| Literature DB >> 30879887 |
Mingyue Li1, Abhishek Mandal1, Vladimir A Tyurin2, Maria DeLucia1, Jinwoo Ahn1, Valerian E Kagan3, Patrick C A van der Wel4.
Abstract
The peroxidation of cardiolipins by reactive oxygen species, which is regulated and enhanced by cytochrome c (cyt c), is a critical signaling event in mitochondrial apoptosis. We probe the molecular underpinnings of this mitochondrial death signal through structural and functional studies of horse heart cyt c binding to mixed-lipid membranes containing cardiolipin with mono- and polyunsaturated acyl chains. Lipidomics reveal the selective oxidation of polyunsaturated fatty acid (PUFA) cardiolipin (CL), while multidimensional solid-state NMR probes the structure and dynamics of the membrane and the peripherally bound protein. The hydrophilic milieu at the membrane interface stabilizes a native-like fold, but also leads to localized flexibility at the membrane-interacting protein face. PUFA CL acts as both a preferred substrate and a dynamic regulator by affecting the dynamics of the cyt c N70-I85 Ω loop, which covers the heme cavity.Entities:
Keywords: PUFA; apoptosis; cardiolipin; cytochrome c; lipidomics; membrane oxidation; membrane protein; mitochondrial protein; protein structure and dynamics; solid-state NMR
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Year: 2019 PMID: 30879887 PMCID: PMC6615723 DOI: 10.1016/j.str.2019.02.007
Source DB: PubMed Journal: Structure ISSN: 0969-2126 Impact factor: 5.006