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31 results on '"Hashimoto, Seiichi"'

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1. The nuclear receptor REV-ERBα represses the transcription of growth/differentiation factor 10 and 15 genes in rat endometrium stromal cells.

2. Removal of Rev-erbα inhibition contributes to the prostaglandin G/H synthase 2 expression in rat endometrial stromal cells.

3. Inhibitory role of REV-ERBα in the expression of bone morphogenetic protein gene family in rat uterus endometrium stromal cells.

4. Integration of the nuclear receptor REV-ERBα linked with circadian oscillators in the expressions of Alas1, Ppargc1a, and Il6 genes in rat granulosa cells.

5. Different circadian expression of major matrix-related genes in various types of cartilage: modulation by light-dark conditions.

6. Regional circadian period difference in the suprachiasmatic nucleus of the mammalian circadian center.

7. Profiling of circadian genes expressed in the uterus endometrial stromal cells of pregnant rats as revealed by DNA microarray coupled with RNA interference.

8. Downregulation of core clock gene Bmal1 attenuates expression of progesterone and prostaglandin biosynthesis-related genes in rat luteinizing granulosa cells.

9. FSH induces the development of circadian clockwork in rat granulosa cells via a gap junction protein Cx43-dependent pathway.

10. Identification of a new clock-related element EL-box involved in circadian regulation by BMAL1/CLOCK and HES1.

11. Rev-erbα regulates circadian rhythms and StAR expression in rat granulosa cells as identified by the agonist GSK4112.

12. Contribution of FSH and triiodothyronine to the development of circadian clocks during granulosa cell maturation.

13. Real-time monitoring in three-dimensional hepatocytes reveals that insulin acts as a synchronizer for liver clock.

14. Cellular DBP and E4BP4 proteins are critical for determining the period length of the circadian oscillator.

15. Alterations of circadian clockworks during differentiation and apoptosis of rat ovarian cells.

16. Angiopoietin-like 2, a circadian gene, improves type 2 diabetes through potentiation of insulin sensitivity in mice adipocytes.

17. Quantitative analysis of phase wave of gene expression in the mammalian central circadian clock network.

18. Identification of functional clock-controlled elements involved in differential timing of Per1 and Per2 transcription.

19. Up-regulation of circadian clock gene Period 2 in the prostate mesenchymal cells during flutamide-induced apoptosis.

20. Screening and evaluation of new inhibitors of hepatic glucose production.

21. Regular feeding plays an important role in cholesterol homeostasis through the liver circadian clock.

22. Progesterone, but not estradiol, synchronizes circadian oscillator in the uterus endometrial stromal cells.

23. Angiopoietin-related growth factor suppresses gluconeogenesis through the Akt/forkhead box class O1-dependent pathway in hepatocytes.

24. Gonadotropic regulation of circadian clockwork in rat granulosa cells.

25. The disruption of circadian clockwork in differentiating cells from rat reproductive tissues as identified by in vitro real-time monitoring system.

26. Proinsulin C-peptide stimulates a PKC/IkappaB/NF-kappaB signaling pathway to activate COX-2 gene transcription in Swiss 3T3 fibroblasts.

27. System-level identification of transcriptional circuits underlying mammalian circadian clocks.

28. Molecular-timetable methods for detection of body time and rhythm disorders from single-time-point genome-wide expression profiles.

29. Universality and flexibility in gene expression from bacteria to human.

30. A transcription factor response element for gene expression during circadian night.

31. Genome-wide transcriptional orchestration of circadian rhythms in Drosophila.

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