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Biomedical subjects

K Shiota

Publications and source records attributed to K Shiota.

At least 73 records · Page 4Linked to original sources

Natriuretic peptide regulation of endochondral ossification. Evidence for possible roles of the C-type natriuretic peptide/guanylyl cyclase-B pathway.

The natriuretic peptide family consists of three structurally related endogenous ligands: atrial natriuretic peptide (ANP), brain natriuretic peptide (BNP), and C-type natriuretic peptide (CNP). The biological actions of natriuretic peptides are thought to be mediated through the activation of two guanylyl cyclase (GC)-coupled receptor subtypes (GC-A and GC-B). In this study, we examined the effects of ANP and CNP, which are endogenous ligands for GC-A and GC-B, respectively, on bone growth using an organ culture of fetal mouse tibias, an in vitro model of endochondral ossification. CNP increased the cGMP production much more potently than ANP, thereby resulting in an increase in the total longitudinal bone length. Histological examination revealed an increase in the height of the proliferative and hypertrophic chondrocyte zones in fetal mouse tibias treated with CNP. The natriuretic peptide stimulation of bone growth, which was mimicked by 8-bromo-cGMP, was inhibited by HS-142-1, a non-peptide GC-coupled natriuretic peptide receptor antagonist. The spontaneous increase in the total longitudinal bone growth and cGMP production was also inhibited significantly by HS-142-1. CNP mRNA was expressed abundantly in fetal mouse tibias, where no significant amounts of ANP and BNP mRNAs were detected. A considerable amount of GC-B mRNA was present in fetal mouse tibias. This study suggests the physiologic significance of the CNP/GC-B pathway in the process of endochondral ossification.

Animals↗

Ganglioside composition of GH3 cells: enhancement of fucoganglioside expression by estradiol, epidermal growth factor and insulin.

The GH3 cell line, a bipotential cell line secreting both prolactin (PRL) and growth hormone (GH), is a useful model for investigating GH/PRL cell lineage differentiation and anterior pituitary adenoma formation. In this study, we investigated the ganglioside composition of GH3 cells and identified two fucogangliosides as the major gangliosides expressed by these cells. Analyses by DEAE-Sephadex A-25 and thin-layer chromatography (TLC) revealed that the GH3 cells contained two major gangliosides, designated FG1 and FG2, respectively. Their structures were identified by fast atom bombardment mass spectrometry and proton nuclear magnetic resonance spectrometry: FG1 is IV2FUc alpha,II3NeuAc-GgOse4Cer and FG2 is IV2FUc alpha,IV3Gal alpha,II3NeuAc-GgOse4Cer. Expression of these fucogangliosides was enhanced by chronic treatment with 17 beta-estradiol (1 nM), epidermal growth factor (10 nM) and insulin (300 nM), which induced differentiation of GH3 cells to normal PRL-secreting cells. Interestingly, immunocytochemistry and flow cytometry revealed that the increased expression of these gangliosides reflected a quantitative change inside the cells but not on the cell surface. These results suggest that the intracellular distribution of fucogangliosides is closely related to the differentiation of GH3 cells.

Animals↗

Skeletal overgrowth in transgenic mice that overexpress brain natriuretic peptide.

Longitudinal bone growth is determined by the process of endochondral ossification in the cartilaginous growth plate, which is located at both ends of vertebrae and long bones and involves many systemic hormones and local regulators. Natriuretic peptides organize a family of three structurally related peptides: atrial natriuretic peptide, brain natriuretic peptide (BNP), and C-type natriuretic peptide. Atrial natriuretic peptide and BNP are cardiac hormones that are produced predominantly by the atrium and ventricle, respectively. C-type natriuretic peptide occurs in a wide variety of tissues, where it acts as a local regulator. These peptides can influence body fluid homeostasis and blood pressure control through the activation of two guanylyl cyclase (GC)-coupled natriuretic peptide receptor subtypes-GC-A and GC-B. We report here marked skeletal overgrowth in transgenic mice that overexpress BNP. Transgenic mice with elevated plasma BNP concentrations exhibited deformed bony skeletons characterized by kyphosis, elongated limbs and paws, and crooked tails. Bone abnormalities resulted from a high turnover of endochondral ossification accompanied by overgrowth of the growth plate. Studies using an in vitro organ culture of embryonic mouse tibias revealed that BNP increases the height of cartilaginous primordium directly, thereby stimulating the total longitudinal bone growth. The present study demonstrates that natriuretic peptides can affect the process of endochondral ossification.

