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2. Supplementary Table S2 from Modulation of Activation-Loop Phosphorylation by JAK Inhibitors Is Binding Mode Dependent

3. Data from Modulation of Activation-Loop Phosphorylation by JAK Inhibitors Is Binding Mode Dependent

4. Supplementary Figures, Methods, and References from Modulation of Activation-Loop Phosphorylation by JAK Inhibitors Is Binding Mode Dependent

5. Supplementary Materials from JAK1/2 and Pan-Deacetylase Inhibitor Combination Therapy Yields Improved Efficacy in Preclinical Mouse Models of JAK2V617F-Driven Disease

6. A conditional inducible JAK2V617F transgenic mouse model reveals myeloproliferative disease that is reversible upon switching off transgene expression

7. Bim and Mcl-1 exert key roles in regulating JAK2V617F cell survival

8. A conditional inducible JAK2V617F transgenic mouse model reveals myeloproliferative disease that is reversible upon switching off transgene expression.

9. JAK1/2 and Pan-Deacetylase Inhibitor Combination Therapy Yields Improved Efficacy in Preclinical Mouse Models of JAK2V617F-Driven Disease

10. Modulation of Activation-Loop Phosphorylation by JAK Inhibitors Is Binding Mode Dependent

14. Bim and Mcl-1 exert key roles in regulating JAK2V617F cell survival.

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