Akerlund H E, Andersson B, Persson A, Albertsson P A
Biochim Biophys Acta. 1979 Apr 4;552(2):238-46. doi: 10.1016/0005-2736(79)90280-3.
The isoelectric points of unbroken chloroplast lamellae and various subchloroplast fractions, including a preparation of inside-out thylakoids, have been determined using aqueous two-phase systems containing dextran and charged polyethylene glycol. When the amounts of material in the top phase in a phase system with the positively charged trimethylamino polyethylene glycol are plotted against pH the curve intersects the corresponding curve obtained from phase systems with the negatively charged polyethylene glycol sulfonate. This cross-point can be correlated with the isoelectric point of the material. The cross-point for unbroken chloroplast lamellae was found to be around pH 4.7. Mechanical disintegration lowered the cross-point to around pH 4.4, probably because of exposure of new membrane surfaces. The disintegrated chloroplasts were fractionated by differential centrifugation to separate the grana and stroma lamellae. The stroma lamellae vesicles showed the same isoelectric point as the unbroken lamellae, while a cross-point at pH 4.3 was obtained for the grana-enriched fraction. For thylakoid membranes destacked under low salt conditions the cross-point was 0.3 pH unit lower than for membranes originating exclusively from the stroma lamellae. The most acidic crosspoint (pH 4.1) was observed for the fraction enriched in inside-out granathylakoids. It is suggested that the differences in isoelectric point between various subchloroplast fractions reflect a heterogeneous arrangement of surface charge along and across the thylakoid membrane.
利用含有葡聚糖和带电聚乙二醇的水两相系统,测定了完整叶绿体片层以及各种亚叶绿体组分(包括内翻类囊体制剂)的等电点。当将含有带正电荷的三甲基氨基聚乙二醇的相系统中上层相中物质的量与pH作图时,该曲线与含有带负电荷的聚乙二醇磺酸盐的相系统得到的相应曲线相交。这个交点可以与该物质的等电点相关联。发现完整叶绿体片层的交点约为pH 4.7。机械破碎使交点降至约pH 4.4,这可能是由于新膜表面的暴露。通过差速离心对破碎的叶绿体进行分级分离,以分离基粒和基质片层。基质片层囊泡的等电点与完整片层相同,而富含基粒的组分在pH 4.3处得到一个交点。对于在低盐条件下解堆叠的类囊体膜,其交点比仅来源于基质片层的膜低0.3个pH单位。在内翻基粒类囊体富集的组分中观察到最酸性的交点(pH 4.1)。有人提出,各种亚叶绿体组分之间等电点的差异反映了沿类囊体膜和跨类囊体膜表面电荷的不均匀分布。