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Operon flv4-flv2 provides cyanobacterial photosystem II with flexibility of electron transfer.

机译:Operon flv4-flv2 为蓝细菌光系统II提供了电子转移的灵活性。

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摘要

Synechocystis sp. PCC 6803 has four genes encoding flavodiiron proteins (FDPs; Flv1 to Flv4). Here, we investigated the flv4-flv2 operon encoding the Flv4, Sll0218, and Flv2 proteins, which are strongly expressed under low inorganic carbon conditions (i.e., air level of CO2) but become repressed at elevated CO2 conditions. Different from FDP homodimers in anaerobic microbes, Synechocystis Flv2 and Flv4 form a heterodimer. It is located in cytoplasm but also has a high affinity to membrane in the presence of cations. Sll0218, on the contrary, resides in the thylakoid membrane in association with a high molecular mass protein complex. Sll0218 operates partially independently of Flv2/Flv4. It stabilizes the photosystem II (PSII) dimers, and according to biophysical measurements opens up a novel electron transfer pathway to the Flv2/Flv4 heterodimer from PSII. Constructed homology models suggest efficient electron transfer in heterodimeric Flv2/Flv4. It is suggested that Flv2/Flv4 binds to thylakoids in light, mediates electron transfer from PSII, and concomitantly regulates the association of phycobilisomes with PSII. The function of the flv4-flv2 operon provides many beta -cyanobacteria with a so far unknown photoprotection mechanism that evolved in parallel with oxygen-evolving PSII.
机译:Synechocystis sp。 PCC 6803具有编码黄素二铁蛋白(FDP; Flv1至Flv4)的四个基因。在这里,我们研究了编码Flv4,Sll0218和Flv2蛋白的 flv4-flv2 操纵子,它们在低无机碳条件下(即空气中CO 2 ),但在升高的CO 2 条件下受到抑制。与厌氧菌中的FDP同二聚体不同, Synechocystis Flv2和Flv4形成异二聚体。它位于细胞质中,但在阳离子存在下对膜也具有高亲和力。相反,Sll0218与高分子量蛋白质复合物结合存在于类囊体膜中。 Sll0218部分独立于Flv2 / Flv4运行。它稳定了光系统II(PSII)二聚体,并且根据生物物理测量结果,从PSII向Flv2 / Flv4异二聚体开辟了一条新的电子转移途径。构建的同源性模型表明异二聚体Flv2 / Flv4中有效的电子转移。有人提出,Flv2 / Flv4在光下结合类囊体,介导PSII的电子转移,并同时调节藻胆体与PSII的结合。 flv4-flv2 操纵子的功能为许多β-蓝细菌提供了迄今未知的光保护机制,该机制与放氧的PSII并行发展。

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