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731 results on '"Smad4 Protein metabolism"'

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1. Loss of p53 and SMAD4 induces adenosquamous subtype pancreatic cancer in the absence of an oncogenic KRAS mutation.

2. Induction of Cell Death by Bifidobacterium infantis DS1685 in Colorectal and Breast Cancers via SMAD4/TGF-Beta Activation.

3. Annexin A1 binds PDZ and LIM domain 7 to inhibit adipogenesis and prevent obesity.

4. IBSP Promotes Breast Cancer Bone Metastasis and Proliferation via BMP-SMAD Signaling Pathway.

5. Smad4 and FoxH1 potentially interact to regulate cyp19a1a promoter in the ovary of ricefield eel (Monopterus albus).

6. Verteporfin inhibits TGF-β signaling by disrupting the Smad2/3-Smad4 interaction.

7. Exploring the molecular mechanisms and therapeutic potential of SMAD4 in colorectal cancer.

8. SMAD4 depletion contributes to endocrine resistance by integrating ER and ERBB signaling in HR + HER2- breast cancer.

9. SMAD4 promotes somatic-germline contact during murine oocyte growth.

10. HBO1 determines SMAD action in pluripotency and mesendoderm specification.

11. Gamma radiation assisted green synthesis of hesperidin-reduced graphene oxide nanocomposite targeted JNK/SMAD4/MMP2 signaling pathway.

12. Early neural specification of stem cells is mediated by a set of SOX2-dependent neural-associated enhancers.

13. MiR-146a reduces fibrosis after glaucoma filtration surgery in rats.

14. Mutational profile evaluates metastatic capacity of Chinese colorectal cancer patients, revealed by whole-exome sequencing.

15. Loss of tumor-derived SMAD4 enhances primary tumor growth but not metastasis following BMP4 signalling.

16. The Epstein-Barr virus-miRNA-BART6-5p regulates TGF-β/SMAD4 pathway to induce glycolysis and enhance proliferation and metastasis of gastric cancer cells.

17. BMP Stimulation Differentially Affects Phosphorylation and Protein Stability of β-Catenin in Breast Cancer Cell Lines.

18. A multiplexed time-resolved fluorescence resonance energy transfer ultrahigh-throughput screening assay for targeting the SMAD4-SMAD3-DNA complex.

19. FLRT3 and TGF-β/SMAD4 signalling: Impacts on apoptosis, autophagy and ion channels in supraventricular tachycardia.

20. The immune regulation and therapeutic potential of the SMAD gene family in breast cancer.

21. LINC00909 up-regulates pluripotency factors and promotes cancer stemness and metastasis in pancreatic ductal adenocarcinoma by targeting SMAD4.

22. miR-6881-3p contributes to diminished ovarian reserve by regulating granulosa cell apoptosis by targeting SMAD4.

23. Smad4 sequestered in SFPQ condensates prevents TGF-β tumor-suppressive signaling.

24. Loss of SETD2 aggravates colorectal cancer progression caused by SMAD4 deletion through the RAS/ERK signalling pathway.

25. SMAD4 regulates the progression of cholangiocarcinoma by modulating the expression of STING1.

26. Post-operative mortality and recurrence patterns in pancreatic cancer according to KRAS mutation and CDKN2A, p53, and SMAD4 expression.

27. GATA2 co-opts TGFβ1/SMAD4 oncogenic signaling and inherited variants at 6q22 to modulate prostate cancer progression.

28. MiR-210-5p promotes the differentiation of human induced pluripotent stem cells into dopaminergic neural precursors by targeting SMAD4 and SUFU and treats parkinsonian rats.

29. Clinicopathological and prognostic significance of SMAD4 in non-small cell lung cancer: A meta-analysis and database validation.

30. KRAS mutation-induced EndMT of brain arteriovenous malformation is mediated through the TGF-β/BMP-SMAD4 pathway.

31. SMAD4 Expression in Monocytes as a Potential Biomarker for Atherosclerosis Risk in Patients with Obstructive Sleep Apnea.

32. Antagonism between Prdm16 and Smad4 specifies the trajectory and progression of pancreatic cancer.

33. Assessment of BMP7 , SMAD4 , and CDH1 Expression Profile and Regulatory miRNA-542-3p in Eutopic and Ectopic Endometrium of Women with Endometriosis.

34. SUMOylation mediates the disassembly of the Smad4 nuclear export complex via RanGAP1 in KELOIDS.

35. Imatinib blocks tyrosine phosphorylation of Smad4 and restores TGF-β growth-suppressive signaling in BCR-ABL1-positive leukemia.

36. Lantern-shaped flexible RNA origami for Smad4 mRNA delivery and growth suppression of colorectal cancer.

37. CDCA7 promotes TGF-β-induced epithelial-mesenchymal transition via transcriptionally regulating Smad4/Smad7 in ESCC.

38. Downregulated miR-495-3p in colorectal cancer targets TGFβR1, TGFβR2, SMAD4 and BUB1 genes and induces cell cycle arrest.

39. The loss of epithelial Smad4 drives immune evasion via CXCL1 while displaying vulnerability to combinatorial immunotherapy in gastric cancer.

40. Fluid shear stress-induced down-regulation of miR-146a-5p inhibits osteoblast apoptosis via targeting SMAD4.

41. Downregulation of Smad4 expression confers chemoresistance against imatinib mesylate to chronic myeloid leukemia K562 cells.

42. The cAMP/PKA/CREB and TGFβ/SMAD4 Pathways Regulate Stemness and Metastatic Potential in Colorectal Cancer Cells.

43. SMAD4 Suppresses Colitis-associated Carcinoma Through Inhibition of CCL20/CCR6-mediated Inflammation.

44. The Detection of Immunity against WT1 and SMAD4 P130L of EpCAM + Cancer Cells in Malignant Pleural Effusion.

45. SMAD2/3 mediate oncogenic effects of TGF-β in the absence of SMAD4.

46. Hepatocyte-Specific Smad4 Deficiency Alleviates Liver Fibrosis via the p38/p65 Pathway.

47. Long non-coding RNA SNHG16 decreased SMAD4 to induce gemcitabine resistance in pancreatic cancer via EZH2-mediated epigenetic modification.

48. Prognostic value of functional SMAD4 localization in extrahepatic bile duct cancer.

49. Smad4-deficient T cells promote colitis-associated colon cancer via an IFN-γ-dependent suppression of 15-hydroxyprostaglandin dehydrogenase.

50. SMAD4 and TGFβ are architects of inverse genetic programs during fate determination of antiviral CTLs.

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