Affiliation:
1. Department of Molecular Biology and Genetics, Istanbul Technical University, Istanbul 34467, Turkey
2. Biomedical Science and Engineering Program, Koç University, Istanbul 34450, Turkey
Abstract
Cytochrome c (Cytc) is a key redox protein for energy metabolism and apoptosis in cells. The activation of Cytc is composed of several steps, including its transfer to the mitochondrial membrane, binding to cytochrome c heme lyase (CCHL) and covalent attachment to heme. The spectroscopic methods are often applied to study the structural changes of Cytc. However, they require the isolation of Cytc from cells and have limited availability under physiological conditions. Despite recent studies to elucidate the tightly regulated folding mechanism of Cytc, the role of these events and their association with different conformational states remain elusive. Here, we provide a genetically encoded fluorescence method that allows monitoring of the conformational changes of Cytc upon binding to heme and CCHL. Cerulean and Venus fluorescent proteins attached at the N and C terminals of Cytc can be used to determine its unfolded, intermediate, and native states by measuring FRET amplitude. We found that the noncovalent interaction of heme in the absence of CCHL induced a shift in the FRET signal, indicating the formation of a partially folded state. The higher concentration of heme and coexpression of CCHL gave rise to the recovery of Cytc native structure. We also found that Cytc was weakly associated with CCHL in the absence of heme. As a result, a FRET-based fluorescence approach was demonstrated to elucidate the mechanism of heme-induced Cytc conformational changes with spatiotemporal resolution and can be applied to study its interaction with small molecules and other protein partners in living cells.
Funder
Istanbul Technical University BAP project
Subject
Clinical Biochemistry,General Medicine,Analytical Chemistry,Biotechnology,Instrumentation,Biomedical Engineering,Engineering (miscellaneous)
Reference78 articles.
1. Cytochrome c: An Extreme Multifunctional Protein with a Key Role in Cell Fate;Santucci;Int. J. Biol. Macromol.,2019
2. Conformational Properties of Cardiolipin-Bound Cytochrome, C;Hanske;Proc. Natl. Acad. Sci. USA,2012
3. New Moonlighting Functions of Mitochondrial Cytochrome c in the Cytoplasm and Nucleus;FEBS Lett.,2019
4. Multifunctional Cytochrome c: Learning New Tricks from an Old Dog;Hannibal;Chem. Rev.,2017
5. Pérez-Mejías, G., Díaz-Quintana, A., Guerra-Castellano, A., Díaz-Moreno, I., and De la Rosa, M.A. (2022). Novel Insights into the Mechanism of Electron Transfer in Mitochondrial Cytochrome c. Coord. Chem. Rev., 450.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献