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Self-Assembly and Biphasic Iron-Binding Characteristics of Mms6, A Bacterial Protein That Promotes the Formation of Superparamagnetic Magnetite Nanoparticles of Uniform Size and Shape

机译:细菌蛋白Mms6的自组装和两相铁结合特性,细菌蛋白促进大小和形状均一的超顺磁性磁铁矿纳米颗粒的形成

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摘要

Highly ordered mineralized structures created by living organisms are often hierarchical in structure with fundamental structural elements at nanometer scales. Proteins have been found responsible for forming many of these structures, but the mechanisms by which these biomineralization proteins function are generally poorly understood. To better understand its role in biomineralization, the magnetotactic bacterial protein, Mms6, which promotes the formation in vitro of superparamagnetic magnetite nanoparticles of uniform size and shape, was studied for its structure and function. Mms6 is shown to have two phases of iron binding: one high affinity and stoichiometric and the other low affinity, high capacity, and cooperative with respect to iron. The protein is amphipathic with a hydrophobic N-terminal domain and hydrophilic C-terminal domain. It self-assembles to form a micelle, with most particles consisting of 20–40 monomers, with the hydrophilic C-termini exposed on the outside. Studies of proteins with mutated C-terminal domains show that the C-terminal domain contributes to the stability of this multisubunit particle and binds iron by a mechanism that is sensitive to the arrangement of carboxyl/hydroxyl groups in this domain.
机译:由活生物体形成的高度有序的矿化结构通常在结构上具有等级结构,其基本结构元素处于纳米尺度。已经发现蛋白质负责形成许多这些结构,但是人们对这些生物矿化蛋白质功能的机理了解甚少。为了更好地了解其在生物矿化中的作用,研究了趋磁细菌蛋白Mms6的结构和功能,该蛋白促进了大小和形状均一的超顺磁性磁铁矿纳米粒子的体外形成。 Mms6已显示具有铁结合的两个阶段:一个是高亲和力和化学计量的相,另一个是低亲和力,高容量和相对于铁的协同作用。该蛋白是两亲性的,具有疏水性N末端结构域和亲水性C末端结构域。它自组装形成胶束,其中大多数颗粒由20-40个单体组成,亲水性C-末端暴露在外面。具有突变的C末端结构域的蛋白质的研究表明,C末端结构域有助于该多亚基颗粒的稳定性,并通过对该域中的羧基/羟基排列敏感的机制与铁结合。

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