Search Results - "OTAKE, Hiroyuki"
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Tracing the emergence of a novel sex-determining gene in medaka, Oryzias luzonensis
Published in Genetics (Austin) (01-05-2012)“…Three sex-determining (SD) genes, SRY (mammals), Dmy (medaka), and DM-W (Xenopus laevis), have been identified to date in vertebrates. However, how and why a…”
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2
Contribution of Leydig and Sertoli Cells to Testosterone Production in Mouse Fetal Testes
Published in Molecular endocrinology (Baltimore, Md.) (01-01-2013)“…Testosterone is a final product of androgenic hormone biosynthesis, and Leydig cells are known to be the primary source of androgens. In the mammalian testis,…”
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3
Fetal Leydig Cells Persist as an Androgen-Independent Subpopulation in the Postnatal Testis
Published in Molecular endocrinology (Baltimore, Md.) (01-11-2015)“…Two distinct types of Leydig cells emerge during the development of eutherian mammals. Fetal Leydig cells (FLCs) appear shortly after gonadal sex…”
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4
Mechanistic evaluation and transcriptional signature of a glutathione S-transferase omega 1 inhibitor
Published in Nature communications (05-10-2016)“…Glutathione S -transferase omega 1 (GSTO1) is an atypical GST isoform that is overexpressed in several cancers and has been implicated in drug resistance…”
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5
Physiological and subjective comfort evaluation under different airflow directions in a cooling environment
Published in PloS one (14-04-2021)“…Indoor comfort is influenced by airflow direction, but subjective evaluations can differ. This study evaluates the airflow comfort with subjective assessments…”
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6
Heterogeneity of ovarian theca and interstitial gland cells in mice
Published in PloS one (03-06-2015)“…It has been established that two developmentally and functionally distinct cell types emerge within the mammalian testis and adrenal gland throughout life…”
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7
Identification of an Enhancer in the Ad4BP/SF-1 Gene Specific for Fetal Leydig Cells
Published in Endocrinology (Philadelphia) (01-01-2012)“…Adrenal 4 binding protein/steroidogenic factor 1 (Ad4BP/SF-1) (Nr5a1) is a nuclear receptor essential for reproductive tissue development and endocrine…”
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8
Physiological comfort evaluation under different airflow directions in a heating environment
Published in Journal of physiological anthropology (15-04-2022)“…Indoor airflow and thermal comfort are difficult to assess through subjective evaluations because airflow sensations can differ based on various factors, such…”
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9
Combination use of liraglutide and insulin to Japanese patients with multiple insulin injection: efficacy and cost
Published in Diabetology international (01-01-2020)“…Objectives The introduction of liraglutide in the treatment of patients with type 2 diabetes already taking insulin is still subject to discussion in terms of…”
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10
Effects of high temperature on sex differentiation and germ cell population in medaka, Oryzias latipes
Published in Aquaculture (16-04-2009)“…Medaka, Oryzias latipes, has an XX/XY sex determination system with DMY as the sex-determining gene. Previous studies have confirmed that the process of sex…”
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11
Ad4BP/SF-1 regulates cholesterol synthesis to boost the production of steroids
Published in Communications biology (22-03-2018)“…Housekeeping metabolic pathways such as glycolysis are active in all cell types. In addition, many types of cells are equipped with cell-specific metabolic…”
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12
Wild-Derived XY Sex-Reversal Mutants in the Medaka, Oryzias latipes
Published in Genetics (Austin) (01-08-2006)“…The medaka, Oryzias latipes, has an XX/XY sex-determination mechanism. A Y-linked DM domain gene, DMY, has been isolated by positional cloning as a…”
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13
The medaka sex-determining gene DMY acquired a novel temporal expression pattern after duplication of DMRT1
Published in Genesis (New York, N.Y. : 2000) (01-12-2008)“…The male sex‐determining gene, DMY, of the medaka is considered to have arisen via gene duplication of DMRT1. In the medaka, both genes are expressed in…”
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14
Field survey of sex-reversals in the medaka, Oryzias latipes: genotypic sexing of wild populations
Published in Zoological science (01-06-2004)“…The medaka, Oryzias latipes, has an XX/XY sex determination mechanism. A Y-linked DM domain gene, DMY, has been isolated by positional cloning as a prime…”
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15
Fragment-Based Discovery of 8‑Hydroxyquinoline Inhibitors of the HIV‑1 Integrase–Lens Epithelium-Derived Growth Factor/p75 (IN–LEDGF/p75) Interaction
Published in Journal of medicinal chemistry (28-03-2013)“…On the basis of an initial molecular modeling study suggesting the favorable binding of the “privileged” fragment 8-hydroxyquinoline with HIV-1 integrase (IN)…”
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16
Mouse polycomb group gene Cbx2 promotes osteoblastic but suppresses adipogenic differentiation in postnatal long bones
Published in Bone (New York, N.Y.) (01-03-2019)“…A set of key developmental genes is essential for skeletal growth from multipotent progenitor cells at weaning. Polycomb group proteins, which regulate such…”
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Discovery of novel inhibitors of LEDGF/p75-IN protein–protein interactions
Published in Bioorganic & medicinal chemistry (15-02-2013)“…Human lens epithelium-derived growth factor (LEDGF)/p75 plays an important role in the HIV life cycle by stimulating integrase (IN)-led viral DNA integration…”
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18
Glycolytic genes are targets of the nuclear receptor Ad4BP/SF-1
Published in Nature communications (14-04-2014)“…Genetic deficiencies in transcription factors can lead to the loss of certain types of cells and tissue. The steroidogenic tissue-specific nuclear receptor…”
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19
Fragment-Based Discovery of 8-Hydroxyquinoline Inhibitors of the HIV-1 Integrase-LEDGF/p75 Interaction
Published in Journal of medicinal chemistry (18-03-2013)“…On the basis of an initial molecular modeling study suggesting the favorable binding of the “privileged” fragment 8-hydroxyquinoline with IN at the…”
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20
Discovery of novel inhibitors of LEDGF/p75-IN proteinaprotein interactions
Published in Bioorganic & medicinal chemistry (15-02-2013)“…Human lens epithelium-derived growth factor (LEDGF)/p75 plays an important role in the HIV life cycle by stimulating integrase (IN)-led viral DNA integration…”
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