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首页> 外文期刊>Archives of Microbiology >Characterization of the substrate-binding PotD subunit in Synechocystis sp. strain PCC 6803
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Characterization of the substrate-binding PotD subunit in Synechocystis sp. strain PCC 6803

机译:底物囊藻属中结合底物的PotD亚基的表征。 PCC 6803株

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The potD gene encodes the bacterial substrate-binding subunit of the polyamine transport system. The uptake system, which belongs to the ABC transporters, has been characterized in Escherichia coli, but it has not been previously studied in cyanobacteria. Although the overall sequence identity between Synechocystis sp. strain PCC 6803 (hereafter Synechocystis) PotD and Escherichia coli PotD is 24%, the ligand-binding site in the constructed homology model of Synechocystis PotD is well conserved. The conservation of the five polyamine-binding residues (Asp206, Glu209, Trp267, Trp293, and Asp295 in Synechocystis PotD) between these two species indicated polyamine-binding capacity for Synechocystis PotD. The Synechocystis potD gene is functional and its expression is under environmental regulation at transcriptional as well as post-transcriptional levels. Furthermore, an in vitro binding assay with the purified recombinant PotD protein demonstrated that the Synechocystis PotD protein is able to bind polyamines and favors spermidine over putrescine. Finally, we confirmed that Synechocystis PotD plays a physiological role in the uptake of polyamines in vivo using a constructed Synechocystis potD-disruption mutant.
机译:potD基因编码多胺转运系统的细菌底物结合亚基。属于ABC转运蛋白的摄取系统已在大肠杆菌中进行了表征,但以前尚未在蓝细菌中对其进行研究。虽然Synechocystis sp。之间的整体序列同一性。菌株PCC 6803(以下称为集囊藻)PotD和大肠杆菌PotD为24%,在所构建的集囊藻PotD的同源性模型中,配体结合位点是良好保守的。这两个物种之间的五个多胺结合残基(Asy206,Glu209,Trp267,Trp293和Asp295)的保守性表明多胺结合能力对多囊藻PotD而言。集胞藻potD基因是功能性的,其表达在转录和转录后水平均受环境调控。此外,用纯化的重组PotD蛋白进行的体外结合试验表明,集胞藻PotD蛋白能够与多胺结合并比腐胺更倾向于亚精胺。最后,我们证实了拟南芥PodD使用构建的拟南芥potD-disruption突变体在体内吸收多胺中起着生理作用。

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