Aging↗

Analysis of CpG islands of trophoblast giant cells by restriction landmark genomic scanning.

Rat trophoblast giant cells each contain at least 100 times more genomic DNA per nucleus than diploid cells. This unusual phenomenon appears to be of interest in relation to the molecular mechanism of cell differentiation and gene expression in the placenta. In the present study, we analyzed the CpG islands of trophoblast giant cells by restriction landmark genomic scanning (RLGS) using the methylation-sensitive landmark enzymes, Not I and Bss HII. More than 1,000 and 1,900 spots were detected by RLGS using Not I and Bss HII, respectively, in the placental junctional zone, where more than 90% of genomic DNA is present in the cells with higher DNA content. Of these, 97% (1,009 spots) and 99% (1,911 spots) of the spots found in the junctional zone showed an identical pattern and identical intensity with those of diploid cell controls, for which genomic DNA was extracted from the labyrinth zone and maternal kidney. Therefore, the giant cells are basically polyploid. More importantly, 24 tissue-specific spots were detected by RLGS using Not I. Subsequent cloning and sequencing of four typical spots of the genomic DNA confirmed that these DNA fragments contained abundant CpG dinucleotides and showed characteristics of CpG islands. Of these 24 spots, there were ten spots specific for the placenta, and three of them were specific for the junctional zone, indicating that methylation status of CpG islands in the placental tissue differed between the junctional zone and labyrinth zone. These results suggest that multiple rounds of endoreduplication and modification of CpG islands by cytosine methylation occur during the differentiation process of giant cells.

Animals↗

Differences in axial curvature correlate with species-specific rate of neural tube closure in embryos of chick, rabbit, mouse, rat and human.

Studies on the mouse strain curly tail, a mutant for neural tube defects, have indicated that axial curvature is an important factor in neural tube closure. Previously reported results from experimental interventions in both mouse and chick embryos indicated that curvature along the craniocaudal axis and closure of the posterior neuropore (PNP) are inversely related, a correlation that is also proposed for the rabbit embryo. It was hypothesized that this relationship is a sign of a more general mechanism. Therefore, in the present report the number of species in which axial curvature is described along the craniocaudal axis was extended to include the rat and human. Next, the closure rate of the neural tube as well as the curvature of the PNP region was determined morphometrically for embryos of the following species: chick, rabbit, mouse, rat and human. Although the relationship between neural tube closure and axial curvature appeared specific for each species in the comparative analysis, a general association of increased rate of closure with a decreased curvature emerged. It is concluded that axial curvature is an important factor in neurulation.

Animals↗

SoxD: an essential mediator of induction of anterior neural tissues in Xenopus embryos.

Vertebrate neurogenesis is initiated by the organizer factors that inhibit antineuralizing activities of bone morphogenetic proteins (BMPs) in the ectoderm. Here, we report a candidate mediator of neuralization, SoxD. Expression of SoxD starts at late blastula stages widely in the prospective ectoderm and becomes restricted to the dorsal ectoderm by mid-gastrula stages. SoxD expression is enhanced by the neural inducer Chordin and is suppressed by BMP4 and its downstream genes. Microinjection of SoxD mRNA causes ectopic formation of neural tissues in vivo and induces neural and neuronal markers in the isolated animal cap. Injection of a dominant-negative form of SoxD mRNA can block neuralization of ectoderm caused by attenuation of BMP signals and can strongly suppress formation of anterior neural tissues in vivo. These data show that SoxD functions as an essential mediator of downstream signaling of neural induction.

Amino Acid Sequence↗

Generation and characterization of a monoclonal antibody recognizing a fetal brain enriched O-linked sialoglycoprotein, FOG100.

