35 results on '"Lehman Melanie L"'
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2. Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer
3. A molecular portrait of epithelial–mesenchymal plasticity in prostate cancer associated with clinical outcome
4. Identification of a novel fusion transcript between human relaxin-1 (RLN1) and human relaxin-2 (RLN2) in prostate cancer
5. Supplementary Data from Lipid Uptake Is an Androgen-Enhanced Lipid Supply Pathway Associated with Prostate Cancer Disease Progression and Bone Metastasis
6. Data from Lipid Uptake Is an Androgen-Enhanced Lipid Supply Pathway Associated with Prostate Cancer Disease Progression and Bone Metastasis
7. Supplemental Files from Lipid Uptake Is an Androgen-Enhanced Lipid Supply Pathway Associated with Prostate Cancer Disease Progression and Bone Metastasis
8. Supplementary Methods, Figure Legends 1-6 from Androgen Receptor and Nutrient Signaling Pathways Coordinate the Demand for Increased Amino Acid Transport during Prostate Cancer Progression
9. Data from Androgen Receptor and Nutrient Signaling Pathways Coordinate the Demand for Increased Amino Acid Transport during Prostate Cancer Progression
10. Supplementary Figures 1-6, Table 1 from Androgen Receptor and Nutrient Signaling Pathways Coordinate the Demand for Increased Amino Acid Transport during Prostate Cancer Progression
11. Correction: A molecular portrait of epithelial–mesenchymal plasticity in prostate cancer associated with clinical outcome
12. The mesenchymal-to-epithelial reverting transition is enriched in metastatic castration resistant prostate cancer and correlates with poor survival: 111
13. Targeting neuropilin-1 to inhibit prostate cancer invasion and metastasis: 110
14. Inhibition of ASCT2-mediated glutamine uptake blocks prostate cancer growth: 042
15. Visualization of next generation sequencing data: 074
16. Targeting ASCT2-mediated glutamine uptake blocks prostate cancer growth and tumour development
17. Additional file 3 of Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer
18. Additional file 1 of Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer
19. Additional file 2 of Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer
20. Additional file 7 of Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer
21. Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer
22. Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer
23. The molecular function of kallikrein‐related peptidase 14 demonstrates a key modulatory role in advanced prostate cancer
24. Insulin Enhances Migration and Invasion in Prostate Cancer Cells by Up-Regulation of FOXC2
25. Lipid Uptake Is an Androgen-Enhanced Lipid Supply Pathway Associated with Prostate Cancer Disease Progression and Bone Metastasis
26. Correction: A molecular portrait of epithelial–mesenchymal plasticity in prostate cancer associated with clinical outcome
27. A molecular portrait of epithelial–mesenchymal plasticity in prostate cancer associated with clinical outcome
28. Revealing the transcriptional landscape of epithelial-mesenchymal plasticity in mCRPC
29. The molecular function of kallikrein‐related peptidase 14 demonstrates a key modulatory role in advanced prostate cancer.
30. Erratum to: Fusion transcript loci share many genomic features with non-fusion loci
31. The ascidian natural product eusynstyelamide B is a novel topoisomerase II poison that induces DNA damage and growth arrest in prostate and breast cancer cells
32. RNASeqBrowser: A genome browser for simultaneous visualization of raw strand specific RNAseq reads and UCSC genome browser custom tracks
33. Fusion transcript loci share many genomic features with non-fusion loci.
34. RNASeqBrowser: A genome browser for simultaneous visualization of raw strand specific RNAseq reads and UCSC genome browser custom tracks.
35. A microsatellite repeat in PCA3 long non-coding RNA is associated with prostate cancer risk and aggressiveness.
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