Castelletti Simona, Morosinotto Tomas, Robert Bruno, Caffarri Stefano, Bassi Roberto, Croce Roberta
Dipartimento Scientifico e Tecnologico, Università di Verona, Strada Le Grazie, 15- 37234 Verona, Italy.
Biochemistry. 2003 Apr 15;42(14):4226-34. doi: 10.1021/bi027398r.
In this study, two gene products (Lhca2 and Lhca3), encoding higher plants (Arabidopsis thaliana) Photosystem I antenna complexes, were overexpressed in bacteria and reconstituted in vitro with purified chloroplast pigments. The chlorophyll-xanthophyll proteins thus obtained were characterized by biochemical and spectroscopic methods. Both complexes were shown to bind 10 chlorophyll (a and b) molecules per polypeptide, Lhca2 having higher chlorophyll b content as compared to Lhca3. The two proteins differed for the number of carotenoid binding sites: two and three for Lhca2 and Lhca3, respectively. beta-carotene was specifically bound to Lhca3 in addition to the xanthophylls violaxanthin and lutein, indicating a peculiar structure of carotenoid binding sites in this protein since it is the only one so far identified with the ability of binding beta-carotene. Analysis of the spectroscopic properties of the two pigment proteins showed the presence of low energy absorption forms (red forms) in both complexes, albeit with different energies and amplitudes. The fluorescence emission maximum at 77 K of Lhca2 was found at 701 nm, while in Lhca3 the major emission was at 725 nm. Reconstitution of Lhca3 without Chl b reveals that Chl b is not involved in originating the low energy absorption forms of this complex. The present data are discussed in comparison to the properties of the recombinant Lhca1 and Lhca4 complexes and of the native LHCI preparation, previously analyzed, thus showing a comprehensive description of the gene products composing the Photosystem I light harvesting system of A. thaliana.
在本研究中,编码高等植物(拟南芥)光系统I天线复合物的两种基因产物(Lhca2和Lhca3)在细菌中过表达,并与纯化的叶绿体色素在体外重组。通过生化和光谱方法对由此获得的叶绿素 - 叶黄素蛋白进行了表征。结果表明,两种复合物每条多肽均结合10个叶绿素(a和b)分子,与Lhca3相比,Lhca2的叶绿素b含量更高。这两种蛋白质的类胡萝卜素结合位点数量不同:Lhca2和Lhca3分别为两个和三个。除了叶黄素和紫黄质外,β-胡萝卜素特异性结合到Lhca3上,这表明该蛋白质中类胡萝卜素结合位点具有独特结构,因为它是迄今为止唯一被鉴定具有结合β-胡萝卜素能力的蛋白质。对这两种色素蛋白光谱性质的分析表明,两种复合物中均存在低能量吸收形式(红色形式),尽管能量和幅度不同。发现Lhca2在77 K时的荧光发射最大值在701 nm处,而Lhca3中的主要发射峰在725 nm处。不含Chl b的Lhca3重组表明,Chl b不参与该复合物低能量吸收形式的产生。将目前的数据与先前分析的重组Lhca1和Lhca4复合物以及天然LHCI制剂的性质进行了比较讨论,从而全面描述了构成拟南芥光系统I光捕获系统的基因产物。