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4. Osteoclasts adapt to physioxia perturbation through DNA demethylation

5. SLPI is a critical mediator that controls PTH-induced bone formation

7. Nrf2 contributes to the weight gain of mice during space travel

8. Author Correction: Nrf2 contributes to the weight gain of mice during space travel

11. DNA methyltransferase 3a regulates osteoclast differentiation by coupling to an S-adenosylmethionine-producing metabolic pathway

14. Degradation of the NOTCH intracellular domain by elevated autophagy in osteoblasts promotes osteoblast differentiation and alleviates osteoporosis

16. SLPI is a critical mediator that controls PTH-induced bone formation

18. Maf promotes osteoblast differentiation in mice by mediating the age-related switch in mesenchymal cell differentiation

20. Folliculin Regulates Osteoclastogenesis Through Metabolic Regulation

29. Intercellular Communication between Keratinocytes and Fibroblasts Induces Local Osteoclast Differentiation: a Mechanism Underlying Cholesteatoma-Induced Bone Destruction

30. Nrf2 Neh5 domain is differentially utilized in the transactivation of cytoprotective genes

32. Cell Cycle-Dependent Rho GTPase Activity Dynamically Regulates Cancer Cell Motility and Invasion In Vivo

34. Self-association of Gata1 enhances transcriptional activity in vivo in zebrafish embryo

36. MafB interacts with Gcm2 and regulates parathyroid hormone expression and parathyroid development

43. Cell Cycle-Dependent Rho GTPase Activity Dynamically Regulates Cancer Cell Motility and Invasion In Vivo.

44. Hematopoietic regulatory domain of gata1 gene is positively regulated by GATA1 protein in zebrafish embryos

45. SLPI is a critical mediator that controls PTH-induced bone formation

46. Osteoclasts adapt to physioxia perturbation through DNA demethylation

47. Osteoclasts adapt to physioxia perturbation through DNA demethylation

48. SLPI is a critical mediator that controls PTH-induced bone formation

49. BRG1 Interacts with Nrf2 To Selectively Mediate HO-1 Induction in Response to Oxidative Stress.

50. Cell Cycle-Dependent Rho GTPase Activity Dynamically Regulates Cancer Cell Motility and Invasion In Vivo.

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