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2. Leukaemia exposure alters the transcriptional profile and function of BCR::ABL1 negative macrophages in the bone marrow niche

3. Mitochondrial DNA mutations drive aerobic glycolysis to enhance checkpoint blockade response in melanoma

5. eIF4A1-dependent mRNAs employ purine-rich 5’UTR sequences to activate localised eIF4A1-unwinding through eIF4A1-multimerisation to facilitate translation

7. A palmitate-rich metastatic niche enables metastasis growth via p65 acetylation resulting in pro-metastatic NF-κB signaling

11. Cancer-associated fibroblasts require proline synthesis by PYCR1 for the deposition of pro-tumorigenic extracellular matrix

13. Neuropilin 1 and its inhibitory ligand mini-tryptophanyl-tRNA synthetase inversely regulate VE-cadherin turnover and vascular permeability

15. Metabolic adaptations of micrometastases alter EV production to generate invasive microenvironments

19. THEM6‐mediated reprogramming of lipid metabolism supports treatment resistance in prostate cancer

20. Translation of secretory mRNAs must be restrained during early oncogenesis to permit hepatocellular carcinoma initiation

25. BRF1 accelerates prostate tumourigenesis and perturbs immune infiltration

27. Author Correction: Cancer-associated fibroblasts require proline synthesis by PYCR1 for the deposition of pro-tumorigenic extracellular matrix

28. Cancer-associated fibroblasts produce matrix-bound vesicles that influence endothelial cell function.

29. The helminth TGF-beta mimic TGM4 is a modular ligand that binds CD44, CD49d and TGF-beta receptors to preferentially target myeloid cells

30. Engineered immunomodulatory extracellular vesicles derived from epithelial cells acquire capacity for positive and negative T cell co-stimulation in cancer and autoimmunity

32. The eIF4A2 negative regulator of mRNA translation promotes extracellular matrix deposition to accelerate hepatocellular carcinoma initiation

35. 2,4-dienoyl-CoA reductase regulates lipid homeostasis in treatment-resistant prostate cancer

38. Fam49/CYRI interacts with Rac1 and locally suppresses protrusions

39. Supplementary Methods from Colorectal Tumors Require NUAK1 for Protection from Oxidative Stress

40. Supplementary Table 3 from Colorectal Tumors Require NUAK1 for Protection from Oxidative Stress

41. Data from Colorectal Tumors Require NUAK1 for Protection from Oxidative Stress

42. Figures S1-S6 & Tables S1 & S2 from Colorectal Tumors Require NUAK1 for Protection from Oxidative Stress

43. Data from SLFN5 Regulates LAT1-Mediated mTOR Activation in Castration-Resistant Prostate Cancer

44. Supplementary Data 2 from SLFN5 Regulates LAT1-Mediated mTOR Activation in Castration-Resistant Prostate Cancer

45. Supplementary Information from SLFN5 Regulates LAT1-Mediated mTOR Activation in Castration-Resistant Prostate Cancer

46. Integrated Proteomics Unveils Nuclear PDE3A2 as a Regulator of Cardiac Myocyte Hypertrophy

47. Tumour mitochondrial DNA mutations drive aerobic glycolysis to enhance checkpoint blockade

48. Author Reply to Peer Reviews of PTEN deficiency exposes a requirement for an ARF GTPase module in integrin-dependent invasion in ovarian cancer.

50. Integrated Proteomics Unveils Nuclear PDE3A2 as a Regulator of Cardiac Myocyte Hypertrophy

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