Oxidized phosphatidylcholines in membrane-level cellular signaling: from biophysics to physiology and molecular pathology

被引:109
作者
Volinsky, Roman [1 ]
Kinnunen, Paavo K. J. [1 ]
机构
[1] Aalto Univ, Helsinki Biophys & Biomembrane Grp, Dept Biomed Engn & Computat Sci, Espoo, Finland
关键词
amyloidogenesis; apoptosis; cytotoxic peptides; flip-flop; hydrophobic mismatch; lipid asymmetry; liquid-ordered phase; oxidative stress; oxidized phospholipids; phase segregation; MITOCHONDRIAL PERMEABILITY TRANSITION; PHOSPHOLIPID OXIDATION-PRODUCTS; CYTOCHROME-C; LIPID-PEROXIDATION; ALPHA-SYNUCLEIN; LINE TENSION; TRANSBILAYER MOVEMENT; CARDIOLIPIN PROVIDES; ALZHEIMER-DISEASE; PLASMA-MEMBRANE;
D O I
10.1111/febs.12247
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The oxidation of lipids has been shown to impact virtually all cellular processes. The paradigm has been that this involvement is due to interference with the functions of membrane-associated proteins. It is only recently that methodological advances in molecular-level detection and identification have begun to provide insights into oxidative lipid modification and its involvement in cell signaling as well as in major diseases and inflammation. Extensive evidence suggests a correlation between lipid peroxidation and degenerative neurological diseases such as Parkinson's and Alzheimer's, as well as type2 diabetes and cancer. Despite the obvious relevance of understanding the molecular basis of the above ailments, the exact modes of action of oxidized lipids have remained elusive. In this minireview, we summarize recent findings on the biophysical characteristics of biomembranes following oxidative derivatization of their lipids, and how these altered properties are involved in both physiological processes and major pathological conditions. Lipid-bearing, oxidatively truncated and functionalized acyl chains are known to modify membrane bulk physical properties, such as thermal phase behavior, bilayer thickness, hydration and polarity profiles, as manifest in the altered structural dynamics of lipid bilayers, leading to augmented membrane permeability, fast lipid transbilayer diffusion (flip-flop), loss of lipid asymmetry (scrambling) and phase segregation (the formation of rafts'). These changes, together with the generated reactive lipid derivatives, can be further expected to interfere with lipid-protein interactions, influencing metabolic pathways, causing inflammation, the execution phase in apoptosis and initiating pathological processes.
引用
收藏
页码:2806 / 2816
页数:11
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