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铁蛋白解体中亚基-亚基界面的重要性:分子动力学研究。

Importance of the Subunit-Subunit Interface in Ferritin Disassembly: A Molecular Dynamics Study.

机构信息

Ministry of Education Key Laboratory of Industrial Biocatalysis, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.

School of Life Science and Technology, Tokyo Institute of Technology, Nagatsuta-cho, Midori-ku, Yokohama 226-8501, Japan.

出版信息

Langmuir. 2022 Jan 25;38(3):1106-1113. doi: 10.1021/acs.langmuir.1c02753. Epub 2022 Jan 11.

Abstract

Ferritin is a spherical cage-like protein that is useful for loading large functional particles for various applications. To our knowledge, how pH affects the interfaces inside ferritin and the mechanism of ferritin disassembly is far from complete. For this article, we conducted a series of molecular dynamics simulations (MD) at different pH values to study how interfaces affect ferritins' stability. It is shown that dimers are stable even at extremely low pH (pH 2.0), indicating that the dimer is the essential subunit for disassembly, and the slight swelling of the dimer resulting from monomer rotation inside a dimer is what triggers disassembly. During ferritin disassembly, there are two types of interfaces involved, and the interface between dimers is crucial. We also found that the driving forces for maintaining dimer stability are different when a dimer is inside ferritin and in an acidic solution. At low pH, the protonation of residues can lead to the loss of the salt bridge and the hydrogen bond between dimers, resulting in the disassembly of ferritin in an acidic environment. The above simulations reveal the possible mechanism of ferritin disassembly in an acidic solution, which can help us to design innovative and functional ferritin cages for different applications.

摘要

铁蛋白是一种球形笼状蛋白,可用于装载各种应用的大型功能性颗粒。据我们所知,pH 值如何影响铁蛋白内部的界面以及铁蛋白解体的机制还远未完全清楚。在本文中,我们在不同的 pH 值下进行了一系列分子动力学模拟 (MD),以研究界面如何影响铁蛋白的稳定性。结果表明,即使在极低的 pH 值(pH 2.0)下,二聚体也是稳定的,这表明二聚体是解体的必需亚基,二聚体内单体旋转引起的轻微膨胀是触发解体的原因。在铁蛋白解体过程中,有两种类型的界面参与,其中二聚体之间的界面是关键的。我们还发现,当二聚体在铁蛋白内和在酸性溶液中时,维持二聚体稳定性的驱动力是不同的。在低 pH 值下,残基的质子化可能导致二聚体之间盐桥和氢键的丧失,导致铁蛋白在酸性环境中的解体。上述模拟揭示了酸性溶液中铁蛋白解体的可能机制,这有助于我们设计用于不同应用的创新型和功能性铁蛋白笼。

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