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Structural model of FeoB the iron transporter from Pseudomonas aeruginosa predicts a cysteine lined GTP-gated pore

机译:FeoB(铜绿假单胞菌的铁转运蛋白)的结构模型预测有一个半胱氨酸内衬的GTP门控的孔

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摘要

Iron is essential for the survival and virulence of pathogenic bacteria. The FeoB transporter allows the bacterial cell to acquire ferrous iron from its environment, making it an excellent drug target in intractable pathogens. The protein consists of an N-terminal GTP-binding domain and a C-terminal membrane domain. Despite the availability of X-ray crystal structures of the N-terminal domain, many aspects of the structure and function of FeoB remain unclear, such as the structure of the membrane domain, the oligomeric state of the protein, the molecular mechanism of iron transport, and how this is coupled to GTP hydrolysis at the N-terminal domain. In the present study, we describe the first homology model of FeoB. Due to the lack of sequence homology between FeoB and other transporters, the structures of four different proteins were used as templates to generate the homology model of full-length FeoB, which predicts a trimeric structure. We confirmed this trimeric structure by both blue-native-PAGE (BN-PAGE) and AFM. According to our model, the membrane domain of the trimeric protein forms a central pore lined by highly conserved cysteine residues. This pore aligns with a central pore in the N-terminal GTPase domain (G-domain) lined by aspartate residues. Biochemical analysis of FeoB from Pseudomonas aeruginosa further reveals a putative iron sensor domain that could connect GTP binding/hydrolysis to the opening of the pore. These results indicate that FeoB might not act as a transporter, but rather as a GTP-gated channel.
机译:铁对于病原菌的生存和毒性至关重要。 FeoB转运蛋白可使细菌细胞从其环境中获取亚铁,使其成为顽固性病原体的优良药物靶标。该蛋白质由N端GTP结合结构域和C端膜结构域组成。尽管存在N末端结构域的X射线晶体结构,但FeoB的结构和功能的许多方面仍不清楚,例如膜结构域的结构,蛋白质的低聚状态,铁转运的分子机制。 ,以及它如何与N末端域的GTP水解偶联。在本研究中,我们描述了FeoB的第一个同源性模型。由于FeoB与其他转运蛋白之间缺乏序列同源性,因此将四种不同蛋白质的结构作为模板来生成全长FeoB同源性模型,该模型可预测三聚体结构。我们通过蓝色天然PAGE(BN-PAGE)和AFM证实了这种三聚体结构。根据我们的模型,三聚体蛋白的膜结构域形成由高度保守的半胱氨酸残基排列的中央孔。该孔与由天冬氨酸残基排列的N-末端GTP酶结构域(G-结构域)中的中心孔对齐。铜绿假单胞菌FeoB的生化分析进一步揭示了一个推定的铁传感器结构域,该结构域可以将GTP结合/水解作用连接到孔的开口。这些结果表明FeoB可能不充当转运蛋白,而是充当GTP门控通道。

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