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1. Proteostasis perturbation of N-Myc leveraging HSP70 mediated protein turnover improves treatment of neuroendocrine prostate cancer

2. Use of recombinant microRNAs as antimetabolites to inhibit human non-small cell lung cancer

3. Androgen receptor blockade resistance with enzalutamide in prostate cancer results in immunosuppressive alterations in the tumor immune microenvironment

4. Natural compounds ursolic acid and digoxin exhibit inhibitory activities to cancer cells in RORγ-dependent and -independent manner

5. Nuclear receptor RORγ inverse agonists/antagonists display tissue- and gene-context selectivity through distinct activities in altering chromatin accessibility and master regulator SREBP2 occupancy

7. Nuclear TIGAR mediates an epigenetic and metabolic autoregulatory loop via NRF2 in cancer therapeutic resistance

8. Olaparib-Induced Senescence Is Bypassed through G2-M Checkpoint Override in Olaparib-Resistant Prostate Cancer.

9. Deregulation of Cholesterol Homeostasis by a Nuclear Hormone Receptor Crosstalk in Advanced Prostate Cancer

10. Activation of neural lineage networks and ARHGEF2 in enzalutamide-resistant and neuroendocrine prostate cancer and association with patient outcomes

11. Fatty acid oxidation fuels glioblastoma radioresistance with CD47-mediated immune evasion

13. Targeting Feedforward Loops Formed by Nuclear Receptor RORγ and Kinase PBK in mCRPC with Hyperactive AR Signaling.

14. Arginine starvation elicits chromatin leakage and cGAS-STING activation via epigenetic silencing of metabolic and DNA-repair genes

15. Targeting castration-resistant prostate cancer with a novel RORγ antagonist elaiophylin

16. Dual blockade of CD47 and HER2 eliminates radioresistant breast cancer cells.

17. A master regulator of cholesterol biosynthesis constitutes a therapeutic liability of triple negative breast cancer

18. Low-Level Saturated Fatty Acid Palmitate Benefits Liver Cells by Boosting Mitochondrial Metabolism via CDK1-SIRT3-CPT2 Cascade

19. RORγ is a targetable master regulator of cholesterol biosynthesis in a cancer subtype.

20. Histone methyltransferase NSD2 mediates the survival and invasion of triple-negative breast cancer cells via stimulating ADAM9-EGFR-AKT signaling

21. KDM8/JMJD5 as a dual coactivator of AR and PKM2 integrates AR/EZH2 network and tumor metabolism in CRPC

22. CPT1A/2-Mediated FAO Enhancement—A Metabolic Target in Radioresistant Breast Cancer

23. Proteostasis by STUB1/HSP70 complex controls sensitivity to androgen receptor targeted therapy in advanced prostate cancer.

24. Bioengineered ncRNAs selectively change cellular miRNome profiles for cancer therapy

25. Bioengineered Noncoding RNAs Selectively Change Cellular miRNome Profiles for Cancer Therapy.

26. Silencing the epigenetic silencer KDM4A for TRAIL and DR5 simultaneous induction and antitumor therapy

27. KDM4A Coactivates E2F1 to Regulate the PDK-Dependent Metabolic Switch between Mitochondrial Oxidation and Glycolysis

28. Reprogramming metabolism by histone methyltransferase NSD2 drives endocrine resistance via coordinated activation of pentose phosphate pathway enzymes.

29. ROR-γ drives androgen receptor expression and represents a therapeutic target in castration-resistant prostate cancer.

30. Microstructural Damage Characteristic of a Layer-to-Layer Three-Dimensional Angle-Interlock Woven Composite Under Quasi-Static Tensile Loading

32. ATAD2 overexpression links to enrichment of B-MYB-translational signatures and development of aggressive endometrial carcinoma

33. Transporting Cells in Semi-Solid Gel Condition and at Ambient Temperature

34. A long noncoding RNA connects c-Myc to tumor metabolism

35. Kinesin Family Deregulation Coordinated by Bromodomain Protein ANCCA and Histone Methyltransferase MLL for Breast Cancer Cell Growth, Survival, and Tamoxifen Resistance

36. Pax6 Mediates ß‐Catenin Signaling for Self‐Renewal and Neurogenesis by Neocortical Radial Glial Stem Cells

38. ANCCA, an estrogen-regulated AAA+ ATPase coactivator for ER alpha, is required for coregulator occupancy and chromatin modification

44. Data from ANCCA/ATAD2 Overexpression Identifies Breast Cancer Patients with Poor Prognosis, Acting to Drive Proliferation and Survival of Triple-Negative Cells through Control of B-Myb and EZH2

45. Supplementary Figures 1-11, Tables 1-4 from ANCCA/ATAD2 Overexpression Identifies Breast Cancer Patients with Poor Prognosis, Acting to Drive Proliferation and Survival of Triple-Negative Cells through Control of B-Myb and EZH2

47. Supplementary Methods, Figure Legends 1-11 from ANCCA/ATAD2 Overexpression Identifies Breast Cancer Patients with Poor Prognosis, Acting to Drive Proliferation and Survival of Triple-Negative Cells through Control of B-Myb and EZH2

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