27 results on '"Hickok, Jason R."'
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2. Supplementary Materials and Methods, Supplementary Figures 1 through 4 and Supplementary Tables 1 through 4 from Nitric Oxide Regulates Gene Expression in Cancers by Controlling Histone Posttranslational Modifications
3. Data from Nitric Oxide Regulates Gene Expression in Cancers by Controlling Histone Posttranslational Modifications
4. Dataset S1 from Nitric Oxide Regulates Gene Expression in Cancers by Controlling Histone Posttranslational Modifications
5. Mechanisms of Epigenetic Regulation by Nitric Oxide
6. Contributors
7. Vorinostat exhibits anticancer effects in triple-negative breast cancer cells by preventing nitric oxide-driven histone deacetylation
8. Nitric Oxide Modifies Histone Methylation Patterns by Inhibiting Jumonji C Domain Containing Demethylases: 457
9. Oxygen Regulates Nitric Oxide-Mediated Signaling by Determining the Rate of Nitric Oxide Synthesis and Metabolism.: 403
10. Contrasting Mechanisms of Cellular S-Nitrosothiol Formation From •NO and CysNO: the Role of Chelatable Iron: 378
11. Nitric Oxide Suppresses Tumor Cell Migration Through N-Myc Downstream Regulated Gene-1 (NDRG1) Expression: the Role of Chelatable Iron: 296
12. Nitric oxide reduces oxidative stress in cancer cells by forming dinitrosyliron complexes
13. Epigenetics: The third pillar of nitric oxide signaling
14. Nitric Oxide Regulates Gene Expression in Cancers by Controlling Histone Posttranslational Modifications
15. Nitric Oxide Modifies Global Histone Methylation by Inhibiting Jumonji C Domain-containing Demethylases
16. Oxygen dependence of nitric oxide-mediated signaling
17. Nitric Oxide RegulatesGeneExpression in Cancers by Controlling Histone Posttranslational Modifications.
18. Is S-Nitrosocysteine a True Surrogate for Nitric Oxide?
19. Nitric Oxide Suppresses Tumor Cell Migration through N-Myc Downstream-regulated Gene-1 (NDRG1) Expression
20. Oxygen Regulates Nitric Oxide-Mediated Signaling by Determining the Rate of NO Synthesis and Metabolism
21. Dinitrosyliron complexes are the most abundant nitric oxide-derived cellular adduct: biological parameters of assembly and disappearance
22. The Luteinizing Hormone Surge Regulates Circadian Clock Gene Expression in the Chicken Ovary
23. In vivo Circadian Rhythms in Gonadotropin-Releasing Hormone Neurons
24. The Luteinizing Hormone Surge Regulates Circadian Clock Gene Expression in the Chicken Ovary.
25. In vivo Circadian Rhythms in Gonadotropin-Releasing Hormone Neurons.
26. Contrasting Mechanisms of Cellular S-Nitrosothiol Formation From •NO and CysNO: the Role of Chelatable Iron
27. Nitric oxide and cancer therapy: the emperor has NO clothes.
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