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模型双层膜中泛醌同系物的定位和优先取向。

Localization and preferred orientations of ubiquinone homologs in model bilayers.

作者信息

Lenaz G, Samorì B, Fato R, Battino M, Parenti Castelli G, Domini I

机构信息

Department of Biochemistry, University of Bologna, Italy.

出版信息

Biochem Cell Biol. 1992 Jun;70(6):504-14. doi: 10.1139/o92-078.

Abstract

The localization of ubiquinone has been investigated in phospholipid bilayer vesicles in studies of fluorescence quenching of membrane-bound probes by ubiquinone homologs (Qn, where n is the number of the isoprenoid units of the chain). Fluorescence-quenching data obtained by using a set of anthroylstearate probes, having the fluorophore located at different depths, revealed that ubiquinone-3 is located throughout the whole bilayer thickness. From the bimolecular quenching constants in the membrane, lateral diffusion coefficients in two dimensions were calculated to span values of 10(-7)-10(-6) cm2.s-1. This suggests that ubiquinones laterally diffuse in a very fluid environment. On this basis, it is proposed that their translational diffusion in the bilayer takes place in two dimensions, with the quinone ring oscillating between the two bilayer surfaces within a hydrophobic environment not extending beyond the glycerol region. This model implies that the quinonic head is both settled near the polar surface of the bilayer and buried into the host hydrocarbon interior. This two-site distribution was confirmed for all Qn, except Q0, by their linear dichroism spectra in the bilayers provided by disc-like lyotropic nematic liquid crystals. These spectra also provided detailed information on the preferential orientations of the quinonic head of the different derivatives within the two sites. The mechanism by which the localization and orientation of Qn guest molecules inside the host bilayer is modulated by the isoprenoid chain length is discussed on a thermodynamical basis. Being that Qn is expected to be also widely contained in the highly curved cristae of the mitochondrial inner membrane, by using rod-like lyotropic nematic liquid crystals we searched out effects of the curvature of the host bilayer on those Qn distributions. The linear dichroism measurements reveal that Qn guest molecules are no longer obliged to find a partition between two different types of localizations when the host bilayer is highly curved. In this case all Qn, even the longest Q10, were found to stay parallel to the amphiphilic chains with a single site localization of the head near the polar interface. By the same linear dichroism technique, the local ordering of all Qn derivatives was also evaluated. The order parameters were found to be basically the same for all derivatives. This result is justified on the basis of the relaxation, caused by the surface curvature, of the lateral compression of the host chains.

摘要

在关于泛醌同系物(Qn,其中n是链中异戊二烯单元的数量)对膜结合探针的荧光猝灭研究中,已对磷脂双层囊泡中泛醌的定位进行了研究。使用一组荧光团位于不同深度的蒽酰硬脂酸酯探针获得的荧光猝灭数据表明,泛醌-3位于整个双层厚度范围内。根据膜中的双分子猝灭常数,计算出二维横向扩散系数的值在10^(-7)-10^(-6) cm²·s⁻¹之间。这表明泛醌在非常流体的环境中横向扩散。在此基础上,有人提出它们在双层中的平移扩散在二维空间中发生,醌环在不超出甘油区域的疏水环境中在两个双层表面之间振荡。该模型意味着醌头既位于双层的极性表面附近,又埋入主体烃内部。通过盘状溶致液晶提供的双层中所有Qn(除Q0外)的线性二色性光谱证实了这种双位点分布。这些光谱还提供了关于不同衍生物的醌头在两个位点内优先取向的详细信息。从热力学角度讨论了异戊二烯链长度对宿主双层内Qn客体分子的定位和取向的调节机制。由于预计Qn也广泛存在于线粒体内膜高度弯曲的嵴中,我们使用棒状溶致液晶研究了宿主双层的曲率对这些Qn分布的影响。线性二色性测量表明,当宿主双层高度弯曲时,Qn客体分子不再需要在两种不同类型的定位之间进行分配。在这种情况下,发现所有Qn,甚至最长的Q10,都与两亲链平行,头在极性界面附近有单一位点定位。通过相同的线性二色性技术,还评估了所有Qn衍生物的局部有序性。发现所有衍生物的序参数基本相同。基于表面曲率引起的宿主链横向压缩的松弛,这一结果是合理的。

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