首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Functional analysis of Photosystem I light-harvesting complexes (Lhca) gene products of Chlamydomonas reinhardtii.
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Functional analysis of Photosystem I light-harvesting complexes (Lhca) gene products of Chlamydomonas reinhardtii.

机译:莱茵衣藻光系统I光采复合物(Lhca)基因产物的功能分析。

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The outer antenna system of Chlamydomonas reinhardtii Photosystem I is composed of nine gene products, but due to difficulty in purification their individual properties are not known. In this work, the functional properties of the nine Lhca antennas of Chlamydomonas, have been investigated upon expression of the apoproteins in bacteria and refolding in vitro of the pigment-protein complexes. It is shown that all Lhca complexes have a red-shifted fluorescence emission as compared to the antenna complexes of Photosystem II, similar to Lhca from higher plants, but less red-shifted. Three complexes, namely Lhca2, Lhca4 and Lhca9, exhibit emission maxima above 707 nm and all carry an asparagine as ligand for Chl 603. The comparison of the protein sequences and the biochemical/spectroscopic properties of the refolded Chlamydomonas complexes with those of the well-characterized Arabidopsis thaliana Lhcas shows that all the Chlamydomonas complexes have a chromophore organization similar to that of A. thaliana antennas, particularly to Lhca2, despite low sequence identity. All the major biochemical and spectroscopic properties of the Lhca complexes have been conserved through the evolution, including those involved in "red forms" absorption. It has been proposed that in Chlamydomonas PSI antenna size and polypeptide composition can be modulated in vivo depending on growth conditions, at variance as compared to higher plants. Thus, the different properties of the individual Lhca complexes can be functional to adapt the architecture of the PSI-LHCI supercomplex to different environmental conditions.
机译:莱茵衣藻光系统I的外部天线系统由九种基因产物组成,但由于纯化困难,因此其各自的特性尚不清楚。在这项工作中,衣原体的九个Lhca触角的功能特性已经在细菌中脱辅基蛋白的表达和色素-蛋白复合物的体外折叠后进行了研究。结果表明,与Photosystem II的天线复合物相比,所有Lhca复合物均具有红移荧光发射,类似于高等植物中的Lhca,但红移较少。三种复合物,即Lhca2,Lhca4和Lhca9,在707 nm以上均具有最大发射峰,并且都带有天冬酰胺作为Chl 603的配体。重新折叠的衣藻复合物与井孔蛋白的蛋白质序列和生化/光谱性质的比较拟南芥Lhcas的特征表明,尽管序列同一性低,但所有衣藻复合体的发色团组织均与拟南芥触角相似,尤其是与Lhca2相似。 Lhca配合物的所有主要生化和光谱特性都通过进化得以保留,包括那些涉及“红色形式”吸收的特性。已经提出,在衣藻中,PSI的天线大小和多肽组成可以根据生长条件在体内进行调节,与高等植物相比有所不同。因此,各个Lhca复合物的不同性质可以起作用以使PSI-LHCI超复合物的结构适应不同的环境条件。

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