Towards understanding the molecular basis of ion channel modulation by lipids: Mechanistic models and current paradigms

Research on ion channel modulation has become a hot topic because of the key roles these membrane proteins play in both prokaryotic and eukaryotic organisms. In this respect, lipid modulation adds to the overall modulatory mechanisms as a potential via to find new pharmacological targets for drug de...

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Veröffentlicht in:Biochimica et biophysica acta. Biomembranes 2017-09, Vol.1859 (9), p.1507-1516
Hauptverfasser: Poveda, José A., Marcela Giudici, A., Lourdes Renart, M., Morales, Andrés, González-Ros, José M.
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Sprache:eng
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Zusammenfassung:Research on ion channel modulation has become a hot topic because of the key roles these membrane proteins play in both prokaryotic and eukaryotic organisms. In this respect, lipid modulation adds to the overall modulatory mechanisms as a potential via to find new pharmacological targets for drug design based on interfering with lipid/channel interactions. However, our knowledge in this field is scarce and often circumscribed to the sites where lipids bind and/or its final functional consequences. To fully understand this process it is necessary to improve our knowledge on its molecular basis, from the binding sites to the signalling pathways that derive in structural and functional effects on the ion channel. In this review, we have compiled information about such mechanisms and established a classification into four different modes of action. Afterwards, we have revised in more detail the lipid modulation of Cys-loop receptors and of the potassium channel KcsA, which were chosen as model channels modulated by specific lipids. This article is part of a Special Issue entitled: Membrane Lipid Therapy: Drugs Targeting Biomembranes edited by Pablo V. Escribá. [Display omitted] •Ion channel lipid modulation can be classified into four different mechanistic modes.•Lipids in Cys-loop receptors modulate coupling between EC and TM domains.•The molecular basis of non-annular lipid modulation of the K+ channel KcsA is revised.
ISSN:0005-2736
1879-2642
DOI:10.1016/j.bbamem.2017.04.003