Werner Stefan, Ebenhan Jan, Poppe Marco, Poppe Silvio, Ebert Helgard, Tschierske Carsten, Bacia Kirsten
Department of Chemistry, Martin Luther University Halle-Wittenberg, Kurt-Mothes-Str. 3, 06120 Halle, Germany.
Department of Chemistry, Martin Luther University Halle-Wittenberg, Kurt-Mothes-Str. 2, 06120 Halle, Germany.
Polymers (Basel). 2017 Sep 29;9(10):476. doi: 10.3390/polym9100476.
Supramolecular self-assembly of membrane constituents within a phospholipid bilayer creates complex functional platforms in biological cells that operate in intracellular signaling, trafficking and membrane remodeling. Synthetic polyphilic compounds of macromolecular or small size can be incorporated into artificial phospholipid bilayers. Featuring three or four moieties of different philicities, they reach beyond ordinary amphiphilicity and open up avenues to new functions and interaction concepts. Here, we have incorporated a series of X-shaped bolapolyphiles into DPPC (1,2-dipalmitoyl--glycero-3-phosphocholine) bilayers of giant unilamellar vesicles. The bolapolyphiles consist of a rod-like oligo(phenylene ethynylene) (OPE) core, hydrophilic glycerol-based headgroups with or without oligo(ethylene oxide) expansions at both ends and two lateral alkyl chains attached near the center of the OPE core. In the absence of DPPC and water, the compounds showed thermotropic liquid-crystalline behavior with a transition between polyphilic and amphiphilic assembly (see part 1 in this issue). In DPPC membranes, various trends in the domain morphologies were observed upon structure variations, which entailed branched alkyl chains of various sizes, alkyl chain semiperfluorination and size expansion of the headgroups. Observed effects on domain morphology are interpreted in the context of the bulk behavior (part 1) and of a model that was previously developed based on spectroscopic and physicochemical data.
磷脂双分子层内膜成分的超分子自组装在生物细胞中形成了复杂的功能平台,这些平台参与细胞内信号传导、运输和膜重塑过程。大分子或小分子的合成多亲性化合物可以掺入人工磷脂双分子层中。它们具有三个或四个不同亲性的部分,超越了普通的两亲性,为新功能和相互作用概念开辟了道路。在这里,我们将一系列X形双多亲分子掺入了巨型单层囊泡的二棕榈酰磷脂酰胆碱(DPPC)双分子层中。双多亲分子由棒状的亚苯基乙炔(OPE)核、两端带有或不带有聚环氧乙烷扩展链的亲水性甘油基头基以及连接在OPE核中心附近的两条侧链烷基组成。在没有DPPC和水的情况下,这些化合物表现出热致液晶行为,在多亲性和两亲性组装之间存在转变(见本期第1部分)。在DPPC膜中,随着结构变化观察到了多种区域形态趋势,这些变化涉及不同大小的支链烷基、烷基链的半全氟化以及头基的尺寸扩展。基于整体行为(第1部分)以及先前根据光谱和物理化学数据开发的模型,对观察到的区域形态效应进行了解释。