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Singular Interaction between an Antimetastatic Agent and the Lipid Bilayer: The Ohmline Case.
Herrera, Fernando E; Sevrain, Charlotte M; Jaffrès, Paul-Alain; Couthon, Hélène; Grélard, Axelle; Dufourc, Erick J; Chantôme, Aurélie; Potier-Cartereau, Marie; Vandier, Christophe; Bouchet, Ana M.
Afiliação
  • Herrera FE; Physics Department, Universidad Nacional del Litoral, Ciudad Universitaria, 3000 Santa Fe, Argentina.
  • Sevrain CM; Université de Brest, CEMCA, UMR CNRS 6521, IBSAM, 6, Avenue Victor le Gorgeu, 29238 Brest, France.
  • Jaffrès PA; Network and Cancer-Canceropole Grand Ouest, (IC-CGO), Maison de la Recherche en Santé, 63 Quai Magellan, 44000 Nantes, France.
  • Couthon H; Université de Brest, CEMCA, UMR CNRS 6521, IBSAM, 6, Avenue Victor le Gorgeu, 29238 Brest, France.
  • Grélard A; Network and Cancer-Canceropole Grand Ouest, (IC-CGO), Maison de la Recherche en Santé, 63 Quai Magellan, 44000 Nantes, France.
  • Dufourc EJ; Université de Brest, CEMCA, UMR CNRS 6521, IBSAM, 6, Avenue Victor le Gorgeu, 29238 Brest, France.
  • Chantôme A; Network and Cancer-Canceropole Grand Ouest, (IC-CGO), Maison de la Recherche en Santé, 63 Quai Magellan, 44000 Nantes, France.
  • Potier-Cartereau M; Université Bordeaux, Institute of Chemistry & Biology of Membranes & Nanoobjects, UMR5248 CNRS, Allée de Geoffroy St Hilaire Bât B14 Pessac, 33600 Bordeaux, France.
  • Vandier C; Université Bordeaux, Institute of Chemistry & Biology of Membranes & Nanoobjects, UMR5248 CNRS, Allée de Geoffroy St Hilaire Bât B14 Pessac, 33600 Bordeaux, France.
  • Bouchet AM; Network and Cancer-Canceropole Grand Ouest, (IC-CGO), Maison de la Recherche en Santé, 63 Quai Magellan, 44000 Nantes, France.
ACS Omega ; 2(10): 6361-6370, 2017 Oct 31.
Article em En | MEDLINE | ID: mdl-30023517
ABSTRACT
SK3 channels are abnormaly expressed in metastatic cells, and Ohmline (OHM), an ether lipid, has been shown to reduce the activity of SK3 channels and the migration capacity of cancer cells. OHM incorporation into the plasma membrane is proposed to dissociate the protein complex formed between SK3 and Orai1, a potassium and a calcium channel, respectively, and would lead to a modification in the lipid environment of both the proteins. Here, we report the synthesis of deuterated OHM that affords the determination, through solid-state NMR, of its entire partitioning into membranes mimicking the SK3 environment. Use of deuterated lipids affords the demonstration of an OHM-induced membrane disordering, which is dose-dependent and increases with increasing amounts of cholesterol (CHOL). Molecular dynamics simulations comfort the disordering action and show that OHM interacts with the carbonyl and phosphate groups of stearoylphosphatidylcholine and sphingomyelin and to a minor extent with CHOL. OHM is thus proposed to remove the CHOL OH moieties away from their main binding sites, forcing a new rearrangement with other lipid groups. Such an interaction takes its origin at the lipid-water interface, but it propagates toward the entire lipid molecules and leads to a cooperative destabilization of the lipid acyl chains, that is, membrane disordering. The consequences of this reorganization of the lipid phases are discussed in the context of the OHM-induced inhibition of SK3 channels.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2017 Tipo de documento: Article