首页> 外文期刊>Journal of the American Chemical Society >Packing and Viscoelasticity of Polyunsaturated ω-3 and ω-6 Lipid Bilayers as Seen by ~2H NMR and X-ray Diffraction
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Packing and Viscoelasticity of Polyunsaturated ω-3 and ω-6 Lipid Bilayers as Seen by ~2H NMR and X-ray Diffraction

机译:由〜2H NMR和X射线衍射观察到的多不饱和ω-3和ω-6脂质双层的堆积和粘弹性

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Polyunsaturated phospholipids of the ω-3 and ω-6 classes play key roles in cellular functions, yet their mechanisms of biological action are still a matter of debate. Using deuterium (~2H) NMR spectroscopy and small-angle X-ray diffraction, we show how membrane properties are modified by docosahexaenoic (DHA; 22:6) and arachidonic (AA; 20:4) acyl chains of the ω-3 and the cu-6 families, respectively. Structural and dynamical differences due to polyunsaturation are evident in both the ordered and disordered phases of mixed-chain (16:0)(22:6)PC and (16:0)(20:4)PC bilayers. Due to the lower chain melting temperature, the ω-6 AA bilayer is more disordered in the fluid (L_α) state than the ω-3 DHA bilayer; it is thinner with a larger area per lipid. The thermal hysteresis observed for the DHA bilayer may represent the influences of angle-iron conformers in the gel state and back-bended, hairpinlike conformers in the fluid state, consistent with molecular dynamics studies. Interpretation of the ~2H NMR order profiles of (16:0-d_(3))(22:6)PC and (16:0-d_(31)(20:4)PC together with X-ray electron density profiles reveals an uneven distribution of mass; i.e., the sn-1 saturated chain is displaced toward the membrane center, whereas the sn-2 polyunsaturated chain is shifted toward the bilayer aqueous interface. Moreover, the ~2H NMR relaxation rates are increased by the presence of ω-6 AA chains compared to ω-3 DHA chains. When evaluated at the same amplitude of motion, relaxation parameters give a naturally calibrated scale for comparison of fluid lipid bilayers. Within this framework, polyunsaturated bilayers are relatively soft to bending and area fluctuations on the mesoscale approaching molecular dimensions. Significant differences are evident in the viscoelastic properties of the ω-3 and ω-6 bilayers, a possibly biologically relevant feature that distinguishes between the two phospholipid classes.
机译:ω-3和ω-6类的多不饱和磷脂在细胞功能中起着关键作用,但是它们的生物作用机制仍是一个有争议的问题。使用氘(〜2H)NMR光谱和小角度X射线衍射,我们显示了如何通过ω-3和D的二十二碳六烯酸(DHA; 22:6)和花生四烯酸(AA; 20:4)酰基链修饰膜性能。 cu-6家庭。在混合链(16:0)(22:6)PC和(16:0)(20:4)PC双层的有序相和无序相中,都可以看出由于多不饱和引起的结构和动力学差异。由于较低的链熔化温度,ω-6AA双层在流体(L_α)状态下比ω-3DHA双层更无序。它更薄,每个脂质的面积更大。与分子动力学研究一致,DHA双层的热滞现象可能代表了凝胶状态的角铁构象异构体和流体状态的弯曲的发夹状构象异构体的影响。解释(16:0-d_(3))(22:6)PC和(16:0-d_(31)(20:4)PC的〜2H NMR顺序图以及X射线电子密度图揭示质量的不均匀分布;即,sn-1饱和链向膜中心位移,而sn-2多不饱和链向双层水界面位移;此外,由于存在,〜2H NMR弛豫速率增加ω-6AA链与ω-3DHA链相比,在相同运动幅度下进行评估时,弛豫参数给出了自然校准的比例,用于比较流体脂质双层,在此框架内,多不饱和双层相对较软,难以弯曲和发生面积波动在中分子接近分子尺度上,ω-3和ω-6双层的粘弹特性存在明显差异,这可能是生物学上相关的特征,可以区分这两种磷脂。

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