Literature DB >> 16042420

The polar nature of 7-ketocholesterol determines its location within membrane domains and the kinetics of membrane microsolubilization by apolipoprotein A-I.

John B Massey1, Henry J Pownall.   

Abstract

7-Ketocholesterol is an oxidized derivative of cholesterol with numerous physiological effects. In model membranes, 7-ketocholesterol and cholesterol were compared by physical measures of bilayer order and polarity, formation of detergent resistant domains (DRM), phase separation, and membrane microsolubilization by apolipoprotein A-I. In binary mixtures of a saturated phosphatidylcholine (PC), dipalmitoyl-PC (DPPC), and cholesterol or 7-ketocholesterol, the sterols modulate bilayer order and polarity and induce DRM formation to a similar extent. Cholesterol induces formation of ordered lipid domains (rafts) in tertiary mixtures with dioleoyl-PC (DOPC) and DPPC, or DOPC and sphingomyelin (SM). In tertiary mixtures, cholesterol increased lipid order and reduces bilayer polarity more than 7-ketocholesterol. This effect was more pronounced when the mixtures were in a miscible liquid-disordered (L(d)) phase. Substitution of 7-ketocholesterol for cholesterol dramatically reduced the extent of DRM formation in DOPC/DPPC and DOPC/SM bilayers and ordered lipid phase separation in mixtures of a spin-labeled PC with DPPC and with SM. Compared to cholesterol, 7-ketocholesterol decreased the rate for the microsolubilization of dimyristoyl-PC multilamellar vesicles by apolipoprotein A-I. The membrane effects of 7-ketocholesterol were dependent on the phospholipid matrix. In L(d) phase phospholipids, a model for 7-ketocholesterol indicates that the proximity of the 7-keto and 3beta-OH groups puts both polar moieties at the lipid-water interface to tilt the sterol nucleus to the plane of the bilayer. 7-Ketocholesterol was less effective in forming ordered lipid domains, in decreasing the level of bilayer hydration, and in forming phase boundary bilayer defects. Compared to cholesterol, 7-ketocholesterol can differentially modulate membrane properties involved in protein-membrane association and function.

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Year:  2005        PMID: 16042420     DOI: 10.1021/bi0506425

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  22 in total

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2.  Effect of Erythrodiol, A Natural Pentacyclic Triterpene from Olive Oil, on the Lipid Membrane Properties.

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3.  7-Ketocholesterol induces P-glycoprotein through PI3K/mTOR signaling in hepatoma cells.

Authors:  Sheng-Fan Wang; Yueh-Ching Chou; Nirmal Mazumder; Fu-Jen Kao; Leslie D Nagy; F Peter Guengerich; Cheng Huang; Hsin-Chen Lee; Ping-Shan Lai; Yune-Fang Ueng
Journal:  Biochem Pharmacol       Date:  2013-06-19       Impact factor: 5.858

4.  Thermo-induced vesicular dynamics of membranes containing cholesterol derivatives.

Authors:  Tsuyoshi Yoda; Mun'delanji C Vestergaard; Tsutomu Hamada; Phuc Thi Minh Le; Masahiro Takagi
Journal:  Lipids       Date:  2012-07-01       Impact factor: 1.880

5.  Accumulation of raft lipids in T-cell plasma membrane domains engaged in TCR signalling.

Authors:  Tobias Zech; Christer S Ejsing; Katharina Gaus; Ben de Wet; Andrej Shevchenko; Kai Simons; Thomas Harder
Journal:  EMBO J       Date:  2009-01-29       Impact factor: 11.598

6.  Cholesterol is a determinant of the structures of discoidal high density lipoproteins formed by the solubilization of phospholipid membranes by apolipoprotein A-I.

Authors:  John B Massey; Henry J Pownall
Journal:  Biochim Biophys Acta       Date:  2008-03-21

7.  Properties of the products formed by the activity of serum opacity factor against human plasma high-density lipoproteins.

Authors:  Henry J Pownall; Harry S Courtney; Baiba K Gillard; John B Massey
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Review 8.  With or without rafts? Alternative views on cell membranes.

Authors:  Eva Sevcsik; Gerhard J Schütz
Journal:  Bioessays       Date:  2015-12-15       Impact factor: 4.345

9.  Age-dependent increase in desmosterol restores DRM formation and membrane-related functions in cholesterol-free DHCR24-/- mice.

Authors:  Katrin Kuehnle; Maria D Ledesma; Lucie Kalvodova; Alicia E Smith; Arames Crameri; Fabienne Skaanes-Brunner; Karin M Thelen; Luka Kulic; Dieter Lütjohann; Frank L Heppner; Roger M Nitsch; M Hasan Mohajeri
Journal:  Neurochem Res       Date:  2008-12-25       Impact factor: 3.996

10.  Plasma membrane rafts engaged in T cell signalling: new developments in an old concept.

Authors:  Thomas Harder; Dhaval Sangani
Journal:  Cell Commun Signal       Date:  2009-09-04       Impact factor: 5.712

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