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铁蛋白吸附到温石棉纤维上会影响蛋白质的二级结构。

Ferritin adsorption onto chrysotile asbestos fibers influences the protein secondary structure.

作者信息

Zangari Martina, Piccirilli Federica, Vaccari Lisa, Radu Cristian, Zacchi Paola, Bernareggi Annalisa, Leone Sara, Zabucchi Giuliano, Borelli Violetta

机构信息

Department of Physics, University of Trieste, 34127, Trieste, Italy.

CERIC-ERIC, S.S. 14 - km 163,5, 34149, Basovizza, Trieste, Italy.

出版信息

Heliyon. 2024 Oct 4;10(20):e38966. doi: 10.1016/j.heliyon.2024.e38966. eCollection 2024 Oct 30.

Abstract

Asbestos fiber exposure triggers chronic inflammation and cancer. Asbestos fibers can adsorb different types of proteins. The mechanism of this adsorption, not yet completely understood, has been studied in detail mainly with serum albumin and was shown to induce structural changes in the bound protein. The findings of these works regarded mainly the changes of the protein structure, independently of any relation with asbestos-related diseases. For the first time, we have focused our attention to the consequences of the interaction between asbestos fibers and ferritin, a protein involved in iron metabolism, which is strongly modified in asbestos-related diseases. Even if it is known that ferritin can be adsorbed by asbestos fibers, the results of this interaction for the ferritin secondary structure has not previously been studied. One consequence of asbestos-ferritin interaction, is the formation of the so-called ferruginous/asbestos bodies (ABs). In the AB-coating material, the secondary structure of ferritin is modified, and at present, it is unclear whether or not this modification is a direct consequence of the asbestos interaction. In the present study, chrysotile asbestos, more than other asbestos fiber types tested, was found to rapidly bind holo-ferritin, and the presence of iron seemed to play a key role in this process, since iron-free apo-ferritin was adsorbed at a lower level, and iron-saturated chrysotile lost its ferritin-adsorbing capacity. To directly study the details of ferritin adsorption on asbestos fibers, High Resolution Transmission Electron Microscopy (HR-TEM) was employed together with FTIR microspectroscopy and Infrared nanoscopy, which to the best of our knowledge, have not previously been used for this purpose. Chrysotile-bound apo-ferritin underwent a significant change in secondary structure, showing a shift from a prevalent α-helix to a β-sheet conformation. Conversely, the adsorbed holo-ferritin structure appeared to be only weakly modified. These findings add a new potential mechanism to the toxic activities of asbestos: the fibers can modify the structure, and very likely, the function of adsorbed proteins. This, in relation to ferritin, could be a key mechanism in cell iron homeostasis alteration, typically reported in asbestos-related diseases.

摘要

接触石棉纤维会引发慢性炎症和癌症。石棉纤维能够吸附不同类型的蛋白质。这种吸附机制尚未完全明晰,主要针对血清白蛋白进行了详细研究,结果表明其会诱导被结合蛋白质的结构变化。这些研究的发现主要关注蛋白质结构的改变,而未涉及与石棉相关疾病的任何关联。我们首次将注意力集中在石棉纤维与铁蛋白之间相互作用的后果上,铁蛋白是一种参与铁代谢的蛋白质,在石棉相关疾病中会发生显著改变。尽管已知铁蛋白可被石棉纤维吸附,但此前尚未研究这种相互作用对铁蛋白二级结构的影响。石棉与铁蛋白相互作用的一个后果是形成所谓的含铁/石棉小体(ABs)。在AB的包被物质中,铁蛋白的二级结构发生了改变,目前尚不清楚这种改变是否是石棉相互作用的直接后果。在本研究中,发现温石棉比其他测试的石棉纤维类型更能快速结合全铁蛋白,并且铁的存在似乎在这一过程中起关键作用,因为无铁的脱铁铁蛋白吸附水平较低,而铁饱和的温石棉失去了其铁蛋白吸附能力。为了直接研究铁蛋白在石棉纤维上的吸附细节,我们使用了高分辨率透射电子显微镜(HR-TEM)以及傅里叶变换红外光谱显微镜和红外纳米显微镜,据我们所知,此前尚未将它们用于此目的。与温石棉结合的脱铁铁蛋白二级结构发生了显著变化,显示出从主要的α-螺旋构象向β-折叠构象的转变。相反,吸附的全铁蛋白结构似乎仅受到轻微改变。这些发现为石棉的毒性作用增添了一种新的潜在机制:纤维能够改变吸附蛋白质的结构,并且很可能改变其功能。就铁蛋白而言,这可能是石棉相关疾病中典型报道的细胞铁稳态改变的关键机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4014/11530830/c725f703ff01/ga1.jpg

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