Hobe S, Prytulla S, Kühlbrandt W, Paulsen H
Botanisches Institut III der Universität, Munich, Germany.
EMBO J. 1994 Aug 1;13(15):3423-9. doi: 10.1002/j.1460-2075.1994.tb06647.x.
The major light-harvesting complex (LHCII) of photosystem II, the most abundant chlorophyll-containing complex in higher plants, is organized in trimers. In this paper we show that the trimerization of LHCII occurs spontaneously and is dependent on the presence of lipids. LHCII monomers were reconstituted from the purified apoprotein (LHCP), overexpressed in Escherichia coli, and pigments, purified from chloroplast membranes. These synthetic LHCII monomers trimerize in vitro in the presence of a lipid fraction isolated from pea thylakoids. The reconstituted LHCII trimers are very similar to native LHCII trimers in that they are stable in the presence of mild detergents and can be isolated by partially denaturing gel electrophoresis or by centrifugation in sucrose density gradients. Moreover, both native and reconstituted LHCII trimers exhibit signals in circular dichroism in the visible range that are not seen in native or reconstituted LHCII monomers, indicating that trimer formation either establishes additional pigment-pigment interactions or alters pre-existing interactions. Reconstituted LHCII trimers readily form two-dimensional crystals that appear to be identical to crystals of the native complex.
光系统II的主要捕光复合体(LHCII)是高等植物中含量最丰富的含叶绿素复合体,以三聚体形式存在。在本文中,我们表明LHCII的三聚化是自发发生的,并且依赖于脂质的存在。LHCII单体由在大肠杆菌中过表达的纯化脱辅基蛋白(LHCP)和从叶绿体膜中纯化的色素重构而成。这些合成的LHCII单体在存在从豌豆类囊体中分离的脂质组分的情况下在体外三聚化。重构的LHCII三聚体与天然LHCII三聚体非常相似,因为它们在温和去污剂存在下是稳定的,并且可以通过部分变性凝胶电泳或通过在蔗糖密度梯度中离心来分离。此外,天然和重构的LHCII三聚体在可见范围内的圆二色性中都表现出天然或重构的LHCII单体中未见的信号,这表明三聚体的形成要么建立了额外的色素 - 色素相互作用,要么改变了预先存在的相互作用。重构的LHCII三聚体很容易形成二维晶体,这些晶体似乎与天然复合体的晶体相同。