thrombi were found to be trapped in the temporary filter. Although the temporary caval filter was effective in capturing emboli, resulting in a decrease in the thrombus size, the thrombus was not completely dissolved within two weeks, which is the maximal implantation time. A permanent filter was eventually used to prevent pulmonary embolism, which could arise from the remaining thrombus. We have found placement of a temporary caval filter to be a safe and effective adjunct, in select cases, when attempting thrombolysis of massive thrombi in the IVC. Since we inserted the temporary filter 13 days after admission, use of a temporary filter during thrombolysis may have been more effective if conducted earlier in our patient's clinical course.

Adult↗

[Rapidly progressive, refractory eosinophilia with a 250,000/microliter eosinophil count].

A 31-year-old man had received corticosteroids for 20 months for treatment of a brain tumor, and his blood eosinophil count ranged from 100/microliter to 1,000/microliter. On June 24th, 1998, he was re-admitted because of dyspnea secondary to left massive pleural effusion. Peripheral blood examination revealed an eosinophil count of 48,000/microliter. The eosinophils were hypersegmented, with abnormal distribution of eosinophilic granules and formation of cytoplasmic vacuoles. Blasts and basophils were not increased, hemoglobin was 13.4 g/dl, and the platelet count was 79,000/microliter. Bone marrow was slightly hypercellular with 55% eosinophils and 0.2% blasts. The patient's karyotype was normal, and Wilms' tumor gene was not detected. Serum IgE was normal and serum vitamin B12 and soluble IL-2 receptor were elevated. Serum levels of eosinophilopoietic cytokines, IL-3, IL-5, and GM-CSF, were low. Specimens of pleural fluid contained many eosinophils. Because the eosinophil count increased to 110,000/microliter on July 2nd, hydroxyurea was started without effect. On July 16th, the eosinophil count reached 167,000/microliter, and vincristine was added. The eosinophil count rose to 253,000/microliter the next day, and cytarabine and daunorubicin were administered, but the patient died of septic shock. Although the clinical course suggested eosinophilic leukemia, monoclonal proliferation of eosinophils was not demonstrated. To our knowledge, this is the highest peripheral blood eosinophil count reported in the literature to date.

Adult↗

Mechanism-based inactivation of human dihydropyrimidine dehydrogenase by (E)-5-(2-bromovinyl)uracil in the presence of NADPH.

Purified recombinant human dihydropyrimidine dehydrogenase (hDPD) was incubated with (14)C-labeled (E)-5-(2-bromovinyl)uracil ([(14)C]BVU) in the presence of NADPH to investigate a possible mechanism in the 18 patient deaths caused by interactions of 5-fluorouracil prodrugs with the new oral antiviral drug, sorivudine. BVU is formed from sorivudine by gut flora and absorbed through intestinal membrane. hDPD, a rate-limiting enzyme for the catabolism of 5-fluorouracil and endogenous pyrimidines in the human, was NADPH dependently radiolabeled and inactivated by [(14)C]BVU. Two radioactive tryptic fragments, I and II, isolated from radiolabeled hDPD were found by complete amino acid sequencing to originate from a common regional amino acid sequence located at positions 656 (Lys) to 678 (Arg) for I and positions 657 (Ser) to 678 (Arg) for II. However, only Cys(671), which should be present in the peptides, was not identified by amino acid sequencing. Mass spectrometric analysis of the tryptic fragments indicated that the sulfhydryl group of Cys(671) in the hDPD was modified with 5, 6-dihydro-5-(2-bromoethylydenyl)uracil (BEDU), a putative allyl bromide type of reactive molecule, to form a sulfide bond with loss of hydrogen bromide. The Cys(671) sulfide bearing the debrominated BEDU had a 5,6-dihydrouracil ring highly strained by the exocyclic double bond at the 5-position, so that it underwent facile hydrolytic ring fission with alkali and heated acid treatments. A new proposal is also made for the amino acid sequence of the pyrimidine-binding domain, including Cys(671), of DPD in the human and other species.

Amino Acid Sequence↗