Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Colorado 80309.
Plant Physiol. 1992 Nov;100(3):1517-26. doi: 10.1104/pp.100.3.1517.
The photosystem (PS) II antenna system comprises several biochemically and spectroscopically distinct complexes, including light-harvesting complex II (LHCII), chlorophyll-protein complex (CP) 29, CP26, and CP24. LHCII, the most abundant of these, is both structurally and functionally diverse. The photosynthetic apparatus is laterally segregated within the thylakoid membrane into PSI-rich and PSII-rich domains, and the distribution of antenna complexes between these domains has implications for antenna function. We report a detailed analysis of the differences in the polypeptide composition of LHCII, CP29, and CP26 complexes associated with grana and stroma thylakoid fractions from spinach (Spinacia oleracea L.), making use of a very high-resolution denaturing gel system, coupled with immunoblots using monospecific antibodies to identify specific antenna components. We first show that the polypeptide composition of the PSII antenna system is more complex than previously thought. We resolved at least five type I LHCII apoproteins and two to three type II LHCII apoproteins. We also resolved at least two apoproteins each for CP29 and CP26. In state 1-adapted grana and stroma thylakoid membranes, the spectrum of LHCII apoproteins is surprisingly similar. However, in addition to overall quantitative differences, we saw subtle but reproducible qualitative differences in the spectrum of LHCII apoproteins in grana and stroma membrane domains, including two forms of the major type II apoprotein. The implications of these findings for models of PSII antenna function in spinach are discussed.
光系统 II(PS)天线系统由几个生化和光谱上不同的复合物组成,包括光捕获复合物 II(LHCII)、叶绿素蛋白复合物(CP)29、CP26 和 CP24。其中,LHCII 是这些复合物中最丰富的,在结构和功能上都具有多样性。光合作用器在类囊体膜内横向分离为 PSI 丰富区和 PSII 丰富区,天线复合物在这些区域之间的分布对天线功能有影响。我们报告了对菠菜(Spinacia oleracea L.)粒状和基质类囊体部分的 LHCII、CP29 和 CP26 复合物的多肽组成差异的详细分析,利用非常高分辨率的变性凝胶系统,并结合使用单特异性抗体的免疫印迹来鉴定特定的天线成分。我们首先表明,PSII 天线系统的多肽组成比以前认为的更为复杂。我们至少解析了五种类型 I LHCII 脱辅基蛋白和两种到三种类型 II LHCII 脱辅基蛋白。我们还分别解析了 CP29 和 CP26 的至少两种脱辅基蛋白。在适应状态 1 的粒状和基质类囊体膜中,LHCII 脱辅基蛋白的光谱非常相似。然而,除了整体定量差异外,我们还在粒状和基质膜域中 LHCII 脱辅基蛋白的光谱中观察到微妙但可重复的定性差异,包括两种主要类型 II 脱辅基蛋白的形式。这些发现对菠菜 PSII 天线功能模型的意义进行了讨论。