Nussberger S, Dörr K, Wang D N, Kühlbrandt W
European Molecular Biology Laboratory, Heidelberg, Germany.
J Mol Biol. 1993 Nov 20;234(2):347-56. doi: 10.1006/jmbi.1993.1591.
Two different thylakoid lipids are specifically associated with the light-harvesting complex of photosystem II (LHC-II). Digalactosyl diacyl glycerol (DGDG) binds to the isolated complex but can be removed by mild detergent treatment and anion-exchange chromatography. Removal of this lipid renders the complex unable to form two-dimensional or three-dimensional crystals. The ability to crystallize is completely restored by addition of pure DGDG, at a ratio of about four molecules per polypeptide for three-dimensional crystals, suggesting several binding sites at the periphery of the trimeric complex. Two-dimensional crystals of purified protein grown in the presence of DGDG are more highly ordered than those obtained from the unfractionated complex. The other lipid, phosphatidyl glycerol (PG), binds more firmly and cannot be removed with non-ionic detergent. Complete delipidation of LHC-II can be achieved either with phospholipase or by proteolytic cleavage of 49 amino acid residues at the N terminus. Both treatments dissociate the native, trimeric complex into monomers. This indicates that PG is directly involved in the formation of trimers, which are a prerequisite for two-dimensional and three-dimensional crystallization. Both lipids are therefore present in two-dimensional and three-dimensional crystals and have distinct roles in the structure of the complex.
两种不同的类囊体脂质与光系统II(LHC-II)的捕光复合体特异性相关。二半乳糖基二酰基甘油(DGDG)与分离出的复合体结合,但可通过温和的去污剂处理和阴离子交换色谱法去除。去除这种脂质会使复合体无法形成二维或三维晶体。通过添加纯DGDG可完全恢复结晶能力,对于三维晶体,每多肽约四个分子的比例,这表明在三聚体复合体的外围有几个结合位点。在DGDG存在下生长的纯化蛋白的二维晶体比从未分级复合体获得的二维晶体更有序。另一种脂质磷脂酰甘油(PG)结合更紧密,不能用非离子去污剂去除。LHC-II的完全脱脂可以通过磷脂酶或通过在N端对49个氨基酸残基进行蛋白水解切割来实现。两种处理都将天然的三聚体复合体解离成单体。这表明PG直接参与三聚体的形成,而三聚体是二维和三维结晶的先决条件。因此,两种脂质都存在于二维和三维晶体中,并且在复合体的结构中具有不同的作用。