30 results on '"Gyenis, Laszlo"'
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2. Chemical proteomics reveals the target landscape of 1,000 kinase inhibitors
3. Towards the CSNK2 phosphoproteome – With lessons from the COVID-19 pandemic to revealing the secrets of CSNK2 and its promise as a therapeutic target
4. Comparison of CX-4945 and SGC-CK2-1 as inhibitors of CSNK2 using quantitative phosphoproteomics: Triple SILAC in combination with inhibitor-resistant CSNK2
5. CSNK2 in cancer: pathophysiology and translational applications
6. Development of a potent and selective chemical probe for the pleiotropic kinase CK2
7. Mapping malting quality and yield characteristics in a north American two-rowed malting barley × wild barley advanced backcross population
8. Pin1: Intimate involvement with the regulatory protein kinase networks in the global phosphorylation landscape
9. Peroxide-mediated oxidation and inhibition of the peptidyl-prolyl isomerase Pin1
10. Chemical proteomics and functional proteomics strategies for protein kinase inhibitor validation and protein kinase substrate identification: Applications to protein kinase CK2
11. Functional proteomics strategy for validation of protein kinase inhibitors reveals new targets for a TBB-derived inhibitor of protein kinase CK2
12. Loss of Pannexin 1 Attenuates Melanoma Progression by Reversion to a Melanocytic Phenotype
13. An Unbiased Evaluation of CK2 Inhibitors by Chemoproteomics: Characterization of Inhibitor Effects on CK2 and Identification of Novel Inhibitor Targets
14. Diverse post-translationall modifications of the pannexin family of channel-forming proteins
15. The emerging CK2 interactome: insights into the regulation and functions of CK2
16. Elastin-like polypeptide fusions enhance the accumulation of recombinant proteins in tobacco leaves
17. An Unbiased Evaluation of CK2 Inhibitors by Chemoproteomics: Characterization of Inhibitor Effects on CK2 and Identification of Novel Inhibitor Targets
18. Chapter Twenty-Three - Protein Kinase CK2 is a Constitutively Active Enzyme that Promotes Cell Survival: Strategies to Identify CK2 Substrates and Manipulate its Activity in Mammalian Cells
19. Cellular interaction influenced by surface modification strategies of gelatin-based nanoparticles.
20. Protein Kinase CK2: Systematic Relationships with Other Posttranslational Modifications.
21. Engineering large gelatin nanospheres coated with quantum dots for targeted delivery of human osteosarcoma with enhanced cellular internalization.
22. Identification of the factors that control synthesis and accumulation of a therapeutic protein, human immune-regulatory interleukin-10, in Arabidopsis thaliana.
23. Biological Control of Septoria Leaf Spot Disease of Hybrid Poplar in the Field.
24. mTORC1 and CK2 coordinate ternary and eIF4F complex assembly.
25. Novel Pannexin 1 isoform is increased in cancer.
26. Chemical Genetic Validation of CSNK2 Substrates Using an Inhibitor-Resistant Mutant in Combination with Triple SILAC Quantitative Phosphoproteomics.
27. Pannexin 2 is expressed in murine skin and promotes UVB-induced apoptosis of keratinocytes.
28. Pannexin 1 mutation found in melanoma tumor reduces phosphorylation, glycosylation, and trafficking of the channel-forming protein.
29. Molecular Pathways: Emergence of Protein Kinase CK2 (CSNK2) as a Potential Target to Inhibit Survival and DNA Damage Response and Repair Pathways in Cancer Cells.
30. Unbiased functional proteomics strategy for protein kinase inhibitor validation and identification of bona fide protein kinase substrates: application to identification of EEF1D as a substrate for CK2.
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