Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas 66045, United States.
Biochemistry. 2012 Jan 31;51(4):888-98. doi: 10.1021/bi2018078. Epub 2012 Jan 23.
Tauopathies are characterized by abnormal aggregation of the microtubule associated protein tau. This aggregation is thought to occur when tau undergoes shifts from its native conformation to one that exposes hydrophobic areas on separate monomers, allowing contact and subsequent association into oligomers and filaments. Molecular chaperones normally function by binding to exposed hydrophobic stretches on proteins and assisting in their refolding. Chaperones of the heat shock protein 70 (Hsp70) family have been implicated in the prevention of abnormal tau aggregation in adult neurons. Tau exists as six alternatively spliced isoforms, and all six isoforms appear capable of forming the pathological aggregates seen in Alzheimer's disease. Because tau isoforms differ in primary sequence, we sought to determine whether Hsp70 would differentially affect the aggregation and microtubule assembly characteristics of the various tau isoforms. We found that Hsp70 inhibits tau aggregation directly and not through inducer-mediated effects. We also determined that Hsp70 inhibits the aggregation of each individual tau isoform and was more effective at inhibiting the three repeat isoforms. Finally, all tau isoforms robustly induced microtubule formation while in the presence of Hsp70. The results presented herein indicate that Hsp70 affects tau isoform dysfunction while having very little impact on the normal function of tau to mediate microtubule assembly. This indicates that targeting Hsp70 to tau may provide a therapeutic approach for the treatment of tauopathies that avoids disruption of normal tau function.
tau 病的特征是微管相关蛋白 tau 的异常聚集。当 tau 从其天然构象转变为暴露分离单体上的疏水区的构象时,这种聚集被认为会发生,从而允许接触和随后的寡聚体和纤维形成。分子伴侣通常通过与蛋白质上暴露的疏水区结合并协助其重折叠来发挥作用。热休克蛋白 70(Hsp70)家族的伴侣蛋白被认为可以预防成年神经元中 tau 的异常聚集。tau 存在 6 种选择性剪接异构体,所有 6 种异构体似乎都能够形成阿尔茨海默病中所见的病理性聚集体。由于 tau 异构体在一级序列上存在差异,我们试图确定 Hsp70 是否会对各种 tau 异构体的聚集和微管组装特性产生不同的影响。我们发现 Hsp70 直接抑制 tau 聚集,而不是通过诱导剂介导的作用。我们还确定 Hsp70 抑制每个 tau 异构体的聚集,并且对三重复合体异构体的抑制作用更有效。最后,所有 tau 异构体在 Hsp70 存在下均能强烈诱导微管形成。本文的结果表明,Hsp70 影响 tau 异构体功能障碍,而对 tau 介导微管组装的正常功能几乎没有影响。这表明针对 tau 的 Hsp70 可能为治疗 tau 病提供一种治疗方法,避免破坏正常 tau 功能。