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激光散射法研究铁蛋白自组装的动力学:亚基浓度、pH 值和离子强度的影响。

Kinetics of Ferritin Self-Assembly by Laser Light Scattering: Impact of Subunit Concentration, pH, and Ionic Strength.

机构信息

Department of Chemistry, National Institute of Technology, Rourkela 769008 Odisha, India.

Department of Physics and Astronomy, National Institute of Technology, Rourkela 769008 Odisha, India.

出版信息

Biomacromolecules. 2021 Apr 12;22(4):1389-1398. doi: 10.1021/acs.biomac.0c01562. Epub 2021 Mar 15.

Abstract

Ferritins, the cellular iron repositories, are self-assembled, hollow spherical nanocage proteins composed of 24 subunits. The self-assembly process in ferritin generates the electrostatic gradient to rapidly sequester Fe(II) ions, thereby minimizing its toxicity (Fenton reaction). Although the factors that drive self-assembly and control its kinetics are little investigated, its inherent reversibility has been utilized for cellular imaging and targeted drug delivery. The current work tracks the kinetics of ferritin self-assembly by laser light scattering and investigates the factors that influence the process. The formation of partially structured subunit-monomers/dimers, at pH ≤ 1.5, serves as the starting material for the self-assembly, which upon increasing the pH exhibits biphasic behavior (a rapid assembly process coupled with subunit folding followed by a slower reassembly/reorganization process) and completes within 10 min. The ferritin self-assembly accelerated with subunit concentration and ionic strength ( decreases in both the cases) but slowed down with the pH of the medium from 5.5 to 7.5 ( increases). These findings would help to regulate the ferritin self-assembly to enhance the loading/unloading of drugs/nanomaterials for exploiting it as a nanocarrier and nanoreactor.

摘要

铁蛋白是细胞内的铁储存库,由 24 个亚基自组装成空心球形纳米笼状蛋白。铁蛋白的自组装过程产生静电梯度,从而快速螯合 Fe(II)离子,从而最大限度地降低其毒性(Fenton 反应)。尽管驱动自组装和控制其动力学的因素尚未得到充分研究,但铁蛋白的固有可逆性已被用于细胞成像和靶向药物输送。本工作通过激光光散射跟踪铁蛋白自组装的动力学,并研究影响该过程的因素。在 pH≤1.5 时,部分结构的亚基单体/二聚体的形成作为自组装的起始材料,在提高 pH 值时表现出两相行为(快速组装过程与亚基折叠偶联,随后是较慢的重组/重组过程),并在 10 分钟内完成。铁蛋白自组装随着亚基浓度和离子强度的增加而加速(在这两种情况下都会减少),但随着介质 pH 值从 5.5 增加到 7.5(增加)而减慢。这些发现将有助于调节铁蛋白的自组装,以增强药物/纳米材料的加载/卸载,从而将其用作纳米载体和纳米反应器。

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