Department of Biochemistry and Biophysics, University of California San Francisco, San Francisco, California, USA.
Gladstone Institute of Neurological Disease, The Gladstone Institutes, San Francisco, California, USA.
J Biol Chem. 2021 Jan-Jun;296:100613. doi: 10.1016/j.jbc.2021.100613. Epub 2021 Mar 30.
Overexpression and aggregation of α-synuclein (ASyn) are linked to the onset and pathology of Parkinson's disease and related synucleinopathies. Elevated levels of the stress-induced chaperone Hsp70 protect against ASyn misfolding and ASyn-driven neurodegeneration in cell and animal models, yet there is minimal mechanistic understanding of this important protective pathway. It is generally assumed that Hsp70 binds to ASyn using its canonical and promiscuous substrate-binding cleft to limit aggregation. Here we report that this activity is due to a novel and unexpected mode of Hsp70 action, involving neither ATP nor the typical substrate-binding cleft. We use novel ASyn oligomerization assays to show that Hsp70 directly blocks ASyn oligomerization, an early event in ASyn misfolding. Using truncations, mutations, and inhibitors, we confirm that Hsp70 interacts with ASyn via an as yet unidentified, noncanonical interaction site in the C-terminal domain. Finally, we report a biological role for a similar mode of action in H4 neuroglioma cells. Together, these findings suggest that new chemical approaches will be required to target the Hsp70-ASyn interaction in synucleinopathies. Such approaches are likely to be more specific than targeting Hsp70's canonical action. Additionally, these results raise the question of whether other misfolded proteins might also engage Hsp70 via the same noncanonical mechanism.
α-突触核蛋白(ASyn)的过度表达和聚集与帕金森病和相关的突触核蛋白病的发病和病理学有关。应激诱导的伴侣蛋白 Hsp70 的水平升高可防止细胞和动物模型中 ASyn 的错误折叠和 ASyn 驱动的神经退行性变,但对这种重要的保护途径的机制理解甚少。通常认为,Hsp70 利用其典型的和混杂的底物结合裂谷结合 ASyn 以限制聚集。在这里,我们报告说,这种活性是由于 Hsp70 作用的一种新的和意外的模式,既不涉及 ATP 也不涉及典型的底物结合裂谷。我们使用新的 ASyn 低聚化测定法表明,Hsp70 直接阻断 ASyn 的低聚化,这是 ASyn 错误折叠的早期事件。通过截断、突变和抑制剂,我们证实 Hsp70 通过 C 末端结构域中尚未确定的非典型相互作用位点与 ASyn 相互作用。最后,我们在 H4 神经胶质瘤细胞中报告了类似作用模式的生物学作用。总之,这些发现表明,需要新的化学方法来靶向突触核蛋白病中的 Hsp70-ASyn 相互作用。与靶向 Hsp70 的典型作用相比,这些方法可能更具特异性。此外,这些结果提出了一个问题,即其他错误折叠的蛋白质是否也可以通过相同的非典型机制与 Hsp70 结合。