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1,354 results on '"p21-Activated Kinases"'

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1. Evaluation of p21 expression and related autism‐like behavior in Bisphenol‐A exposed offspring of Wistar albino rats.

3. Fudan University Researchers Have Published New Study Findings on Ovarian Cancer (Targeting RAC1 reactivates pyroptosis to reverse paclitaxel resistance in ovarian cancer by suppressing P21-activated kinase 4).

4. Clinical significance of downregulated NISCH expression in skin cutaneous melanoma: Modulation of tumor cell invasion, migration, and EMT via PAK1 inhibition.

5. The p21-activated kinases in neural cytoskeletal remodeling and related neurological disorders.

6. Wuhan University Reports Findings in Apoptosis.

7. Wuhan University Reports Findings in Apoptosis (Inhibition of P21-activated Kinase 1 Promotes Vascular Smooth Muscle Cells Apoptosis Through Reduction of Phosphorylation of Bad).

8. Investigators from Traditional Chinese Medicine Hospital Zero in on Hepatomas (Effects of Pak1 On Proliferation, Migration, Apoptosis and Invasion of Hepatoma Cells Through Pak1/erk Pathway).

9. Loss of p21-activated kinase 4 (PAK4) suppresses pancreatic tumor progression and metastasis through regulating E-cadherin.

10. Study Results from Tianjin First Center Hospital Provide New Insights into Experimental Autoimmune Myocarditis (Role of Ccrl2 In the Pathogenesis of Experimental Autoimmune Myocarditis Via P21-activated Kinase 1/nod-like Receptor Protein 3...).

11. Protein-Activated Kinase 3 (PAK3)-Related Intellectual Disability Associated with Combined Immunodeficiency: A Case Report.

12. Development of Selective Pyrido[2,3- d ]pyrimidin-7(8 H )-one-Based Mammalian STE20-Like (MST3/4) Kinase Inhibitors.

13. Insulin‐stimulated glucose uptake partly relies on p21‐activated kinase (PAK)2, but not PAK1, in mouse skeletal muscle.

14. Studies from University of Illinois Update Current Data on Biomarkers (P21-activated Kinase-1 Signaling Is Required To Preserve Adipose Tissue Homeostasis and Cardiac Function).

15. Single-cell transcriptomics identifies a p21-activated kinase important for survival of the zoonotic parasite Fasciola hepatica.

16. Pathogenic Escherichia coli Hijacks GTPase-Activated p21-Activated Kinase for Actin Pedestal Formation

17. Identification of potential crucial genes and therapeutic targets for epilepsy.

18. Perspectives on the Role of P21-Activated Kinase 1 (PAK1) in the Intestinal Anti-inflammatory and Antitumor Potential of Artepillin C.

19. Different Transcriptome Features of Peripheral Blood Mononuclear Cells in Non-Emphysematous Chronic Obstructive Pulmonary Disease.

20. RHOA L57V drives the development of diffuse gastric cancer through IGF1R-PAK1-YAP1 signaling.

21. p21 protein‐activated kinase 1 is associated with severe regressive autism, and epilepsy.

22. Uncovering kappa-opioid receptor agonist-induced PAK1/2 phosphorylation by quantitative phosphoproteomics.

23. Antitumor effects of all-trans retinoic acid and its synergism with gemcitabine are associated with downregulation of p21-activated kinases in pancreatic cancer.

24. Research from Brunel University London in p21-Activated Kinases Provides New Insights [A Protein-Protein Interaction Analysis Suggests a Wide Range of New Functions for the p21-Activated Kinase (PAK) Ste20].

25. p21‐activated kinase 4 phosphorylates peroxisome proliferator‐activated receptor Υ and suppresses skeletal muscle regeneration

26. Molecular modelling approaches predicted 1,2,3-triazolyl ester of ketorolac (15K) to be a novel allosteric modulator of the oncogenic kinase PAK1

27. Macrothrombocytopenia of Takenouchi-Kosaki syndrome is ameliorated by CDC42 specific- and lipidation inhibitors in MEG-01 cells

28. PAK in Pancreatic Cancer-Associated Vasculature: Implications for Therapeutic Response.

29. Systemic computational investigation to identify potential inhibitors against cancer by targeting P21-activated kinase 4 and D(CGATCG).

30. A Novel CDC42 Variant with Impaired Thymopoiesis, IL-7R Signaling, PAK1 Binding, and TCR Repertoire Diversity.

31. PAKs in the brain: Function and dysfunction.

32. Single-cell alternative polyadenylation analysis delineates GABAergic neuron types

33. Researchers from Jeonbuk National University Detail New Studies and Findings in the Area of Peroxisome Proliferator-Activated Receptors (P21-activated Kinase 4 Suppresses Fatty Acid β-oxidation and Ketogenesis By Phosphorylating Ncor1).

34. Jeonbuk National University Medical School Researchers Target Protein-Serine-Threonine Kinases (p21-activated kinase 4 suppresses fatty acid b-oxidation and ketogenesis by phosphorylating NCoR1).

35. Targeting of p21-Activated Kinase 4 Radiosensitizes Glioblastoma Cells via Impaired DNA Repair

36. P21-activated kinase regulates oxygen-dependent migration of vascular endothelial cells in monolayers

37. A Novel PAK1–Notch1 Axis Regulates Crypt Homeostasis in Intestinal InflammationSummary

38. PAK-dependent regulation of actin dynamics in breast cancer cells

39. A Study on the Effect of the Substituent against PAK4 Inhibition Using In Silico Methods

40. The Roc domain of LRRK2 as a hub for protein-protein interactions

41. Expansion of BCR/ ABL1+ cells requires PAK2 but not PAK1.

42. Gastrodin ameliorates cognitive dysfunction in diabetes by inhibiting PAK2 phosphorylation.

43. Recurrent PAK2 rearrangements in poroma with folliculo-sebaceous differentiation.

44. Azeliragon inhibits PAK1 and enhances the therapeutic efficacy of AKT inhibitors in pancreatic cancer.

45. P21 activated kinase‐1 (PAK1) in macrophages is required for promotion of Th17 cell response during helminth infection

46. PAK4 methylation by the methyltransferase SETD6 attenuates cell adhesion

47. Design, synthesis and biological evaluation of novel tetrahydrothieno [2,3-c]pyridine substitued benzoyl thiourea derivatives as PAK1 inhibitors in triple negative breast cancer

48. PAK4 suppresses TNF-induced release of endothelial microparticles in HUVECs cells

49. Bioinformatic analysis of the potential molecular mechanism of PAK7 expression in glioblastoma

50. Mislocalized cytoplasmic p27 activates PAK1‐mediated metastasis and is a prognostic factor in osteosarcoma

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