Hiller R G, Raison J K
Biochim Biophys Acta. 1980 Jun 20;599(1):63-72. doi: 10.1016/0005-2736(80)90056-5.
Comparative measurements were made of the fluidity of chloroplast thylakoids, total membrane lipids and polar lipids utilizing the order parameter and motion of spin labels. No significant differences were found in the fluidity of membranes or total membrane lipids from a wild type and a mutant barley (Hordeum vulgare chlorina f2 mutant) which lacks chlorophyll b and a 25 000 dalton thylakoid polypeptide. Redistribution of intrinsic, exoplasmic face (EF) membrane particles by unstacking thylakoid membranes in low salt medium also had no effect on membrane fluidity. However, heating of isolated thylakoids decreased membrane fluidity. The fluidity of vesicles composed of membrane lipids is much greater than that of the corresponding membranes. Fluidity of the membranes, however, increased during greening indicating that the rigidity of the membranes, compared with that of total membrane lipids, is not caused by chlorophyll or its associated peptides. It is concluded that the restriction of motion in the acyl chains in the thylakoids is not caused by chlorophyll or the major intrinsic polypeptide but by some other protein components.
利用自旋标记的序参数和运动,对叶绿体类囊体、总膜脂和极性脂的流动性进行了比较测量。在野生型大麦和缺乏叶绿素b及一种25000道尔顿类囊体多肽的突变型大麦(大麦绿变f2突变体)的膜或总膜脂的流动性方面,未发现显著差异。在低盐介质中通过解堆叠类囊体膜使内在的外质面(EF)膜颗粒重新分布,对膜流动性也没有影响。然而,分离的类囊体加热会降低膜流动性。由膜脂组成的囊泡的流动性远大于相应的膜。然而,在绿化过程中膜的流动性增加,这表明与总膜脂相比,膜的刚性不是由叶绿素或其相关肽引起的。得出的结论是,类囊体中酰基链运动的限制不是由叶绿素或主要内在多肽引起的,而是由其他一些蛋白质成分引起的。