With the aim of identifying molecules that are expressed specifically in the brain during neurogenesis, we tried to generate monoclonal antibodies which recognize molecules showing unique temporal expression patterns and molecular characteristics. We used a homogenate of the rat fetal forebrain (day 12 of fetal life, E12) as an immunogen, and antibodies which reacted with this preparation were screened by immunoblotting. One of the antibodies, Mab3C8, recognized a 100-kDa antigen that is enriched in fetal brain. This 100-kDa antigen was constantly expressed during fetal life (from E12 to E20) and became scarcely detectable two days after birth. The antigen was detected in the insoluble fraction of fetal brain and its isoelectric point ranged from 6 to 7, suggesting that it was a membrane-coupled glycoprotein. Analysis by glycosidase treatment and lectin blotting suggested that it was an O-linked glycoprotein with an alpha2,6 sialyl linkage. Thus, a molecule unique to the fetal brain, an O-linked sialoglycoprotein with a molecular mass of 100 kDa (FOG100), was found by generating an antibody.

Animals↗

Functions of the N-glycans of rat leukemia inhibitory factor expressed in Chinese hamster ovary cells.

Leukemia inhibitory factor (LIF) is a pluripotent growth factor which acts in various cell systems. LIF is a glycoprotein containing six putative N-glycosylation sites. We established Chinese hamster ovary (CHO) cell lines to evaluate the biological roles of the N-glycosylation in rat LIF (rLIF). The bioactivity of rLIF was evaluated in two different bioassay systems using F9 and DA-1a cells. Employing site directed mutagenesis, six N-glycosylation-deficient LIF mutants were generated by replacing each asparagine residue (N) (at positions N9, N34, N63, N73, N96, and N116) by glutamine (Q). The resultant mutants showed similar activity in the bioassay using F9 cells. However, N34Q was about 3 times more potent than the wild-type rLIF in the assay using DA-1a cells. These findings suggest that the presence of N-glycan at N34 suppresses cell proliferation. In contrast, N63Q was about 2.5 times less potent than the wild-type rLIF indicating the pivotal role of N63 glycosylation for rLIF bioactivity. Taken together, our data suggest that the N-glycans of LIF play different roles depending on the cell line and that glycosylation of each specific residue contributes differently to its bioactivity.

Amidohydrolases↗

Hormonal regulation of copper-zinc superoxide dismutase and manganese superoxide dismutase messenger ribonucleic acid in the rat corpus luteum: induction by prolactin and placental lactogens.

The corpus luteum expresses two enzymes that scavenge superoxide radicals and protect the cells from their toxic activities: cytosolic copper, zinc-superoxide dismutase (Cu,Zn-SOD) and mitochondrial manganese-SOD (Mn-SOD). The present study was undertaken to investigate whether the mRNA expression of each of these enzymes is regulated by luteotropic hormones. Cu,Zn-SOD and Mn-SOD mRNA levels were determined by semi-quantitative reverse transcription-polymerase chain reaction (RT-PCR). We first examined the effects of prolactin (PRL) on Cu,Zn-SOD and Mn-SOD mRNA expression in the corpus luteum. Hypophysectomy of Day 3 pregnant rats caused a sharp decline in both Cu,Zn-SOD and Mn-SOD mRNA levels, which was completely reversed by PRL administration. To further examine the effects of PRL and rat placental lactogen (rPL) on the expression of these enzymes, either primary luteinized granulosa cells or temperature-sensitive simian virus-40 transformed luteal cells (GG-CL) were cultured with different doses of PRL or rPL. These hormones induced a remarkable increase in Cu,Zn-SOD and Mn-SOD mRNA levels in both primary luteinized granulosa cells and GG-CL cells. Interestingly, whereas PRL up-regulated the expression of the SOD in luteal cells, other luteotropic hormones such as estradiol and dexamethasone inhibited both SOD mRNA expression while progesterone had no effect. In conclusion, PRL and PRL-like hormones induce a protective ability against toxic oxygen radicals by stimulating the expression of SODs, a phenomenon that may play an important role in maintaining luteal cell integrity and steroidogenic capacity.

Animals↗

Molecular cloning and characterization of a new member of the rat placental prolactin (PRL) family, PRL-like protein H.

