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23 results on '"Ying‐Hui Ko"'

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1. Engineered NLS-chimera downregulates expression of aggregation-prone endogenous FUS

2. A periplasmic cinched protein is required for siderophore secretion and virulence of Mycobacterium tuberculosis

3. Learning from Nature: From a Marine Natural Product to Synthetic Cyclooxygenase‐1 Inhibitors by Automated De Novo Design

4. Heme and hemoglobin utilization by Mycobacterium tuberculosis

5. Structural basis for nuclear import of hepatitis B virus (HBV) nucleocapsid core.

6. Recognition of an α-helical hairpin in P22 large terminase by a synthetic antibody fragment

7. Recognition of the TDP-43 nuclear localization signal by importin α1/β

8. A periplasmic cinched protein is required for siderophore secretion and virulence of Mycobacterium tuberculosis

9. Learning from Nature: From a Marine Natural Product to Synthetic Cyclooxygenase-1 Inhibitors by Automated De Novo Design

10. Heme and hemoglobin utilization by Mycobacterium tuberculosis

11. Oncogenes and inflammation rewire host energy metabolism in the tumor microenvironment

12. TP53-inducible Glycolysis and Apoptosis Regulator (TIGAR) Metabolically Reprograms Carcinoma and Stromal Cells in Breast Cancer

13. Glutamine fuels a vicious cycle of autophagy in the tumor stroma and oxidative mitochondrial metabolism in epithelial cancer cells

14. Anti-estrogen resistance in breast cancer is induced by the tumor microenvironment and can be overcome by inhibiting mitochondrial function in epithelial cancer cells

15. Understanding the metabolic basis of drug resistance: therapeutic induction of the Warburg effect kills cancer cells

16. Dietary antioxidants protect hematopoietic cells and improve animal survival after total-body irradiation

17. Abstract 4024: Understanding the role of mitochondria in the progression from normal fibroblasts to DCIS associated fibroblasts

18. $$B_{(s)}$$ B ( s ) to light tensor meson form factors via LCSR in HQEFT with applications to semileptonic decays

19. TP53-inducible Glycolysis and Apoptosis Regulator (TIGAR) Metabolically Reprograms Carcinoma and Stromal Cells in Breast Cancer.

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