首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Morphological Transformations in the Magnetite Biomineralizing Protein Mms6 in Iron Solutions: A Small-Angle X-ray Scattering Study
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Morphological Transformations in the Magnetite Biomineralizing Protein Mms6 in Iron Solutions: A Small-Angle X-ray Scattering Study

机译:铁溶液中磁铁矿生物矿化蛋白Mms6的形态转变:X射线小角度散射研究

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Magnetotactic bacteria that produce magnetic nanocrystals of uniform size and well-defined morphologies have inspired the use of biomineralization protein Mms6 to promote formation of uniform magnetic nanocrystals in vitro. Small angle X-ray scattering (SAXS) studies in physiological solutions reveal that Mms6 forms compact globular three-dimensional (3D) micelles (approximately 10 nm in diameter) that are, to a large extent, independent of concentration. In the presence of iron ions in the solutions, the general micellar morphology is preserved, however, with associations among micelles that are induced by iron ions. Compared with Mms6, the m2Mms6 mutant (with the sequence of hydroxyl/carboxyl containing residues in the C-terminal domain shuffled) exhibits subtle morphological changes in the presence of iron ions in solutions. The analysis of the SAXS data is consistent with a hierarchical core-corona micellar structure similar to that found in amphiphilic polymers. The addition of ferric and ferrous iron ions to the protein solution induces morphological changes in the micellar structure by transforming the 3D micelles into objects of reduced dimensionality of 2, with fractal-like characteristics (including Gaussian-chain-like) or, alternatively, platelet-like structures.
机译:产生均一尺寸和形态明确的磁性纳米晶体的趋磁细菌激发了生物矿化蛋白Mms6的使用,以促进体外均一磁性纳米晶体的形成。在生理溶液中的小角X射线散射(SAXS)研究表明,Mms6形成紧凑的球形三维(3D)胶束(直径约10 nm),在很大程度上与浓度无关。在溶液中存在铁离子的情况下,一般的胶束形态得以保留,但是与由铁离子诱导的胶束之间的缔合有关。与Mms6相比,在溶液中存在铁离子时,m2Mms6突变体(C端结构域中的含羟基/羧基残基的序列被改组)显示出细微的形态变化。对SAXS数据的分析与类似于两亲聚合物中的分层电晕胶束结构一致。通过将3D胶束转变为尺寸降低为2的具有分形特征(包括高斯链状)或血小板的物体,将铁和亚铁离子添加到蛋白质溶液中可诱导胶束结构发生形态变化。类结构。

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