The rat placental PRL family consists of molecules structurally similar to PRL and GH, and to date nine members have been identified. In the course of investigating late stage specific placental PRL family expression by differential display, we have isolated a complementary DNA encoding a new molecule that is highly homologous to PRL-like protein C (PLP-C) and PLP-D, and named this molecule PLP-H. The complementary DNA encoded a mature protein of 239 amino acids, including a 31-amino acid signal sequence. Sequence comparison between PLP-H and other members of the placental PRL family showed that PLP-H is highly homologous to PLP-C and PLP-D (78% and 67% homology at the amino acid level, respectively). Expression of PLP-H was similar to that of PLP-C and PLP-D; PLP-H messenger RNA (mRNA) first appeared on day 14 of pregnancy, and its expression increased until term. RT-PCR analysis showed that PLP-H as well as PLP-C and PLP-D are expressed in all rat strains examined, confirming that PLP diversity is not due to strain differences. In situ hybridization analysis indicated that PLP-H mRNA is specifically expressed in spongiotrophoblast cells and in trophoblast giant cells of the placental junctional zone. Differentiated Rcho-1 cells also expressed PLP-H mRNA, whereas undifferentiated Rcho-1 cells did not. PLP-H seems to exist as a secretory protein because its N-terminal sequence is identical to that of GH/PRL-like molecule secreted from placental explants. PLP-H contains two putative N-glycosylation sites and eight cysteine residues, of which six are highly conserved in the placental PRL family. We prepared a recombinant protein for PLP-H together with PLP-D using a COS7 transfection system. Purified PLP-H showed two bands with molecular masses of 27 and 29 kDa. Only the 27-kDa protein was detected after N-glycosidase treatment, indicating that PLP-H is a glycoprotein. PLP-H and PLP-D did not stimulate the proliferation of Nb2 lymphoma cells or the phosphorylation of Janus kinase-2 and signal transducer and activator of transcription-5. These data indicate that PLP-H and PLP-D are nonlactogenic hormones. Thus, we have cloned a new member of the PLP subfamily, PLP-H, which has features in common with PLP-C and PLP-D.

Amino Acid Sequence↗

Asparagine-linked glycosylation of the rat leukemia inhibitory factor expressed by simian COS7 cells.

The leukemia inhibitory factor (LIF) is a secretory glycoprotein and a pluripotent growth factor which acts in diverse cell systems. LIF has been reported to be heavily glycosylated. In this paper, we examine the transient expression of rat LIF (rLIF) in COS7 cells and its glycosylation by a PNGaseF treatment and lectin blot. rLIF expression in COS7 cells resulted in seven molecular species being produced with zero to six N-glycosyl moieties. Mutated rLIF proteins with substitutions at the seven possible N-glycosylation sites were also expressed. An analysis of the molecular weight of the mutated rLIF confirmed the six N-glycosylation sites. Bioassays of mouse leukemia cell lines were performed to analyze the contribution of the glycosyl moieties to their functions. We found that the glycosyl moieties at each of the N-glycosylation sites were not essential to their function of the protein, but the reduced functions to promote the proliferation of DA-1a cells that had been observed for some mutants suggests a biochemical role for the in vitro function.

Amidohydrolases↗

Evaluation of the role of N-linked oligosaccharides in rat placental lactogen action by site-directed mutagenesis.

