20 results on '"Rao, Tata Nageswara"'
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2. Nuclear and cytosolic fractions of SOX2 synergize as transcriptional and translational co-regulators of cell fate
3. JAK2-V617F and interferon-α induce megakaryocyte-biased stem cells characterized by decreased long-term functionality
4. JAK2-V617F and interferon-α induce megakaryocyte-biased stem cells characterized by decreased long-term functionality
5. MPN patients with low mutant JAK2allele burden show late expansion restricted to erythroid and megakaryocytic lineages
6. MPN patients with low mutant JAK2 allele burden show late expansion restricted to erythroid and megakaryocytic lineages
7. JAK2-mutant hematopoietic cells display metabolic alterations that can be targeted to treat myeloproliferative neoplasms
8. JAK2-mutant hematopoietic cells display metabolic alterations that can be targeted to treat myeloproliferative neoplasms
9. Multiomics Profiling Reveals Higher RNA Isoform Diversity and Potential Oncospecific Protein Isoform Targets in HSPCs of MDS and MDS/MPN Patients
10. Adipose-derived circulating miRNAs regulate gene expression in other tissues
11. JAK2 exon 12 mutant mice display isolated erythrocytosis and changes in iron metabolism favoring increased erythropoiesis
12. JAK2 exon 12mutant mice display isolated erythrocytosis and changes in iron metabolism favoring increased erythropoiesis
13. Iron is a modifier of the phenotypes of JAK2-mutant myeloproliferative neoplasms
14. Non-Glycolytic Role of the Myeloid Hexokinase 3 (HK3) in Therapy Responses of Myeloid Malignancies
15. Non-Glycolytic Role of the Myeloid Hexokinase 3 (HK3) in Therapy Responses of Myeloid Malignancies
16. Single-cell RNA-seq reveals changes in cell cycle and differentiation programs upon aging of hematopoietic stem cells
17. Rejuvenation of Regeneration in the Aging Central Nervous System
18. Inhibiting Glutamine Metabolism with CB-839 Reduces Erythrocytosis in MPN Mice
19. Inhibiting Glutamine Metabolism with CB-839 Reduces Erythrocytosis in MPN Mice
20. Corrigendum: Adipose-derived circulating miRNAs regulate gene expression in other tissues
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