1,092 results on '"Sasaki, Takehiko"'
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2. The fatty acid elongase Elovl6 is crucial for hematopoietic stem cell engraftment and leukemia propagation
3. PLEKHS1 drives PI3Ks and remodels pathway homeostasis in PTEN-null prostate
4. Phospholipid signaling: phosphoinositide kinases and phosphatases
5. List of contributors
6. INPP5D modulates TREM2 loss-of-function phenotypes in a β-amyloidosis mouse model
7. Solvent-free selective oxidation of cyclohexane to KA oil in air over CoWO4@W18O49 catalyst
8. Minimal upstream open reading frame of Per2 mediates phase fitness of the circadian clock to day/night physiological body temperature rhythm
9. Bayesian Spectral Deconvolution Based on Poisson Distribution: Bayesian Measurement and Virtual Measurement Analytics (VMA)
10. Metal Ion-Containing Ionic Liquid Catalysts on Solid Supports for Organic Reactions
11. A high dose KRP203 induces cytoplasmic vacuoles associated with altered phosphoinositide segregation and endosome expansion
12. Plasma membrane phosphatidylinositol (4,5)-bisphosphate is critical for determination of epithelial characteristics
13. A mass spectrometric method for in-depth profiling of phosphoinositide regioisomers and their disease-associated regulation
14. Tissue flow regulates planar cell polarity independently of the Frizzled core pathway
15. CO2 hydrogenation in ionic liquids: Recent update
16. PIKfyve regulates melanosome biogenesis.
17. Combined experimental and computational study to unravel the factors of the Cu/TiO2 catalyst for CO2 hydrogenation to methanol
18. Polarized PtdIns(4,5)P₂ distribution mediated by a voltage-sensing phosphatase (VSP) regulates sperm motility
19. Reductive amination of levulinic acid to N-substituted pyrrolidones over RuCl3 metal ion anchored in ionic liquid immobilized on graphene oxide
20. Highly Active Pt–Co Bimetallic Nanoparticles on Ionic Liquid-Modified SBA-15 for Solvent-Free Selective Hydrogenation of Cinnamaldehyde
21. P428: THE FATTY ACID ELONGASE ELOVL6 IS CRUCIAL FOR HEMATOPOIETIC STEM CELL ENGRAFTMENT AND LEUKEMIA PROPAGATION
22. Highly active and stable supported Pd catalysts on ionic liquid-functionalized SBA-15 for Suzuki–Miyaura cross-coupling and transfer hydrogenation reactions
23. Tailoring oxygen vacancies and active surface oxygen species in CrOx hierarchical strawberry-type three-dimensional (3D) micro-spindle catalysts for total catalytic oxidation of VOCs.
24. Lipid‐correlated alterations in the transcriptome are enriched in several specific pathways in the postmortem prefrontal cortex of Japanese patients with schizophrenia
25. Attenuated cerebellar phenotypes in Inpp4a truncation mutants with preserved phosphatase activity
26. p53 secures the normal behavior of H3.1 histone in the nucleus by regulating nuclear phosphatidic acid and EZH2 during the G1/S phase
27. Size-controllable gold nanoparticles prepared from immobilized gold-containing ionic liquids on SBA-15
28. Comparison of the normal state properties of $\kappa$-(BEDT-TTF)$_2$Cu(NCS)$_2$ and its deuterated analogue in high magnetic fields and under high hydrostatic pressures
29. DOCK2 Is a Rac Activator That Regulates Motility and Polarity during Neutrophil Chemotaxis
30. MoO3 Nanoclusters Decorated on TiO2 Nanorods for Oxidative dehydrogenation of ethane to ethylene
31. X-ray absorption spectra of aqueous cellobiose: Experiment and theory.
32. Data from INPP4B Is a PtdIns(3,4,5)P3 Phosphatase That Can Act as a Tumor Suppressor
33. Data from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
34. Supplementary Figures S1- S6 from INPP4B Is a PtdIns(3,4,5)P3 Phosphatase That Can Act as a Tumor Suppressor
35. Supplementary Figure 3 from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
36. Supplementary Figure Legends from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
37. Supplementary Figure 5 from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
38. Supplementary Figure 2 from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
39. Supplementary Figure 1 from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
40. Supplementary Figure 4 from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
41. Supplementary Figure 6 from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
42. Supplementary Figure 7 from In Vivo Role of INPP4B in Tumor and Metastasis Suppression through Regulation of PI3K–AKT Signaling at Endosomes
43. Supplementary Figure Legends from INPP4B Is a PtdIns(3,4,5)P3 Phosphatase That Can Act as a Tumor Suppressor
44. Supplementary Tables from Metabolic Determinants of Sensitivity to Phosphatidylinositol 3-Kinase Pathway Inhibitor in Small-Cell Lung Carcinoma
45. Supplementary Information from Metabolic Determinants of Sensitivity to Phosphatidylinositol 3-Kinase Pathway Inhibitor in Small-Cell Lung Carcinoma
46. Data from Metabolic Determinants of Sensitivity to Phosphatidylinositol 3-Kinase Pathway Inhibitor in Small-Cell Lung Carcinoma
47. Supplementary legends from Metabolic Determinants of Sensitivity to Phosphatidylinositol 3-Kinase Pathway Inhibitor in Small-Cell Lung Carcinoma
48. Supplementary figures from Metabolic Determinants of Sensitivity to Phosphatidylinositol 3-Kinase Pathway Inhibitor in Small-Cell Lung Carcinoma
49. Supplementary Figure 3 from Pten Deficiency in Melanocytes Results in Resistance to Hair Graying and Susceptibility to Carcinogen-Induced Melanomagenesis
50. Data from Hyperplasia and Carcinomas in Pten-Deficient Mice and Reduced PTEN Protein in Human Bladder Cancer Patients
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