首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Iron Translocation into and out of Listeria innocua Dps and Size Distribution of the Protein-enclosed Nanomineral Are Modulated by the Electrostatic Gradient at the 3-fold Ferritin-like Pores
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Iron Translocation into and out of Listeria innocua Dps and Size Distribution of the Protein-enclosed Nanomineral Are Modulated by the Electrostatic Gradient at the 3-fold Ferritin-like Pores

机译:铁在3倍的铁蛋白样孔中的静电梯度调节进入和脱离无毒李斯特菌Dps以及蛋白质包裹的纳米矿物的尺寸分布

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摘要

Elucidating pore function at the 3-fold channels of 12-subunit, microbial Dps proteins is important in understanding their role in the management of iron/hydrogen peroxide. The Dps pores are called “ferritin-like” because of the structural resemblance to the 3-fold channels of 24-subunit ferritins used for iron entry and exit to and from the protein cage. In ferritins, negatively charged residues lining the pores generate a negative electrostatic gradient that guides iron ions toward the ferroxidase centers for catalysis with oxidant and destined for the mineralization cavity. To establish whether the set of three aspartate residues that line the pores in Listeria innocua Dps act in a similar fashion, D121N, D126N, D130N, and D121N/D126N/D130N proteins were produced; kinetics of iron uptake/release and the size distribution of the iron mineral in the protein cavity were compared. The results, discussed in the framework of crystal growth in a confined space, indicate that iron uses the hydrophilic 3-fold pores to traverse the protein shell. For the first time, the strength of the electrostatic potential is observed to modulate kinetic cooperativity in the iron uptake/release processes and accordingly the size distribution of the microcrystalline iron minerals in the Dps protein population.
机译:阐明微生物Dps蛋白在12个亚基的3倍通道处的孔功能对于理解其在铁/过氧化氢处理中的作用非常重要。 Dps孔之所以称为“类铁蛋白”,是因为其结构类似于24个亚基铁蛋白的3倍通道,这些通道用于铁进入和退出蛋白笼。在铁蛋白中,带孔的带负电荷的残留物会产生一个负的静电梯度,该梯度将铁离​​子引向铁氧化酶中心,以用氧化剂催化并运往矿化腔。为了确定在无病李斯特菌Dps的孔中排列的三个天冬氨酸残基是否以相似的方式起作用,产生了D121N,D126N,D130N和D121N / D126N / D130N蛋白。比较了铁吸收/释放的动力学和蛋白质腔中铁矿物质的大小分布。在有限空间内晶体生长的框架中讨论的结果表明,铁利用亲水性3倍孔来穿越蛋白质壳。首次观察到静电势的强度可调节铁吸收/释放过程中的动力学协同性,从而调节Dps蛋白种群中微晶铁矿物质的尺寸分布。

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