Authors
Blas Moreno-Beltran, Alejandra Guerra-Castellano, Antonio Diaz-Quintana, Rebecca Del Conte, Sofia M Garcia-Maurino, Sofia Diaz-Moreno, Katiuska Gonzalez-Arzola, Carlos Santos-Ocana, Adrian Velazquez-Campoy, Miguel A De la Rosa, Paola Turano, Irene Diaz-Moreno
Publication date
2017/4/11
Journal
Proceedings of the National Academy of Sciences
Volume
114
Issue
15
Pages
E3041-E3050
Publisher
National Academy of Sciences
Description
Regulation of mitochondrial activity allows cells to adapt to changing conditions and to control oxidative stress, and its dysfunction can lead to hypoxia-dependent pathologies such as ischemia and cancer. Although cytochrome c phosphorylation—in particular, at tyrosine 48—is a key modulator of mitochondrial signaling, its action and molecular basis remain unknown. Here we mimic phosphorylation of cytochrome c by replacing tyrosine 48 with p-carboxy-methyl-l-phenylalanine (pCMF). The NMR structure of the resulting mutant reveals significant conformational shifts and enhanced dynamics around pCMF that could explain changes observed in its functionality: The phosphomimetic mutation impairs cytochrome c diffusion between respiratory complexes, enhances hemeprotein peroxidase and reactive oxygen species scavenging activities, and hinders caspase-dependent apoptosis. Our findings provide a …
Total citations
201720182019202020212022202320244791510874
Scholar articles
B Moreno-Beltran, A Guerra-Castellano… - Proceedings of the National Academy of Sciences, 2017