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4. Supplementary Table 4A from Tumor Suppressor Functions of ARLTS1 in Lung Cancers

5. Data from Tumor Suppressor Functions of ARLTS1 in Lung Cancers

6. Supplementary Table 3B from Tumor Suppressor Functions of ARLTS1 in Lung Cancers

7. Supplementary Methods, Tables 1-4, Figure Legend 1 from Tumor Suppressor Functions of ARLTS1 in Lung Cancers

8. Supplementary Figure 1 from Tumor Suppressor Functions of ARLTS1 in Lung Cancers

11. Micro-RNA profiling in kidney and bladder cancers

12. Ultraconserved Regions Encoding ncRNAs Are Altered in Human Leukemias and Carcinomas

13. A microRNA signature associated with prognosis and progression in chronic lymphocytic leukemia

18. Tumor Suppressor Functions of ARLTS1 in Lung Cancers

19. Augmentation of tumor angiogenesis by a Myc-activated microRNA cluster

20. Effect of Rapamycin on Mouse Chronic Lymphocytic Leukemia and the Development of Nonhematopoietic Malignancies in Eμ-TCL1 Transgenic Mice

22. 370: Micro-RNAS Profiling in Kidney and Bladder Cancers

23. Adenoviral Transduction of TESTIN Gene into Breast and Uterine Cancer Cell Lines Promotes Apoptosis and Tumor Reduction In vivo

24. Inactivation of theFHITGene Favors Bladder Cancer Development

25. Myc-Transformed Epithelial Cells Down-Regulate Clusterin, Which Inhibits Their Growthin Vitroand Carcinogenesisin Vivo

32. Human microRNA genes frequently located a fragile site and genomic regions involved in cancers.

34. Inactivation of the FHIT gene favors bladder cancer development.

35. Myc-transformed epithelial cells down-regulate clusterin, which inhibits their growth in vitro and carcinogenesis in vivo.

36. Restoration of fragile histidine triad (FHIT) expression induces apoptosis and suppresses tumorigenicity in breast cancer cell lines.

37. The fragile histidine triad/common chromosome fragile site 3B locus and repair-deficient cancers.

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