Andersson B, Akerlund H E, Albertsson P A
Biochim Biophys Acta. 1976 Jan 15;423(1):122-32. doi: 10.1016/0005-2728(76)90106-7.
Counter-current distribution in an aqueous Dextran-polyethylene glycol two-phase system has been used to fractionate membrane fragments obtained by press treatment of Class II chloroplasts. By the counter-current distribution technique membrane particles are separated according to their surface properties such as charge and hydrophobicity. The fractions obtained were analysed with respect to photochemical activities, chlorophyll and P-700 contents. The Photosystem II enrichment after counter-current distribution was better than that obtained by differential centrifugation of the disrupted chloroplasts. However, the best separation of Photosystem I and II enriched particles could be achieved if differential centrifugation was combined with the counter-current distribution technique. Each centrifugal fraction could be further separated into Photosystems I and II enriched fractions since the Photosystem II particles preferred the dextran-rich bottom phase while the Photosystem I particles preferred the polyethylene glycol-rich top phase. By this procedure it was possible, without the use of detergents, to obtain vesicles which were more enriched in Photosystem II as compared to intact grana stacks. The partition behaviour of undisrupted Class II chloroplasts and the Photosystem I centrifugal fraction was the same. This similarity indicated that the membrane which is exposed to the surrounding polymers by the Class II chloroplasts is the Photosystem I rich membrane of the stroma lamellae.
在葡聚糖 - 聚乙二醇水相双相系统中进行逆流分配,已被用于对通过对Ⅱ类叶绿体进行压榨处理获得的膜碎片进行分级分离。通过逆流分配技术,膜颗粒根据其表面性质(如电荷和疏水性)进行分离。对所得级分进行了光化学活性、叶绿素和P - 700含量的分析。逆流分配后光系统Ⅱ的富集效果优于对破碎叶绿体进行差速离心的效果。然而,如果将差速离心与逆流分配技术相结合,可实现光系统Ⅰ和Ⅱ富集颗粒的最佳分离。由于光系统Ⅱ颗粒更倾向于富含葡聚糖的底部相,而光系统Ⅰ颗粒更倾向于富含聚乙二醇的顶部相,每个离心级分都可进一步分离为光系统Ⅰ和Ⅱ富集级分。通过该程序,无需使用去污剂,就有可能获得与完整基粒堆叠相比,光系统Ⅱ含量更高的囊泡。未破碎的Ⅱ类叶绿体和光系统Ⅰ离心级分的分配行为相同。这种相似性表明,Ⅱ类叶绿体暴露于周围聚合物的膜是基质类囊体中富含光系统Ⅰ的膜。