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1. FLT1 activation in cancer cells promotes PARP-inhibitor resistance in breast cancer

2. Fatal COVID-19 pulmonary disease involves ferroptosis

3. Sequential activation of E2F via Rb degradation and c-Myc drives resistance to CDK4/6 inhibitors in breast cancer

4. Tumor suppressor mediated ubiquitylation of hnRNPK is a barrier to oncogenic translation

5. NOTCH and EZH2 collaborate to repress PTEN expression in breast cancer

6. Effects of neoadjuvant chemotherapy on the contralateral non-tumor-bearing breast assessed by diffuse optical tomography

7. Clinico-histopathologic and single-nuclei RNA-sequencing insights into cardiac injury and microthrombi in critical COVID-19

8. Aberrant Zip14 expression in muscle is associated with cachexia in a Bard1‐deficient mouse model of breast cancer metastasis

9. The Histone Demethylase HR Suppresses Breast Cancer Development through Enhanced CELF2 Tumor Suppressor Activity

10. A single-cell atlas of the mouse and human prostate reveals heterogeneity and conservation of epithelial progenitors

11. Akt Inhibition Is Associated With Favorable Immune Profile Changes Within the Tumor Microenvironment of Hormone Receptor Positive, HER2 Negative Breast Cancer

13. The Cancer Genome Atlas Comprehensive Molecular Characterization of Renal Cell Carcinoma

14. Driver Fusions and Their Implications in the Development and Treatment of Human Cancers

15. Spatial Organization and Molecular Correlation of Tumor-Infiltrating Lymphocytes Using Deep Learning on Pathology Images

16. Molecular Characterization and Clinical Relevance of Metabolic Expression Subtypes in Human Cancers

17. Systematic Analysis of Splice-Site-Creating Mutations in Cancer

18. Genomic and Molecular Landscape of DNA Damage Repair Deficiency across The Cancer Genome Atlas

19. Somatic Mutational Landscape of Splicing Factor Genes and Their Functional Consequences across 33 Cancer Types

20. Machine Learning Detects Pan-cancer Ras Pathway Activation in The Cancer Genome Atlas

21. Pan-Cancer Analysis of lncRNA Regulation Supports Their Targeting of Cancer Genes in Each Tumor Context

22. Integrated Genomic Analysis of the Ubiquitin Pathway across Cancer Types

23. Genomic, Pathway Network, and Immunologic Features Distinguishing Squamous Carcinomas

24. Differential requirements of androgen receptor in luminal progenitors during prostate regeneration and tumor initiation

25. Decreased BECN1 mRNA Expression in Human Breast Cancer is Associated With Estrogen Receptor-Negative Subtypes and Poor Prognosis

26. Clinical Features, Survival and Prognostic Factors of Glycogen-Rich Clear Cell Carcinoma (GRCC) of the Breast in the U.S. Population

27. Modulation of ErbB2 blockade in ErbB2-positive cancers: the role of ErbB2 Mutations and PHLDA1.

28. MammaPrint Feasibility in a Large Tertiary Urban Medical Center: An Initial Experience

29. A Transcriptome-Based Precision Oncology Platform for Patient–Therapy Alignment in a Diverse Set of Treatment-Resistant Malignancies

31. Supplementary Data for Article from p53 Maintains Baseline Expression of Multiple Tumor Suppressor Genes

32. Supplementary Materials and Methods from NKX3.1 Localization to Mitochondria Suppresses Prostate Cancer Initiation

33. Supplementary Figures from NKX3.1 Localization to Mitochondria Suppresses Prostate Cancer Initiation

34. Data from Obesity-associated Breast Inflammation among Hispanic/Latina Breast Cancer Patients

36. Supplementary Spreadsheet S2 from p53 Maintains Baseline Expression of Multiple Tumor Suppressor Genes

37. Supplementary Datasets from NKX3.1 Localization to Mitochondria Suppresses Prostate Cancer Initiation

38. Supplementary Figure 1 from Phase IB Randomized, Double-Blinded, Placebo-Controlled, Dose Escalation Study of Polyphenon E in Women with Hormone Receptor–Negative Breast Cancer

39. Supplementary Tables from NKX3.1 Localization to Mitochondria Suppresses Prostate Cancer Initiation

40. Supplementary Data Index from NKX3.1 Localization to Mitochondria Suppresses Prostate Cancer Initiation

41. Data from NKX3.1 Localization to Mitochondria Suppresses Prostate Cancer Initiation

42. Standardizing Pathologic Evaluation of Breast Carcinoma After Neoadjuvant Chemotherapy

43. Figure S1 from Changes in Diffuse Optical Tomography Images During Early Stages of Neoadjuvant Chemotherapy Correlate with Tumor Response in Different Breast Cancer Subtypes

44. Table S3 from Changes in Diffuse Optical Tomography Images During Early Stages of Neoadjuvant Chemotherapy Correlate with Tumor Response in Different Breast Cancer Subtypes

45. Data from Changes in Diffuse Optical Tomography Images During Early Stages of Neoadjuvant Chemotherapy Correlate with Tumor Response in Different Breast Cancer Subtypes

48. Supplementary Information, Methods, Table 1, Figures 1-7 from 3-Phosphoinositide–Dependent Kinase 1 Potentiates Upstream Lesions on the Phosphatidylinositol 3-Kinase Pathway in Breast Carcinoma

49. Supplementary Material from PIK3CA Mutations Correlate with Hormone Receptors, Node Metastasis, and ERBB2, and Are Mutually Exclusive with PTEN Loss in Human Breast Carcinoma

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