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1. Phosphorylation disrupts long-distance electron transport in cytochrome c.

2. Nucleus-translocated mitochondrial cytochrome c liberates nucleophosmin-sequestered ARF tumor suppressor by changing nucleolar liquid-liquid phase separation.

3. Mitochondrial cytochrome c shot towards histone chaperone condensates in the nucleus.

4. Inhibition of the PP2A activity by the histone chaperone ANP32B is long-range allosterically regulated by respiratory cytochrome c.

5. 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.

6. Physical contact between cytochrome c 1 and cytochrome c increases the driving force for electron transfer.

7. Post-Translational Modifications of Cytochrome c in Cell Life and Disease.

8. Wheel and Deal in the Mitochondrial Inner Membranes: The Tale of Cytochrome c and Cardiolipin.

9. New moonlighting functions of mitochondrial cytochrome c in the cytoplasm and nucleus.

10. Oxidative stress is tightly regulated by cytochrome c phosphorylation and respirasome factors in mitochondria.

11. Cytochrome c speeds up caspase cascade activation by blocking 14-3-3ε-dependent Apaf-1 inhibition.

12. Nuclear cytochrome c - a mitochondrial visitor regulating damaged chromatin dynamics.

13. Structural basis of mitochondrial dysfunction in response to cytochrome c phosphorylation at tyrosine 48.

14. Histone chaperone activity of Arabidopsis thaliana NRP1 is blocked by cytochrome c.

15. Structural and functional characterization of phosphomimetic mutants of cytochrome c at threonine 28 and serine 47.

16. Structural basis for inhibition of the histone chaperone activity of SET/TAF-Iβ by cytochrome c.

17. Respiratory complexes III and IV can each bind two molecules of cytochrome c at low ionic strength.

18. Structural and functional analysis of novel human cytochrome C targets in apoptosis.

19. New Arabidopsis thaliana cytochrome c partners: a look into the elusive role of cytochrome c in programmed cell death in plants.

20. Specific nitration of tyrosines 46 and 48 makes cytochrome c assemble a non-functional apoptosome.

21. Tyrosine phosphorylation turns alkaline transition into a biologically relevant process and makes human cytochrome c behave as an anti-apoptotic switch.

22. Nitration of tyrosines 46 and 48 induces the specific degradation of cytochrome c upon change of the heme iron state to high-spin.

23. Cytochrome c signalosome in mitochondria.

24. Nitration of tyrosine 74 prevents human cytochrome c to play a key role in apoptosis signaling by blocking caspase-9 activation.

25. Nucleus-translocated mitochondrial cytochrome c liberates nucleophosmin-sequestered ARF tumor suppressor by changing nucleolar liquid-liquid phase separation

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