Kozin Sergey A, Barykin Evgeny P, Telegin Georgy B, Chernov Alexander S, Adzhubei Alexei A, Radko Sergey P, Mitkevich Vladimir A, Makarov Alexander A
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow, Russia.
Pushchino Branch of Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia.
Front Neurosci. 2018 Aug 23;12:518. doi: 10.3389/fnins.2018.00518. eCollection 2018.
Cerebral β-amyloidosis, an accumulation in the patient's brain of aggregated amyloid-β (Aβ) peptides abnormally saturated by divalent biometal ions, is one of the hallmarks of Alzheimer's disease (AD). Earlier, we found that exogenously administrated synthetic Aβ with isomerized Asp7 (isoD7-Aβ) induces Aβ fibrillar aggregation in the transgenic mice model of AD. IsoD7-Aβ molecules have been implied to act as seeds enforcing endogenous Aβ to undergo pathological aggregation through zinc-mediated interactions. On the basis of our findings on zinc-induced oligomerization of the metal-binding domain of various Aβ species, we hypothesize that upon phosphorylation of Ser8, isoD7-Aβ loses its ability to form zinc-bound oligomeric seeds. In this work, we found that (i) isoD7-Aβ with phosphorylated Ser8 (isoD7-pS8-Aβ) is less prone to spontaneous and zinc-induced aggregation in comparison with isoD7-Aβ and intact Aβ as shown by thioflavin T fluorimetry and dynamic light scattering data, and (ii) intravenous injections of isoD7-pS8-Aβ significantly slow down the progression of institutional β-amyloidosis in AβPP/PS1 transgenic mice as shown by the reduction of the congophilic amyloid plaques' number in the hippocampus. The results support the role of the zinc-mediated oligomerization of Aβ species in the modulation of cerebral β-amyloidosis and demonstrate that isoD7-pS8-Aβ can serve as a potential molecular tool to block the aggregation of endogenous Aβ in AD.
脑β-淀粉样变性是阿尔茨海默病(AD)的标志性特征之一,表现为患者大脑中聚集的淀粉样β(Aβ)肽异常地被二价生物金属离子饱和。此前,我们发现外源性给予的具有异构化天冬氨酸7(isoD7-Aβ)的合成Aβ在AD转基因小鼠模型中诱导Aβ纤维状聚集。IsoD7-Aβ分子被认为通过锌介导的相互作用充当促使内源性Aβ发生病理聚集的种子。基于我们对锌诱导各种Aβ物种金属结合域寡聚化的研究结果,我们推测在丝氨酸8磷酸化后,isoD7-Aβ失去形成锌结合寡聚种子的能力。在这项工作中,我们发现:(i)如硫黄素T荧光测定法和动态光散射数据所示,与isoD7-Aβ和完整Aβ相比,丝氨酸8磷酸化的isoD7-Aβ(isoD7-pS8-Aβ)较不易发生自发和锌诱导的聚集;(ii)如海马中嗜刚果红淀粉样斑块数量减少所示,静脉注射isoD7-pS8-Aβ显著减缓了AβPP/PS1转基因小鼠中脑内β-淀粉样变性的进展。这些结果支持了Aβ物种锌介导的寡聚化在调节脑β-淀粉样变性中的作用,并表明isoD7-pS8-Aβ可作为一种潜在的分子工具来阻断AD中内源性Aβ的聚集。