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Ubiquitin binds the amyloid β peptide and interferes with its clearance pathways

机译:泛素结合淀粉样β肽并干扰其清除途径

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摘要

Several lines of evidence point to a compromised proteostasis associated with a reduction of the Ubiquitin Proteasome System (UPS) activity in patients affected by Alzheimer's Disease (AD) and suggest that the amyloid β peptide (Aβ) is an important player in the game. Inspired also by many reports, underlining the presence of ubiquitin (Ub) in the amyloid plaques of AD brains, here we set out to test whether Ub may bind the Aβ peptide and have any effect on its clearance pathways. By using an integrated array of MALDI-TOF/UPLC-HRMS, fluorescence, NMR, SPR, Microscale Thermophoresis (MST) and molecular dynamics studies, we consistently demonstrated that Aβ40 binds Ub with a 1 : 1 stoichiometry and Kd in the high micromolar range. In particular, we show that the N-terminal domain of the Aβ peptide (through residues D1, E3 and R5) interacts with the C-terminal tail of Ub (involving residues K63 and E64), inducing the central region of Aβ (14HQKLVFFAEDVGSNK28) to adopt a mixed α-helix/β-turn structure. ELISA assays, carried out in neuroblastoma cell lysates, suggest that Aβ competitively binds Ub also in the presence of the entire pool of cytosolic Ub binding proteins. Ub-bound Aβ has a lower tendency to aggregate into amyloid-like fibrils and is more slowly degraded by the Insulin Degrading Enzyme (IDE). Finally, we observe that the water soluble fragment Aβ1–16 significantly inhibits Ub chain growth reactions. These results evidence how the non-covalent interaction between Aβ peptides and Ub may have relevant effects on the regulation of the upstream events of the UPS and pave the way to future in vivo studies addressing the role played by Aβ peptide in the malfunction of proteome maintenance occurring in AD.
机译:有几条证据表明,患有阿尔茨海默氏病(AD)的患者的蛋白稳态受损与泛素蛋白酶体系统(UPS)活性降低有关,并表明淀粉样蛋白β肽(Aβ)是游戏中的重要角色。还受到许多报道的启发,强调了AD脑淀粉样斑块中泛素(Ub)的存在,此处我们着手测试Ub是否可以结合Aβ肽并对其清除途径有任何影响。通过使用MALDI-TOF / UPLC-HRMS,荧光,NMR,SPR,微尺度热泳(MST)和分子动力学研究的集成阵列,我们始终证明Aβ40以1:1的化学计量比和Ud在高微摩尔范围内结合Ub。 。特别是,我们显示Aβ肽的N末端结构域(通过残基D1,E3和R5)与Ub的C末端尾巴(涉及残基K63和E64)相互作用,从而诱导了Aβ的中央区域( 14 HQKLVFFAEDVGSNK 28 )采用混合的α-螺旋/β-转角结构。在成神经细胞瘤细胞裂解物中进行的ELISA分析表明,在存在完整的胞质Ub结合蛋白库的情况下,Aβ也竞争性结合Ub。与Ub结合的Aβ具有较低的聚集成淀粉样蛋白样原纤维的趋势,并且被胰岛素降解酶(IDE)降解的速度较慢。最后,我们观察到水溶性片段Aβ1-16显着抑制Ub链生长反应。这些结果证明了Aβ肽与Ub之间的非共价相互作用如何可能对UPS上游事件的调节产生相关影响,并为将来进行研究以解决Aβ肽在蛋白质组维持失灵中的作用铺平了道路。发生在公元。

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