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The role of calcium in membrane condensation and spontaneous curvature variations in model lipidic systems

机译:钙在脂质模型系统中膜凝结和自发曲率变化中的作用

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In this study, the dynamical behaviour of calcium-induced disordered to well-ordered structural transitions has been investigated by time-resolved synchrotron small-angle X-ray scattering (SAXS) in the milliseconds to seconds range. The in situ monitoring of the formed non-equilibrium self-assembled structures was achieved by the successful combination of synchrotron SAXS with stopped flow measurements. The effect of the rapid mixing of aqueous dispersions of dioleoylphosphatidyalglycerol (DOPG)/monoolein (MO) with low concentrations of Ca~(2+) ions is reported. Under static conditions and in the absence of Ca~(2+) ions, the evaluation of SAXS data for DOPG/MO aqueous dispersions prepared with three different DOPG/MO molar ratios indicates the formation of either a sponge-like L3 phase or uncorrected bilayers. Clearly, the lipid composition plays a vital role in modulating the structural behaviour of these aqueous dispersions in the absence and also in the presence of Ca~(2+) ions. The rapid-mixing experiments revealed that the fast and strong interactions of Ca~(2+) ions with the negatively charged DOPG/MO membranes triggers the transformation from the L3 phase or the uncorrelated bilayers to the well-ordered dehydrated L_α phase or to inverted type bicontinuous cubic phases, V2, with either a symmetry of Pn3m or Im3m. Additionally, we recently reported (A. Yaghmur, P. Laggner, B. Sartori and M. Rapport, PLoS ONE, 2008, 3, e2072) that low concentrations of Ca~(2+) ions trigger the formation of the inverted type hexagonal (H2) phase in DOPG/MO aqueous dispersions with a molar DOPG/MO ratio of 30/70. These are also temperature-sensitive structural transitions. Intriguingly, the strong association of Ca~(2+) ions with the negatively charged DOPG/MO membranes leads to fast re-organization of the two lipids and simultaneously induces fast tuning of the curvature.
机译:在这项研究中,已经通过时间分辨的同步加速器小角度X射线散射(SAXS)在毫秒到秒的范围内研究了钙诱导的无序到有序结构转变的动力学行为。通过同步加速器SAXS与停止流量测量的成功结合,实现了对形成的非平衡自组装结构的现场监测。报道了低浓度的Ca〜(2+)离子与油酸磷脂酰甘油(DOPG)/单油精(MO)的水分散液快速混合的效果。在静态条件下和不存在Ca〜(2+)离子的情况下,以三种不同的DOPG / MO摩尔比制备的DOPG / MO水分散体的SAXS数据评估表明形成了海绵状L3相或未校正的双层。显然,在不存在Ca 2+离子的情况下,脂质组合物在调节这些水分散体的结构行为中起着至关重要的作用。快速混合实验表明,Ca〜(2+)离子与带负电荷的DOPG / MO膜的快速而强烈的相互作用触发了从L3相或不相关的双层到有序的脱水L_α相的转变或反转的转变。类型为Pn3m或Im3m对称的双连续立方相V2。此外,我们最近报道了(A. Yaghmur,P。Laggner,B。Sartori和M. Rapport,PLoS ONE,2008,3,e2072),低浓度的Ca〜(2+)离子会触发倒置型六角形的形成。 DOPG / MO水性分散液中的(H2)相DOPG / MO摩尔比为30/70。这些也是温度敏感的结构转变。有趣的是,Ca〜(2+)离子与带负电荷的DOPG / MO膜的强缔合导致两种脂质的快速重组,并同时引起曲率的快速调整。

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