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36 results on '"Tianyuan Hu"'

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1. Probing the functions of friedelane‐type triterpene cyclases from four celastrol‐producing plants

2. Functional characterization and substrate promiscuity of sesquiterpene synthases from Tripterygium wilfordii

3. The histone H3.3 chaperone HIRA restrains erythroid-biased differentiation of adult hematopoietic stem cells

4. Clonal Competition: Cisplatin Treatment Drives Dominance of TP53- over Tet2-Mutant Stem Cell Clones

5. Engineering chimeric diterpene synthases and isoprenoid biosynthetic pathways enables high-level production of miltiradiene in yeast

6. Identification and functional characterization of squalene epoxidases and oxidosqualene cyclases from Tripterygium wilfordii

7. Bmi1 Suppresses Adipogenesis in the Hematopoietic Stem Cell Niche

8. PRDM16s transforms megakaryocyte-erythroid progenitors into myeloid leukemia–initiating cells

9. The gibberellin 13-oxidase that specifically converts gibberellin A9 to A20 in Tripterygium wilfordii is a 2-oxoglutarate-dependent dioxygenase

10. Isolation and characterization of a glycosyltransferase with specific catalytic activity towards flavonoids from Tripterygium wilfordii

11. Cytochrome P450 catalyses the 29-carboxyl group formation of celastrol

12. Genome of Tripterygium wilfordii and identification of cytochrome P450 involved in triptolide biosynthesis

13. Probing the function of protein farnesyltransferase in Tripterygium wilfordii

14. Eudesmane-type sesquiterpene diols directly synthesized by a sesquiterpene cyclase in Tripterygium wilfordii

15. A multifunctional oxidosqualene cyclase from Tripterygium regelii that produces both α- and β-amyrin

16. Identification and functional characterization of diterpene synthases for triptolide biosynthesis from Tripterygium wilfordii

17. Molecular cloning and functional identification of sterol C24-methyltransferase gene from Tripterygium wilfordii

18. A novel strategy to enhance terpenoids production using cambial meristematic cells of Tripterygium wilfordii Hook. f

19. AMP-activated protein kinase links acetyl-CoA homeostasis to BRD4 recruitment in acute myeloid leukemia

20. Friedelane-type triterpene cyclase in celastrol biosynthesis from Tripterygium wilfordii and its application for triterpenes biosynthesis in yeast

21. The chromosome-level reference genome assembly for Panax notoginseng and insights into ginsenoside biosynthesis

22. Author Correction: Genome of Tripterygium wilfordii and identification of cytochrome P450 involved in triptolide biosynthesis

23. Analysis of the role of geranylgeranyl diphosphate synthase 8 from Tripterygium wilfordii in diterpenoids biosynthesis

24. Probing the Single Key Amino Acid Responsible for the Novel Catalytic Function of ent-Kaurene Oxidase Supported by NADPH-Cytochrome P450 Reductases in Tripterygium wilfordii

25. Cloning and functional analysis of two sterol-C24-methyltransferase 1 (SMT1) genes from Paris polyphylla

26. Functional characterization of NES and GES responsible for the biosynthesis of (E)-nerolidol and (E,E)-geranyllinalool in Tripterygium wilfordii

27. Adult Hematopoietic Stem and Progenitor Cell Maintenance Requires Histone Variant H3.3 Regulation By Hira

28. Targeting NMNAT1 in Acute Myeloid Leukemia

29. Hematopoietic Hierarchy Under Steady-State and Stress Conditions

30. The MVA pathway genes expressions and accumulation of celastrol in Tripterygium wilfordii suspension cells in response to methyl jasmonate treatment

31. Cloning and expression analysis of two dehydrodolichyl diphosphate synthase genes from Tripterygium wilfordii

32. Identification of geranylgeranyl diphosphate synthase genes from Tripterygium wilfordii

33. Phosphoinositide-dependent kinase 1 regulates leukemia stem cell maintenance in MLL-AF9-induced murine acute myeloid leukemia

34. Yap1 is required for endothelial to mesenchymal transition of the atrioventricular cushion

35. AMPK Protects Against Energy Stress and Maintains Histone Acetylation in Leukemia-Initiating-Cell

36. PDK1 Controls the Differentiation of Hematopoietic Stem Cells Via Modulating ROS Levels

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