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Phycobilisome rod mutants in Synechocystis sp. strain PCC6803

机译:藻蓝藻中的藻胆杆突变体。菌株PCC6803

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摘要

The phycobilisome is a large pigment-protein assembly that harvests light energy for photosynthesis. This supramolecular complex is composed of two main structures: a core substructure and peripheral rods. Linker polypeptides assemble phycobiliproteins within these structures and optimize light absorption and energy transfer. Mutations have been constructed in three rod-linker-coding genes located in the cpc operon of Synechocystis sp. strain PCC6803. The cpcC1 gene encoding the 33 kDa linker is found to be epistatic to cpcC2 encoding the 30 kDa linker, indicating a specific role for each of these two linkers in rod growth. This corroborates studies on the sequential degradation of phycobilisomes upon nitrogen starvation. Three allelic mutants affecting cpcC2 revealed a polar effect of commonly used cassettes (aphI, aadA) on the operon steady-state transcripts and an effect of rod linker availability on the amount of phycocyanin incorporated in the phycobilisome. This led to the proposal that regulation of rod length could occur through processing of transcripts upstream of the cpcC2 gene.
机译:藻胆体是一种大型的色素-蛋白质组件,可收集光能以进行光合作用。这种超分子复合物由两个主要结构组成:核心子结构和外围棒。接头多肽在这些结构中组装藻胆蛋白并优化光吸收和能量转移。突变已被构建在Synechocystis sp。的cpc操纵子中的三个杆连接子编码基因中。菌株PCC6803。发现编码33 kDa接头的cpcC1基因比编码30 kDa接头的cpcC2上位,表明这两个接头在杆生长中具有特定作用。这证实了氮饥饿时藻胆体顺序降解的研究。影响cpcC2的三个等位基因突变体揭示了常用盒体(aphI,aadA)对操纵子稳态转录本的极性作用,以及杆接头可用性对掺入藻胆体中藻蓝蛋白量的影响。这就提出了一个建议,即杆长度的调节可以通过加工cpcC2基因上游的转录本来实现。

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