Sagnik Sen, Amar Thaker, Dewight Williams, Po-Lin Chiu, Brent L. Nannenga
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引用次数: 0
Abstract
Visualizing the structure of the protein-inorganic interface is critically important for our more complete understanding of biomineralization. Unfortunately, there are limited approaches for the direct and detailed study of biomolecules that interact with inorganic materials. Here we use single particle cryo-EM to study the protein-nanoparticle interactions of human light chain ferritin and visualize the high-resolution details of the protein-inorganic interface. In this work, we determined the 2.85 Å structure of human light chain ferritin bound to its native iron oxide nanoparticle substrate. The resulting cryo-EM maps confirmed and enhanced previously proposed interactions of the protein with the material along the B-helix, and revealed new interaction at the C-terminus of light chain ferritin. This work sheds new light on the mechanisms of ferritin biomineralization and further demonstrates the application of cryo-EM for the study of protein-inorganic systems.
可视化蛋白质-无机界面结构对于我们更全面地了解生物矿化至关重要。遗憾的是,直接详细研究与无机材料相互作用的生物大分子的方法非常有限。在这里,我们利用单颗粒低温电子显微镜研究了人类轻链铁蛋白的蛋白质-纳米颗粒相互作用,并对蛋白质-无机界面的高分辨率细节进行了可视化。在这项工作中,我们确定了人类轻链铁蛋白与其原生氧化铁纳米颗粒基质结合的 2.85 Å 结构。所绘制的低温电子显微镜图证实并增强了之前提出的蛋白质与材料沿 B 螺旋的相互作用,并揭示了轻链铁蛋白 C 端新的相互作用。这项研究揭示了铁蛋白生物矿化的新机制,并进一步证明了低温电子显微镜在蛋白质-无机系统研究中的应用。