Ramakrishnan, M. ; Kenoth, Roopa ; Kamlekar, Ravi Kanth ; Sharath Chandra, M. ; Radhakrishnan, T. P. ; Swamy, Musti J. (2002) N-Myristoylethanolamine-cholesterol (1:1) complex: first evidence from differential scanning calorimetry, fast-atom-bombardment mass spectrometry and computational modelling FEBS Letters, 531 (2). pp. 343-347. ISSN 0014-5793
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Official URL: http://www.febsletters.org/article/S0014-5793%2802...
Abstract
The interaction of N-myristoylethanolamine (NMEA) with cholesterol is investigated by differential scanning calorimetry (DSC), fast-atom-bombardment mass spectrometry (FAB-MS) and computational modelling. Addition of cholesterol to NMEA leads to a new phase transition at 55°C besides the chain-melting transition of NMEA at 72.5°C. The enthalpy of the new transition increases with cholesterol content up to 50 mol%, but decreases thereafter, vanishing at 80 mol%. The enthalpy of the chain-melting transition of NMEA decreases with an increase in cholesterol; the transition disappears at 50 mol%. FAB-MS spectra of mixtures of NMEA and cholesterol provide clear signatures of the formation of {[NMEA+cholesterol]+} {[NMEA+cholesterol+Na]+}. These results are consistent with the formation of a 1:1 complex between NMEA and cholesterol. Molecular modelling studies support this experimental finding and provide a plausible structural model for the complex, which highlights multiple H-bond interactions between the hydroxy group of cholesterol and the hydroxy and carbonyl groups of NMEA besides appreciable dispersion interaction between the hydrocarbon domains of the two molecules.
Item Type: | Article |
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Source: | Copyright of this article belongs to Elsevier Science. |
Keywords: | Biomembrane; Hydrogen Bonding; Differential Scanning Calorimetry; Fast-atom-bombardment Mass Spectrometry; Computational Modelling |
ID Code: | 78130 |
Deposited On: | 17 Jan 2012 11:44 |
Last Modified: | 04 Jul 2012 08:39 |
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