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靶向表面空隙以对抗脂肪中毒相关疾病中的膜紊乱。

Targeting surface voids to counter membrane disorders in lipointoxication-related diseases.

作者信息

Ferru-Clément Romain, Spanova Miroslava, Dhayal Shalinee, Morgan Noel G, Hélye Reynald, Becq Frédéric, Hirose Hisaaki, Antonny Bruno, Vamparys Lydie, Fuchs Patrick F J, Ferreira Thierry

机构信息

Laboratoire Signalisation et Transports Ioniques Membranaires (STIM), CNRS ERL 7368, Université de Poitiers, 1, rue Georges Bonnet, Poitiers Cedex 9 86073, France Société d'Accélération du Transfert de Technologie (SATT) Grand Centre, 8 rue Pablo Picasso, Clermont-Ferrand 63000, France.

Laboratoire Signalisation et Transports Ioniques Membranaires (STIM), CNRS ERL 7368, Université de Poitiers, 1, rue Georges Bonnet, Poitiers Cedex 9 86073, France.

出版信息

J Cell Sci. 2016 Jun 15;129(12):2368-81. doi: 10.1242/jcs.183590. Epub 2016 May 3.

Abstract

Saturated fatty acids (SFA), which are abundant in the so-called western diet, have been shown to efficiently incorporate within membrane phospholipids and therefore impact on organelle integrity and function in many cell types. In the present study, we have developed a yeast-based two-step assay and a virtual screening strategy to identify new drugs able to counter SFA-mediated lipointoxication. The compounds identified here were effective in relieving lipointoxication in mammalian β-cells, one of the main targets of SFA toxicity in humans. In vitro reconstitutions and molecular dynamics simulations on bilayers revealed that these molecules, albeit according to different mechanisms, can generate voids at the membrane surface. The resulting surface defects correlate with the recruitment of loose lipid packing or void-sensing proteins required for vesicular budding, a central cellular process that is precluded under SFA accumulation. Taken together, the results presented here point at modulation of surface voids as a central parameter to consider in order to counter the impacts of SFA on cell function.

摘要

饱和脂肪酸(SFA)在所谓的西方饮食中含量丰富,已被证明能有效地整合到膜磷脂中,从而影响许多细胞类型的细胞器完整性和功能。在本研究中,我们开发了一种基于酵母的两步检测法和一种虚拟筛选策略,以鉴定能够对抗SFA介导的脂肪中毒的新药。此处鉴定出的化合物可有效减轻哺乳动物β细胞中的脂肪中毒,β细胞是人类中SFA毒性的主要靶标之一。对双层膜的体外重建和分子动力学模拟表明,这些分子尽管作用机制不同,但都能在膜表面产生空隙。由此产生的表面缺陷与囊泡出芽所需的松散脂质堆积或空隙感应蛋白的募集相关,而囊泡出芽是一个核心细胞过程,在SFA积累时会受到阻碍。综上所述,此处呈现的结果表明,调节表面空隙是对抗SFA对细胞功能影响时需要考虑的一个核心参数。

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