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1. Allosteric inhibition of SHP2 phosphatase inhibits cancers driven by receptor tyrosine kinases

2. Identification of TNO155, an Allosteric SHP2 Inhibitor for the Treatment of Cancer

4. Solution-phase preparation of a 560-compound library of individual pure mappicine analogues by fluorous mixture synthesis

5. Identification of TNO155, an Allosteric SHP2 Inhibitor for the Treatment of Cancer

6. 'Addition' and 'Subtraction': Selectivity Design for Type II Maternal Embryonic Leucine Zipper Kinase Inhibitors

8. Allosteric Inhibition of SHP2: Identification of a Potent, Selective, and Orally Efficacious Phosphatase Inhibitor

9. Allosteric inhibition of SHP2 phosphatase inhibits cancers driven by receptor tyrosine kinases

11. Fragment-Based Discovery of 7-Azabenzimidazoles as Potent, Highly Selective, and Orally Active CDK4/6 Inhibitors

12. The design, synthesis and structure–activity relationships of novel isoindoline-based histone deacetylase inhibitors

13. Optimization of the in Vitro Cardiac Safety of Hydroxamate-Based Histone Deacetylase Inhibitors

14. 4-(Pyrazol-4-yl)-pyrimidines as Selective Inhibitors of Cyclin-Dependent Kinase 4/6

15. Conformational Refinement of Hydroxamate-Based Histone Deacetylase Inhibitors and Exploration of 3-Piperidin-3-ylindole Analogues of Dacinostat (LAQ824)

16. Abstract 2084: Conformational activation and allosteric inhibition of SHP2 in RTK-driven cancers

17. “Addition” and “Subtraction”: Selectivity Design for Type II Maternal Embryonic Leucine Zipper Kinase Inhibitors

18. Abstract 2084: Conformational activation and allosteric inhibition of SHP2 in RTK-driven cancers

19. Chemo- and regioselective halogenation of 4-(pyrazol-4-yl)-pyrimidines

20. Allosteric Inhibition of SHP2: Identification of a Potent, Selective, and Orally Efficacious Phosphatase Inhibitor

21. Identification of NVP-TNKS656: the use of structure-efficiency relationships to generate a highly potent, selective, and orally active tankyrase inhibitor

23. Identification of NVP-TNKS656: The Use of Structure–Efficiency Relationships To Generate a Highly Potent, Selective, and Orally Active Tankyrase Inhibitor

24. Fragment-Based Discovery of 7-Azabenzimidazoles as Potent, Highly Selective, and Orally Active CDK4/6 Inhibitors

40. Identificationof NVP-TNKS656: The Use of Structure–EfficiencyRelationships To Generate a Highly Potent, Selective, and Orally ActiveTankyrase Inhibitor.

42. A highly efficient microwave-assisted suzuki coupling reaction of aryl perfluorooctylsulfonates with boronic acids.

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