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1. HoxA9 regulated Bcl-2 expression mediates survival of myeloid progenitors and the severity of HoxA9-dependent leukemia

2. The oncogenic properties of EWS/WT1 of desmoplastic small round cell tumors are unmasked by loss of p53 in murine embryonic fibroblasts

4. p53-Dependent Transcriptional Responses to Interleukin-3 Signaling

8. Cytokine receptor signaling activates an IKK-dependent phosphorylation of PUMA to prevent cell death

9. Deletion of IKK2 in haematopoietic cells of adult mice leads to elevated interleukin-6, neutrophilia and fatal gastrointestinal inflammation.

10. Modeling Metazoan Apoptotic Pathways in Yeast.

11. The oncogenic properties of EWS/WT1 of desmoplastic small round cell tumors are unmasked by loss of p53 in murine embryonic fibroblasts.

12. HoxA9 regulated Bcl-2 expression mediates survival of myeloid progenitors and the severity of HoxA9-dependent leukemia.

13. Hoxb8 regulates expression of microRNAs to control cell death and differentiation.

14. Akt1 is the principal Akt isoform regulating apoptosis in limiting cytokine concentrations.

15. Targeting acute myeloid leukemia by dual inhibition of PI3K signaling and Cdk9-mediated Mcl-1 transcription.

16. Cytokine receptor signaling activates an IKK-dependent phosphorylation of PUMA to prevent cell death.

17. p53-Dependent transcriptional responses to interleukin-3 signaling.

18. Myeloid progenitor cells lacking p53 exhibit delayed up-regulation of Puma and prolonged survival after cytokine deprivation.

19. Puma indirectly activates Bax to cause apoptosis in the absence of Bid or Bim.

20. Triggering of apoptosis by Puma is determined by the threshold set by prosurvival Bcl-2 family proteins.

21. Cytoplasmic p53 is not required for PUMA-induced apoptosis.

22. Cell death provoked by loss of interleukin-3 signaling is independent of Bad, Bim, and PI3 kinase, but depends in part on Puma.

23. Human Bcl-2 cannot directly inhibit the Caenorhabditis elegans Apaf-1 homologue CED-4, but can interact with EGL-1.

24. Caspase-2 is resistant to inhibition by inhibitor of apoptosis proteins (IAPs) and can activate caspase-7.

25. The Caenorhabditis elegans CED-9 protein does not directly inhibit the caspase CED-3, in vitro nor in yeast.

26. The p35 relative, p49, inhibits mammalian and Drosophila caspases including DRONC and protects against apoptosis.

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