22 results on '"González‐Arzola, Katiuska"'
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2. Mitochondrial Factors in the Cell Nucleus
3. Nucleus-translocated mitochondrial cytochrome c liberates nucleophosmin-sequestered ARF tumor suppressor by changing nucleolar liquid–liquid phase separation
4. Cytochrome c–Based Signalosome
5. PP2A is activated by cytochrome c upon formation of a diffuse encounter complex with SET/TAF-Iβ
6. Inhibition of the PP2A activity by the histone chaperone ANP32B is long-range allosterically regulated by respiratory cytochrome c
7. Mitochondrial cytochrome c shot towards histone chaperone condensates in the nucleus
8. Proposed mechanism for regulation of H 2 O 2 ‐induced programmed cell death in plants by binding of cytochrome c to 14‐3‐3 proteins
9. Mitochondrial cytochrome c liberates the nucleophosmin-sequestered ARF tumor suppressor in the nucleolus
10. Exploring protein phosphorylation by combining computational approaches and biochemical methods
11. New moonlighting functions of mitochondrial cytochromecin the cytoplasm and nucleus
12. Oxidative stress is tightly regulated by cytochrome c phosphorylation and respirasome factors in mitochondria
13. Cytochrome c speeds up caspase cascade activation by blocking 14-3-3ε-dependent Apaf-1 inhibition
14. Post-translation tyrosine phosphorylation switches cytochrome c dynamics
15. Structural basis of mitochondrial dysfunction in response to cytochrome c phosphorylation at tyrosine 48
16. Histone chaperone activity of Arabidopsis thaliana NRP1 is blocked by cytochrome c
17. Structural basis for inhibition of the histone chaperone activity of SET/TAF-Iβ by cytochrome c
18. Respiratory complexes III and IV can each bind two molecules of cytochromecat low ionic strength
19. Cytochrome c1 exhibits two binding sites for cytochrome c in plants
20. Structural and Functional Analysis of Novel Human Cytochrome c Targets in Apoptosis
21. New Arabidopsis thaliana Cytochrome c Partners: A Look Into the Elusive Role of Cytochrome c in Programmed Cell Death in Plants
22. Recent Methodological Advances in the Analysis of Protein Tyrosine Nitration
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