211 results on '"Erdődi, Ferenc"'
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2. Treatments with Diquat Reveal the Relationship between Protein Phosphatases (PP2A) and Oxidative Stress during Mitosis in Arabidopsis thaliana Root Meristems.
3. Myosin phosphatase accelerates cutaneous wound healing by regulating migration and differentiation of epidermal keratinocytes via Akt signaling pathway in human and murine skin
4. Aralkyl selenoglycosides and related selenosugars in acetylated form activate protein phosphatase-1 and -2A
5. Phosphorylated Peptide Derived from the Myosin Phosphatase Target Subunit Is a Novel Inhibitor of Protein Phosphatase-1
6. A Fucosylated Lactose-Presenting Tetravalent Glycocluster Acting as a Mutual Ligand of Pseudomonas aeruginosa Lectins A (PA-IL) and B (PA-IIL)—Synthesis and Interaction Studies
7. Strong Correlation between the Expression Levels of HDAC4 and SIRT6 in Hematological Malignancies of the Adults
8. Identification of protein phosphatase interacting proteins from normal and UVA-irradiated HaCaT cell lysates by surface plasmon resonance based binding technique using biotin–microcystin-LR as phosphatase capturing molecule
9. Epigallocatechine-3-gallate Inhibits the Adipogenesis of Human Mesenchymal Stem Cells via the Regulation of Protein Phosphatase-2A and Myosin Phosphatase
10. Ankyrin domain of myosin 16 influences motor function and decreases protein phosphatase catalytic activity
11. Microcystin-LR, a protein phosphatase inhibitor, induces alterations in mitotic chromatin and microtubule organization leading to the formation of micronuclei in Vicia faba
12. Chronic inhibition of nitric oxide synthase activity by NG-nitro-l-arginine induces nitric oxide synthase expression in the developing rat cerebellum
13. Smoothelin-Like Protein 1 Regulates the Thyroid Hormone-Induced Homeostasis and Remodeling of C2C12 Cells via the Modulation of Myosin Phosphatase
14. Microcystin-LR, a cyanobacterial toxin affects root development by changing levels of PIN proteins and auxin response in Arabidopsis roots
15. Protein kinase Cδ promotes proliferation and induces malignant transformation in skeletal muscle
16. Evidence for pentagalloyl glucose binding to human salivary α-amylase through aromatic amino acid residues
17. Activation of Myosin Phosphatase by Epigallocatechin-Gallate Sensitizes THP-1 Leukemic Cells to Daunorubicin
18. Myofilament protein carbonylation contributes to the contractile dysfunction in the infarcted LV region of mouse hearts
19. Granulocyte Colony Stimulating Factor Increases Drug Resistance of Leukaemic Blast Cells to Daunorubicin
20. Investigation of the Differences in Antithrombin to Heparin Binding among Antithrombin Budapest 3, Basel, and Padua Mutations by Biochemical and In Silico Methods
21. Thyroid Hormones affect the Level and Activity of Nitric Oxide Synthase in Rat Cerebral Cortex during Postnatal Development
22. Myosin Phosphatase Is Implicated in the Control of THP-1 Monocyte to Macrophage Differentiation
23. Localization of Myosin Phosphatase Target Subunit and its Mutants
24. Myosin phosphatase: Structure, regulation and function
25. Myosin phosphatase and myosin phosphorylation in differentiating C2C12 cells
26. Calcineurin regulates endothelial barrier function by interaction with and dephosphorylation of myosin phosphatase
27. Protein phosphatase-1M and Rho-kinase affect exocytosis from cortical synaptosomes and influence neurotransmission at a glutamatergic giant synapse of the rat auditory system
28. Cylindrospermopsin induces alterations of root histology and microtubule organization in common reed (Phragmites australis) plantlets cultured in vitro
29. Changes in the expression and distribution of the inducible and endothelial nitric oxide synthase in mucosal biopsy specimens of inflammatory bowel disease
30. 30 éves a debreceni angol nyelvű orvosképzés
31. L‐Selectin Expression is Influenced by Phosphatase Activity in Chronic Lymphocytic Leukemia
32. Dissection of the regulatory role for the N-terminal domain in Candida albicans protein phosphatase Z1
33. Myosin phosphatase: Unexpected functions of a long-known enzyme
34. Inhibition of protein phosphatase-1 and -2A by ellagitannins: structure-inhibitory potency relationships and influences on cellular systems
35. Differential mechanisms of adenosine‐ and ATPγS‐induced microvascular endothelial barrier strengthening
36. Allyl-Isothiocyanate and Microcystin-LR Reveal the Protein Phosphatase Mediated Regulation of Metaphase-Anaphase Transition in Vicia faba
37. Tropomyosins Regulate the Severing Activity of Gelsolin in Isoform-Dependent and Independent Manners
38. Correction: Myosin phosphatase and RhoA-activated kinase modulate neurotransmitter release by regulating SNAP-25 of SNARE complex
39. Myosin phosphatase and RhoA-activated kinase modulate neurotransmitter release by regulating SNAP-25 of SNARE complex
40. Interplay of myosin phosphatase and protein phosphatase-2A in the regulation of endothelial nitric-oxide synthase phosphorylation and nitric oxide production
41. Myosin phosphatase and RhoA-activated kinase modulate arginine methylation by the regulation of protein arginine methyltransferase 5 in hepatocellular carcinoma cells
42. The Phosphatase Inhibitor Calyculin-A Impairs Clot Retraction, Platelet Activation, and Thrombin Generation
43. Differential mechanisms of adenosine‐ and ATPγS‐induced microvascular endothelial barrier strengthening.
44. Strong Correlation between the Expression Levels of HDAC4 and SIRT6 in Hematological Malignancies of the Adults
45. Molecular Insights into the Fungus-Specific Serine/Threonine Protein Phosphatase Z1 in Candida albicans
46. Analysis of Two Putative Candida albicans Phosphopantothenoylcysteine Decarboxylase / Protein Phosphatase Z Regulatory Subunits Reveals an Unexpected Distribution of Functional Roles
47. Microcystin-LR induces mitotic spindle assembly disorders in Vicia faba by protein phosphatase inhibition and not reactive oxygen species induction
48. Myosin phosphatase regulates gene expression via mediating arginine methylation in human hepatocarcinoma cells
49. Epigallocatechin-3-gallate and penta-O-galloyl-?-D-glucose inhibit protein phosphatase-1
50. Inhibition of protein phosphatase-1 and -2A decreases the chemosensitivity of leukemic cells to chemotherapeutic drugs
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