To evaluate the role of N-linked oligosaccharides in the molecular action of rat placental lactogen (PL), recombinant PL-Im (recPL-Im) and three recPL-Im mutants were produced in COS-7 cells. The mutants, carrying Gln substitutions of Asn at putative N-glycosylation sites, were generated via site-directed mutagenesis, i.e. two single mutants (N79Q, N128Q) and one double mutant (N79Q/N128Q). Western blot analysis revealed that wild type recPL-Im had a molecular mass of 34 kDa , which was reduced to 29 kDa by tunicamycin present during expression. N79Q and N128Q had a lower molecular mass than the wild type, and a further decrease was observed for N79Q/N128Q. PL-Im was therefore N-glycosylated at both Asn79 and Asn128. Treatment of the wild type with neuraminidase caused a reduction in molecular mass, indicating that the N-linked oligosaccharides contained N-acetylneuraminic acids. In the Nb2 cell bioassay for lactogenic hormones, recPL-Im and its mutants all had growth-promoting activity but there was a decline in the growth-stimulating potency following decreases in N-glycosylation, i.e. the order of relative potencies was the wild type>N128Q> N79Q>N79Q/N128Q, suggesting that the N-linked oligosaccharides are important in the mitogenic action of the PL-Im. Wild type and all mutants had rat PRL receptor (PRL-R)-binding activity in radioreceptor assays and stimulated JAK2 phosphorylation in Nb2 cells. Interestingly however, the binding activity to PRL-R and phosphorylation of JAK2 was similar in the wild type and mutants, and these results are not in accord with the biological activity. In conclusion, the study suggested that PL-Im has two N-linked oligosaccharides which are involved in its biological activity. The ability of PL-Im to bind PRL-R and activate JAK2 appears to be independent of the N-glycosylation.

Animals↗

[Pryce type I interlobar pulmonary sequestration with anomalous return to the left inferior pulmonary vein].

A 50-year-old woman was examined because of chest discomfort. Chest X-ray films disclosed a tumorous shadow behind the heart. Chest computed tomography (CT) scans revealed a mass connected to the descending aorta, with increased blood flow in the left basal segment. The patient was admitted for further examination. Chest CT scans and cardioscintigrams were very useful as diagnostic tools, but the final diagnosis was made on the basis of angiography. An anomalous tortuous artery ran from the descending aorta into the left basal segment and returned to the left inferior pulmonary vein. The left pulmonary arterial trunk had no basal branch (A8-A10). A loop corresponding to the superior vein (V6) ran beneath the anomalous tortuous artery. To our knowledge, this is the second case of Pryce type-I interlobar pulmonary sequestration with anomalous return to the left inferior pulmonary vein to be reported in Japan. A left inferior lobectomy was performed. Histological finding from the excised tissues showed prominent interstitial fibrosis, atypical adenomatous hyperplasia, and atherosclerosis. Following surgery, the patient's PaO2 increased from 80.4 Torr to 95.8 Torr, suggesting that left inferior lobectomy was an appropriate treatment.

Bronchopulmonary Sequestration↗

Molecular cloning of rat leukemia inhibitory factor receptor alpha-chain gene and its expression during pregnancy.

Leukemia inhibitory factor (LIF) is a secreted glycoprotein and a pluripotent growth factor that acts on diverse cell systems. LIF transmits its effects via binding to transmembrane receptors, of which both high- and low-affinity forms have been identified. In this study, we analyzed the structure and expression of rat LIF receptor alpha-chain (rLIFR alpha) cDNA. A full-length clone of the cDNA encoding the membrane-bound form of rLIFR alpha protein was prepared by a combination of LA-PCR and 5' RACE using DNA reverse-transcribed from total RNA isolated from the livers of day-12 and day-14 pregnant rats as templates. The nucleotide sequence of a full-length clone was determined and further confirmed by analysis of shorter DNA fragment prepared by PCR using pfu polymerase. The gene for rLIFR alpha encodes a 1093 amino acid residue protein. The rLIFR alpha protein shows a high degree of similarity to mouse and human LIF receptor alpha-chain protein (89% and 76% amino acid sequence identities, respectively). Only one molecular species of mRNA for the rLIFR alpha gene was detected in the liver and placenta. rLIFR alpha was expressed in liver of both non-pregnant and pregnant rats. The level of mRNA for the rLIFR alpha gene in placenta was maximum on day 16 of pregnancy.

Amino Acid Sequence↗

Beneficial effects of amlodipine in a murine model of congestive heart failure induced by viral myocarditis. A possible mechanism through inhibition of nitric oxide production.

