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22 results on '"Annamaria Bevilacqua"'

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1. Antiproliferative and pro-apoptotic activity of melatonin analogues on melanoma and breast cancer cells

2. Melatonin Analogue Antiproliferative and Cytotoxic Effects on Human Prostate Cancer Cells

3. Down-modulation of Bcl-2 sensitizes PTEN-mutated prostate cancer cells to starvation and taxanes

4. Systems biology of the metabolic network regulated by the Akt pathway

5. Abstract A052: Combining metabolic starvation and PI3K/AKT/mTOR pathway inhibition to chemosensitize prostate cancer cells

6. ζ‐Crystallin is a bcl‐2 mRNA binding protein involved inbcl‐2overexpression in T‐cell acute lymphocytic leukemia

7. Increased Bcl2 Expression by Antisense Oligoribonucleotides Targeting the Adenine-Uridine-Rich Element Motif

8. Post-transcriptional regulation of gene expression by degradation of messenger RNAs

9. Down-modulation of Bcl-2 sensitizes PTEN-mutated prostate cancer cells to starvation and taxanes

10. Computational Modeling of the Metabolic States Regulated by the Kinase Akt

11. Combination of photodynamic therapy + immunotherapy + chemotherapy in murine leukemia

12. B Cell Lymphoma (Bcl)-2 Protein Is the Major Determinant in bcl-2 Adenine-Uridine-rich Element Turnover Overcoming HuR Activity*

13. Vertical systems biology: from DNA to flux and back

14. Vertical systems biology: from DNA to flux and back

15. Impact of targeting the adenine- and uracil-rich element of bcl-2 mRNA with oligoribonucleotides on apoptosis, cell cycle, and neuronal differentiation in SHSY-5Y cells

16. Stabilization of cellular mRNAs and up-regulation of proteins by oligoribonucleotides homologous to the Bcl2 adenine-uridine rich element motif

17. Bcl-2 phosphorylation and apoptosis activated by damaged microtubules require mTOR and are regulated by Akt

18. Bcl-2 protein is required for the adenine/uridine-rich element (ARE)-dependent degradation of its own messenger

20. BCL-2 regulation targeting the AU-rich domain

22. The 3' untranslated region of human Cyclin-Dependent Kinase 5 Regulatory subunit 1 contains regulatory elements affecting transcript stability

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