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Degradation of Phycobilisomes in Synechocystis sp. PCC6803

机译:藻蓝藻中藻胆体的降解PCC6803

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摘要

When cyanobacteria acclimate to nitrogen deficiency, they degrade their large (3–5-MDa), light-harvesting complexes, the phycobilisomes. This massive, yet specific, intracellular degradation of the pigmented phycobiliproteins causes a color change of cyanobacterial cultures from blue-green to yellow-green, a process referred to as chlorosis or bleaching. Phycobilisome degradation is induced by expression of the nblA gene, which encodes a protein of ∼7 kDa. NblA most likely acts as an adaptor protein that guides a Clp protease to the phycobiliproteins, thereby initiating the degradation process. Most cyanobacteria and red algae possess just one nblA-homologous gene. As an exception, the widely used “model organism” Synechocystis sp. PCC6803 expresses two such genes, nblA16803 and nblA26803, both of whose products are required for phycobilisome degradation. Here, we demonstrate that the two NblA proteins heterodimerize in vitro and in vivo using pull-down assays and a Förster energy-transfer approach, respectively. We further show that the NblA proteins form a ternary complex with ClpC (the HSP100 chaperone partner of Clp proteases) and phycobiliproteins in vitro. This complex is susceptible to ATP-dependent degradation by a Clp protease, a finding that supports a proposed mechanism of the degradation process. Expression of the single nblA gene encoded by the genome of the N2-fixing, filamentous cyanobacterium Nostoc sp. PCC7120 in the nblA1blA2 mutant of Synechocystis sp. PCC6803 induced phycobilisome degradation, suggesting that the function of the NblA heterodimer of Synechocystis sp. PCC6803 is combined in the homodimeric protein of Nostoc sp. PCC7120.
机译:当蓝细菌适应氮缺乏时,它们会降解它们的大型(3–5-MDa)光捕获复合物藻胆体。有色藻胆蛋白的这种大量而又特定的细胞内降解会导致蓝细菌培养物的颜色从蓝绿色变为黄绿色,该过程称为绿化或漂白。通过编码约7kDa的蛋白质的nblA基因的表达来诱导藻胆体降解。 NblA最有可能充当衔接蛋白,将Clp蛋白酶引导至藻胆蛋白,从而启动降解过程。大多数蓝细菌和红藻仅具有一个nblA同源基因。作为例外,广泛使用的“模型生物” Synechocystis sp.。 PCC6803表达两个这样的基因nblA16803和nblA26803,这两个基因都是藻胆体降解所必需的。在这里,我们证明了两种NblA蛋白分别在体外和体内使用下拉测定法和Förster能量转移方法异源二聚体。我们进一步表明,NblA蛋白与ClpC(Clp蛋白酶的HSP100伴侣伴侣)和藻胆蛋白形成三元复合物。这种复合物易受Clp蛋白酶依赖ATP的降解的支持,这一发现支持了所提出的降解过程机制。由固定N2的丝状蓝细菌Nostoc sp。的基因组编码的单个nblA基因的表达。蓝藻的nblA1 / nblA2突变体中的PCC7120。 PCC6803诱导藻胆体降解,表明突囊藻的NblA异二聚体的功能。 PCC6803与Nostoc sp。的同型二聚体蛋白结合。 PCC7120。

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