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Characterization of the Major Light-Harvesting Complexes (LHCBM) of the Green Alga Chlamydomonas reinhardtii

机译:绿藻莱茵衣藻的主要采光复合物(LHCBM)的表征

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摘要

Nine genes (LHCBM1-9) encode the major light-harvesting system of Chlamydomonas reinhardtii. Transcriptomic and proteomic analyses have shown that those genes are all expressed albeit in different amounts and some of them only in certain conditions. However, little is known about the properties and specific functions of the individual gene products because they have never been isolated. Here we have purified several complexes from native membranes and/or we have reconstituted them in vitro with pigments extracted from C. reinhardtii. It is shown that LHCBM1 and -M2/7 represent more than half of the LHCBM population in the membrane. LHCBM2/7 forms homotrimers while LHCBM1 seems to be present in heterotrimers. Trimers containing only type I LHCBM (M3/4/6/8/9) were also observed. Despite their different roles, all complexes have very similar properties in terms of pigment content, organization, stability, absorption, fluorescence and excited-state lifetimes. Thus the involvement of LHCBM1 in non-photochemical quenching is suggested to be due to specific interactions with other components of the membrane and not to the inherent quenching properties of the complex. Similarly, the overexpression of LHCBM9 during sulfur deprivation can be explained by its low sulfur content as compared with the other LHCBMs. Considering the highly conserved biochemical and spectroscopic properties, the major difference between the complexes may be in their capacity to interact with other components of the thylakoid membrane.
机译:九个基因(LHCBM1-9)编码莱茵衣藻的主要采光系统。转录组学和蛋白质组学分析表明,这些基因均以不同的量表达,其中一些仅在特定条件下表达。但是,由于从未分离出单个基因产物的特性和特定功能,因此鲜为人知。在这里,我们从天然膜中纯化了几种复合物,并且/或者我们用从莱茵衣藻提取的色素在体外对其进行了重构。结果表明,LHCBM1和-M2 / 7代表了膜中LHCBM总数的一半以上。 LHCBM2 / 7形成同源三聚体,而LHCBM1似乎存在于异源三聚体中。还观察到仅包含I型LHCBM(M3 / 4/6/8/9)的三聚体。尽管它们的作用不同,但所有配合物在颜料含量,组织,稳定性,吸收,荧光和激发态寿命方面都具有非常相似的特性。因此,提示LHCBM1参与非光化学猝灭是由于与膜中其他成分的特异性相互作用,而不是复合物的固有猝灭特性。类似地,与其他LHCBM相比,LHCBM9的硫含量低可以解释LHCBM9在硫剥夺期间的过表达。考虑到高度保守的生化和光谱性质,复合物之间的主要区别可能在于它们与类囊体膜其他成分相互作用的能力。

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  • 作者

    Alberto Natali; Roberta Croce;

  • 作者单位
  • 年(卷),期 -1(10),2
  • 年度 -1
  • 页码 e0119211
  • 总页数 18
  • 原文格式 PDF
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