Search Results - "YAMASHITA, Kayoko"
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Urinary fatty acids and liver-type fatty acid binding protein in diabetic nephropathy
Published in Nephron. Clinical practice (01-01-2009)“…The aims of this clinical study were to investigate the associations of urinary free fatty acid (FFA) levels with tubulointerstitial damage, and to determine…”
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2
Contribution of mitogen-activated protein kinases to NMDA-induced neurotoxicity in the rat retina
Published in Brain research (24-05-2005)“…We examined the contributions of the mitogen-activated protein kinases (MAPKs) family [extracellular signal-regulated kinase (ERK), p38 kinase (p38), and c-Jun…”
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3
Three distinct anti-allergic drugs, amlexanox, cromolyn and tranilast, bind to S100A12 and S100A13 of the S100 protein family
Published in Biochemical journal (15-03-1999)“…To investigate the roles of calcium-binding proteins in degranulation, we used three anti-allergic drugs, amlexanox, cromolyn and tranilast, which inhibit…”
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4
Purification of Bovine S100A12 from RecombinantEscherichia coli
Published in Protein expression and purification (01-06-1999)“…S100A12, a member of the S100 family of EF-hand calcium-binding proteins, was purified fromEscherichia colicells expressing the corresponding cDNA. The…”
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5
Estrogen and environmental estrogenic chemicals exert developmental effects on rat hypothalamic neurons and glias
Published in Toxicology in vitro (01-02-2008)“…We investigated effects of 17β-estradiol ( E 2) and endocrine disrupters, nonylphenol (NP) and bisphenol-A (BPA), focusing on the neuronal development in…”
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6
Three distinct anti-allergic drugs, amlexanox, cromolyn and tranilast, bind to S100A12 and S100A13 of the S100 protein family
Published in Biochemical journal (15-03-1999)“…To investigate the roles of calcium-binding proteins in degranulation, we used three anti-allergic drugs, amlexanox, cromolyn and tranilast, which inhibit…”
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7
Purification of Bovine S100A12 from Recombinat Escherichia coli
Published in Japanese Journal of Pharmacology (1999)“…S100A12, a member of the S100 family protein of EF-hand calcium-binding proteins, was purified from Escherichia coli cells expressing the corresponding cDNA…”
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8
Further characterization of bovine SM22 homologs and molecular cloning of a novel SM22 homolog binding protein
Published in Japanese Journal of Pharmacology (1997)“…We have previously reported about isolation of a new 25KDa Ca^2+ - sensitive protein and its low molecular weight homolog (SM22 H homolog and SM22 homolog L,…”
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Isolation and characterization of a new Ca2+ -insensitive isoform of SM22 protein
Published in Japanese Journal of Pharmacology (1996)“…In our previous experiment, we purified a new 25kDa Ca^2+ -sensitive protein from bovine aorta. The partial amino acid sequence analysis of the protein…”
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10
Three Distinct Anti-allergic Drugs, Amlexanox, Cromolyn, and Tranilast, Bind to S100A12 and A13 of S100 Family
Published in Japanese Journal of Pharmacology (1999)“…To investigate the roles of calcium-binding proteins in degranulation, we used three anti-allergic drugs, amlexanox, cromolyn, and tranilast which inhibit IgE…”
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11
Abstracts: THE 40TH MEMORIAL SCIENTIFIC MEETING OF THE JAPAN SOCIETY OF HISTOCHEMISTRY AND CYTOCHEMISTRY
Published in ACTA HISTOCHEMICA ET CYTOCHEMICA (1999)Get full text
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12
Calcium binding proteins which bind to three anti-allergic drugs, amlexanox, cromolyn, and tranilast
Published in Japanese Journal of Pharmacology (1998)“…In order to explore candidates for proteins required in degranulation, we used three anti-allergic drugs, amlexanox, cromolyn, and tranilast which inhibit IgE…”
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13
Ultrastructural Distribution of 36-kD Microfibril-associated Glycoprotein (MAGP-36) in Human and Bovine Tissues
Published in The journal of histochemistry and cytochemistry (01-08-1999)“…We observed the ultrastructural distribution of MAGP-36 by immunoelectron microscopy in human and bovine tissues. MAGP-36 was present in microfibrils…”
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14
Two Distinct Anti-allergic Drugs, Amlexanox and Cromolyn, Bind to the Same Kinds of Calcium Binding Proteins, except Calmodulin, in Bovine Lung Extract
Published in Biochemical and biophysical research communications (17-11-1997)“…In order to explore candidates for proteins required in exocytosis, we used two anti-allergic drugs, amlexanox and cromolyn, which inhibit IgE mediated…”
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15
Developmental changes in the localization of activated C-JUN N-terminal kinase (JNK/SAPK) in the chick spinal cord
Published in Journal of comparative neurology (1911) (30-10-2000)“…To examine the role of c‐Jun N‐terminal kinase (JNK/SAPK) in the developing nervous system of vertebrates, the localization of an active form of JNK,…”
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16
Identification of Tranilast-Binding Protein as 36-kDa Microfibril-Associated Glycoprotein by Drug Affinity Chromatography, and Its Localization in Human Skin
Published in Biochemical and biophysical research communications (21-04-2000)“…To elucidate the molecular mechanism involved in the suppression of keloids and hypertrophic scars by tranilast, we investigated the target protein of…”
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17
Effects of a specific proteasome inhibitor on apoptosis and apoptotic specific protein (ASP) in PC12h cells
Published in Neuroscience research (01-12-2000)Get full text
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18
Purification of bovine S100A12 from recombinant Escherichia coli
Published in Protein expression and purification (01-06-1999)“…S100A12, a member of the S100 family of EF-hand calcium-binding proteins, was purified from Escherichia coli cells expressing the corresponding cDNA. The…”
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19
Presence of Ca(2+)-sensitive and -insensitive SM22 alpha isoproteins in bovine aorta
Published in Biochemical and biophysical research communications (04-12-1996)“…Two proteins (25- and 22-kDa) that cross-react with anti-gizzard SM22 alpha antibody were isolated from bovine aorta. The former, identical to a SM22 alpha…”
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20
Presence of Ca2+-Sensitive and -Insensitive SM22α Isoproteins in Bovine Aorta
Published in Biochemical and biophysical research communications (04-12-1996)“…Two proteins (25- and 22-kDa) that cross-react with anti-gizzard SM22α antibody were isolated from bovine aorta. The former, identical to a SM22α homolog…”
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