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Spectroscopic study of the light-harvesting protein c-phycocyanin associated with colorless linker peptides.

机译:与无色接头肽相关的集光蛋白c-藻蓝蛋白的光谱研究。

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摘要

The phycobilisome (PBS) light-harvesting antenna is composed of chromophore-containing biliproteins and 'colorless' linker peptides and is structurally designed to support unidirectional transfer of excitation energy from the periphery of the PBS to its core. The linker peptides have a unique role in this transfer process by modulating the spectral properties of the associated biliprotein. There is only one three-dimensional structure of a biliprotein/linker complex available to date (APC/LC7.8), and the details of the spectral modulation induced by the linker remain unknown. This study brings together a detailed spectroscopic characterization of C-phycocyanin (PC)-linker complexes (isolated from Synechococcus sp. PCC 7002) with proteomic analysis of the linker amino acid sequences to produce a model for biliprotein/linker interaction.;The amino acid sequences of the rod linkers [LR8.9 , LR32.3 and LRC28.5] were examined to identify evolutionarily conserved regions important to either the structure or function of this protein family. Although there is not one common homologous site among all the linkers, there are strong trends across each separate subset (LC, LR and LRC), and the N-terminal segments of both LR32.3 and L RC28.5 display multiple regions of similarity with other linkers. Predictions of the secondary structure of LR32.3 and LRC28.5, and comparison to the crystal structure of LC7.8, further narrowed the candidates for interaction sites with the PC chromophores.;Measurements of the absorption, fluorescence, CD and excitation anisotropy of PC trimer, PC/LR32.3, and PC/LRC 28.5 document the spectroscopic effect of each linker peptide on the PC chromophores at a series of temperatures (298 to 77 K). Because L R32.3 and LRC28.5 modulate the PC trimer spectral properties in distinct manners, it suggests different chromophore-interaction mechanisms for each linker. The low-temperature absorbance spectrum of the PC trimer is consistent with an excitonic coupling interaction between neighboring alpha84 and beta84 chromophores. Association with LR32.3 does not greatly alter this band shape, but the absorbance of the PC/LRC28.5 complex is dramatically different. This indicates that LRC28.5 is disrupting the alpha84 - beta84 relation established in the PC trimer. From these and other polarized spectroscopy measurements, we conclude that both L R32.3 and LRC28.5 affect the spectral properties of the terminally emitting PC trimer chromophore (beta84), and that LRC28.5 is additionally perturbing the relationship between the alpha84 and beta84 chromophores to either disrupt or enhance their coupling interaction. The linker can perturb the PC chromophores through either specific aromatic residues or a concentration of electrostatically charged residues. Structurally, the linker disrupts the C3 symmetry of the associated biliprotein, and this asymmetric interaction can serve to guide the transfer of excitation energy in one direction.
机译:藻胆体(PBS)的光收集天线由含发色团的胆蛋白和“无色”接头肽组成,并在结构上设计为支持激发能从PBS周边向其核心的单向传递。通过调节相关胆汁蛋白的光谱特性,接头肽在该转移过程中具有独特的作用。迄今为止,胆汁蛋白/接头复合物只有一个三维结构(APC / LC7.8),并且由接头引起的光谱调制的细节仍然未知。这项研究将C-藻蓝蛋白(PC)-接头复合物(从Synechococcus sp.PCC 7002分离)的详细光谱特征与接头氨基酸序列的蛋白质组学分析结合在一起,以产生胆蛋白/接头相互作用的模型。检查了杆连接子的序列[LR8.9,LR32.3和LRC28.5],以鉴定对该蛋白家族的结构或功能重要的进化保守区。尽管在所有接头中没有一个共同的同源位点,但在每个单独的亚组(LC,LR和LRC)中都有很强的趋势,并且LR32.3和L RC28.5的N末端片段均显示多个相似区域与其他链接器。对LR32.3和LRC28.5的二级结构的预测以及与LC7.8的晶体结构的比较,进一步缩小了与PC发色团相互作用位点的候选范围;测量了Pb发色团的吸收,荧光,CD和激发各向异性。 PC三聚体,PC / LR32.3和PC / LRC 28.5记录了在一系列温度(298至77 K)下每种接头肽对PC发色团的光谱效应。因为L R32.3和LRC28.5以不同的方式调节PC三聚体的光谱特性,所以对于每个接头,它都建议有不同的生色团相互作用机理。 PC三聚体的低温吸收光谱与相邻的alpha84和beta84生色团之间的激子耦合相互作用一致。与LR32.3的缔合并不会大大改变该谱带的形状,但是PC / LRC28.5复合物的吸收率却有很大不同。这表明LRC28.5破坏了PC三聚物中建立的alpha84-beta84关系。从这些和其他极化光谱测量中,我们得出结论,L R32.3和LRC28.5都会影响末端发射的PC三聚体发色团(beta84)的光谱性质,并且LRC28.5还会干扰alpha84和beta84之间的关系。生色团破坏或增强其偶联相互作用。接头可通过特定的芳族残基或一定浓度的带静电残基干扰PC发色团。从结构上讲,该接头破坏了相关胆汁蛋白的C3对称性,这种不对称相互作用可指导一个方向上激发能的转移。

著录项

  • 作者

    Pizarro, Shelly Ann.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Biochemistry.;Physical chemistry.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 211 p.
  • 总页数 211
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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