Department of Biochemistry and Biophysics, Stockholm University, Sweden.
Department of Biochemistry and Structural Biology, Lund University, Sweden.
J Biol Chem. 2020 Jun 12;295(24):8135-8144. doi: 10.1074/jbc.RA120.013459. Epub 2020 Apr 29.
A human molecular chaperone protein, DnaJ heat shock protein family (Hsp40) member B6 (DNAJB6), efficiently inhibits amyloid aggregation. This inhibition depends on a unique motif with conserved serine and threonine (S/T) residues that have a high capacity for hydrogen bonding. Global analysis of kinetics data has previously shown that DNAJB6 especially inhibits the primary nucleation pathways. These observations indicated that DNAJB6 achieves this remarkably effective and sub-stoichiometric inhibition by interacting not with the monomeric unfolded conformations of the amyloid-β symbol (Aβ) peptide but with aggregated species. However, these pre-nucleation oligomeric aggregates are transient and difficult to study experimentally. Here, we employed a native MS-based approach to directly detect oligomeric forms of Aβ formed in solution. We found that WT DNAJB6 considerably reduces the signals from the various forms of Aβ (1-40) oligomers, whereas a mutational DNAJB6 variant in which the S/T residues have been substituted with alanines does not. We also detected signals that appeared to represent DNAJB6 dimers and trimers to which varying amounts of Aβ are bound. These data provide direct experimental evidence that it is the oligomeric forms of Aβ that are captured by DNAJB6 in a manner which depends on the S/T residues. We conclude that, in agreement with the previously observed decrease in primary nucleation rate, strong binding of Aβ oligomers to DNAJB6 inhibits the formation of amyloid nuclei.
一种人类分子伴侣蛋白,DnaJ 热休克蛋白家族(Hsp40)成员 B6(DNAJB6),能有效抑制淀粉样蛋白聚集。这种抑制作用依赖于一个具有保守丝氨酸和苏氨酸(S/T)残基的独特基序,该基序具有很强的形成氢键的能力。先前对动力学数据的全面分析表明,DNAJB6 特别抑制初级成核途径。这些观察结果表明,DNAJB6 通过与淀粉样β肽(Aβ)的单体未折叠构象而不是与聚集态物种相互作用,从而实现这种非常有效和亚化学计量的抑制。然而,这些预成核的寡聚体是瞬态的,难以在实验中研究。在这里,我们采用基于天然 MS 的方法直接检测溶液中形成的 Aβ寡聚体形式。我们发现 WT DNAJB6 可显著降低各种形式的 Aβ(1-40)寡聚物的信号,而用丙氨酸取代 S/T 残基的突变 DNAJB6 变体则没有。我们还检测到似乎代表 DNAJB6 二聚体和三聚体的信号,它们与不同数量的 Aβ结合。这些数据提供了直接的实验证据,表明是 Aβ的寡聚形式被 DNAJB6 以依赖于 S/T 残基的方式捕获。我们的结论是,与先前观察到的初级成核速率降低一致,Aβ寡聚体与 DNAJB6 的强结合抑制了淀粉样核的形成。