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Concerted Motions Networking Pores and Distant Ferroxidase Centers Enable Bacterioferritin Function and Iron Traffic

机译:协同运动将毛孔和远处的亚铁氧化酶中心联网从而使细菌铁蛋白功能和铁运输得以实现

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摘要

X-ray crystallography, molecular dynamics (MD) simulations and biochemistry were utilized to investigate the effect of introducing hydrophobic interactions in the 4-fold (N148L and Q151L) and B-pores (D34F) of Pseudomonas aeruginosa bacterioferritin B (BfrB) on BfrB function. The structures show only local structural perturbations and confirm the anticipated hydrophobic interactions. Surprisingly, structures obtained after soaking crystals in Fe2+-containing crystallization solution revealed that although iron loads into the ferroxidase centers of the mutants, the side chains of ferroxidase ligands E51 and H130 do not reorganize to bind the iron ions, as is seen in the wt BfrB structures. Similar experiments with a double mutant (C89S/K96C) prepared to introduce changes outside the pores show competent ferroxidase centers that function akin to those in wt BfrB. MD simulations comparing wt BfrB with the D34F and N148L mutants show that the mutants exhibit significantly reduced flexibility, and reveal a network of concerted motions linking ferroxidase centers and 4-fold and B-pores, which are important for imparting ferroxidase centers in BfrB with the required flexibility to function efficiently. In agreement, the efficiency of Fe2+ oxidation and uptake of the 4-fold and B-pore mutants in solution is significantly compromised relative to wt or C89S/K96C BfrB. Finally, our structures show a large number of previously unknown iron binding sites in the interior cavity and B-pores of BfrB, which reveal in unprecedented detail conduits followed by iron and phosphate ions across the BfrB shell, as well as paths in the interior cavity that may facilitate nucleation of the iron phosphate mineral.
机译:X射线晶体学,分子动力学(MD)模拟和生物化学被用来研究在铜绿假单胞菌细菌铁蛋白B(BfrB)的4倍(N148L和Q151L)和B孔(D34F)中引入疏水相互作用对BfrB的影响功能。这些结构仅显示局部结构扰动,并确认了预期的疏水相互作用。出乎意料的是,将晶体浸泡在含Fe 2 + 的结晶溶液中后获得的结构表明,尽管铁负载在突变体的亚铁氧化物酶中心,但亚铁氧化物酶配体E51和H130的侧链没有重组以结合如在wt BfrB结构中所见。使用双突变体(C89S / K96C)进行的类似实验(准备在孔外引入变化)显示,功能强大的亚铁氧化酶中心的功能类似于wt BfrB。 MD模拟将wt BfrB与D34F和N148L突变体进行比较,结果表明,该突变体显示出显着降低的柔韧性,并揭示了将铁氧化酶中心与4倍和B孔连接在一起的协调运动网络,这对于在BfrB中赋予铁氧化酶中心具有重要意义。需要灵活地有效运行。一致的是,相对于wt或C89S / K96C BfrB,Fe 2 + 氧化效率以及溶液中4倍和B孔突变体的吸收受到显着影响。最后,我们的结构在BfrB的内腔和B孔中显示出大量以前未知的铁结合位点,这以前所未有的细节揭示了管道,随后是铁离子和磷酸根离子穿过BfrB壳,以及内腔中的路径可能有助于磷酸铁矿物质的成核。

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