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通过S100A1介导的瞬时相互作用形成钙依赖性S100A8淀粉样原纤维

Calcium-Dependent S100A8 Amyloid Fibril Formation via S100A1-Mediated Transient Interaction.

作者信息

Karalkevičiu̅tė Viktorija, Baronaitė Ieva, Peštenytė Aistė, Veiveris Dominykas, Usevičius Gediminas, Šimėnas Mantas, Žiaunys Mantas, Smirnovas Vytautas, Šulskis Darius

机构信息

Institute of Biotechnology, Life Sciences Center, Vilnius University, LT-10257 Vilnius, Lithuania.

Faculty of Physics, Vilnius University, LT-10222 Vilnius, Lithuania.

出版信息

ACS Chem Neurosci. 2025 Jul 16;16(14):2592-2601. doi: 10.1021/acschemneuro.5c00086. Epub 2025 Jun 25.

Abstract

The S100 family consists of calcium-binding proteins that are largely known for their contribution to neuroinflammatory processes. These proteins are associated with various cardiac and neurological functions as well as related diseases. A few S100 proteins can form unspecific or amyloid aggregates in neuropathologies and thus play a part in dementia pathogenesis. Among all S100 proteins, S100B and S100A9 aggregation properties are the most investigated; however, there is a lack of studies regarding other S100 members. In particular, S100A1 and S100A8 are also associated with neurological pathologies, but their interactions and aggregation are poorly understood. Therefore, in this study, we explored whether S100A1 and S100A8 proteins can form heterodimers, interact, or coaggregate. Our results revealed that S100A1 and S100A8 interactions and S100A8 amyloid aggregation are driven by calcium ions. We observed that while S100A1 remains mostly stable, S100A8 forms various types of spherical or unspecific aggregates. While they do not form stable heterodimers like calprotectin, their transient interactions facilitate the formation of worm-like amyloid fibrils, and the process is regulated by different calcium ion concentrations. At calcium ion saturation, both proteins are stabilized, leading to inhibition of aggregation. Overall, by employing a diverse range of techniques from amyloid and protein-specific fluorescence detection to electron-electron double resonance spectroscopy, we elucidated interactions between S100 proteins that might otherwise be overlooked, enhancing our understanding of their aggregation behavior.

摘要

S100家族由钙结合蛋白组成,这些蛋白主要因其在神经炎症过程中的作用而闻名。这些蛋白与各种心脏和神经功能以及相关疾病有关。一些S100蛋白可在神经病理学中形成非特异性或淀粉样聚集体,从而在痴呆症发病机制中发挥作用。在所有S100蛋白中,S100B和S100A9的聚集特性研究得最多;然而,关于其他S100成员的研究却很少。特别是,S100A1和S100A8也与神经病理学有关,但它们的相互作用和聚集情况却知之甚少。因此,在本研究中,我们探讨了S100A1和S100A8蛋白是否能形成异二聚体、相互作用或共同聚集。我们的结果表明,S100A1和S100A8的相互作用以及S100A8的淀粉样聚集是由钙离子驱动的。我们观察到,虽然S100A1大多保持稳定,但S100A8会形成各种类型的球形或非特异性聚集体。虽然它们不像钙卫蛋白那样形成稳定的异二聚体,但它们的瞬时相互作用促进了蠕虫状淀粉样纤维的形成,并且这个过程受不同钙离子浓度的调节。在钙离子饱和时,两种蛋白都得到稳定,从而抑制聚集。总体而言,通过采用从淀粉样和蛋白质特异性荧光检测到电子-电子双共振光谱等多种技术,我们阐明了S100蛋白之间可能被忽视的相互作用,增进了我们对它们聚集行为的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19d8/12272555/fc81d39c2de3/cn5c00086_0001.jpg

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