BACKGROUND: Although calcium channel blockers have not been shown to be beneficial for the treatment of patients with heart failure, a recent clinical trial demonstrated a favorable effect of amlodipine on the survival of patients with heart failure resulting from nonischemic dilated cardiomyopathy. We investigated the effects of amlodipine on a murine model of congestive heart failure induced by the M variant of encephalomyocarditis virus (EMCV). METHODS AND RESULTS: Four-week-old male DBA/2 mice were inoculated with EMCV and administered amlodipine, diltiazem, or vehicle PO for 2 weeks. The heart weight-to-body weight ratio and the histopathological grades of myocardial lesions were significantly lower and survival was significantly increased in the amlodipine-treated group (P < .01, P < .05, and P < .05, respectively) than in the control group. In vitro, amlodipine added to murine J774A.1 macrophages concomitant with EMCV inhibited nitrite formation in a concentration-dependent manner, but diltiazem did not. Furthermore, NG-monomethyl-L-arginine, an inhibitor of NO synthesis, decreased myocardial lesions significantly in this murine model. Immunohistochemistry revealed that the number of cells stained with antibody against an inducible NO synthase decreased significantly in the amlodipine-treated group compared with that in the control group (P < .01). CONCLUSIONS: Amlodipine appears to have a protective effect against myocardial injury in this animal model of congestive heart failure. The therapeutic effect of amlodipine may be in part resulting from inhibition of overproduction of NO.

Amlodipine↗

Morphological analysis of germ cell apoptosis during postnatal testis development in normal and Hsp 70-2 knockout mice.

The present study examined the occurrence of apoptotic cell death in the testis of wild-type mice from postnatal days 3 to 26 and in juvenile Hsp 70-2 knockout mice. Adult Hsp 70-2 knockout males are infertile and lack spermatids and spermatozoa (Dix et al. [1996a] Proc. Natl. Acad. Sci. U.S.A. 93:3264-3268). To identify the cell types undergoing apoptosis, we also examined the relationship between the occurrence of apoptotic cell death and the expression pattern of the Hsp 70-2 gene product (heat-shock protein 70-2 [HSP70-2]; marker for spermatocytes and spermatids), germ cell nuclear antigen 1 (GCNA1;marker for spermatogonia and spermatocytes), and vimentin (marker for Sertoli cells). This study shows that during postnatal development of the wildtype mouse testis (1) the percentage of apoptotic cell death detected by the TdT-mediated dUTP-biotin nick end labeling (TUNEL) method is higher in mice from days 8 to 22 than in younger or older mice, (2) the majority of apoptotic cells are spermatogonia and less frequently are spermatocytes, and (3) the degenerative cell death of spermatogonia and primary spermatocytes involves apoptosis with fragmentation of DNA. The analysis of apoptotic cell death in the testes of juvenile Hsp 70-2 knockout mice showed an additional increased level of apoptosis at day 17, during the first wave of spermatogenesis, in pachytene spermatocytes.

Animals↗

A novel steroid inhibitor for a rat 20alpha-hydroxysteroid dehydrogenase isozyme.

20alpha-Hydroxysteroid dehydrogenase (20alpha-HSD, E.C.1.1.1.149) in rat luteal tissue, which catalyzes conversion of progesterone to a biologically inactive steroid, 20alpha-hydroxypregn-4-ene-3-one (20alpha-OHP), suppresses progesterone secretion into the circulation. An increase in 20alpha-HSD activity in luteal tissue in rats is a prerequisite for functional corpus luteum regression. This study was undertaken to find a steroid inhibitor for ovarian cytosolic 20alpha-HSD activity among derivatives based on progesterone structure. A derivative designated as STZ26 (D-homo-16-oxa-4-androstene-3,16alpha-dione) was found to inhibit potently 20alpha-HSD activity in cultured luteal cells. Ovarian 20alpha-HSD activity consists of two isoforms (HSD1 and HSD2). Kinetic analyses of STZ26 for HSD1 and HSD2 showed that the compound suppressed only HSD1 activity by competitive inhibition. Pseudopregnant rats were treated with STZ26 from 13 to 19 days after cervical stimulation. Either an elevation of peripheral 20alpha-OHP levels or a concomitant depletion of peripheral progesterone levels at the end of pseudopregnancy was considerably inhibited in treated animals, although not completely. The results showed that STZ26 is a biologically active inhibitor for HSD1 activity in the luteal tissue and suggested that the depletion of progesterone levels toward the end of pseudopregnancy is not solely due to the elevation of HSD1 activity.

20-Hydroxysteroid Dehydrogenases↗