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109 results on '"Jackson B. Gibbs"'

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1. Supplementary Figure 3 from MK-2461, a Novel Multitargeted Kinase Inhibitor, Preferentially Inhibits the Activated c-Met Receptor

2. Supplementary Figure 4 from MK-2461, a Novel Multitargeted Kinase Inhibitor, Preferentially Inhibits the Activated c-Met Receptor

3. Supplementary Figure 2 from MK-2461, a Novel Multitargeted Kinase Inhibitor, Preferentially Inhibits the Activated c-Met Receptor

4. Supplementary Figure 1 from MK-2461, a Novel Multitargeted Kinase Inhibitor, Preferentially Inhibits the Activated c-Met Receptor

5. Supplementary Figure 5 from MK-2461, a Novel Multitargeted Kinase Inhibitor, Preferentially Inhibits the Activated c-Met Receptor

9. Supplementary Methods, Table 1, Figure Legends 1-5 from MK-2461, a Novel Multitargeted Kinase Inhibitor, Preferentially Inhibits the Activated c-Met Receptor

10. Data from Lung Cancer Cell Lines Harboring MET Gene Amplification Are Dependent on Met for Growth and Survival

11. Proceedings from the 2009 genetic syndromes of the Ras/MAPK pathway: From bedside to bench and back

12. Potent 2-[(pyrimidin-4-yl)amine}-1,3-thiazole-5-carbonitrile-based inhibitors of VEGFR-2 (KDR) kinase

13. Potent N-(1,3-Thiazol-2-yl)pyridin-2-amine Vascular Endothelial Growth Factor Receptor Tyrosine Kinase Inhibitors with Excellent Pharmacokinetics and Low Affinity for the hERG Ion Channel

14. A Novel Orally Bioavailable Inhibitor of Kinase Insert Domain-Containing Receptor Induces Antiangiogenic Effects and Prevents Tumor Growth in Vivo

15. The synthesis and biological evaluation of a series of potent dual inhibitors of farnesyl and geranyl-Geranyl protein transferases

16. 3-Aminopyrrolidinone Farnesyltransferase Inhibitors: Design of Macrocyclic Compounds with Improved Pharmacokinetics and Excellent Cell Potency

17. Design and Biological Activity of (S)-4-(5-{[1-(3-Chlorobenzyl)-2- oxopyrrolidin-3-ylamino]methyl}imidazol-1-ylmethyl)benzonitrile, a 3-Aminopyrrolidinone Farnesyltransferase Inhibitor with Excellent Cell Potency

18. Oxo-piperazine Derivatives of N-Arylpiperazinones as Inhibitors of Farnesyltransferase

19. Farnesyltransferase Inhibitors Potentiate the Antitumor Effect of Radiation on a Human Tumor Xenograft Expressing Activated HRAS1

20. Mechanism-Based Target Identification and Drug Discovery in Cancer Research

21. In Vitro and In Vivo Effects of a Farnesyltransferase Inhibitor onNf1-Deficient Hematopoietic Cells

22. Non-thiol 3-aminomethylbenzamide inhibitors of farnesyl-protein transferase

23. Clavaric Acid and Steroidal Analogues as Ras- and FPP-Directed Inhibitors of Human Farnesyl-Protein Transferase

24. N-Arylalkyl Pseudopeptide Inhibitors of Farnesyltransferase

25. DIARYLETHER INHIBITORS OF FARNESYL-PROTEIN TRANSFERASE

26. THE POTENTIAL OF FARNESYLTRANSFERASE INHIBITORS AS CANCER CHEMOTHERAPEUTICS

27. Farnesyl: proteintransferase inhibitors as agents to inhibit tumor growth

28. Selection of Potent Inhibitors of Farnesyl-protein Transferase from a Synthetic Tetrapeptide Combinatorial Library

29. New Molecular Targets for Cancer Therapy

30. Farnesyltransferase inhibitors and anti-Ras therapy

31. New fungal metabolites as potential antihypercholesterolemics and anticancer agents

32. Actinoplanic acids A and B as novel inhibitors of farnesyl-protein transferase

33. Inhibition of farnesyltransferase induces regression of mammary and salivary carcinomas in ras transgenic mice

34. Pharmaceutical research in molecular oncology

35. Synthesis and biological activity of ras farnesyl protein transferase inhibitors. Tetrapeptide analogs with amino methyl and carbon linkages

36. Fusidienol: A novel inhibitor of Ras farnesyl-protein transferase from Fusidium griseum

37. Farnesyltransferase inhibitors: Ras research yields a potential cancer therapeutic

38. cDNA cloning and expression of rat and human protein geranylgeranyltransferase type-I

39. Isoprenoid diphosphate utilization by recombinant human farnesyl:protein transferase: Interactive binding between substrates and a preferred kinetic pathway

40. Isolation and structure of chaetomellic acids A and B from Chaetomella acutiseta: farnesyl pyrophosphate mimic inhibitors of ras farnesyl-protein transferase

41. Selective Inhibition of ras -Dependent Transformation by a Farnesyltransferase Inhibitor

42. Characterization of recombinant human farnesyl-protein transferase: Cloning, expression, farnesyl diphosphate binding, and functional homology with yeast prenyl-protein transferases

43. Selective inhibition of farnesyl-protein transferase blocks ras processing in vivo

44. ChemInform Abstract: Isolation and Structure of Chaetomellic Acids A and B from Chaetomella acutiseta: Farnesyl Pyrophosphate Mimic Inhibitors of Ras Farnesyl- Protein Transferase

48. Steady-state kinetic mechanism of ras farnesyl:protein transferase

49. Role of GTPase activating protein in mitogenic signalling through phosphatidylcholine-hydrolysing phospholipase C

50. Sequence dependence of protein isoprenylation

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